Shi Yixuan, He Yuansheng, Zheng Yuanxian, Liu Xixi, Wang Shuzhong, Xiong Tian'e, Wen Tao, Duan Hong, Liao Xiaolin, Cui Quanren, Nian Fuzhao
College of Tobacco Science, Yunnan Agricultural University, Kunming, Yunnan, China.
Technology and Research Center, Lincang Branch Company of Yunnan Tobacco Company, Lincang Yunnan, China.
Front Plant Sci. 2024 May 10;15:1346154. doi: 10.3389/fpls.2024.1346154. eCollection 2024.
Numerous bacteria, fungi and other microorganisms in the tobacco phyllosphere interstellar area participate in the physiological metabolism of plants by interacting with the host. However, there is currently little research on the characteristics of tobacco phyllosphere microbial communities, and the correlation between tobacco phyllosphere microbial communities and phyllosphere factor indicators is still unknown. Therefore, high-throughput sequencing technology based on the 16S rRNA/ITS1 gene was used to explore the diversity and composition characteristics of tobacco phyllosphere bacterial and fungal communities from different maturation processes, and to identify marker genera that distinguish phyllosphere microbial communities. In this study, the correlations between tobacco phyllosphere bacterial and fungal communities and the precursors of major aroma compounds were explored. The results showed that as the tobacco plants matured, the density of glandular trichomes on the tobacco leaves gradually decreased. The surface physicochemical properties of tobacco leaves also undergo significant changes. In addition, the overall bacterial alpha diversity in the tobacco phyllosphere area increased with maturation, while the overall fungal alpha diversity decreased. The beta diversity of bacteria and fungi in the tobacco phyllosphere area also showed significant differences. Specifically, with later top pruning time, the relative abundances of , , , and gradually increased, while the relative abundances of , , and gradually decreased. In the bacterial community, , , , and were significantly positively correlated with tobacco aroma precursors, with significant negative correlations with tobacco phyllosphere trichome morphology, while showed the opposite pattern; In the fungal community, and were significantly negatively correlated with tobacco aroma precursors, and significantly positively correlated with tobacco phyllosphere trichome morphology, while showed the opposite pattern. In conclusion, the microbiota (bacteria and fungi) and aroma precursors of the tobacco phyllosphere change significantly as tobacco matures. The presence of , , and in the phyllosphere microbiota of tobacco may be related to the aroma precursors of tobacco.
烟草叶际星际区域中的众多细菌、真菌和其他微生物通过与宿主相互作用参与植物的生理代谢。然而,目前对烟草叶际微生物群落特征的研究较少,烟草叶际微生物群落与叶际因子指标之间的相关性仍不清楚。因此,采用基于16S rRNA/ITS1基因的高通量测序技术,探究不同成熟过程中烟草叶际细菌和真菌群落的多样性及组成特征,并鉴定区分叶际微生物群落的标志性属。本研究中,探究了烟草叶际细菌和真菌群落与主要香气化合物前体之间的相关性。结果表明,随着烟草植株成熟,烟叶上腺毛的密度逐渐降低。烟叶的表面理化性质也发生显著变化。此外,烟草叶际区域细菌的总体α多样性随成熟度增加,而真菌的总体α多样性降低。烟草叶际区域细菌和真菌的β多样性也存在显著差异。具体而言,随着打顶时间的推迟,[具体细菌属]、[具体细菌属]、[具体细菌属]、[具体细菌属]和[具体细菌属]的相对丰度逐渐增加,而[具体细菌属]、[具体细菌属]和[具体细菌属]的相对丰度逐渐降低。在细菌群落中,[具体细菌属]、[具体细菌属]、[具体细菌属]和[具体细菌属]与烟草香气前体显著正相关,与烟草叶际毛状体形态显著负相关,而[具体细菌属]表现出相反的模式;在真菌群落中,[具体真菌属]和[具体真菌属]与烟草香气前体显著负相关,与烟草叶际毛状体形态显著正相关,而[具体真菌属]表现出相反的模式。总之,随着烟草成熟,烟草叶际的微生物群(细菌和真菌)及香气前体发生显著变化。烟草叶际微生物群中[具体细菌属]、[具体细菌属]、[具体细菌属]和[具体细菌属]的存在可能与烟草的香气前体有关。