首页> 外文期刊>FEMS Microbiology Ecology >Genomic comparison of the endophyte Herbaspirillum seropedicae SmR1 and the phytopathogen Herbaspirillum rubrisubalbicans M1 by suppressive subtractive hybridization and partial genome sequencing
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Genomic comparison of the endophyte Herbaspirillum seropedicae SmR1 and the phytopathogen Herbaspirillum rubrisubalbicans M1 by suppressive subtractive hybridization and partial genome sequencing

机译:抑制性消减杂交和部分基因组测序对内生细菌Seropedicae SmR1和植物致病性Rubrisubalbicans M1的基因组比较

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摘要

Herbaspirillum rubrisubalbicans M1 causes the mottled stripe disease in sugarcane cv. B-4362. Inoculation of this cultivar with Herbaspirillum seropedicae SmR1 does not produce disease symptoms. A comparison of the genomic sequences of these closely related species may permit a better understanding of contrasting phenotype such as endophytic association and pathogenic life style. To achieve this goal, we constructed suppressive subtractive hybridization (SSH) libraries to identify DNA fragments present in one species and absent in the other. In a parallel approach, partial genomic sequence from H. rubrisubalbicans M1 was directly compared in silico with the H. seropedicae SmR1 genome. The genomic differences between the two organisms revealed by SSH suggested that lipopolysaccharide and adhesins are potential molecular factors involved in the different phenotypic behavior. The cluster wss probably involved in cellulose biosynthesis was found in H. rubrisubalbicans M1. Expression of this gene cluster was increased in H. rubrisubalbicans M1 cells attached to the surface of maize root, and knockout of wssD gene led to decrease in maize root surface attachment and endophytic colonization. The production of cellulose could be responsible for the maize attachment pattern of H. rubrisubalbicans M1 that is capable of outcompeting H. seropedicae SmR1.
机译:红螺旋藻M1引起甘蔗cv斑驳的条纹病。 B-4362。用草螺旋藻SmR1接种该品种不会产生疾病症状。比较这些密切相关物种的基因组序列,可以更好地理解表型的差异,例如内生缔合和致病的生活方式。为了实现此目标,我们构建了抑制性消减杂交(SSH)库,以识别一种物种中存在而另一种物种中不存在的DNA片段。在平行方法中,直接在计算机上比较了来自红假单胞菌M1的部分基因组序列与浆膜假丝酵母SmR1基因组。 SSH揭示的两种生物之间的基因组差异表明,脂多糖和粘附素是涉及不同表型行为的潜在分子因子。在红假丝酵母M1中发现了可能参与纤维素生物合成的簇wss。该基因簇的表达在附着于玉米根表面的红假丝酵母M1细胞中增加,而敲除wssD基因导致玉米根表面附着和内生菌落减少。纤维素的产生可能是能够胜过S. seropedicae SmR1的H. rubrisubalbicans M1玉米附着模式的原因。

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