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[携带C0030.3.5基因的转基因玉米对土壤固氮细菌丰度及群落结构的影响]

[Effects of Transgenic Maize with and Genes C0030.3.5 on the Abundance and Community Structure of Soil Nitrogen-fixing Bacteria].

作者信息

Wang Rui, Zhu Ke, Li Gang, Liu Hui-Fen, Wang Jing, Xiu Wei-Ming, Zhao Jian-Ning, Yang Dian-Lin

机构信息

Agro-Environmental Protection Institute, Ministry of Agriculture, Tianjin 300191, China.

College of Agriculture and Environmental Resources, Tianjin Agriculture University, Tianjin 300384, China.

出版信息

Huan Jing Ke Xue. 2018 Aug 8;39(8):3885-3893. doi: 10.13227/j.hjkx.201711119.

Abstract

In order to evaluate the potential risk of planting transgenic corn on soil nitrogen-fixing microorganisms, in 2015, rhizosphere and non-rhizosphere soil samples were collected at the jointing stage, tassel stage, milky stage, and ripening stage, and the effects of transgenic maize with the and genes on the abundance and diversity of soil nitrogen-fixing bacteria were studied by real-time quantitative PCR and T-RFLP. The results showed that the copy number of the diazotrophic gene in the rhizosphere and non-rhizosphere soil of transgenic maize with the and genes (C0030.3.5) and its parental maize (DBN318) showed a trend where it first increased and then decrease with the growth stages, ranging between 2.99×10 and 7.02×10 copies·g. The abundance of the diazotrophic gene in the rhizosphere soil and non-rhizosphere soil gene showed no significant difference between TM and PM in the same growth stage (>0.05). The correlation analysis showed that the abundance of the diazotrophic gene was positively correlated with the content of organic matter, but negatively correlated with water content. T-RFLP analysis yielded 14 T-RFs of different lengths, and 43-bp and 155-bp fragments were the dominant population. The community composition of nitrogen-fixing bacteria was the same as that of TM and PM in the rhizosphere soil and non-rhizosphere soil, and there was no significant difference between the TM and PM populations in the same growth period (>0.05). The Shannon index and Evenness index of the diazotrophic gene showed a trend where they first increased and then decreased with the growth period, and there was no significant difference in the Shannon index and Evenness index in the same growth stage between the rhizosphere and non-rhizosphere soil samples. Principal component analysis(PCA) indicated that the composition of nitrogen-fixing bacteria was not different between TM and PM. Redundancy analysis (RDA) showed that soil ammonium, nitrogen, and pH were significantly correlated with composition of nitrogen-fixing bacteria.

摘要

为了评估种植转基因玉米对土壤固氮微生物的潜在风险,2015年,在拔节期、抽雄期、乳熟期和成熟期采集根际和非根际土壤样本,采用实时定量PCR和T-RFLP技术研究了转 和 基因的转基因玉米对土壤固氮细菌丰度和多样性的影响。结果表明,转 和 基因(C0030.3.5)的转基因玉米及其亲本玉米(DBN318)根际和非根际土壤中固氮 基因的拷贝数随生育期呈先增加后降低的趋势,范围在2.99×10至7.02×10拷贝·g之间。同一生长阶段,转基因玉米(TM)和亲本玉米(PM)根际土壤和非根际土壤中固氮 基因的丰度无显著差异(>0.05)。相关性分析表明,固氮 基因的丰度与有机质含量呈正相关,但与含水量呈负相关。T-RFLP分析产生了14个不同长度的T-RF,43-bp和155-bp片段为优势种群。根际土壤和非根际土壤中固氮细菌的群落组成在TM和PM之间相同,同一生长时期TM和PM群体之间无显著差异(>0.05)。固氮 基因的香农指数和均匀度指数随生育期呈先增加后降低的趋势,根际和非根际土壤样本在同一生长阶段的香农指数和均匀度指数无显著差异。主成分分析(PCA)表明,TM和PM之间固氮细菌的组成没有差异。冗余分析(RDA)表明,土壤铵态氮、全氮和pH与固氮细菌的组成显著相关。

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