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Genome inside genome: NGS based identification and assembly of endophytic Sphingopyxis granuli and Pseudomonas aeruginosa genomes from rice genomic reads

机译:基因组内部的基因组:基于NGS的水稻基因组读段的内生Sphingopyxis颗粒和铜绿假单胞菌基因组的鉴定和装配

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The interactions between crop plants and the endophytic bacteria colonizing them are poorly understood and experimental methods were found to be inadequate to meet the complexities associated with the interaction. Moreover, research on endophytic bacteria was focused at host plant species level and not at cultivar level which is essential for understanding the role played by them on the productivity of specific crop genotype. High throughput genomics offers valuable tools for identification, characterization of endophytic bacteria and understand their interaction with host plants. In this paper we report the use of high throughput plant genomic data for identification of endophytic bacteria colonizing rice plants. Using this novel next generation sequencing based computational method Sphingopyxis granuli and Pseudomonas aeruginosa were identified as endophytes colonizing the elite indica rice cultivar RP Bio-226 and their draft genome sequences were assembled.
机译:人们对农作物与内生细菌之间的相互作用了解甚少,并且发现实验方法不足以满足相互作用的复杂性。此外,对内生细菌的研究侧重于宿主植物物种水平,而不是品种水平,这对于理解它们在特定作物基因型生产力上的作用至关重要。高通量基因组学为鉴定,表征内生细菌以及了解其与宿主植物的相互作用提供了宝贵的工具。在本文中,我们报告了使用高通量植物基因组数据来鉴定定植于水稻植株的内生细菌。使用这种新颖的基于下一代测序的计算方法,将Sphingopyxis granuli和Pseudomonas aeruginosa鉴定为定植于优质in稻品种RP Bio-226的内生菌,并组装了它们的基因组序列草案。

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