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Overview of the Chemical Ecology of Benthic Marine Invertebrates along the Western Antarctic Peninsula

机译:南极西部半岛海底无脊椎动物的化学生态学概述

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摘要

Thirteen years ago in a review that appeared in the American Zoologist, we presented the first survey of the chemical and ecological bioactivity of Antarctic shallow-water marine invertebrates. In essence, we reported that despite theoretical predictions to the contrary the incidence of chemical defenses among sessile and sluggish Antarctic marine invertebrates was widespread. Since that time we and others have significantly expanded upon the base of knowledge of Antarctic marine invertebrates' chemical ecology, both from the perspective of examining marine invertebrates in new, distinct geographic provinces, as well as broadening the evaluation of the ecological significance of secondary metabolites. Importantly, many of these studies have been framed within established theoretical constructs, particularly the Optimal Defense Theory. In the present article, we review the current knowledge of chemical ecology of benthic marine invertebrates comprising communities along the Western Antarctic Peninsula (WAP), a region of Antarctica that is both physically and biologically distinct from the rest of the continent. Our overview indicates that, similar to other regions of Antarctica, anti-predator chemical defenses are widespread among species occurring along the WAP. In some groups, such as the sponges, the incidence of chemical defenses against predation is comparable to, or even slightly higher than, that found in tropical marine systems. While there is substantial knowledge of the chemical defenses of benthic marine invertebrates against predators, much less is known about chemical anti-foulants. The sole survey conducted to date suggests that secondary metabolites in benthic sponges are likely to be important in the prevention of fouling by benthic diatoms, yet generally lack activity against marine bacteria. Our understanding of the sensory ecology of Antarctic benthic marine invertebrates, despite its great potential, remains in its infancy. For example, along the WAP, community-level non-consumptive effects occur when amphipods chemically sense fish predators and respond by seeking refuge in chemically-defended macroalgae. Such interactions may be important in releasing amphipods from predation pressure and facilitating their unusually high abundances along the WAP. Moreover, recent studies on the sensory biology of the Antarctic keystone sea star Odontaster validus indicate that chemotactile-mediated interactions between conspecifics and other sympatric predatory sea stars may have significant ramifications in structuring community dynamics. Finally, from a global environmental perspective, understanding how chemical ecology structures marine benthic communities along the WAP must increasingly be viewed in the context of the dramatic impacts of rapid climatic change now occurring in this biogeographic region.
机译:十三年前,在美国动物学家杂志上发表的一篇评论中,我们提出了对南极浅水海洋无脊椎动物化学和生态生物活性的首次调查。本质上,我们报道了尽管有相反的理论预测,但无柄和迟缓的南极海洋无脊椎动物中化学防御的发生率却很普遍。从那时起,我们和其他人从对南极海洋无脊椎动物化学生态学的认识出发,从检查新的,独特的地理省份中的海洋无脊椎动物,以及扩大对次生代谢产物的生态意义的评估的角度出发,大大扩展了南极海洋无脊椎动物的化学生态学知识。 。重要的是,这些研究中的许多研究都是在既定的理论框架内进行的,尤其是最优防御理论。在本文中,我们回顾了包括南极西部半岛(WAP)沿岸的底栖海洋无脊椎动物化学生态学的当前知识,该区域是南极洲的一个地区,在物理和生物学上都不同于该大陆的其他地区。我们的概述表明,与南极洲的其他地区类似,WAP沿岸物种之间的反捕食者化学防御也很普遍。在某些群体中,例如海绵,其抵御捕食的化学防御作用与热带海洋系统相当,甚至略高于热带海洋系统。虽然对底栖海洋无脊椎动物对捕食者具有化学防御的知识很丰富,但对化学防污剂的了解却很少。迄今为止进行的唯一调查表明,底栖海绵中的次生代谢产物可能在防止底栖硅藻结垢方面很重要,但通常缺乏针对海洋细菌的活性。尽管我们对南极底栖海洋无脊椎动物的感官生态学具有巨大潜力,但仍处于起步阶段。例如,在WAP上,当两栖类动物化学感应鱼类捕食者并通过寻求化学防御的大型藻类的避难所做出反应时,会发生社区一级的非消费性影响。此类相互作用对于从掠食性压力中释放两足动物并促进其沿WAP的异常高丰度可能很重要。此外,对南极礁石海星Odontaster Validus的感官生物学的最新研究表明,在物种与其他同伴掠食性海星之间,由化学触觉介导的相互作用可能在构造群落动态方面具有重要意义。最后,从全球环境的角度出发,必须越来越多地考虑到生物生态学如何在WAP上构造海洋底栖生物群落,并结合该生物地理区域目前发生的快速气候变化的巨大影响。

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