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首页> 外文期刊>Environmental microbiology >Dynamic expression of intra- and extra-cellular proteome and the influence of epiphytic bacteria for Nostoc flagelliforme in response to rehydration
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Dynamic expression of intra- and extra-cellular proteome and the influence of epiphytic bacteria for Nostoc flagelliforme in response to rehydration

机译:细胞内和细胞蛋白质组的动态表达及对骨膜鞭毛形状的反冲补液反应的影响

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摘要

Nostoc flagelliforme is well known for its strong ecological adaptability in inhabiting desert biological soil crusts. However, the mechanism of its recovery from quiescent to active state after prolonged dormancy remains poorly characterized. Especially how exoproteome be related to the adaptive strategies and participate in the microalgae-bacteria interaction. In the present work, we analysed the intra- and extra-cellular proteome of N. flagelliforme over a complete rehydration period both in sterilization and in natural condition for the first time. The protein expression profile for N. flagelliforme has more fluctuations during the first 1 h after wetting but been relatively steady after fully hydrated. According to the extracellular proteomic datasets, we found a dynamic secretion of various extracellular hydrolytic enzymes and membrane transport proteins, which were related to peptidoglycan digestion and nutrient exchange respectively. Two-hundred and thirteen differentially expressed proteins induced by sterilization also reflect variation in nutrient exchange and highlight symbiosis between N. flagelliforme and surrounding bacteria. We also identified 112 phosphopeptides and 217 phosphorylation site of 95 protein of hydrated N. flagelliforme. The time course datasets we present here will be a reference for understanding the molecular processes underlying N. flagelliforme resuscitation and its potential role in microbial community diversification and soil desertification control.
机译:Nostoc鞭毛状,众所周知,其强烈的生态适应性居住在居住的沙漠生物地壳中。然而,在长期休眠后,其在静态到活性状态的恢复的机制仍然存在差。特别是外蛋白酶与自适应策略有关,并参与微藻 - 细菌相互作用。在本作本作中,我们在第一次灭菌和自然条件下,在完整的补液期间分析了N.鞭毛状蛋白质的内部和细胞蛋白质组。 N.鞭毛状的蛋白表达谱在润湿后的前1小时内具有更多的波动,但在完全水合后比较稳定。根据细胞外蛋白质组学数据集,我们发现各种细胞外水解酶和膜输送蛋白的动态分泌,分别与肽聚糖消化和营养交换有关。通过灭菌引起的二百和十三次差异表达的蛋白质也反映了营养交换的变化,并突出了N.Lillelliforme和周围细菌之间的共生。我们还确定了112种磷酸肽和217个水合N.Limliforme的95蛋白磷酸化位点。我们在此提供的时间路线数据集将是理解N.鞭毛状复苏潜在的分子过程及其在微生物群落多样化和土壤荒漠化控制中的潜在作用的参考。

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