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Bioturbators enhance ecosystem function through complex biogeochemical interactions

机译:生物扰动剂通过复杂的生物地球化学相互作用增强生态系统功能

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Predicting the consequences of species loss is critically important, given present threats to biological diversity such as habitat destruction, overharvesting and climate change(1). Several empirical studies have reported decreased ecosystem performance ( for example, primary productivity) coincident with decreased biodiversity(2-4), although the relative influence of biotic effects and confounding abiotic factors has been vigorously debated(5-7). Whereas several investigations focused on single trophic levels ( for example, grassland plants)(8,9), studies of whole systems have revealed multiple layers of feedbacks, hidden drivers and emergent properties(10,11), making the consequences of species loss more difficult to predict(12). Here we report functionally important organisms and considerable biocomplexity in a sedimentary seafloor habitat, one of Earth's most widespread ecosystems. Experimental field measurements demonstrate how the abundance of spatangoid urchins - infaunal ( in seafloor sediment) grazers / deposit feeders - is positively related to primary production, as their activities change nutrient fluxes and improve conditions for production by microphytobenthos (sedimentatry microbes and unicellular algae). Declines of spatangoid urchins after trawling are well documented(13,14), and our research linking these bioturbators to important benthic - pelagic fluxes highlights potential ramifications for productivity in coastal oceans.
机译:考虑到目前对生物多样性的威胁,例如生境破坏,过度捕捞和气候变化,预测物种丧失的后果至关重要。(1)几项实证研究都报告了生态系统性能下降(例如,初级生产力)与生物多样性下降同时发生的现象(2-4),尽管人们对生物效应和混杂的非生物因素的相对影响进行了激烈的争论(5-7)。尽管有几项针对单一营养级别的研究(例如草地植物)(8,9),但对整个系统的研究却发现了多层反馈,隐藏的驱动因素和涌现特性(10,11),使物种丧失的后果更加严重难以预测(12)。在这里,我们报告了地球上最广泛的生态系统之一的沉积海底栖息地中具有重要功能的生物和相当大的生物复杂性。实验现场测量表明,丰富的Spatangoid顽童-底层(海底沉积物)放牧者/沉积物进料器-与初级生产正相关,因为它们的活动改变了营养通量并改善了微底栖动物(定殖微生物和单细胞藻类)的生产条件。拖网捕捞类spatangoid海胆的下降已有充分文献记载(13,14),我们的研究将这些生物扰动物与重要的底栖生物-上层通量联系起来,突显了沿海海洋生产力的潜在后果。

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