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轮虫外排分泌物的外部调节。

External modulation of Rotimer exudate secretion in monogonant rotifers.

机构信息

Department of Psychiatry, Faculty of Medicine, University of Szeged, Vasas Szent Peter u. 1-3, H-6724 Szeged, Hungary.

Bioinformatics Research Group, Bioinformatics and Sequencing Core Facility, Szentágothai Research Centre, University of Pécs, Ifjusag u. 20, H-7624 Pécs, Hungary; Department of Clinical Molecular Biology, Medical University of Bialystok, ul.Jana Kilinskiego 1, 15-089 Bialystok, Poland.

出版信息

Ecotoxicol Environ Saf. 2021 Sep 1;220:112399. doi: 10.1016/j.ecoenv.2021.112399. Epub 2021 Jun 3.

Abstract

The Rotimer, a rotifer-specific biopolymer, is an exogenic bioactive exudate secreted by different monogonant species (e.g. Euchlanis dilatata or Lecane bulla). The production of this viscoelastic biomolecule is induced by different micro-particles, thereby forming a special Rotimer-Inductor Conglomerate (RIC) in a web format. In this case, the water insoluble Carmine crystals, filtered to size (max. diameter was 50 µm), functioned as an inductor. The RIC production is an adequate empirical indicator to follow up this filamentous biopolymer secretion experientially; moreover, this procedure is very sensitive to the environmental factors (temperature, pH, metals and possible natural pollutant agents). The above mentioned species show completely different reactions to these factors, except to the presence of calcium and to the modulating effects of different drugs. One of the novelties of this work is that the Rotimer secretion and consequently, the RIC-formation is a mutually obligatory and evolutionary calcium-dependent process in the concerned monogonants. This in vivo procedure needs calcium, both for the physiology of animals and for fiber formation, particularly in the latter case. The conglomerate covered area (%) and the detection of the longest filament (mm) of the given RIC were the generally and simultaneously applied methods in the current modulating experiments. Exploring the regulatory (e.g. calcium-dependency) and stimulating (e.g. Lucidril effect) possibilities of biopolymer secretion are the basis for optimizing the RIC-production capacities of these micro-metazoans.

摘要

Rotimer 是一种轮虫特异性生物聚合物,是由不同的单巢物种(例如 Euchlanis dilatata 或 Lecane bulla)分泌的外源性生物活性分泌物。这种粘弹性生物分子的产生是由不同的微粒子诱导的,从而形成了一种特殊的 Rotimer-Inductor Conglomerate(RIC)的网状结构。在这种情况下,不溶于水的胭脂红晶体经过过滤达到一定大小(最大直径为 50 µm),作为诱导剂发挥作用。RIC 的产生是一种经验性的指标,可以用来跟踪这种丝状生物聚合物的分泌;此外,该过程对环境因素(温度、pH 值、金属和可能的天然污染物)非常敏感。上述物种对这些因素的反应完全不同,除了钙的存在以及不同药物的调节作用。这项工作的一个新颖之处在于,轮虫的分泌,以及相应的 RIC 形成,是相关单巢动物中一种相互依赖且与进化相关的钙依赖性过程。这种体内过程既需要钙来维持动物的生理机能,也需要钙来促进纤维的形成,特别是在后一种情况下。在当前的调节实验中,通常同时应用覆盖面积(%)和最长纤维(mm)的方法来检测给定 RIC 的形成。探索生物聚合物分泌的调节(例如钙依赖性)和刺激(例如 Lucidril 效应)的可能性是优化这些微后生动物 RIC 产生能力的基础。

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