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Phosphorus limitation increases attachment in Agrobacterium tumefaciens and reveals a conditional functional redundancy in adhesin biosynthesis

机译:磷的限制增加了根癌农杆菌的附着并揭示了粘附素生物合成中的条件功能冗余

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Bacterial responses to phosphorus limitation, commonly inorganic phosphate (Pi), are important survival mechanisms in a variety of environments. The two-component sensor kinase PhoR and its cognate response regulator PhoB are central to the Pi limitation response of many bacteria and control the large Pho regulon. Limitation for Pi significantly increased attachment and biofilm formation by the plant pathogen Agrobacterium tumefaciens, and this was driven by PhoB. Surprisingly, it was also found that both phoR and phoB were essential in A. tumefaciens. Expression of a plasmid-borne copy of the low affinity Pi transporter (pit) from Sinorhizobium meliloti in A. tumefaciens abolished the phoB and phoR essentiality in A. tumefaciens and allowed direct demonstration of the requirement for this regulatory system in the biofilm response. Increased attachment under Pi limitation required a unipolar polysaccharide (UPP) adhesin. Mutation of a polyisoprenylphosphate hexose-1-phosphate transferase (PHPT) called uppE abolished UPP production and prevented surface attachment under Pi-replete conditions, but this was rescued under Pi limitation, and this rescue required phoB. In low Pi conditions, either uppE or a paralogous gene Atu0102 is functionally redundant, but only uppE functions in UPP synthesis and attachment when Pi is replete. This conditional functional redundancy illustrates the influence of phosphorus availability on A. tumefaciens surface colonization.
机译:细菌对磷限制的反应通常是无机磷酸盐(Pi),在各种环境中都是重要的生存机制。两组分传感器激酶PhoR及其关联反应调节剂PhoB对许多细菌的Pi限制反应至关重要,并控制着大型Pho调节子。 Pi的限制显着增加了植物病原土壤杆菌农杆菌的附着和生物膜形成,这是由PhoB驱动的。令人惊讶地,还发现phoR和phoB在根癌农杆菌中都是必需的。从根瘤土壤单胞菌中的苜蓿中华根瘤菌的低亲和力Pi转运蛋白(基坑)的质粒携带拷贝的表达消除了根癌土壤杆菌中的phoB和phoR必需性,并直接证明了在生物膜反应中对该调节系统的要求。在Pi限制下增加的附着力需要单极性多糖(UPP)粘附素。称为uppE的聚异戊二烯基磷酸己糖-1-磷酸转移酶(PHPT)的突变消除了UPP的产生,并阻止了在Pi充足条件下的表面附着,但这在Pi限制下得以挽救,并且这种挽救需要phoB。在低Pi条件下,uppE或旁系基因Atu0102在功能上是多余的,但是当Pi充满时,只有uppE在UPP合成和附着中起作用。这种有条件的功能冗余说明了磷的有效性对根癌农杆菌表面定殖的影响。

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