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转基因玉米瑞丰125对根际土壤细菌群落多样性及动态的影响

Impact of Transgenic Maize Ruifeng125 on Diversity and Dynamics of Bacterial Community in Rhizosphere Soil.

作者信息

Hao Chaofeng, Xia Xinyao, Xu Chao, Sun Hongwei, Li Fan, Yang Shuke, Xu Xiaohui, Lu Xingbo

机构信息

Shandong Key Laboratory for Green Prevention and Control of Agricultural Pests, Institute of Plant Protection, Shandong Academy of Agricultural Sciences, Jinan 250100, China.

Key Laboratory for Safety Assessment (Environment) of Agricultural Genetically Modified Organisms, Ministry of Agriculture and Rural Affairs, Jinan 250100, China.

出版信息

Microorganisms. 2024 Aug 25;12(9):1763. doi: 10.3390/microorganisms12091763.

Abstract

With the development of commercialized planting of genetically modified crops, their ecological security risks remain a key topic of public concern. Insect-resistant genetically modified maize, Ruifeng125, which expresses a fusion Bt protein (Cry1Ab-Cry2Aj), has obtained the application safety certificate issued by the Chinese government. To determine the effects of Ruifeng125 on the diversity and dynamics of bacterial communities, the accumulation and degradation pattern of the fusion Bt protein in the rhizosphere soil of transgenic maize were detected. Results showed that the contents of Bt protein varied significantly at different developmental stages, but after straw was returned to the field, over 97% of Bt proteins were degraded quickly at the early stages (≤10 d) and then they were degraded at a relatively slow rate. In addition, the variations in bacterial community diversity in the rhizosphere soil were detected by 16S ribosomal RNA (Rrna) high-throughput sequencing technology. A total of 44 phyla, 435 families, and 842 genera were obtained by 16S rRNA sequencing, among which , , , and were the dominant taxa. At the same developmental stage, no significant differences in soil bacterial diversity were detected between Ruifeng125 and its non-transgenic control variety. Further analysis revealed that developmental stage, rather than the transgenic event, made the greatest contribution to the changes in soil microbial diversity. This research provides important information for evaluating the impacts of Bt crops on the soil microbiome and establishes a theoretical foundation for their environmental safety assessment.

摘要

随着转基因作物商业化种植的发展,其生态安全风险仍是公众关注的关键话题。抗虫转基因玉米瑞丰125表达一种融合Bt蛋白(Cry1Ab - Cry2Aj),已获得中国政府颁发的应用安全证书。为了确定瑞丰125对细菌群落多样性和动态的影响,检测了转基因玉米根际土壤中融合Bt蛋白的积累和降解模式。结果表明,Bt蛋白含量在不同发育阶段有显著差异,但秸秆还田后,超过97%的Bt蛋白在早期阶段(≤10天)迅速降解,然后降解速度相对较慢。此外,采用16S核糖体RNA(Rrna)高通量测序技术检测根际土壤细菌群落多样性的变化。通过16S rRNA测序共获得44个门、435个科和842个属,其中, 、 、 和 是优势类群。在相同发育阶段,瑞丰125与其非转基因对照品种之间土壤细菌多样性未检测到显著差异。进一步分析表明,发育阶段而非转基因事件对土壤微生物多样性变化的贡献最大。本研究为评估Bt作物对土壤微生物群落的影响提供了重要信息,并为其环境安全评估奠定了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eef/11434164/026072e65f4b/microorganisms-12-01763-g001.jpg

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