Sohn Soo-In, Oh Young-Ju, Kim Byung-Yong, Cho Hyun-Suk
Biosafety Division, National Institute of Agricultural Science, Jeonju 54874, Republic of Korea.
Institute for Future Environmental Ecology Co., Ltd, Jeonju 54883, Republic of Korea.
J Microbiol Biotechnol. 2016 Jul 28;26(7):1303-10. doi: 10.4014/jmb.1601.01058.
Although many studies on the effects of genetically modified (GM) crops on soil microorganisms have been carried out over the past decades, they have provided contradictory information, even for the same GM crop, owing to the diversity of the soil environments in which they were conducted. This inconsistency in results suggests that the effects of GM crops on soil microorganisms should be considered from many aspects. In this study, we investigated the effects of the GM drought-tolerant rice MSRB2-Bar-8, which expresses the CaMSRB2 gene, on soil microorganisms based on the culture-dependent and culture-independent methods. To this end, rhizosphere soils of GM and non-GM (IM) rice were analyzed for soil chemistry, population densities of soil microorganisms, and microbial community structure (using pyrosequencing technology) at three growth stages (seedling, tillering, and maturity). There was no significant difference in the soil chemistry between GM and non-GM rice. The microbial densities of the GM soils were found to be within the range of those of the non-GM rice. In the pyrosequencing analyses, Proteobacteria and Chloroflexi were dominant at the seedling stage, while Chloroflexi showed dominance over Proteobacteria at the maturity stage in both the GM and non-GM soils. An UPGMA dendrogram showed that the soil microbial communities were clustered by growth stage. Taken together, the results from this study suggest that the effects of MSRB2-Bar-8 cultivation on soil microorganisms are not significant.
尽管在过去几十年里已经开展了许多关于转基因作物对土壤微生物影响的研究,但由于研究开展的土壤环境具有多样性,即便对于同一转基因作物,这些研究也提供了相互矛盾的信息。结果的这种不一致表明,应从多个方面考虑转基因作物对土壤微生物的影响。在本研究中,我们基于依赖培养和不依赖培养的方法,研究了表达CaMSRB2基因的转基因耐旱水稻MSRB2-Bar-8对土壤微生物的影响。为此,在三个生长阶段(幼苗期、分蘖期和成熟期)分析了转基因水稻和非转基因(IM)水稻根际土壤的土壤化学性质、土壤微生物种群密度以及微生物群落结构(使用焦磷酸测序技术)。转基因水稻和非转基因水稻的土壤化学性质没有显著差异。发现转基因土壤的微生物密度在非转基因水稻的微生物密度范围内。在焦磷酸测序分析中,变形菌门和绿弯菌门在幼苗期占主导地位,而在转基因和非转基因土壤的成熟期,绿弯菌门比变形菌门更占优势。一个UPGMA树形图表明,土壤微生物群落按生长阶段聚类。综上所述,本研究结果表明,种植MSRB2-Bar-8对土壤微生物的影响不显著。