Dong Shijia, Gao Yunfei, Xin Liu, Ding Wei
Harbin University, Harbin, 150086, China.
Northeast Agricultural University, Harbin, 150030, China.
Sci Rep. 2024 Dec 30;14(1):32017. doi: 10.1038/s41598-024-83676-x.
Transgenic soybean [Glycine max(L.) Merrill] currently covers approximately 80% of the global crop area for this species, with the majority of transgenic plants being glyphosate resistant (Roundup Ready, GR or RR). However, there is significant concern regarding the potential effects of GM crops and their byproducts on soil microbial communities. During our research, we discovered a type of semiwild soybean that emerged due to genetic drift at a transgenic test site. Nevertheless, the ecological risk to soil rhizosphere microorganisms associated with planting semiwild soybean following genetic drift remains unclear. Therefore, we conducted a field experiment and collected soil samples at various stages of plant growth. Our results indicate that the species diversity of rhizosphere bacteria in transgenic glyphosate-resistant semiwild soybean was also not significantly different from that observed in other types of soybean. Additionally, Basidiomycota had beneficial effects on rhizosphere fungi during the flowering and maturation stages in transgenic glyphosate-tolerant semiwild soybean. These findings provide valuable insights into how genetic drift in transgenic soybean may impact the soil microenvironment.
转基因大豆[Glycine max (L.) Merrill]目前覆盖了该物种约80%的全球种植面积,其中大多数转基因植株具有抗草甘膦特性(抗农达,GR或RR)。然而,转基因作物及其副产品对土壤微生物群落的潜在影响引发了广泛关注。在我们的研究过程中,我们在一个转基因试验点发现了一种因基因漂移而出现的半野生大豆。然而,基因漂移后种植半野生大豆对土壤根际微生物的生态风险仍不明确。因此,我们进行了一项田间试验,并在植物生长的各个阶段采集了土壤样本。我们的结果表明,转基因抗草甘膦半野生大豆根际细菌的物种多样性与其他类型大豆相比也没有显著差异。此外,担子菌门在转基因耐草甘膦半野生大豆的开花和成熟阶段对根际真菌有有益影响。这些发现为转基因大豆中的基因漂移如何影响土壤微环境提供了有价值的见解。