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首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Constitutive expression of ftsZ overrides the whi developmental genes to initiate sporulation of Streptomyces coelicolor
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Constitutive expression of ftsZ overrides the whi developmental genes to initiate sporulation of Streptomyces coelicolor

机译:ftsZ的组成型表达优先于whi发育基因,从而引发天蓝色链霉菌的孢子形成

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The filamentous soil bacteria Streptomyces undergo a highly complex developmental programme. Before streptomycetes commit themselves to sporulation, distinct morphological checkpoints are passed in the aerial hyphae that are subject to multi-level control by the whi sporulation genes. Here we show that whi-independent expression of FtsZ restores sporulation to the early sporulation mutants whiA, whiB, whiG, whiH, whiI and whiJ. Viability, stress resistance and high-resolution electron microscopy underlined that viable spores were formed. However, spores from sporulation-restored whiA and whiG mutants showed defects in DNA segregation/condensation, while spores from the complemented whiB mutant had increased stress sensitivity, perhaps as a result of changes in the spore sheath. In contrast to the whi mutants, normal sporulation of ssgB null mutants-which fail to properly localise FtsZ-could not be restored by enhancing FtsZ protein levels, forming spore-like bodies that lack spore walls. Our data strongly suggest that the whi genes control a decisive event towards sporulation of streptomycetes, namely the correct timing of developmental ftsZ transcription. The biological significance may be to ensure that sporulation-specific cell division will only start once sufficient aerial mycelium biomass has been generated. Our data shed new light on the longstanding question as to how whi genes control sporulation, which has intrigued scientists for four decades.
机译:丝状土壤细菌链霉菌经历了高度复杂的发育程序。在链霉菌进行孢子形成之前,在气生菌丝中通过了不同的形态学检查点,这些检查点受到了whi孢子形成基因的多级控制。在这里,我们显示FtsZ的不依赖whi的表达将孢子恢复为早期的孢子突变突变体whiA,whiB,whiG,whiH,whiI和whiJ。活力,抗逆性和高分辨率电子显微镜强调了形成了可行的孢子。但是,来自芽孢还原的whiA和whiG突变体的孢子在DNA分离/凝结中显示出缺陷,而来自互补whiB突变体的孢子则具有更高的胁迫敏感性,这可能是孢子鞘发生变化的结果。与whi突变体相反,无法正确定位FtsZ的ssgB null突变体的正常孢子形成无法通过增强FtsZ蛋白水平而得以恢复,形成缺乏孢子壁的孢子状体。我们的数据强烈表明,whi基因控制着链霉菌孢子形成的决定性事件,即发育性ftsZ转录的正确时机。生物学意义可能是确保仅在产生足够的气生菌丝体生物量后才开始形成孢子特异性细胞。我们的数据为长期存在的关于whi基因如何控制孢子形成的问题提供了新的线索,这已经使科学家们感兴趣了四十年。

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