首页> 美国卫生研究院文献>Journal of Bacteriology >Essential role of small acid-soluble spore proteins in resistance of Bacillus subtilis spores to UV light.
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Essential role of small acid-soluble spore proteins in resistance of Bacillus subtilis spores to UV light.

机译:酸溶性小孢子蛋白在枯草芽孢杆菌孢子对紫外线的抵抗中的重要作用。

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摘要

Bacillus subtilis strains containing deletions in the genes coding for one or two of the major small, acid-soluble spore proteins (SASP; termed SASP-alpha and SASP-beta) were constructed. These mutants sporulated normally, but the spores lacked either SASP-alpha, SASP-beta, or both proteins. The level of minor SASP did not increase in these mutants, but the level of SASP-alpha increased about twofold in the SASP-beta- mutant, and the level of SASP-beta increased about twofold in the SASP-alpha- mutant. The growth rates of the deletion strains were identical to that of the wild-type strain in rich or poor growth media, as was the initiation of spore germination. However, outgrowth of spores of the SASP-alpha(-)-beta- strain was significantly slower than that of wild-type spores in all media tested. The heat resistance of SASP-beta- spores was identical to that of wild-type spores but slightly greater than that of SASP-alpha- and SASP-alpha(-)-beta- spores. However, the SASP-alpha- and SASP-alpha(-)-beta- spores were much more heat resistant than vegetative cells. The UV light resistances of SASP-beta- and wild-type spores were also identical. However, SASP-alpha(-)-beta- spores were slightly more sensitive to UV light than were log-phase cells of the wild-type or SASP-alpha(-)-beta- strain (the latter have identical UV light resistances); SASP-alpha- spores were slightly more UV light resistant than SASP-alpha(-)-beta- spores. These data strongly implicate SASP, in particular SASP-alpha, in the UV light resistance of B. subtilis spores.
机译:构建了枯草芽孢杆菌菌株,该菌株在编码一种或两种主要的小的酸溶性孢子蛋白(SASP;分别称为SASP-alpha和SASP-beta)的基因中含有缺失。这些突变体正常形成孢子,但孢子缺乏SASP-α,SASP-β或两种蛋白质。这些突变体中次要SASP的水平没有增加,但是在SASP-β-突变体中SASP-α的水平增加了约两倍,而在SASP-α-突变体中SASP-β的水平增加了约两倍。缺失菌株在富或弱生长培养基中的生长速率与野生型菌株的生长速率相同,孢子萌发的起始速率也相同。但是,在所有测试的培养基中,SASP-α(-)-β-菌株的孢子生长显着慢于野生型孢子。 SASP-β-孢子的耐热性与野生型孢子相同,但比SASP-α-和SASP-α(-)-β-孢子的耐热性稍高。然而,SASP-α-和SASP-α(-)-β-孢子比营养细胞具有更高的耐热性。 SASP-β和野生型孢子的耐紫外线性也相同。但是,SASP-α(-)-β-孢子对紫外线的敏感性比野生型或SASP-α(-)-β-菌株的对数期细胞(后者具有相同的抗紫外线性) ; SASP-α-孢子比SASP-α(-)-β-孢子具有更强的抗紫外线性。这些数据强烈暗示了SASP,特别是SASP-α,在枯草芽孢杆菌孢子的抗紫外线性中。

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