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首页> 外文期刊>Journal of bacteriology >DNA Microarray-Based Genome Comparison of a Pathogenic and a Nonpathogenic Strain of Xylella fastidiosa Delineates Genes Important for Bacterial Virulence
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DNA Microarray-Based Genome Comparison of a Pathogenic and a Nonpathogenic Strain of Xylella fastidiosa Delineates Genes Important for Bacterial Virulence

机译:致病性和非致病性小木杆菌菌株的DNA芯片为基础的基因组比较描述了细菌致病性的重要基因。

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Xylella fastidiosa is a phytopathogenic bacterium that causes serious diseases in a wide range of economically important crops. Despite extensive comparative analyses of genome sequences of Xylella pathogenic strains from different plant hosts, nonpathogenic strains have not been studied. In this report, we show that X. fastidiosa strain J1a12, associated with citrus variegated chlorosis (CVC), is nonpathogenic when injected into citrus and tobacco plants. Furthermore, a DNA microarray-based comparison of J1a12 with 9a5c, a CVC strain that is highly pathogenic and had its genome completely sequenced, revealed that 14 coding sequences of strain 9a5c are absent or highly divergent in strain J1a12. Among them, we found an arginase and a fimbrial adhesin precursor of type III pilus, which were confirmed to be absent in the nonpathogenic strain by PCR and DNA sequencing. The absence of arginase can be correlated to the inability of J1a12 to multiply in host plants. This enzyme has been recently shown to act as a bacterial survival mechanism by down-regulating host nitric oxide production. The lack of the adhesin precursor gene is in accordance with the less aggregated phenotype observed for J1a12 cells growing in vitro. Thus, the absence of both genes can be associated with the failure of the J1a12 strain to establish and spread in citrus and tobacco plants. These results provide the first detailed comparison between a nonpathogenic strain and a pathogenic strain of X. fastidiosa, constituting an important step towards understanding the molecular basis of the disease.
机译: xylella fastidiosa 是一种植物致病性细菌,可在多种重要的经济作物中引起严重的疾病。尽管对来自不同植物宿主的木霉致病菌株的基因组序列进行了广泛的比较分析,但尚未研究非致病菌株。在此报告中,我们显示 X。与柑橘杂色萎黄病(CVC)相关的fastidiosa 菌株J1a12在注入柑橘和烟草植物中时不会致病。此外,基于DNA微阵列的J1a12与9a5c(一种高致病性且基因组已完全测序的CVC菌株)的比较显示,在菌株J1a12中不存在14个编码序列,或9a5c菌株高度不同。其中,我们发现了III型菌毛的精氨酸酶和纤维粘附素前体,通过PCR和DNA测序证实它们在非致病性菌株中不存在。精氨酸酶的缺乏可能与J1a12在宿主植物中不能繁殖有关。近来已显示出该酶通过下调宿主一氧化氮产生而充当细菌存活机制。粘附素前体基因的缺乏与在体外生长的J1a12细胞所观察到的较少聚集的表型一致。因此,这两个基因的缺失可能与J1a12菌株无法在柑橘和烟草植物中建立和传播有关。这些结果提供了非致病性菌株和 X致病性菌株之间的首次详细比较。 fastidiosa ,是了解该疾病分子基础的重要一步。

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