College of Horticulture and Plant Protection, Henan University of Science and Technology, Luoyang, 471023, China.
Henan Engineering Technology Research Center of Quality Regulation of Horticultural Plants, Luoyang, 471023, China.
PLoS One. 2023 Aug 30;18(8):e0290853. doi: 10.1371/journal.pone.0290853. eCollection 2023.
Microbes are an important part of the vineyard ecosystem, which significantly influence the quality of grapes. Previously, we identified a bud mutant variety (named 'Fengzao') from 'Kyoho' grapes. The variation of microbial communities in grape and its bud mutant variety has not been studied yet. So, in this study, with the samples of both 'Fengzao' and 'Kyoho', we conducted high-throughput microbiome sequencing and investigated their microbial communities in different tissues. Obvious differences were observed in the microbial communities between 'Fengzao' and 'Kyoho'. The fruit and the stem are the tissues with relatively higher abundance of microbes, while the leaves contained less microbes. The fruit and the stem of 'Kyoho' and the stem of 'Fengzao' had relatively higher species diversity based on the alpha diversity analysis. Proteobacteria, Enterobacteriaceae and Rhodobacteraceae had significantly high abundance in 'Fengzao'. Firmicutes and Pseudomonas were highly abundant in the stems of 'Kyoho', and family of Spirochaetaceae, Anaplasmataceae, Chlorobiaceae, and Sphingomonadaceae, and genera of Spirochaeta, Sphingomonas, Chlorobaculum and Wolbachia were abundant in the fruits of 'Kyoho'. These identified microbes are main components of the microbial communities, and could be important regulators of grapevine growth and development. This study revealed the differences in the microbial compositions between 'Kyoho' and its bud mutant, and these identified microbes will be significant resources for the future researches on the quality regulation and disease control of grapevines.
微生物是葡萄园生态系统的重要组成部分,它们显著影响葡萄的质量。此前,我们从‘巨峰’葡萄中鉴定出一种芽变突变体品种(命名为‘封灶’)。然而,葡萄及其芽变突变体中微生物群落的变化尚未得到研究。因此,在这项研究中,我们以‘封灶’和‘巨峰’为样本,进行了高通量微生物组测序,并研究了它们在不同组织中的微生物群落。‘封灶’和‘巨峰’之间的微生物群落存在明显差异。果实和茎是微生物丰度相对较高的组织,而叶片则含有较少的微生物。基于α多样性分析,‘巨峰’的果实和茎以及‘封灶’的茎具有相对较高的物种多样性。变形菌门、肠杆菌科和红杆菌科在‘封灶’中丰度显著较高。厚壁菌门和假单胞菌在‘巨峰’的茎中高度丰富,螺旋体科、立克次体科、绿菌科和鞘脂单胞菌科以及螺旋体属、鞘氨醇单胞菌属、绿菌属和沃尔巴克氏体属在‘巨峰’的果实中丰富。这些鉴定出的微生物是微生物群落的主要组成部分,可能是葡萄生长和发育的重要调节剂。本研究揭示了‘巨峰’与其芽变突变体之间微生物组成的差异,这些鉴定出的微生物将是未来研究葡萄质量调控和病害防治的重要资源。