State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Tea Research Institute, Yunnan Academy of Agricultural Sciences, Menghai, China.
BMC Microbiol. 2023 Oct 13;23(1):290. doi: 10.1186/s12866-023-02943-5.
Endophytic bacteria provide nutrients and stimulate systemic resistance during seed germination and plant growth and development, and their functional properties in combating various stresses make them a powerful tool in green agricultural production. In this paper we explored the function of the endophyte community in buckwheat seeds in order to provide a theoretical basis for the application and scientific research of endophytes in buckwheat cultivation. We used pulsed electric field (PEF) technology to treat buckwheat seeds, monitored the effect of high-voltage pulse treatment on buckwheat seed germination, and analyzed the diversity of endophytic bacteria in buckwheat seeds using the amplicon sequencing method.
PEF treatment promoted root development during buckwheat seed germination. A total of 350 Operational taxonomic units (OTUs) that were assigned into 103 genera were obtained from control and treatment groups using 16SrRNA amplicon sequencing technology. Additionally, PEF treatment also caused a significant decrease in the abundance of Actinobacteria, Proteobacteria, and Bacteroidetes. The abundance of 28 genera changed significantly as well: 11 genera were more abundant, and 17 were less abundant. The number of associated network edges was reduced from 980 to 117, the number of positive correlations decreased by 89.1%, and the number of negative correlations decreased by 86.6%.
PEF treatment promoted early root development in buckwheat and was able to alter the seed endophytic bacterial community. This study thus makes a significant contribution to the field of endophyte research and to the application of PEF technology in plant cultivation.
内生细菌在种子萌发和植物生长发育过程中提供营养并刺激系统抗性,其在抵御各种胁迫方面的功能特性使其成为绿色农业生产的有力工具。本文旨在探索荞麦种子内生菌群落的功能,为内生菌在荞麦种植中的应用和研究提供理论依据。我们采用脉冲电场(PEF)技术处理荞麦种子,监测高压脉冲处理对荞麦种子萌发的影响,并采用扩增子测序方法分析荞麦种子内生细菌的多样性。
PEF 处理促进了荞麦种子萌发过程中的根发育。通过 16SrRNA 扩增子测序技术,从对照组和处理组中获得了 350 个操作分类单元(OTUs),并归为 103 个属。此外,PEF 处理还显著降低了放线菌门、变形菌门和拟杆菌门的丰度。28 个属的丰度也发生了显著变化:11 个属丰度增加,17 个属丰度减少。关联网络边缘的数量从 980 减少到 117,正相关数量减少了 89.1%,负相关数量减少了 86.6%。
PEF 处理促进了荞麦早期根的发育,并能改变种子内生细菌群落。因此,本研究为内生菌研究领域以及 PEF 技术在植物栽培中的应用做出了重要贡献。