首页> 美国卫生研究院文献>Journal of Bacteriology >The BlcC (AttM) Lactonase of Agrobacterium tumefaciens Does Not Quench the Quorum-Sensing System That Regulates Ti Plasmid Conjugative Transfer
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The BlcC (AttM) Lactonase of Agrobacterium tumefaciens Does Not Quench the Quorum-Sensing System That Regulates Ti Plasmid Conjugative Transfer

机译:根癌农杆菌的BlcC(AttM)乳糖酶不会抑制调控Ti质粒偶联转移的群体感应系统。

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摘要

The conjugative transfer of Agrobacterium plasmids is controlled by a quorum-sensing system consisting of TraR and its acyl-homoserine lactone (HSL) ligand. The acyl-HSL is essential for the TraR-mediated activation of the Ti plasmid Tra genes. Strains A6 and C58 of Agrobacterium tumefaciens produce a lactonase, BlcC (AttM), that can degrade the quormone, leading some to conclude that the enzyme quenches the quorum-sensing system. We tested this hypothesis by examining the effects of the mutation, induction, or mutational derepression of blcC on the accumulation of acyl-HSL and on the conjugative competence of strain C58. The induction of blc resulted in an 8- to 10-fold decrease in levels of extracellular acyl-HSL but in only a twofold decrease in intracellular quormone levels, a measure of the amount of active intracellular TraR. The induction or mutational derepression of blc as well as a null mutation in blcC had no significant effect on the induction of or continued transfer of pTiC58 from donors in any stage of growth, including stationary phase. In matings performed in developing tumors, wild-type C58 transferred the Ti plasmid to recipients, yielding transconjugants by 14 to 21 days following infection. blcC-null donors yielded transconjugants 1 week earlier, but by the following week, transconjugants were recovered at numbers indistinguishable from those of the wild type. Donors mutationally derepressed for blcC yielded transconjugants in planta at numbers 10-fold lower than those for the wild type at weeks 2 and 3, but by week 4, the two donors showed no difference in recoverable transconjugants. We conclude that BlcC has no biologically significant effect on Ti plasmid transfer or its regulatory system.
机译:农杆菌质粒的结合转移受群体感应系统控制,该系统由TraR及其酰基高丝氨酸内酯(HSL)配体组成。酰基-HSL对于TraR介导的Ti质粒Tra基因的激活至关重要。根癌农杆菌的菌株A6和C58产生内酯酶BlcC(AttM),它可以降解群体激素,导致一些人得出这样的结论,即该酶使群体感应系统淬灭。我们通过检查blcC的突变,诱导或突变抑制的抑制作用对酰基HSL积累和C58菌株结合能力的影响,检验了这一假设。 blc的诱导导致细胞外酰基-HSL水平降低8至10倍,但细胞内仲裁素水平仅降低2倍,这是活性细胞内TraR量的量度。 blc的诱导或突变去抑制以及blcC的无效突变对在生长的任何阶段(包括静止期)从供体中诱导或持续转移pTiC58都没有显着影响。在发展中的肿瘤中进行交配时,野生型C58将Ti质粒转移至受体,在感染后14至21天产生转导结合体。 blcC-null供体在1周前产生了转导结合体,但到第二周,转导结合体的数量与野生型没有区别。在第2周和第3周,对blcC进行突变抑制的供体在植物中产生的转导结合体的数量比野生型低10倍,但到第4周时,两个供体在可回收的转导结合体上没有差异。我们得出结论,BlcC对Ti质粒转移或其调控系统没有生物学上的显着影响。

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