Jenkinson H F
J Gen Microbiol. 1983 Jun;129(6):1945-58. doi: 10.1099/00221287-129-6-1945.
Spores produced by a mutant of Bacillus subtilis were slow to develop their resistance properties during sporulation, and were slower to germinate than were wild-type spores. The coat protein composition of the mutant spores, as analysed by SDS-PAGE, was similar to that of the wild-type spores. However, one of the proteins (mol. wt 12000) which is normally present in the outer-most layers of mature wild-type spores and which is surface-exposed, was assembled abnormally into the coat of the mutant spores and not surface-exposed. The mutation responsible for this phenotype (spo-520) has been mapped between pheA and leuB on the B. subtilis chromosome, and was 47% cotransformable with leuB16. This mutation, and three others closely linked to it, define a new sporulation locus, spoVIB, which is involved in spore coat assembly. The phenotype of the mutant(s) supports the contention that spore germination and resistance properties may be determined by the assembly of the coat.
枯草芽孢杆菌的一个突变体产生的孢子在芽孢形成过程中其抗性特性的发展较为缓慢,并且与野生型孢子相比,萌发也更慢。通过SDS-PAGE分析,突变体孢子的外壳蛋白组成与野生型孢子相似。然而,一种通常存在于成熟野生型孢子最外层且暴露于表面的蛋白质(分子量12000),在突变体孢子的外壳中组装异常且未暴露于表面。导致这种表型的突变(spo-520)已定位在枯草芽孢杆菌染色体上的pheA和leuB之间,并且与leuB16的共转化率为47%。这个突变以及与之紧密连锁的其他三个突变,定义了一个新的芽孢形成位点spoVIB,它参与孢子外壳的组装。突变体的表型支持了孢子萌发和抗性特性可能由外壳组装所决定的观点。