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AHL 型群体感应及其对成团泛菌 YS19 中胞质连丝形成的调控。

AHL-type quorum sensing and its regulation on symplasmata formation in Pantoea agglomerans YS19.

作者信息

Jiang Jing, Wu Suisui, Wang Jieru, Feng Yongjun

机构信息

School of Life Science, Beijing Institute of Technology, Beijing, P. R. China.

出版信息

J Basic Microbiol. 2015 May;55(5):607-16. doi: 10.1002/jobm.201400472. Epub 2014 Oct 3.

Abstract

Pantoea agglomerans YS19, an endophytic diazotrophic bacterium isolated from rice, is characterized by the formation of multicellular aggregate structure called symplasmata, which not only bestow the strong stress-resistance of the bacterium, but also contribute to the specific adaptation in the endophyte-host association. Acyl-homoserine lactones (AHLs), as the important signal molecule in the quorum sensing (QS) system of gram-negative bacteria, were demonstrated to regulate motility, cell-aggregation, and other bacterial behaviors. Here, the production of AHL by P. agglomerans YS19 and its regulation on the symplasmata formation were studied. It was revealed that the production of AHL by YS19 was initiated at the exponential growth stage and from then on, reached the peak values at the stationary growth stage in LB medium. The AHL was identified as N-3-oxooctanoyl-L-homoserine lactone (OOHL) by MALDI-TOF-MS analysis. The AHL synthesis gene pagI and receptor gene pagR in YS19 were cloned and phylogenetic analysis showed that they were high conservative among strains in species of P. agglomerans. It was revealed that AHL promoted the bacterial growth and symplasmata formation of YS19. Meanwhile, the colonization ability and growth-promoting effect of YS19 on the host plant were also enhanced by AHL. These results strongly suggest the pleiotropic effects of the AHL-type QS system in endophytic life of the strain.

摘要

成团泛菌YS19是从水稻中分离得到的一种内生固氮细菌,其特征在于形成了称为共质体的多细胞聚集结构,这种结构不仅赋予了该细菌强大的抗逆性,还有助于其在与宿主植物的内生共生关系中实现特异性适应。酰基高丝氨酸内酯(AHLs)作为革兰氏阴性菌群体感应(QS)系统中的重要信号分子,已被证明可调节细菌的运动性、细胞聚集及其他行为。在此,对成团泛菌YS19产生AHL的情况及其对共质体形成的调控进行了研究。结果表明,YS19产生AHL始于指数生长期,并从此开始,在LB培养基的稳定生长期达到峰值。通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)分析,将该AHL鉴定为N-3-氧代辛酰基-L-高丝氨酸内酯(OOHL)。克隆了YS19中的AHL合成基因pagI和受体基因pagR,系统发育分析表明,它们在成团泛菌物种的菌株中具有高度保守性。结果表明,AHL促进了YS19的细菌生长和共质体形成。同时,AHL还增强了YS19在宿主植物上的定殖能力和促生长效果。这些结果有力地表明了AHL型QS系统在该菌株内生生活中的多效性作用。

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