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Sharing of quorum-sensing signals and role of interspecies communities in a bacterial plant disease

机译:群体感应信号的共享和种间群落在细菌性植物病害中的作用

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摘要

Pathogenic bacteria interact not only with the host organism but most probably also with the resident microbial flora. In the knot disease of the olive tree (Olea europaea), the causative agent is the bacterium Pseudomonas savastanoi pv. savastanoi (Psv). Two bacterial species, namely Pantoea agglomerans and Erwinia toletana, which are not pathogenic and are olive plant epiphytes and endophytes, have been found very often to be associated with the olive knot. We identified the chemical signals that are produced by strains of the three species isolated from olive knot and found that they belong to the N-acyl-homoserine lactone family of QS signals. The luxI/R family genes responsible for the production and response to these signals in all three bacterial species have been identified and characterized. Genomic knockout mutagenesis and in planta experiments showed that virulence of Psv critically depends on QS; however, the lack of signal production can be complemented by wild-type E. toletana or P. agglomerans. It is also apparent that the disease caused by Psv is aggravated by the presence of the two other bacterial species. In this paper we discuss the potential role of QS in establishing a stable consortia leading to a poly-bacterial disease.
机译:致病细菌不仅与宿主生物相互作用,而且还很可能与驻留的微生物菌群相互作用。在橄榄树(Olea europaea)的打结病中,病原是细菌假单胞菌(Pseudomonas savastanoi pv)。 savastanoi(Psv)。经常发现与橄榄结有关的两种细菌是无病菌,是橄榄植物的附生植物和内生植物,它们是泛菌和欧文氏欧文氏菌。我们鉴定了从橄榄结分离的三种物种的菌株产生的化学信号,发现它们属于QS信号的N-酰基-高丝氨酸内酯家族。已经确定并鉴定了负责在所有三个细菌物种中产生和响应这些信号的luxI / R家族基因。基因组敲除诱变和植物实验表明,Psv的毒力主要取决于QS。然而,信号产生的缺乏可以通过野生型大肠杆菌(E. toletana)或团聚毕赤酵母(P. agloglomerans)来弥补。同样明显的是,由Psv引起的疾病由于另外两种细菌的​​存在而加剧。在本文中,我们讨论了QS在建立导致多细菌疾病的稳定联合体中的潜在作用。

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