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Commonalities and Differences in Regulation of N-Acyl Homoserine Lactone Quorum Sensing in the Beneficial Plant-Associated Burkholderia Species Cluster

机译:有益植物相关的伯克霍尔德氏菌物种集群中N-酰基同型丝氨酸内酯仲裁感觉调节的共性和差异

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摘要

The genus Burkholderia includes over 60 species isolated from a wide range of environmental niches and can be tentatively divided into two major species clusters. The first cluster includes pathogens such as Burkholderia glumae, B. pseudomallei, and B. mallei and 17 well-studied species of the Burkholderia cepacia complex. The other recently established cluster comprises at least 29 nonpathogenic species, which in most cases have been found to be associated with plants. It was previously established that Burkholderia kururiensis, a member of the latter cluster, possesses an N-acyl homoserine lactone (AHL) quorum-sensing (QS) system designated “BraI/R,” which is found in all species of the plant-associated cluster. In the present study, two other BraI/R-like systems were characterized in B. xenovorans and B. unamae and were designated the BraI/RXEN and BraI/RUNA systems, respectively. Several phenotypes were analyzed, and it was determined that exopolysaccharide was positively regulated by the BraIR-like system in the species B. kururiensis, B. unamae, and B. xenovorans, highlighting commonality in targets. However, the three BraIR-like systems also revealed differences in targets since biofilm formation and plant colonization were differentially regulated. In addition, a second AHL QS system designated XenI2/R2 and an unpaired LuxR solo protein designated BxeR solo were also identified and characterized in B. xenovorans LB400T. The two AHL QS systems of B. xenovorans are not transcriptionally regulating each other, whereas BxeR solo negatively regulated xenI2. The XenI2/R2 and BxeR solo proteins are not widespread in the Burkholderia species cluster. In conclusion, the present study represents an extensive analysis of AHL QS in the Burkholderia plant-associated cluster demonstrating both commonalities and differences, probably reflecting environmental adaptations of the various species.
机译:伯克霍尔德氏菌属包括从广泛的环境生态位中分离出来的60多个物种,可以暂时分为两个主要物种群。第一组包括病原体,例如小生伯克霍尔德氏菌,假芽孢杆菌和马来芽孢杆菌,以及洋葱伯克霍尔德菌复合体的17种经过充分研究的物种。最近建立的另一个集群包括至少29个非致病性物种,在大多数情况下已发现它们与植物有关。先前已确定,后者的成员Burkholderia kururiensis具有N-酰基高丝氨酸内酯(AHL)群体感应(QS)系统,称为“ BraI / R”,在所有与该植物相关的物种中都可以找到簇。在本研究中,两个其他的BraI / R样系统已在B.xenovorans和un。B. unamae中进行了表征,分别命名为BraI / RXEN和BraI / RUNA系统。分析了几种表型,并且确定了胞外多糖在B. kururiensis,B。unamae和B. xenovorans物种中受BraIR样系统正调控,从而突出了靶标的共性。但是,由于生物膜的形成和植物定植受到不同的调节,所以三个类似BraIR的系统也揭示了靶标的差异。此外,还鉴定了第二种AHL QS系统XenI2 / R2和未配对的LuxR单独蛋白BxeR solo,并在异种双歧杆菌LB400 T 中进行了表征。异种双歧杆菌的两个AHL QS系统在转录上互不调控,而BxeR单独对xenI2负调控。 XenI2 / R2和BxeR单独蛋白在伯克霍尔德菌种群中并不广泛。总而言之,本研究对与植物相关的群中的AHL QS进行了广泛的分析,证明了它们的共性和差异,可能反映了各种物种的环境适应性。

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