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枯草芽孢杆菌中参与细胞分裂、孢子形成和胞外酶分泌的基因。

Bacillus subtilis gene involved in cell division, sporulation, and exoenzyme secretion.

作者信息

Sadaie Y, Kada T

出版信息

J Bacteriol. 1985 Aug;163(2):648-53. doi: 10.1128/jb.163.2.648-653.1985.

Abstract

Bacillus subtilis strains carrying div-341 or sacU mutations, or both, have been characterized to reveal the roles of both genes in the initiation of sporulation, as well as in cell division and exoenzyme secretion. Both mutations were closely linked by transformation and caused the pleiotropic effects on sporulation and sporulation-associated events. Some sacU mutations (sacUh) resulted in hyperproduction of exoenzymes, reduced autolysis, and an ability to sporulate in the presence of excess nutrients. The div-341 mutation, on the other hand, resulted in filamentous growth at a higher temperature (45 degrees C) and showed spo0 properties at an intermediate permissive temperature (37 degrees C) in the usual sporulation medium. However, the div-341 strain sporulated better than wild-type strain at 37 degrees C in the presence of excess nutrients. Exoenzyme production and autolysis were reduced at 37 degrees C in the div-341 strain. A double mutant with sacUh32 and div-341 showed the complex phenotypes. It showed the sacUh32 property of autolysis and exoenyzme secretion. It showed the sacUh32 property of sporulation at 30 degrees C and the div-341 property at 37 degrees C. Slow growth and defective spore outgrowth of the div-341 strain at 37 degrees C were not observed in the double-mutant strain. Based on pleiotropic phenotypes and close linkages of both mutations, we discuss the relationship between the sacU and div-341 genes and their roles in sporulation, exoenzyme secretion, and cell division.

摘要

携带div - 341或sacU突变或两者皆有的枯草芽孢杆菌菌株已被鉴定,以揭示这两个基因在芽孢形成起始、细胞分裂和胞外酶分泌中的作用。这两种突变通过转化紧密连锁,并对芽孢形成和与芽孢形成相关的事件产生多效性影响。一些sacU突变(sacUh)导致胞外酶过量产生、自溶减少以及在营养过剩时具有芽孢形成能力。另一方面,div - 341突变导致在较高温度(45摄氏度)下丝状生长,并在通常的芽孢形成培养基中的中间允许温度(37摄氏度)下表现出spo0特性。然而,在营养过剩的情况下,div - 341菌株在37摄氏度时比野生型菌株芽孢形成更好。div - 341菌株在37摄氏度时胞外酶产生和自溶减少。具有sacUh32和div - 341的双突变体表现出复杂的表型。它表现出sacUh32的自溶和胞外酶分泌特性。它在30摄氏度时表现出sacUh32的芽孢形成特性,在37摄氏度时表现出div - 341的特性。在双突变体菌株中未观察到div - 341菌株在37摄氏度时生长缓慢和芽孢萌发缺陷的情况。基于多效性表型和两种突变的紧密连锁,我们讨论了sacU和div - 341基因之间的关系及其在芽孢形成、胞外酶分泌和细胞分裂中的作用。

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