To facilitate more accurate spore proteomic analysis, the current study focuses on inducing homogeneous sporulation by overexpressing kinA and assesses the effect of synchronized sporulation initiation on spore resistance, structures, the germination behavior at single-spore level and the proteome. The results indicate that, in our set up, the sporulation by overexpressing kinA can generate a spore yield of 70% within 8 h. The procedure increases spore wet heat resistance and thickness of the spore coat and cortex layers, whilst delaying the time to spore phase-darkening and burst after addition of germinant. The proteome analysis reveals that the upregulated proteins in the kinA induced spores, compared to spores without kinA induction, as well as the 'wildtype' spores, are mostly involved in spore formation. The downregulated proteins mostly belong to the categories of coping with stress, carbon and nitrogen metabolism, as well as the regulation of sporulation. Thus, while kinA overexpression enhances synchronicity in sporulation initiation, it also has profound effects on the central equilibrium of spore formation and spore germination, through modulation of the spore molecular composition and stress resistance physiology.

译文

为了促进更准确的孢子蛋白质组学分析,当前的研究重点是通过过度表达kinA诱导均质孢子形成,并评估同步孢子形成对孢子抗性,结构,单孢子水平的发芽行为和蛋白质组的影响。结果表明,在我们的设置中,过表达基纳的孢子形成可以在8小时内产生70% 的孢子产量。该程序增加了孢子的耐湿热性以及孢子被膜和皮质层的厚度,同时延迟了添加生发期后孢子相变暗和破裂的时间。蛋白质组分析表明,与没有基纳诱导的孢子以及 “野生型” 孢子相比,基纳诱导的孢子中上调的蛋白质主要参与孢子的形成。下调的蛋白质主要属于应对应激,碳和氮代谢以及孢子形成的调节。因此,尽管kinA过表达增强了孢子形成的同步性,但通过调节孢子分子组成和抗逆性生理,它也对孢子形成和孢子萌发的中心平衡产生了深远的影响。

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