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首页> 外文期刊>Microbial Ecology: An International Journal >Conceptual bases for prey biorecognition and feeding selectivity in the microplanktonic marine phagotroph Oxyrrhis marina
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Conceptual bases for prey biorecognition and feeding selectivity in the microplanktonic marine phagotroph Oxyrrhis marina

机译:微型浮游性海洋吞噬菌Oxyrrhis marina的猎物生物识别和觅食选择性的概念基础

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摘要

It is suspected that phagotrophic marine protozoa might possess feeding receptors that enable them to discern the nutritional quality of individual prey items (during prey-handling) on the basis of their cell-surface biochemistry. This article reviews advances in our understanding of the molecular mechanisms that mediate the biorecognition and selection of nonself (microalgal) prey items by the microplanktonic marine phagotroph Oxyrrhis marina. The potential importance of lectin-glycan interactions is first considered in view of findings which demonstrate that O. marina possesses lectin-like feeding receptors specific for prey-surface (mannose) glycoconjugates. Secondly, some conceptual bases for indirect or 'opsonic' modes of prey biorecognition mediated by soluble prey-labelling proteins are presented. Finally, the possibility that some accounts of selective feeding in O. marina might result from the noxious effects of prey-associated chemicals rather than active 'distaste' by phagotrophic cells is discussed. Recent evidence for toxic superoxide (O(2)(-)) production by marine microalgae is afforded particular attention given that release of O(2)(-) anions can be exacerbated by the binding of mannose-specific lectins to the microalgal cell wall; a novel model for grazing-activated chemical defence is proposed.
机译:怀疑吞噬营养性海洋原生动物可能具有摄食受体,使它们能够根据其细胞表面生化特性(在捕食过程中)辨别单个猎物的营养质量。本文回顾了我们对介导微浮游生物海洋吞噬菌类Oxyrrhis marina对非自身(微藻类)猎物的生物识别和选择的分子机制的理解的进展。首先,鉴于发现表明O.marina具有对猎物表面(甘露糖)糖缀合物特异的凝集素样进料受体的发现,首先考虑了凝集素-聚糖相互作用的潜在重要性。其次,介绍了由可溶性猎物标记蛋白介导的间接或“调理”式猎物生物识别模式的一些概念基础。最后,讨论了一些可能的选择,可能是由于与猎物相关的化学物质的有害作用而不是吞噬营养细胞的主动“破坏”,导致了在码头上选择性饲喂的可能性。鉴于O(2)(-)阴离子的释放可因甘露糖特异性凝集素与微藻细胞壁的结合而加剧,海洋微藻产生有毒超氧化物(O(2)(-))的最新证据受到特别关注。 ;提出了一种新型的放牧化学防御模型。

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