南大洋食物网与气候变化:简短回顾与未来方向

J. Queirós, Renato Borras-Chavez, Noémie Friscourt, Jasmin Groß, Candice B. Lewis, Georgia Mergard, Katie O’Brien
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摘要

食物网是生态系统的一个重要特征,有助于我们了解生物群落将如何应对气候变化。由于气候变化,南大洋正面临着快速和加速的变化。虽然南大洋是在与世隔绝的极端环境中进化而来,但其生物多样性和食物网却是最脆弱的。在此,我们回顾了:1)当前有关南大洋食物网的知识;2)研究食物网的方法;3)气候变化对南大洋食物网当前和未来影响的评估;4)知识差距;5)早期职业研究人员(ECRs)在未来研究中的作用。关于南大洋食物网的大部分知识来自浮游环境,包括宏观和微生物层面。对个别物种的建模和饮食研究是食物网知识的主要来源。这些研究表明,食物网很短,主要由南极磷虾(Euphausia superba)维持。此外,还存在其他途径,包括其他磷虾物种、鱼类和乌贼,它们在连接初级生产者和顶级捕食者方面发挥着同样重要的作用。研究人员指出了用于研究南大洋食物网的几种技术的优缺点,从传统的胃内容物、粪便或饵料分析,到最新的代谢编码和营养生物标记等方法。观测结果表明,气候变化会以不同的方式影响食物网。例如,较小浮游植物物种的变化会延长食物网,增加同化损失和/或改变营养循环。未来的研究需要重点关注以底栖生物为主的食物网和底深海耦合。此外,还需要在冬季和冰架下进行研究,因为这些区域可能对生态系统的运作起着至关重要的作用。环境研究中心愿意开展跨学科合作,善于采用各种方法,有助于构建高分辨率的食物网,因此可以在推动南大洋食物网研究方面发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Southern Ocean food-webs and climate change: A short review and future directions
Food-webs are a critical feature of ecosystems and help us understand how communities will respond to climate change. The Southern Ocean is facing rapid and accelerating changes due to climate change. Though having evolved in an isolated and somewhat extreme environment, Southern Ocean biodiversity and food-webs are among the most vulnerable. Here, we review 1) current knowledge on Southern Ocean food-webs; 2) methods to study food-webs; 3) assessment of current and future impacts of climate change on Southern Ocean food-webs; 4) knowledge gaps; and 5) the role of Early Career Researchers (ECRs) in future studies. Most knowledge on Southern Ocean food-webs come from the pelagic environment, both at macro- and microbial levels. Modelling and diet studies of individual species are major contributors to the food-web knowledge. These studies revealed a short food-web, predominantly sustained by Antarctic Krill (Euphausia superba). Additionally, alternative pathways exist, involving other krill species, fish, and squid, which play equally important roles in connecting primary producers with top predators. Advantages and disadvantages of several techniques used to study Southern Ocean food-webs were identified, from the classical analyses of stomach contents, scats, or boluses to the most recent approaches such as metabarcoding and trophic-biomarkers. Observations show that climate change can impact the food-web in different ways. As an example, changes to smaller phytoplankton species can lengthen the food-web, increasing assimilation losses and/or changing nutrient cycles. Future studies need to focus on the benthic-dominated food-webs and the benthopelagic coupling. Furthermore, research during the winter season and below the ice-shelves is needed as these areas may play a crucial role in the functioning of this ecosystem. ECRs can play a significant role in advancing the study of Southern Ocean food-webs due to their willingness for interdisciplinary collaboration and proficiency in employing various methodologies, contributing to the construction of high-resolution food-webs.
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