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Predation vulnerability and trophic interactions of pallid sturgeon Scaphirhynchus albus.

机译:苍白st鱼Scaphirhynchus albus的捕食脆弱性和营养相互作用。

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摘要

Recruitment of the federally endangered pallid sturgeon Scaphirhynchus albus in the Missouri River has been absent or at levels too low to sustain the population. Mortality of juvenile fishes is often greatest during their first year of life, and may have large implications for recruitment dynamics of a species. Predation and starvation are the two primary mechanisms of mortality among age-0 fishes, and can play an important role in the recruitment dynamics of fishes with intensity regulated by behavioral (i.e., prey selectivity) and/or environmental conditions. In the case of a threatened or endangered fish, such as the pallid sturgeon, understanding trophic interactions will assist in implementing a successful recovery plan.;Predation can play an important role in the recruitment dynamics of fishes with intensity regulated by behavioral (i.e., prey selectivity) and/or environmental conditions. Recruitment of pallid sturgeon Scaphirhynchus albus, a federally endangered species, in the Missouri River has been absent or at levels too low to sustain the population. We conducted laboratory experiments to quantify predation vulnerability in juvenile pallid sturgeon, and examine the efficiency of walleye Sander vitreus, flathead catfish Pylodictis olivaris and smallmouth bass Micropterus dolomieu feeding on large (40-50 mm FL) and small (80-100 mm FL) juvenile pallid sturgeon. Experiments for each predator were conducted at high and low densities of pallid sturgeon with contrasting densities of an alternative prey fathead minnows Pimephales promelas. Prey density treatments were replicated 4- 5 times under high (>70 NTU) and low (5 NTU) turbidity conditions. During additional experiments predator behaviors (strikes, captures, and consumed prey) were quantified for each prey type. Walleye and smallmouth bass negatively selected pallid sturgeon across all treatments, indicating low vulnerability to predation. Vulnerability to predation by flathead catfish was moderate for small pallid sturgeon (neutral selection), but low for large pallid sturgeon (negative selection). Turbidity (up to 100 NTU) did not affect pallid sturgeon vulnerability, even at low density of alternative prey. Pallid sturgeon were easily captured by all predators, but were rarely consumed, suggesting mechanisms other than predator foraging behavior govern sturgeon predation vulnerability. In the presence of alternative prey, our results suggest vulnerability of juvenile pallid sturgeon > 40 mm to predation was low for the predators and conditions tested in this study.;We used stable isotope analysis (SIA) to explore size-dependent feeding patterns for pallid sturgeon and shovelnose sturgeon Scaphirhynchus platorynchus in the Missouri River. Pallid sturgeon delta 15N values (12.8 to 17.0‰) were positively related to fork length (325 to 1187 mm FL), and indicated a trophic level of separation between 500 mm and >800 mm fish. Moreover, the relationship between delta 15N values and body size for pallid sturgeon was consistent throughout the Missouri River. Shovelnose sturgeon delta15N values (14.6 to 17.2‰) were also positively related with FL (range = 341 to 719 mm). Shovelnose sturgeon delta15N values were similar to those of pallid sturgeon in the same size range (350 to 700 mm). Pallid sturgeon delta13C values (-23.4 to -18.0‰) were also positively correlated with FL, suggesting that large and small sturgeon derive energy from distinct carbon sources with a transitional group at intermediate sizes. Shovelnose sturgeon delta13C values (-23.7 to 20.1‰) were weakly correlated with FL suggesting that all sizes of shovelnose sturgeon derive energy from a single carbon source. Further analysis of delta 13C suggest shovelnose sturgeon and small pallid sturgeon (500 mm FL) use similar energy pathways, whereas large pallid sturgeon (>500 mm FL) are able to use different energy pathways. Stable isotope analysis was an effective method for comparing feeding patterns of large river sturgeon species, and offers several advantages over gut content analysis. Patterns in isotopic composition corroborate diet studies that show pallid sturgeon shift from invertebrates to fish prey at larger sizes (>500 mm FL).
机译:密苏里河缺乏联邦濒临灭绝的苍白st鱼Scaphirhynchus albus的招聘或招聘人数太少,不足以维持人口。幼鱼的死亡率通常在生命的第一年最高,并且可能对一个物种的募集动态产生重大影响。捕食和饥饿是0岁以下鱼类死亡率的两个主要机制,它们可以在强度受行为(即猎物选择性)和/或环境条件调节的鱼类的募集动态中发挥重要作用。对于有威胁或濒危的鱼类(例如苍白st鱼),了解营养相互作用将有助于实施成功的恢复计划。捕食在强度受行为(例如猎物)调节的鱼类的募集动态中可以发挥重要作用选择性)和/或环境条件。密苏里河缺乏苍白st鱼(Scaphirhynchus albus)(一种联邦濒危物种),其招聘数量太少或水平太低而无法维持种群。我们进行了实验室实验以量化幼年苍白lid鱼的捕食脆弱性,并研究了大眼(40-50 mm佛罗里达)和小口(80-100 mm FL)捕食的壁眼桑德玻璃体,扁平头cat鱼Pylodictis olivaris和小嘴鲈Micropterus dolomieu的效率幼苍白lid鱼。每个捕食者的实验都是在高密度和低密度的苍白lid鱼中进行的,对比的是另一种猎食黑头fat鱼Pimephales promelas的密度。在高(> 70 NTU)和低(<5 NTU)浊度条件下,将猎物密度处理重复4-5次。在其他实验中,对每种猎物类型的捕食者行为(打击,捕获和消耗的猎物)进行了量化。角膜白斑病和小嘴鲈鱼在所有治疗中均对苍白negative鱼不利,表明其对捕食的脆弱性较低。对于小苍白pre鱼(中性选择),扁平头cat鱼的捕食脆弱性中等,而对于大苍白lid鱼(阴性选择),其脆弱性较低。浊度(高达100 NTU)不会影响苍白st鱼的脆弱性,即使在其他猎物密度较低的情况下也是如此。 lid鱼很容易被所有捕食者捕获,但很少被食用,这表明除捕食者觅食行为外的机制还可以控制govern鱼的捕食脆弱性。在存在其他猎物的情况下,我们的结果表明,对于本捕食者和本研究中测试的条件,> 40 mm的幼龄苍白st鱼对捕食的脆弱性较低。我们使用稳定同位素分析(SIA)探索大小相关的苍白食喂养方式cap和and鼻vel在密苏里河中的Scaphirhynchus platorynchus。 lid鱼st鱼三角洲15N值(12.8至17.0‰)与叉子长度(FL至325至1187 mm)成正相关,并表明<500 mm至> 800 mm鱼类之间的营养水平分离。此外,在整个密苏里河中,苍白st鱼的δ15N值与体型之间的关系是一致的。 vel状st鱼的delta15N值(14.6至17.2‰)也与FL正相关(范围为341至719 mm)。在相同大小范围内(350至700 mm),状st鱼的delta15N值类似于苍白st鱼。 lid鱼stδ13C值(-23.4至-18.0‰)也与FL呈正相关,表明大小from鱼从不同的碳源获取能量,中间过渡带具有过渡基团。 vel鼻stδ13C值(-23.7至20.1‰)与FL弱相关,表明all鼻sizes的所有大小都来自单一碳源。三角洲13C的进一步分析表明,vel状st鱼和小型苍白st鱼(<500 mm FL)使用相似的能量路径,而大型苍白st鱼(> 500 mm FL)能够使用不同的能量路径。稳定的同位素分析是比较大型河urge鱼取食方式的有效方法,与肠道含量分析相比,具有许多优势。同位素组成的模式证实了饮食研究,显示苍白st鱼在较大尺寸(> 500 mm FL)下从无脊椎动物转移到鱼的猎物。

著录项

  • 作者

    French, William E.;

  • 作者单位

    South Dakota State University.;

  • 授予单位 South Dakota State University.;
  • 学科 Agriculture Fisheries and Aquaculture.
  • 学位 M.S.
  • 年度 2010
  • 页码 70 p.
  • 总页数 70
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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