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抗小麦黄花叶病毒转基因小麦对根际土壤微生物群落多样性和酶活性的影响

Impact of transgenic wheat with wheat yellow mosaic virus resistance on microbial community diversity and enzyme activity in rhizosphere soil.

作者信息

Wu Jirong, Yu Mingzheng, Xu Jianhong, Du Juan, Ji Fang, Dong Fei, Li Xinhai, Shi Jianrong

机构信息

Institute of Food Safety and Detection, Jiangsu Academy of Agricultural Sciences, Nanjing, China; Key Lab of Food Quality and Safety of Jiangsu Province-State Key Laboratory Breeding Base, Nanjing, China; Jiangsu Center for GMO evaluation and detection, Nanjing, China.

Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

PLoS One. 2014 Jun 4;9(6):e98394. doi: 10.1371/journal.pone.0098394. eCollection 2014.

Abstract

The transgenic wheat line N12-1 containing the WYMV-Nib8 gene was obtained previously through particle bombardment, and it can effectively control the wheat yellow mosaic virus (WYMV) disease transmitted by Polymyxa graminis at turngreen stage. Due to insertion of an exogenous gene, the transcriptome of wheat may be altered and affect root exudates. Thus, it is important to investigate the potential environmental risk of transgenic wheat before commercial release because of potential undesirable ecological side effects. Our 2-year study at two different experimental locations was performed to analyze the impact of transgenic wheat N12-1 on bacterial and fungal community diversity in rhizosphere soil using polymerase chain reaction-denaturing gel gradient electrophoresis (PCR-DGGE) at four growth stages (seeding stage, turngreen stage, grain-filling stage, and maturing stage). We also explored the activities of urease, sucrase and dehydrogenase in rhizosphere soil. The results showed that there was little difference in bacterial and fungal community diversity in rhizosphere soil between N12-1 and its recipient Y158 by comparing Shannon's, Simpson's diversity index and evenness (except at one or two growth stages). Regarding enzyme activity, only one significant difference was found during the maturing stage at Xinxiang in 2011 for dehydrogenase. Significant growth stage variation was observed during 2 years at two experimental locations for both soil microbial community diversity and enzyme activity. Analysis of bands from the gel for fungal community diversity showed that the majority of fungi were uncultured. The results of this study suggested that virus-resistant transgenic wheat had no adverse impact on microbial community diversity and enzyme activity in rhizosphere soil during 2 continuous years at two different experimental locations. This study provides a theoretical basis for environmental impact monitoring of transgenic wheat when the introduced gene is derived from a virus.

摘要

先前通过粒子轰击获得了含有WYMV - Nib8基因的转基因小麦品系N12 - 1,它能在返青期有效控制由禾谷多黏菌传播的小麦黄花叶病毒(WYMV)病害。由于外源基因的插入,小麦的转录组可能会发生改变并影响根系分泌物。因此,鉴于可能存在的不良生态副作用,在转基因小麦商业化释放之前研究其潜在的环境风险很重要。我们在两个不同实验地点进行了为期两年的研究,在四个生长阶段(播种期、返青期、灌浆期和成熟期)使用聚合酶链反应 - 变性梯度凝胶电泳(PCR - DGGE)分析转基因小麦N12 - 1对根际土壤细菌和真菌群落多样性的影响。我们还探究了根际土壤中脲酶、蔗糖酶和脱氢酶的活性。结果表明,通过比较香农指数、辛普森多样性指数和均匀度,N12 - 1与其受体Y158根际土壤中的细菌和真菌群落多样性几乎没有差异(除了一两个生长阶段)。关于酶活性,仅在2011年新乡的成熟期发现脱氢酶有一个显著差异。在两个实验地点的两年间,土壤微生物群落多样性和酶活性均观察到显著的生长阶段变化。对真菌群落多样性凝胶条带的分析表明,大多数真菌是未培养的。本研究结果表明,在两个不同实验地点连续两年,抗病毒转基因小麦对根际土壤微生物群落多样性和酶活性没有不利影响。本研究为当导入基因来源于病毒时转基因小麦的环境影响监测提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7128/4045665/e9be95c3fa0b/pone.0098394.g001.jpg

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