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High-throughput sequencing analysis of microbial community diversity in response to indica and japonica bar-transgenic rice paddy soils

机译:对in稻和粳稻转基因水稻田土壤微生物群落多样性的高通量测序分析

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摘要

Potential environmental risks of genetically modified (GM) crops have raised concerns. To better understand the effect of transgenic rice on the bacterial community in paddy soil, a field experiment was carried out using pairs of rice varieties from two subspecies (indica and japonica) containing bar transgene with herbicide resistance and their parental conventional rice. The 16S rRNA gene of soil genomic DNA from different soil layers at the maturity stage was sequenced using high-throughput sequencing on the Illumina MiSeq platform to explore the microbial community diversity among different rice soils. There were no significant differences in diversity indices between transgenic japonica rice and its sister conventional rice (japonica pair) among different soil layers, but, significant differences was observed between transgenic indica rice and its conventional rice (indica pair) in the topsoil layer around concentrated rice roots according to the ace diversity index. Though the japonica rice soil and indica rice soil were shared several key genera, including Rivibacter, Anaeromyxobacter, Roseomonas, Geobacter, Thiobacillus, Clostridium, and Desulfobulbus, the primary bacterial genera in indica rice soil were different from those in japonica rice. Synechococcus and Dechloromonas were present in japonica rice samples, while Chloronema, Flexibacter, and Blastocatella were observed in indica rice soil. Moreover, the abundance of genera between GM and non-GM varieties in japonica rice was significantly different from indica rice, and several bacterial communities influenced these differences. Anaerovorax was more abundant in transgenic japonica rice soil than conventional rice soil, while it was deficient in transgenic indica rice soil compared to conventional rice soil, and opposite responses to Deferrisoma were in that of indica rice. Thus, we concluded that transgenic indica and japonica rice had different effects on soil bacteria compared with their corresponding sister conventional rice. However, these composition and abundance difference only occurred for a few genera but had no effect on the primary genera and soil characteristics were mainly contributed to these differences. Thus, differences in bacterial community structure can be ignored when evaluating the impacts of transgenic rice in the complex soil microenvironment.
机译:转基因作物的潜在环境风险引起了人们的关注。为了更好地了解转基因水稻对稻田土壤细菌群落的影响,我们进行了田间试验,使用了两个具有抗除草剂的bar转基因亚种((稻和粳稻)及其亲本常规稻对。利用Illumina MiSeq平台上的高通量测序技术,对成熟期不同土壤层的土壤基因组DNA的16S rRNA基因进行了测序,以探索不同水稻土壤之间的微生物群落多样性。转基因粳稻与其姊妹常规稻(粳稻对)的多样性指数在不同土壤层之间没有显着差异,但在浓缩土壤周围表土层中,转基因genic稻与其常规稻(ind稻对)之间存在显着差异。水稻根系根据ace多样性指数计算。尽管粳稻和and稻的土壤共有几个关键属,包括里维杆菌属,厌氧杆菌属,迷迭香属,地杆菌属,硫杆菌属,梭菌属和脱硫鳞茎属,但 indica 稻田的主要细菌属却不同。在 japonica 大米中粳稻样品中存在 Synechococcus Dechloromonas ,而 Chloronema Flexibacter ,在 indica 水稻土中观察到了 Blastocatella 。而且,粳稻的转基因和非转基因品种的丰富度与 indica 水稻有显着差异,并且几个细菌群落影响了这些差异。转基因 japonica 水稻土壤中的 Anaerovorax 含量比常规水稻土壤丰富,而转基因 indica 水稻土壤则比常规水稻土壤缺乏,对 Deferrisoma 的反应相反,是 indica 水稻。因此,我们得出的结论是,转基因的 indica japonica 水稻与相应的姊妹常规水稻相比对土壤细菌的影响不同。但是,这些组成和丰度差异仅在少数属中发生,而对初级属没有影响,土壤特性主要是这些差异的原因。因此,当评估转基因水稻在复杂土壤微环境中的影响时,可以忽略细菌群落结构的差异。

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