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Identification of Major Rhizobacterial Taxa Affected by a Glyphosate-Tolerant Soybean Line via Shotgun Metagenomic Approach

机译:通过Shot弹枪基因组学方法鉴定抗草甘膦大豆品系对主要根际细菌分类群的影响

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The worldwide commercial cultivation of transgenic crops, including glyphosate-tolerant (GT) soybeans, has increased widely during the past 20 years. However, it is accompanied with a growing concern about potential effects of transgenic crops on the soil microbial communities, especially on rhizosphere bacterial communities. Our previous study found that the GT soybean line NZL06-698 (N698) significantly affected rhizosphere bacteria, including some unidentified taxa, through 16S rRNA gene (16S rDNA) V4 region amplicon deep sequencing via Illumina MiSeq. In this study, we performed 16S rDNA V5–V7 region amplicon deep sequencing via Illumina MiSeq and shotgun metagenomic approaches to identify those major taxa. Results of these processes revealed that the species richness and evenness increased in the rhizosphere bacterial communities of N698, the beta diversity of the rhizosphere bacterial communities of N698 was affected, and that certain dominant bacterial phyla and genera were related to N698 compared with its control cultivar Mengdou12. Consistent with our previous findings, this study showed that N698 affects the rhizosphere bacterial communities. In specific, N698 negatively affects Rahnella , Janthinobacterium , Stenotrophomonas , Sphingomonas and Luteibacter while positively affecting Arthrobacter , Bradyrhizobium , Ramlibacter and Nitrospira .
机译:在过去的20年中,包括耐草甘膦(GT)大豆在内的转基因农作物的全球商业化种植已大大增加。然而,伴随着对转基因作物对土壤微生物群落,特别是对根际细菌群落的潜在影响的日益关注。我们之前的研究发现,GT大豆系NZL06-698(N698)通过Illumina MiSeq通过16S rRNA基因(16S rDNA)V4区扩增子深度测序,显着影响了根际细菌,包括一些未分类的类群。在这项研究中,我们通过Illumina MiSeq和shot弹枪宏基因组学方法进行了16S rDNA V5-V7区域扩增子深度测序,以鉴定那些主要的分类群。这些过程的结果表明,N698的根际细菌群落的物种丰富度和均匀度增加,N698的根际细菌群落的β多样性受到影响,并且某些优势菌门和属与N698相比与N698有关。萌豆12。与我们之前的发现一致,本研究表明N698影响根际细菌群落。具体而言,N698对Rahnella,詹氏菌,嗜麦芽窄食单胞菌,鞘氨醇单胞菌和黄体杆菌有负面影响,而对节杆菌,缓生根瘤菌,Ramlibacter和硝化螺旋藻则有正面影响。

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