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A multifunctional chemical cue drives opposing demographic processes and structures ecological communities

机译:多功能化学提示驱动相反的人口统计过程并构建生态社区

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Foundation species provide critical resources to ecological community members and are key determinants of biodiversity. The barnacle Balanus glandula is one such species and dominates space among the higher reaches of wave-swept shores (Northeastern Pacific Ocean). This animal produces a cuticular glycoprotein (named "MULTIFUNCin") of 199.6 kDa, and following secretion, a 390 kDa homodimer in native form. From field and lab experiments, we found that MULTIFUNCin significantly induces habitat selection by conspecific larvae, while simultaneously acting as a potent feeding stimulant to a major barnacle predator (whelk, Acanthinucella spirata). Promoting immigration via settlement on the one hand, and death via predation on the other, MULTIFUNCin drives opposing demographic processes toward structuring predator and prey populations. As shown here, a single compound is not restricted to a lone species interaction or sole ecological function. Complex biotic interactions therefore can be shaped by simple chemosensory systems and depend on the multifunctional properties of select bioactive proteins.
机译:基础物种为生态社区成员提供重要资源,并且是生物多样性的关键决定因素。藤壶Balanus腺体就是其中一种,它占据了波涛汹涌的海岸(东北太平洋)上游的空间。该动物产生199.6kDa的表皮糖蛋白(称为“ MULTIFUNCin”),并且在分泌后产生天然形式的390kDa的同型二聚体。通过现场和实验室实验,我们发现MULTIFUNCin通过同种幼虫显着诱导栖息地选择,同时对主要的藤壶捕食者(螺w,棘金线虫)起着有效的饲料刺激作用。一方面通过定居促进移民,另一方面通过捕食促进死亡,MULTIFUNCin推动了相反的人口统计过程,以构造捕食者和被捕食者的种群。如此处所示,单个化合物不限于孤种相互作用或唯一的生态功能。因此,复杂的生物相互作用可以通过简单的化学感应系统进行调节,并取决于所选生物活性蛋白的多功能特性。

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