<?xml version="1.0" encoding="UTF-8"?><!DOCTYPE article  PUBLIC "-//NLM//DTD Journal Publishing DTD v3.0 20080202//EN" "http://dtd.nlm.nih.gov/publishing/3.0/journalpublishing3.dtd"><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" dtd-version="3.0" xml:lang="en" article-type="research article"><front><journal-meta><journal-id journal-id-type="publisher-id">NR</journal-id><journal-title-group><journal-title>Natural Resources</journal-title></journal-title-group><issn pub-type="epub">2158-706X</issn><publisher><publisher-name>Scientific Research Publishing</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.4236/nr.2022.131001</article-id><article-id pub-id-type="publisher-id">NR-114844</article-id><article-categories><subj-group subj-group-type="heading"><subject>Articles</subject></subj-group><subj-group subj-group-type="Discipline-v2"><subject>Earth&amp;Environmental Sciences</subject></subj-group></article-categories><title-group><article-title>
 
 
  Brown Trout Redd Locations in the Northernmost Section of Spearfish Creek in Spearfish, South Dakota, USA
 
</article-title></title-group><contrib-group><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Michael</surname><given-names>J. Robidoux</given-names></name><xref ref-type="aff" rid="aff1"><sup>1</sup></xref></contrib><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Jill</surname><given-names>M. Voorhees</given-names></name><xref ref-type="aff" rid="aff1"><sup>1</sup></xref></contrib><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Abigail</surname><given-names>Domagall</given-names></name><xref ref-type="aff" rid="aff2"><sup>2</sup></xref></contrib><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Michael</surname><given-names>E. Barnes</given-names></name><xref ref-type="aff" rid="aff1"><sup>1</sup></xref></contrib></contrib-group><aff id="aff2"><addr-line>School of Natural Sciences, Environmental Physical Science, Black Hills State University, Spearfish, South Dakota, USA</addr-line></aff><aff id="aff1"><addr-line>South Dakota Department of Game, Fish and Parks, McNenny State Fish Hatchery, Spearfish, South Dakota, USA</addr-line></aff><pub-date pub-type="epub"><day>24</day><month>01</month><year>2022</year></pub-date><volume>13</volume><issue>01</issue><fpage>1</fpage><lpage>15</lpage><history><date date-type="received"><day>12,</day>	<month>December</month>	<year>2022</year></date><date date-type="rev-recd"><day>22,</day>	<month>January</month>	<year>2022</year>	</date><date date-type="accepted"><day>25,</day>	<month>January</month>	<year>2022</year></date></history><permissions><copyright-statement>&#169; Copyright  2014 by authors and Scientific Research Publishing Inc. </copyright-statement><copyright-year>2014</copyright-year><license><license-p>This work is licensed under the Creative Commons Attribution International License (CC BY). http://creativecommons.org/licenses/by/4.0/</license-p></license></permissions><abstract><p>
 
 
  Salmonid fish are known to reproduce throughout the Black Hills in South Dakota, however
  ,
   it is not known when or where they are spawning or how successful their spawning is. This study documented for the first-time brown trout (Salmo trutta) redd locations and redd construction timing in a 1.6 km reach of Spearfish Creek, within the northern most part of the city of Spearfish, South Dakota, USA in 2020
  .
   Redds were first observed on October 13, 2020, with observations continuing until November 17 when no new redds were spotted. Redd construction peaked during the first week of November, with 52 observed. A total of 146 redds was recorded over the course of the study, resulting in a density of 91 redds/km. This is the first study to document redds in this section of Spearfish Creek. These observations will allow for comparisons to future spawning activity which may be impacted by the increased urbanization likely along this section of 
  the 
  creek. 
  Hopefully, 
  This study can also guide future research and habitat projects throughout this section of Spearfish Creek, and potentially throughout this region.
 
</p></abstract><kwd-group><kwd>Brown Trout</kwd><kwd> Redds</kwd><kwd> Spawning</kwd><kwd> Spearfish</kwd><kwd> South Dakota</kwd></kwd-group></article-meta></front><body><sec id="s1"><title>1. Introduction</title><p>Brown trout (Salmo trutta) were introduced into the Black Hills of South Dakota, the USA in 1890 and quickly became naturalized [<xref ref-type="bibr" rid="scirp.114844-ref1">1</xref>]. With self-sustaining populations in nearly all 1287 km of streams in the Black Hills with the suitable habitat, they are an extremely important recreational fish species [<xref ref-type="bibr" rid="scirp.114844-ref2">2</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref3">3</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref4">4</xref>]. Black Hills brown trout populations are maintained entirely by natural reproduction; no hatchery stocking of brown trout occurs [<xref ref-type="bibr" rid="scirp.114844-ref3">3</xref>].</p><p>Brown trout typically spawn in the northern hemisphere during the fall [<xref ref-type="bibr" rid="scirp.114844-ref5">5</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref6">6</xref>]. Spawning in the Black Hills typically begins in mid-October and continues until the middle of November [<xref ref-type="bibr" rid="scirp.114844-ref7">7</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref8">8</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>]. Similar to other salmonids, female brown trout make gravel pit nests called redds for egg deposition [<xref ref-type="bibr" rid="scirp.114844-ref10">10</xref>]. The location of redds within a stream is based on stream morphology, substrates, and water velocity [<xref ref-type="bibr" rid="scirp.114844-ref11">11</xref>], with higher water velocities flowing over course substrates at shallower water depths preferred [<xref ref-type="bibr" rid="scirp.114844-ref5">5</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref12">12</xref>]. The number of redds in a stream section has been used to monitor trout populations [<xref ref-type="bibr" rid="scirp.114844-ref13">13</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref14">14</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref15">15</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref16">16</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref17">17</xref>], particularly in response to changes in water flow and temperature [<xref ref-type="bibr" rid="scirp.114844-ref18">18</xref>].</p><p>The city of Spearfish in the northern Black Hills contains a section of Spearfish Creek with an abundant brown trout population [<xref ref-type="bibr" rid="scirp.114844-ref19">19</xref>]. Future creek flows may be impacted by the growing human population of Spearfish, and the entire northern Black Hills [<xref ref-type="bibr" rid="scirp.114844-ref20">20</xref>]. Changes in Spearfish Creek flows and temperatures may also be impacted by future agricultural and commercial demands, such as changes in discharge from the D. C. Booth Historic National Fish Hatchery [<xref ref-type="bibr" rid="scirp.114844-ref21">21</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref22">22</xref>]. Thus, information is needed on the current status of brown trout reproduction to create a baseline for comparison in the future as environmental conditions change.</p><p>Martling et al. [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] described redd numbers in a southern reach of Spearfish Creek in the city of Spearfish. However, no information on redd locations or numbers in Spearfish Creek exists beyond the relatively small section that Martling et al. [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] sampled. Thus, the objective of this study was to survey redds in a reach of Spearfish Creek on the northern edge of Spearfish. With the information from this study and other similar studies, management staff can begin to glean where habitat projects should occur and where money can be spent to improve overall spawning and recruitment to improve angler satisfaction even further.</p></sec><sec id="s2"><title>2. Methods and Materials</title><sec id="s2_1"><title>2.1. Study Area</title><p>Spearfish Creek is located in the northern Black Hills, Lawrence County, South Dakota, USA. The creek has an upper section that begins at the headwaters and flows northward downstream through Spearfish Canyon. This upper section ends towards the bottom of the canyon where most of the water enters an aqueduct. After the aqueduct intake, the creek is dry for most of the year. Water re-enters the creek channel after its discharge from the hydroelectric plant, resulting in continuous flows of the creek through the city of Spearfish. This lower section eventually discharges into the Redwater River. Spearfish Creek at the city of Spearfish flows ranged from 1.38 m<sup>3</sup>/s to 2.16 m<sup>3</sup>/s during the duration of this study [<xref ref-type="bibr" rid="scirp.114844-ref23">23</xref>].</p><p>This study occurred in a 1.67 km long mainstem reach of Spearfish Creek within the city of Spearfish (<xref ref-type="fig" rid="fig1">Figure 1</xref>). The study site was bordered upstream by</p><p>the Jorgensen Park walking path bridge (44˚30'21.19&quot;N, −103˚51'59.05&quot;W) and downstream by the bridge at Highway 14 (44˚31'4.73&quot;N, −103˚51'56.68&quot;W). The distance from the hydroelectric plant (44˚28'4.73&quot;N, −103˚51'56.68&quot;W) to the start of the survey site is approximately 3.86 km. Martling et al. [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] surveyed trout redds in a section of Spearfish Creek in short reach beginning at the hydroelectric plant. The study site of the current study was approximately 2.92 km from the end of the Martling et al. [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] survey location (44˚29'2.47&quot;N, −103˚51'44.06&quot;W) (<xref ref-type="fig" rid="fig2">Figure 2</xref>). The study reach was divided into five similarly-sized sections (<xref ref-type="fig" rid="fig3">Figure 3</xref>).</p><p>Land use in the study area varied. In the survey reach, the riparian area furthest upstream was a developed city park. Immediately downstream, the creek flows through an area of residential housing (<xref ref-type="fig" rid="fig4">Figure 4</xref>). The final part of the survey area was primarily undeveloped park land and a small area of commercial development (<xref ref-type="fig" rid="fig5">Figure 5</xref>).</p><p>Calcite precipitate characterizes the substrate of Spearfish Creek [<xref ref-type="bibr" rid="scirp.114844-ref19">19</xref>]. The creek has a wide variety of substrate sizes and in-stream habitats [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>]. While Spearfish Creek contains naturalized populations of brown trout, rainbow trout (Oncorhynchus mykiss), and brook trout (Salvelinus fontinalis), the fish population in the creek section in this study consisted almost exclusively of brown trout [<xref ref-type="bibr" rid="scirp.114844-ref24">24</xref>].</p></sec><sec id="s2_2"><title>2.2. Redd Identification and Location</title><p>Redd sampling began on October 13, 2020. Observations occurred approximately weekly until the construction of new redds and observations of spawning fish had ceased, as described by Gallagher et al. [<xref ref-type="bibr" rid="scirp.114844-ref25">25</xref>]. Each weekly survey lasted approximately two to three hours, depending on the number of redds observed. The final sampling date was November 17, 2020. Redd identification followed the techniques described previously [<xref ref-type="bibr" rid="scirp.114844-ref7">7</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref8">8</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref25">25</xref>]. However, because redds varied greatly in size, and creek conditions varied from week-to-week, a redd was loosely defined as the presence of a clear pit and overturned substrate that formed a mound and/or a clear tail (<xref ref-type="fig" rid="fig6">Figure 6</xref>) [<xref ref-type="bibr" rid="scirp.114844-ref26">26</xref>]. Redd locations were recorded using TerraSync on the Trimble Geo7X Global Position System (Sunnyvale, California, USA). Every redd observed each week was marked, even if it was a repeat of prior weeks.</p><p>Ambient air temperatures were obtained for each of the sampling dates from a commercial website (https://www.wunderground.com/history/daily/us/sd/spearfish). The amount of daylight for each date was also recorded (https://sunrise-sunset.org/us/spearfish-sd/2020/11).</p></sec></sec><sec id="s3"><title>3. Results</title><p>A total of 146 redds were observed over the six-week study period. Redds were first observed on October 13 and redd construction ceased after November 17. Peak spawning activity was observed on November 3, when 52 new redds were observed (<xref ref-type="table" rid="table1">Table 1</xref>). Brown trout were the only fish species visually observed in the study area. During the fifth week of the study, redds started to deteriorate rapidly making it more difficult to observe those redds previously recorded. Redd construction varied considerably throughout the study area (Figures 7-11). A few creek sections in the study area had relatively high redd concentrations (Figures 12-14). Mean daily ambient air temperature varied greatly during the study, with temperatures dropping to −10˚C in one week of the study (<xref ref-type="table" rid="table2">Table 2</xref>). A sizable number of redds were observed under the Highway 14 bridge at the north end (section 1) of the study site (<xref ref-type="fig" rid="fig1">Figure 1</xref>5).</p></sec><sec id="s4"><title>4. Discussion</title><sec id="s4_1"><title>4.1. Redd Timing</title><p>The timing of redd construction in this study from October 13 to November 17 was similar to that reported elsewhere in the Black Hills. Martling et al. [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] observed the first redds in Spearfish Creek upstream from the current study site on October 15, with the final redds observed on November 12. Ketelsen et al. [<xref ref-type="bibr" rid="scirp.114844-ref7">7</xref>] reported that brown trout in Rapid Creek and Box Elder Creek began on October 14 and continued until November 5. Blaine et al. [<xref ref-type="bibr" rid="scirp.114844-ref8">8</xref>] observed the first brown trout redds in Crow Creek on October 17, with the final redds appearing on November 21. These spawning dates observed in this study are also within the range of dates reported elsewhere in the United States [<xref ref-type="bibr" rid="scirp.114844-ref5">5</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref6">6</xref>] and Canada [<xref ref-type="bibr" rid="scirp.114844-ref27">27</xref>]. However, spawning of brown trout in the Black Hills is earlier than that reported for brown trout in their native range [<xref ref-type="bibr" rid="scirp.114844-ref28">28</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref29">29</xref>], likely due to differences in latitude, photoperiod, altitude, and water temperatures [<xref ref-type="bibr" rid="scirp.114844-ref18">18</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref26">26</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref30">30</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref31">31</xref>].</p><table-wrap id="table1" ><label><xref ref-type="table" rid="table1">Table 1</xref></label><caption><title> The number of redds observed by week and cumulatively from a section of Spearfish Creek in the city of Spearfish, South Dakota, USA during the fall of 2020</title></caption><table><tbody><thead><tr><th align="center" valign="middle"  rowspan="2"  >Date</th><th align="center" valign="middle"  colspan="2"  >Redds</th></tr></thead><tr><td align="center" valign="middle" >New</td><td align="center" valign="middle" >Cumulative</td></tr><tr><td align="center" valign="middle" >October 13</td><td align="center" valign="middle" >14</td><td align="center" valign="middle" >14</td></tr><tr><td align="center" valign="middle" >October 20</td><td align="center" valign="middle" >30</td><td align="center" valign="middle" >44</td></tr><tr><td align="center" valign="middle" >October 30</td><td align="center" valign="middle" >22</td><td align="center" valign="middle" >66</td></tr><tr><td align="center" valign="middle" >November 5</td><td align="center" valign="middle" >52</td><td align="center" valign="middle" >118</td></tr><tr><td align="center" valign="middle" >November 10</td><td align="center" valign="middle" >24</td><td align="center" valign="middle" >142</td></tr><tr><td align="center" valign="middle" >November 17</td><td align="center" valign="middle" >4</td><td align="center" valign="middle" >146</td></tr></tbody></table></table-wrap><table-wrap id="table2" ><label><xref ref-type="table" rid="table2">Table 2</xref></label><caption><title> Ambient air temperature and daylight length on the days of sampling redds from a section of Spearfish Creek in the city of Spearfish, South Dakota, USA during the fall of 2020</title></caption><table><tbody><thead><tr><th align="center" valign="middle"  rowspan="2"  >Date</th><th align="center" valign="middle"  colspan="3"  >Temperature (˚C)</th><th align="center" valign="middle" ></th></tr></thead><tr><td align="center" valign="middle" >Minimum</td><td align="center" valign="middle" >Maximum</td><td align="center" valign="middle" >Mean</td><td align="center" valign="middle" >Daylight (hours)</td></tr><tr><td align="center" valign="middle" >October 13</td><td align="center" valign="middle" >5.0</td><td align="center" valign="middle" >20.0</td><td align="center" valign="middle" >11.1</td><td align="center" valign="middle" >11.0</td></tr><tr><td align="center" valign="middle" >October 20</td><td align="center" valign="middle" >−1.1</td><td align="center" valign="middle" >6.1</td><td align="center" valign="middle" >2.2</td><td align="center" valign="middle" >10.4</td></tr><tr><td align="center" valign="middle" >October 30</td><td align="center" valign="middle" >6.1</td><td align="center" valign="middle" >23.9</td><td align="center" valign="middle" >17.3</td><td align="center" valign="middle" >10</td></tr><tr><td align="center" valign="middle" >November 5</td><td align="center" valign="middle" >1.1</td><td align="center" valign="middle" >20.0</td><td align="center" valign="middle" >12.0</td><td align="center" valign="middle" >9.6</td></tr><tr><td align="center" valign="middle" >November 10</td><td align="center" valign="middle" >−10.1</td><td align="center" valign="middle" >3.9</td><td align="center" valign="middle" >−0.8</td><td align="center" valign="middle" >9.5</td></tr><tr><td align="center" valign="middle" >November 17</td><td align="center" valign="middle" >−1.1</td><td align="center" valign="middle" >18.9</td><td align="center" valign="middle" >9.9</td><td align="center" valign="middle" >9.3</td></tr></tbody></table></table-wrap></sec><sec id="s4_2"><title>4.2. Redd Density</title><p>At 91 redds/km, the redd density observed in this study is similar to the 84 redds/km reported by Martling et al. [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] for an upstream section of Spearfish Creek. In other streams in the Black Hills, redd densities of 106 redds/km, 43 redds/km, and approximately 5 redds/km were reported for Rapid Creek, Box Elder Creek, and Crow Creek, respectively [<xref ref-type="bibr" rid="scirp.114844-ref7">7</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref8">8</xref>]. In locations outside of the Black Hills, redd densities of 73 redds/km were reported in Scotland [<xref ref-type="bibr" rid="scirp.114844-ref32">32</xref>], 36 redds/km in Spain [<xref ref-type="bibr" rid="scirp.114844-ref33">33</xref>], and 10 redds/km in Canada [<xref ref-type="bibr" rid="scirp.114844-ref27">27</xref>]. Spearfish Creek may have high redd densities because of the high-water quality, good spawning substrate, and lack of sedimentation, as opposed to the lower densities of redds observed in the more heavily-sedimented Crow Creek and Box Elder Creek [<xref ref-type="bibr" rid="scirp.114844-ref7">7</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref8">8</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref34">34</xref>].</p></sec><sec id="s4_3"><title>4.3. Superimposition</title><p>Redd superimposition, when a female trout uses a previously excavated redd, was observed in this study [<xref ref-type="bibr" rid="scirp.114844-ref35">35</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref36">36</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref37">37</xref>]. Martling et al. [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] did not report redd superimposition in a more upstream location on Spearfish Creek but stated that redds were in very close proximity to one another. Redd superimposition has only been reported in the Black Hills where both brown trout and brook trout coexist at relatively high numbers [<xref ref-type="bibr" rid="scirp.114844-ref8">8</xref>]. Only intra-specific superimposition occurred in this study, however. Brook trout are only rarely observed in the section of Spearfish Creek in Spearfish, and only brown trout were observed spawning. Superimposition of salmonid redds has been observed in other locations outside of the Black Hills and may be due to brown trout altered creek substrates, homing behavior, or other non-habitat related reasons [<xref ref-type="bibr" rid="scirp.114844-ref33">33</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref37">37</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref38">38</xref>].</p></sec><sec id="s4_4"><title>4.4. Limitations</title><p>Because this study was conducted for only one spawning season on one specific 1.6 km reach of Spearfish Creek, the results may not be applicable to other reaches of Spearfish Creek or other reaches of the 1287 km of streams in the Black Hills [<xref ref-type="bibr" rid="scirp.114844-ref2">2</xref>]. The relative inexperience of the redd observer may have also impacted the results [<xref ref-type="bibr" rid="scirp.114844-ref25">25</xref>]. Just because a redd is observed does not necessarily mean that eggs were deposited or that reproduction was successful. However, despite these limitations, the similarity of the results of this study to those reported for an upstream location of Spearfish Creek [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>] provides some assurance that the results are valid.</p></sec><sec id="s4_5"><title>4.5. Implications</title><p>Salmonid populations can be estimated using redd counts [<xref ref-type="bibr" rid="scirp.114844-ref13">13</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref14">14</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref15">15</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref16">16</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref17">17</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref39">39</xref>]. Redd surveys are also much less expensive than using stream electrofishing for population monitoring [<xref ref-type="bibr" rid="scirp.114844-ref13">13</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref14">14</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref15">15</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref16">16</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref17">17</xref>]. Thus, the use of brown trout redd surveys could be a feasible alternative to electrofishing Spearfish Creek on a regular basis as is currently done. In addition, because redd monitoring can assess environmental changes [<xref ref-type="bibr" rid="scirp.114844-ref18">18</xref>], this initial study can be used as a baseline for comparison to future changes in this specific section of Spearfish Creek due to urbanization [<xref ref-type="bibr" rid="scirp.114844-ref26">26</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref30">30</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref31">31</xref>] [<xref ref-type="bibr" rid="scirp.114844-ref40">40</xref>].</p></sec><sec id="s4_6"><title>4.6. Conclusion</title><p>This study showed that redds in this section of Spearfish Creek are being made from mid-October through mid-November, which is consistent with Martling et al. [<xref ref-type="bibr" rid="scirp.114844-ref9">9</xref>]. With continuation of these studies throughout the Black Hills, future habitat projects can be created to potentially improve spawning habitat for salmonid fish, and increase angler satisfaction.</p></sec></sec><sec id="s5"><title>Acknowledgements</title><p>We would like to thank Shaylee Martling, Nathan Huysman, and Jeff Stevens for their assistance with this study.</p></sec><sec id="s6"><title>Conflicts of Interest</title><p>The authors declare no conflicts of interest regarding the publication of this paper.</p></sec><sec id="s7"><title>Cite this paper</title><p>Robidoux, M.J., Voorhees, J.M., Domagall, A. and Barnes, M.E. (2022) Brown Trout Redd Locations in the Northernmost Section of Spearfish Creek in Spearfish, South Dakota, USA. Natural Resources, 13, 1-15. https://doi.org/10.4236/nr.2022.131001</p></sec></body><back><ref-list><title>References</title><ref id="scirp.114844-ref1"><label>1</label><mixed-citation publication-type="book" xlink:type="simple">Barnes, M.E. (2007) Fish Hatcheries and Stocking Practices: Past and Present. In: Berry, C.R., Higgins, K.F., Willis, D.W. and Chipps, S.R., Eds., History of Fisheries and Fishing in South Dakota, South Dakota Department of Game, Fish and Parks, Pierre, 267-294.</mixed-citation></ref><ref id="scirp.114844-ref2"><label>2</label><mixed-citation publication-type="other" xlink:type="simple">Erickson, J.W. and Koth, R. (2000) Black Hills of South Dakota Fishing Guide. South Dakota Department of Game, Fish and Parks, Pierre.</mixed-citation></ref><ref id="scirp.114844-ref3"><label>3</label><mixed-citation publication-type="other" xlink:type="simple">James, D.A. (2011) The Influence of Didymosphenia geminate on Fisheries Resources in the Black Hills of South Dakota. Ph.D. Dissertation, South Dakota State University, Brookings.</mixed-citation></ref><ref id="scirp.114844-ref4"><label>4</label><mixed-citation publication-type="other" xlink:type="simple">Kientz, J.L. (2016) Survival, Abundance, and Relative Predation of Wild Rainbow Trout in the Deerfield Reservoir System, South Dakota. M.S. Thesis, South Dakota State University, Brookings.</mixed-citation></ref><ref id="scirp.114844-ref5"><label>5</label><mixed-citation publication-type="other" xlink:type="simple">Witzel, L.D. and Maccrimmon, H.R. (1983) Redd-Site Selection by Brook Trout and Brown Trout in Southwestern Ontario Streams. Transactions of the American Fisheries Society, 112, 760-771. https://doi.org/10.1577/1548-8659(1983)112&lt;760:RSBBTA&gt;2.0.CO;2</mixed-citation></ref><ref id="scirp.114844-ref6"><label>6</label><mixed-citation publication-type="other" xlink:type="simple">Wydowksi, R.S. and Whitney, R.R. (2003) Inland Fishes of Washington. 2nd Edition, University of Washington Press, Seattle.</mixed-citation></ref><ref id="scirp.114844-ref7"><label>7</label><mixed-citation publication-type="other" xlink:type="simple">Ketelsen, B., Simpson, G. and Barnes, M.E. (2017) Trout Redd Locations in Two Streams in the Black Hills, South Dakota, USA. Natural Resources, 8, 91-102. https://doi.org/10.4236/nr.2017.82007</mixed-citation></ref><ref id="scirp.114844-ref8"><label>8</label><mixed-citation publication-type="other" xlink:type="simple">Blaine, T., Simpson, G. and Barnes, M.E. (2018) A Survey of Brown Trout Redd Locations in Crow Creek, Lawrence County, South Dakota, USA. International Journal of Pure and Applied Zoology, 6, 9-14.</mixed-citation></ref><ref id="scirp.114844-ref9"><label>9</label><mixed-citation publication-type="other" xlink:type="simple">Martling, S., Simpson, G., Kientz, J.L., Rosburg, A.J. and Barnes, M.E. (2020) Brown Trout Spawn Timing, Redd Locations, and Stream Characteristics in Spearfish Creek within Spearfish, South Dakota, USA. Open Journal of Ecology, 10, 177-188. https://doi.org/10.4236/oje.2020.104012</mixed-citation></ref><ref id="scirp.114844-ref10"><label>10</label><mixed-citation publication-type="other" xlink:type="simple">Helfman, G.S., Collette, B.B. and Facey, D.E. (2003) The Diversity of Fishes. Blackwell Science, Malden.</mixed-citation></ref><ref id="scirp.114844-ref11"><label>11</label><mixed-citation publication-type="other" xlink:type="simple">Knapp, R.A. and Preisler, H.K. (1999) Is It Possible to Predict Habitat Use by Spawning Salmonids? A Test Using California Golden Trout (Oncorhynchus mykiss aguabonita). Canadian Journal of Fisheries and Aquatic Sciences, 56, 1576-1584. https://doi.org/10.1139/f99-081</mixed-citation></ref><ref id="scirp.114844-ref12"><label>12</label><mixed-citation publication-type="other" xlink:type="simple">Grost, R.T., Hubert, W.A. and Wesche, T.A. (1990) Redd Site Selection by Brown Trout in Douglas Creek, Wyoming. Journal of Freshwater Ecology, 5, 365-371. https://doi.org/10.1080/02705060.1990.9665249</mixed-citation></ref><ref id="scirp.114844-ref13"><label>13</label><mixed-citation publication-type="other" xlink:type="simple">Meffe, G.K. (1986) Conservation Genetics and the Management of Endangered Fishes. Fisheries, 11, 14-23. https://doi.org/10.1577/1548-8446(1986)011&lt;0014:CGATMO&gt;2.0.CO;2</mixed-citation></ref><ref id="scirp.114844-ref14"><label>14</label><mixed-citation publication-type="other" xlink:type="simple">Konkel, G.W. and McIntyre, J.D. (1987) Trends in Spawning Populations of Pacific Anadromous Salmonids. U.S. Fish and Wildlife Service Technical Report 9.</mixed-citation></ref><ref id="scirp.114844-ref15"><label>15</label><mixed-citation publication-type="book" xlink:type="simple">Pratt, K.L. (1992) A Review of Bull Trout Life History. In: Howell, P.J. and Buchanan, D.V., Eds., Proceedings of the Gearhart Mountain Bull Trout Workshop, American Fisheries Society, Oregon Chapter, Corvallis, 5-9.</mixed-citation></ref><ref id="scirp.114844-ref16"><label>16</label><mixed-citation publication-type="other" xlink:type="simple">Weaver, T.M. (1992) Coal Creek Fisheries Monitoring Study Number X and Forest-Wide Fisheries Monitoring 1990. Montana Department of Fish, Wildlife and Parks, Special Projects, Kalispell. https://doi.org/10.5962/bhl.title.130164</mixed-citation></ref><ref id="scirp.114844-ref17"><label>17</label><mixed-citation publication-type="other" xlink:type="simple">Rieman, B.E. and McIntyre, J.D. (1996) Spatial and Temporal Variability in Bull Trout Redd Counts. North American Journal of Fisheries Management, 16, 132-141. https://doi.org/10.1577/1548-8675(1996)016&lt;0132:SATVIB&gt;2.3.CO;2</mixed-citation></ref><ref id="scirp.114844-ref18"><label>18</label><mixed-citation publication-type="other" xlink:type="simple">Warren, D.R., Robinson, J.M., Josephson, D.C., Sheldon, D.R. and Kraft, C.E. (2012) Elevated Summer Temperatures Delay Spawning and Reduce Redd Construction for Resident Brook Trout (Salvelinus fontinalis). Global Change Biology, 18, 1804-1811. https://doi.org/10.1111/j.1365-2486.2012.02670.x</mixed-citation></ref><ref id="scirp.114844-ref19"><label>19</label><mixed-citation publication-type="other" xlink:type="simple">Stetler, L.D. and Sieverding, H.L. (2001) Environmental Controls on Fish Spawning Habitat in Spearfish Creek, Black Hills, SD. Proceedings of the South Dakota Academy of Science, 80, 109-117.</mixed-citation></ref><ref id="scirp.114844-ref20"><label>20</label><mixed-citation publication-type="other" xlink:type="simple">World Population Review (2019) Spearfish South Dakota Population 2019. http://worldpopulationreview.com/us-cities/spearfish-sd-population</mixed-citation></ref><ref id="scirp.114844-ref21"><label>21</label><mixed-citation publication-type="other" xlink:type="simple">South Dakota Department of Environmental and Natural Resources (DENR) (2019) Water Rights. https://denr.sd.gov/des/wr/dbwr.aspx</mixed-citation></ref><ref id="scirp.114844-ref22"><label>22</label><mixed-citation publication-type="other" xlink:type="simple">South Dakota Department of Environmental and Natural Resources (DENR) (2019) City of Spearfish 401 Water Quality Certification-Issued. https://denr.sd.gov/des/sw/PNSpearfish401cert.aspx#</mixed-citation></ref><ref id="scirp.114844-ref23"><label>23</label><mixed-citation publication-type="other" xlink:type="simple">United States Gelogical Service (2021) Spearfish Creek at Spearfish Gauging Station. https://waterdata.usgs.gov/monitoring-location/06431500/#parameterCode=00060&amp;startDT=2020-10-13&amp;endDT=2020-11-17</mixed-citation></ref><ref id="scirp.114844-ref24"><label>24</label><mixed-citation publication-type="other" xlink:type="simple">Bucholz, M.N. and Wilhite, J.W. (2010) Statewide Fisheries Survey, 2009 Survey of Public Waters Part 1/Streams. South Dakota Department of Game, Fish and Parks, Wildlife Division Report 10-09, Pierre.</mixed-citation></ref><ref id="scirp.114844-ref25"><label>25</label><mixed-citation publication-type="book" xlink:type="simple">Gallagher, S.P., Hahn, P.K.J. and Johnson, D.H. (2007) Redd Counts. In: Johson, D.H., Shrier B.M., ONeal, J.S., Knutzen, J.A., Augerot, X., ONeil, T.A. and Pearsons, T.N., Eds., Salmonid Field Protocols Handbook: Techniques for Assessing Status and Trends in Salmon and Trout Populations, American Fisheries Society, Bethesda, 197-234.</mixed-citation></ref><ref id="scirp.114844-ref26"><label>26</label><mixed-citation publication-type="other" xlink:type="simple">Riedl, C. and Peter, A. (2013) Timing of Brown Trout Spawning in Alpine Rivers with Special Consideration of Egg Burial Depth. Ecology of Freshwater Fish, 22, 384-397. https://doi.org/10.1111/eff.12033</mixed-citation></ref><ref id="scirp.114844-ref27"><label>27</label><mixed-citation publication-type="other" xlink:type="simple">Zimmer, M.P. and Power, M. (2006) Brown Trout Spawning Habitat Selection Preferences and Redd Characteristics in the Credit River, Ontario. Journal of Fish Biology, 68, 1333-1346. https://doi.org/10.1111/j.0022-1112.2006.00995.x</mixed-citation></ref><ref id="scirp.114844-ref28"><label>28</label><mixed-citation publication-type="other" xlink:type="simple">Alp, A., Kara, C. and Buyukcapar, H.M. (2003) Reproductive Biology of Brown Trout, Salmo trutta macrostigma Dumeril 1858, in a Tributary of the Ceyhan River which Flows into the Eastern Mediterranean Sea. Journal of Applied Ichthyology, 19, 346-351. https://doi.org/10.1111/j.1439-0426.2003.00455.x</mixed-citation></ref><ref id="scirp.114844-ref29"><label>29</label><mixed-citation publication-type="other" xlink:type="simple">Rubin, J.F., Glimsater, C. and Jarvis, T. (2005) Spawning Characteristics of the Anadromous Brown Trout in a Small Swedish Stream. Journal of Fish Biology, 66, 107-121. https://doi.org/10.1111/j.0022-1112.2005.00586.x</mixed-citation></ref><ref id="scirp.114844-ref30"><label>30</label><mixed-citation publication-type="other" xlink:type="simple">Webb, J.H. and McLay, H.A. (1996) Variation in the Time of Spawning of Atlantic Salmon (Salmo salar) and its Relationship to Temperature in the Aberdeenshire Dee, Scotland. Canadian Journal of Fisheries and Aquatic Sciences, 53, 2739-2744. https://doi.org/10.1139/f96-240</mixed-citation></ref><ref id="scirp.114844-ref31"><label>31</label><mixed-citation publication-type="other" xlink:type="simple">Makrov, A.A., Artamonova, V.S., Sumarokov, V.S., Pashkov, A.N., Reshetnikov, S.I., Ganchenko, M.V. and Kulyan, S.A. (2011) Variation in the Timing of Spawning of the Black Sea Brown Trout Salmo trutta labrax Pallas under Artificial and Natural Conditions. Biology Bulletin, 38, 138-145. https://doi.org/10.1134/S1062359011020075</mixed-citation></ref><ref id="scirp.114844-ref32"><label>32</label><mixed-citation publication-type="other" xlink:type="simple">Youngson, A.F, Piertney, S.B., Thorley, J.L., Malcolm, I.A. and Soulsby, C. (2011) Spatial Association of Nest Construction by Brown Trout Salmo trutta. Journal of Fish Biology, 78, 713-725. https://doi.org/10.1111/j.1095-8649.2010.02883.x</mixed-citation></ref><ref id="scirp.114844-ref33"><label>33</label><mixed-citation publication-type="other" xlink:type="simple">Gortázar, J., Alonso, C. and García de Jalón, E. (2012) Brown Trout Redd Superimposition in Relation to Spawning Habitat Availability. Ecology of Freshwater Fish, 21, 283-292. https://doi.org/10.1111/j.1600-0633.2011.00546.x</mixed-citation></ref><ref id="scirp.114844-ref34"><label>34</label><mixed-citation publication-type="other" xlink:type="simple">Wohl, N.E. and Carline, R.F. (1996) Relations among Riparian Grazing, Sediment Loads, Macroinvertebrates, and Fishes in Three Central Pennsylvania Streams. Canadian Journal of Fisheries and Aquatic Sciences, 53, 260-266. https://doi.org/10.1139/f95-264</mixed-citation></ref><ref id="scirp.114844-ref35"><label>35</label><mixed-citation publication-type="other" xlink:type="simple">Gallagher, S.P. and Gallagher, C.M. (2005) Discrimination of Chinook Salmon, Coho Salmon, and Steelhead Redds and Evaluation of the Use of Redd Data for Estimating Escapement in Several Unregulated Streams in Northern California. North American Journal of Fisheries Management, 25, 284-300. https://doi.org/10.1577/M04-016.1</mixed-citation></ref><ref id="scirp.114844-ref36"><label>36</label><mixed-citation publication-type="other" xlink:type="simple">Reiser, D.W. and Wesche, T.A. (1977) Determination of Physical and Hydraulic Preferences of Brown and Brook Trout in the Selection of Spawning Locations. Water Resources Series No. 64, Water Resources Research Institute, University of Wyoming, Laramie.</mixed-citation></ref><ref id="scirp.114844-ref37"><label>37</label><mixed-citation publication-type="other" xlink:type="simple">Essington, T.E., Sorensen, P.W. and Paron, P.G. (1998) High Rate of Redd Superimposition by Brook Trout (Salvelinus fontinalis) and Brown Trout (Salmo trutta) in a Minnesota Stream Cannot Be Explained by Habitat Availability Alone. Canadian Journal of Fisheries and Aquatic Sciences, 55, 2310-2316. https://doi.org/10.1139/f98-109</mixed-citation></ref><ref id="scirp.114844-ref38"><label>38</label><mixed-citation publication-type="other" xlink:type="simple">Frank, B.M., Gimenez, O. and Baret, P.V. (2012) Assessing Brown Trout (Salmo trutta) Spawning Movements with Multistate Capture-Recapture Models: A Case Study in a Fully Controlled Belgian Brook. Canadian Journal of Fisheries and Aquatic Sciences, 69, 1091-1104. https://doi.org/10.1139/f2012-041</mixed-citation></ref><ref id="scirp.114844-ref39"><label>39</label><mixed-citation publication-type="other" xlink:type="simple">Elliot, J.M. and Hurley, M.A. (1998) Population Regulation in Adult, But Not Juvenile, Resident Trout (Salmo trutta) in a Lake District Stream. Journal of Animal Ecology, 67, 280-286. https://doi.org/10.1046/j.1365-2656.1998.00185.x</mixed-citation></ref><ref id="scirp.114844-ref40"><label>40</label><mixed-citation publication-type="other" xlink:type="simple">Soulsby, C., Youngson, A.F., Moir, H.J. and Malcolm, I.A. (2001) Fine Sediment Influence on Salmonid Spawning Habitat in a Lowland Agricultural Stream: A Preliminary Assessment. Science of the Total Environment, 265, 295-307. https://doi.org/10.1016/S0048-9697(00)00672-0</mixed-citation></ref></ref-list></back></article>