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In contrast, differences in these profiles were apparent in the rhizospheres. In this paper, significant differences were not observed between microbial metagenomic and metabolomic profiles in surface waters of the Bt rice (T1C-1, the transgenic line) and non-Bt cultivars (Minghui 63 (the isogenic line) and Zhonghua 11 (the conventional japonica cultivar)). To address these issues, comprehensive environmental risk assessments of GM plants is critical for the sustainable development and application of transgenic technology. Li, Peng Ye, Shuifeng Chen, Jun Wang, Luyao Li, Yujie Ge, Lei Wu, Guogan Song, Lili Wang, Cui Sun, Yu Wang, Jinbin Pan, Aihu Quan, Zhexue Wu, YunfeiĪRTICLE OPEN Combined metagenomic and metabolomic analyses reveal that Bt rice planting alters soil C-N metabolism 1,2 3 4 1 1 1 1 1 1 1 1 Peng Li, Shuifeng Ye, Jun Chen, Luyao Wang, Yujie Li ,Lei Ge, Guogan Wu, Lili Song, Cui Wang, Yu Sun, Jinbin Wang, 1 5✉ 6✉ Aihu Pan, Zhexue Quan and Yunfei Wu © The Author(s) 2023 The environmental impacts of genetically modified (GM) plants remain a controversial global issue.

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Combined metagenomic and metabolomic analyses reveal that Bt rice planting alters soil C-N metabolism Combined metagenomic and metabolomic analyses reveal that Bt rice planting alters soil C-N.















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