Patrick J. Burke, Lauren Meyer, Vincent Raoult, Charlie Huveneers, Jane E. Williamson
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We used fatty acid and stable isotope profiles along with stomach content analysis to investigate the trophic ecology of two sympatric species of sawsharks, the common sawshark (<i>Pristiophorus cirratus</i>) and southern sawshark (<i>Pristiophorus nudipinnis</i>) in south-eastern Australia. Stable isotope analysis of δ<sup>13</sup>C, δ<sup>15</sup>N, and δ<sup>34</sup>S in sawshark muscle revealed that <i>P. nudipinnis</i> fed at a higher trophic level than <i>P. cirratus</i>, and mixing models and stomach contents indicated <i>P. nudipinnis</i> was surprisingly reliant on pelagic and benthopelagic prey sources. In contrast, <i>P. cirratus</i> preyed on more benthic invertebrate species, not found in <i>P. nudipinnis</i>. This bentho-pelagic partitioning between species was supported by <i>P. nudipinnis</i> fatty acid profiles having higher levels of tracers associated with dinoflagellate basal sources (16:1/16:0, 22:6ω3) than <i>P. cirratus</i>, indicating a reliance on pelagic food webs. These data demonstrate that sawsharks are mesopredators that play a substantial role linking pelagic and benthic food webs and highlights the value of incorporating multiple biochemical tracers to provide a comprehensive representation of an animal’s trophic ecology and role in and between ecosystems.</p>","PeriodicalId":21181,"journal":{"name":"Reviews in Fish Biology and Fisheries","volume":"97 1","pages":""},"PeriodicalIF":5.9000,"publicationDate":"2024-08-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Multi-disciplinary approach identifies pelagic nutrient linkage by sawsharks\",\"authors\":\"Patrick J. 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引用次数: 0
摘要
量化物种的营养作用是了解其生态学和生态作用的关键。它们的营养作用可以影响群落组成、生态系统稳定性以及通过摄食、摄取和排泄实现的栖息地之间的营养运输和循环,这就需要了解物种的饮食和栖息地利用情况。尽管锯鲨经常出现在澳大利亚温带渔业中,但有关其营养生态学或栖息地利用的信息仍然有限,但它们被认为是底栖消费者。我们利用脂肪酸和稳定同位素图谱以及胃内容物分析,研究了澳大利亚东南部两种同域锯鲨--普通锯鲨(Pristiophorus cirratus)和南方锯鲨(Pristiophorus nudipinnis)的营养生态学。对锯鲨肌肉中的δ13C、δ15N和δ34S进行的稳定同位素分析表明,南方锯鲨的营养级高于普通锯鲨,混合模型和胃内容物表明南方锯鲨出人意料地依赖浮游和底栖猎物来源。相反,P. cirratus 捕食更多的底栖无脊椎动物,而 P. nudipinnis 则没有。与 P. cirratus 相比,P. nudipinnis 脂肪酸图谱中与甲藻基础来源(16:1/16:0, 22:6ω3)相关的示踪剂含量更高,这证明了物种之间的底栖-中上层分化,表明其对中上层食物网的依赖。这些数据表明,锯鲨是中层食肉动物,在连接浮游和底栖食物网方面发挥着重要作用,并强调了采用多种生化示踪剂全面反映动物营养生态学以及在生态系统中和生态系统之间的作用的价值。
Multi-disciplinary approach identifies pelagic nutrient linkage by sawsharks
Quantifying the trophic role of a species is key to understanding its ecology and ecological role. Their trophic role can influence community composition, ecosystem stability, and nutrient transport and cycling between habitats through ingestion, egestion, and excretion, which requires an understanding of species diet and habitat use. Despite the regular occurrence of sawsharks in Australian temperate fisheries, there remains limited information on their trophic ecology or habitat use, but they are assumed to be benthic consumers. We used fatty acid and stable isotope profiles along with stomach content analysis to investigate the trophic ecology of two sympatric species of sawsharks, the common sawshark (Pristiophorus cirratus) and southern sawshark (Pristiophorus nudipinnis) in south-eastern Australia. Stable isotope analysis of δ13C, δ15N, and δ34S in sawshark muscle revealed that P. nudipinnis fed at a higher trophic level than P. cirratus, and mixing models and stomach contents indicated P. nudipinnis was surprisingly reliant on pelagic and benthopelagic prey sources. In contrast, P. cirratus preyed on more benthic invertebrate species, not found in P. nudipinnis. This bentho-pelagic partitioning between species was supported by P. nudipinnis fatty acid profiles having higher levels of tracers associated with dinoflagellate basal sources (16:1/16:0, 22:6ω3) than P. cirratus, indicating a reliance on pelagic food webs. These data demonstrate that sawsharks are mesopredators that play a substantial role linking pelagic and benthic food webs and highlights the value of incorporating multiple biochemical tracers to provide a comprehensive representation of an animal’s trophic ecology and role in and between ecosystems.
期刊介绍:
The subject matter is focused on include evolutionary biology, zoogeography, taxonomy, including biochemical taxonomy and stock identification, genetics and genetic manipulation, physiology, functional morphology, behaviour, ecology, fisheries assessment, development, exploitation and conservation. however, reviews will be published from any field of fish biology where the emphasis is placed on adaptation, function or exploitation in the whole organism.