首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Sequences Essential for Transmission of Spiroplasma citri by Its Leafhopper Vector Circulifer haematoceps Revealed by Plasmid Curing and Replacement Based on Incompatibility
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Sequences Essential for Transmission of Spiroplasma citri by Its Leafhopper Vector Circulifer haematoceps Revealed by Plasmid Curing and Replacement Based on Incompatibility

机译:柠檬叶蝉叶蝉载体Cir​​culifer haematoceps传播螺旋藻必需的序列通过质粒固化和基于不相容性的置换揭示

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摘要

Spiroplasma citri GII3 contains highly related low-copy-number plasmids pSci1 to -6. Despite the strong similarities between their replication regions, these plasmids coexist in the spiroplasma cells, indicating that they are mutually compatible. The pSci1 to -6 plasmids encode the membrane proteins known as S. citri adhesion-related proteins (ScARPs) (pSci1 to -5) and the hydrophilic protein P32 (pSci6), which had been tentatively associated with insect transmission, as they were not detected in non-insect-transmissible strains. With the aim of further investigating the role of plasmid-encoded determinants in insect transmission, we have constructed S. citri mutant strains that differ in their plasmid contents by developing a plasmid curing/replacement strategy based on the incompatibility of plasmids having identical replication regions. Experimental transmission of these S. citri plasmid mutants through injection into the leafhopper vector Circulifer haematoceps revealed that pSci6, more precisely, the pSci6_06 coding sequence, encoding a protein of unknown function, was essential for transmission. In contrast, ScARPs and P32 were dispensable for both acquisition and transmission of the spiroplasmas by the leafhopper vector, even though S. citri mutants lacking pSci1 to -5 (encoding ScARPs) were acquired and transmitted at lower efficiencies than the wild-type strain GII3.
机译:柠檬螺旋体GII3包含高度相关的低拷贝数质粒pSci1至-6。尽管它们的复制区之间有很强的相似性,但这些质粒共存于螺旋体细胞中,表明它们是相互兼容的。 pSci1至-6质粒编码的膜蛋白称为柠檬酸链球菌粘附相关蛋白(ScARPs)(pSci1至-5)和亲水性蛋白P32(pSci6),它们与昆虫传播有关,暂时没有,在非昆虫传播菌株中检测到。为了进一步研究质粒编码的决定簇在昆虫传播中的作用,我们基于具有相同复制区的质粒的不相容性,开发了一种质粒固化/置换策略,从而构建了其质粒含量不同的柠檬葡萄球菌突变株。通过注入叶蝉载体Cir​​culifer haematoceps来对这些柠檬酸链球菌质粒突变体进行实验性传递,结果表明,编码pSci6_06编码序列(更确切地说,编码未知功能蛋白的pSci6)对于传递至关重要。相反,ScARPs和P32对于叶蝉载体的螺旋体的获取和传播都是必不可少的,即使缺乏pSci1至-5(编码ScARPs)的柠檬链球菌突变体的获取和传播效率也低于野生型菌株GII3。 。

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