Bt-Modified Transgenic Rice May Shift the Composition and Diversity of Rhizosphere Microbiota
Qixing Huang, Yuliang Zhang, Yanhua Tan, Hua Kong, Yang Cao, Jungang Wang, Guohua Yin, Anping Guo

TL;DR
Transgenic Bt rice affects the types and diversity of bacteria in the soil around its roots, which could help assess its environmental safety.
Contribution
This study identifies specific bacterial groups affected by transgenic Bt rice and highlights its greater impact compared to non-GM rice.
Findings
Transgenic Bt rice had a greater impact on rhizosphere bacterial communities than its non-GM counterpart.
Early developmental stages of Bt rice significantly influenced Bacillaceae communities.
Bt protein concentration peaked during the seedling stage, possibly affecting bacterial diversity.
Abstract
Plants significantly shape root-associated microbiota, making rhizosphere microbes useful environmental indicator organisms for safety assessment. Here, we report the pyrosequencing of the bacterial 16S ribosomal RNA in rhizosphere soil samples collected from transgenic cry1Ab/cry1Ac Bt rice Huahui No. 1 (GM crop) and its parental counterpart, Minghui63. We identified a total of 2579 quantifiable bacterial operational taxonomic units (OTUs). Many treatment-enriched microbial OTUs were identified, including 14 NonGM-enriched OTUs and 10 GM-enriched OTUs. OTUs belonging to the phyla Proteobacteria, Actinobacteria, Acidobacteria, Firmicutes, Nitrospirae, Chlorobi and GN04 were identified as statistically different in abundance between GM and the other two treatments. Compared with the different impacts of different rice varieties on microbiota, the impact of rice planting on microbiota is…
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Taxonomy
TopicsPlant-Microbe Interactions and Immunity · Transgenic Plants and Applications · Microbial Community Ecology and Physiology
