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首页> 外文期刊>Biofouling >Larval settlement and metamorphosis of the mussel Mytilus coruscus in response to monospecific bacterial biofilms
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Larval settlement and metamorphosis of the mussel Mytilus coruscus in response to monospecific bacterial biofilms

机译:贻贝贻贝的幼虫沉降和变态响应单特异性细菌生物膜。

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摘要

The effects of bacterial biofilms (BFs) on larval settlement and metamorphosis of the mussel, Mytilus coruscus, were investigated in the laboratory. Of nine different isolates, Shewanella sp.l BF induced the highest percentage of larval settlement and metamorphosis, whereas seven other isolates had a moderate inducing activity and one isolate, Pseudoalteromonas sp. 4, had a no inducing activity. The inducing activity of individual bacterial isolates was not correlated either with their phylogenetic relationship or with the surfaces from which they were isolated. Among the eight bacterial species that demonstrated inducing activity, bacterial density was significantly correlated with the inducing activity for each strain, with the exception of Vibrio sp. 1. The Shewanella sp. 1 BF cue that was responsible for inducing larval settlement and metamorphosis was further investigated. Treatment of the BFs with formalin, antibiotics, ultraviolet irradiation, heat, and ethanol resulted in a significant decrease in their inducing activities and cell survival. BF-conditioned water (CW) did not induce larval metamorphosis, but it triggered larval settlement behavior. A synergis-tic effect of CW with formalin-fixed Shewanella sp. 1 BF significantly promoted larval metamorphosis. Thus, a cocktail of chemical cues derived from bacteria may be necessary to stimulate larval settlement and metamorphosis in this species.
机译:在实验室中研究了细菌生物膜(BFs)对贻贝(Mytilus coruscus)贻贝幼体沉降和变态的影响。在九种不同的分离株中,希瓦氏菌sp.BF诱导了最高的幼虫沉降和变态百分比,而其他七种分离株具有中等诱导活性,而一种分离株为假单胞菌属。 4,没有诱导作用。各个细菌分离株的诱导活性与它们的系统发生关系或与分离它们的表面均无关。在表现出诱导活性的8种细菌中,除弧菌(Vibrio sp。)外,每种菌株的细菌密度均与诱导活性显着相关。 1.希瓦氏菌1 BF线索是导致幼虫沉降和变态的进一步调查。用福尔马林,抗生素,紫外线,热和乙醇处理高炉会导致其诱导活性和细胞存活率显着下降。高炉条件的水(CW)不会诱发幼虫变态,但会触发幼虫沉降行为。连续波与福尔马林固定的希瓦氏菌的协同作用。 1高​​炉显着促进幼虫变态。因此,可能需要由细菌衍生的化学线索混合物来刺激该物种的幼虫沉降和变态。

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