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How do spores germinate?

机译:孢子如何发芽?

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摘要

Spore germination, as defined as those events that result in the loss of the spore-specific properties, is an essentially biophysical process. It occurs without any need for new macromolecular synthesis, so the apparatus required is already present in the mature dormant spore. Germination in response to specific chemical nutrients requires specific receptor proteins, located at the inner membrane of the spore. After penetrating the outer layers of spore coat and cortex, germinant interacts with its receptor: one early consequence of this binding is the movement of monovalent cations from the spore core, followed by Ca2(+) and dipicolinic acid (DPA). In some species, an ion transport protein is also required for these early stages. Early events - including loss of heat resistance, ion movements and partial rehydration of the spore core - can occur without cortex hydrolysis, although the latter is required for complete core rehydration and colony formation from a spore. In Bacillus subtilis two crucial cortex lytic enzymes have been identified: one is CwlJ, which is DPA-responsive and is located at the cortex-coat junction. The second, SleB, is present both in outer layers and at the inner spore membrane, and is more resistant to wet heat than is CwlJ. Cortex hydrolysis leads to the complete rehydration of the spore core, and then enzyme activity within the spore protoplast resumes. We do not yet know what activates SleB activity in the spore, and neither do we have any information at all on how the spore coat is degraded.
机译:孢子萌发定义为导致孢子特异性特性丧失的那些事件,它实质上是生物物理过程。它不需要新的大分子合成即可发生,因此所需的装置已经存在于成熟的休眠孢子中。响应特定化学养分的萌发需要位于孢子内膜的特定受体蛋白。穿透孢子皮和皮层的外层后,发芽子与其受体相互作用:这种结合的一个早期结果是单价阳离子从孢子核心移出,随后是Ca2 +和二吡啶甲酸(DPA)。在某些物种中,这些早期阶段也需要离子转运蛋白。早期事件-包括耐热性的丧失,离子运动和孢子核心的部分再水化-可能会在没有皮质水解的情况下发生,尽管后者是核心完全水化和从孢子形成菌落所必需的。在枯草芽孢杆菌中,已经鉴定出两种关键的皮质分解酶:一种是CwlJ,它对DPA敏感,位于皮质-皮层结合处。第二种SleB既存在于外层也存在于内部孢子膜上,并且比CwlJ更耐湿热。皮质水解导致孢子核心完全水合,然后孢子原生质体内的酶活性恢复。我们尚不知道是什么激活了孢子中的SleB活性,我们也没有关于孢子皮如何降解的任何信息。

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