Li Long, Zheng Rong, Wang Zuhua, Li Haibo, Shi Yongjia, Pan Zhongjie, Liu Min
School of Data Science, Tongren University, Tongren 554300, China.
College of Life Science and Technology, Inner Mongolia Normal University, Hohhot 010022, China.
Microorganisms. 2024 Jun 21;12(7):1254. doi: 10.3390/microorganisms12071254.
The rare and endangered plant species , which has a limited habitat, a limited distribution area, and a small population, is under severe threat, particularly due to poor leaf health. The plant endophytic microbiome is an integral part of the host, and increasing evidence indicates that the interplay between plants and endophytic microbes is a key determinant for sustaining plant fitness. However, little attention has been given to the differences in the endophytic microbial community structure, network complexity, and assembly processes in leaves with different leaf health statuses. Here, we investigated the endophytic bacterial and fungal communities in healthy leaves (HLs) and non-healthy leaves (NLs) of using 16S rRNA gene and internal transcribed spacer sequencing and evaluated how leaf health status affects the co-occurrence patterns and assembly processes of leaf endophytic microbial communities based on the co-occurrence networks, the niche breadth index, a neutral community model, and C-score metrics. HLs had significantly greater endophytic bacterial and fungal abundance and diversity than NLs, and there were significant differences in the endophytic microbial communities between HLs and NLs. Leaf-health-sensitive endophytic microbes were taxonomically diverse and were mainly grouped into four ecological clusters according to leaf health status. Poor leaf health reduced the complexity of the endophytic bacterial and fungal community networks, as reflected by a decrease in network nodes and edges and an increase in degrees of betweenness and assortativity. The stochastic processes of endophytic bacterial and fungal community assembly were weakened, and the deterministic processes became more important with declining leaf health. These results have important implications for understanding the ecological patterns and interactions of endophytic microbial communities in response to changing leaf health status and provide opportunities for further studies on exploiting plant endophytic microbes to conserve this endangered species.
这种珍稀濒危植物物种栖息地有限、分布区域狭窄且种群数量少,正面临严重威胁,尤其是由于叶片健康状况不佳。植物内生微生物群是宿主的一个组成部分,越来越多的证据表明,植物与内生微生物之间的相互作用是维持植物健康的关键决定因素。然而,对于不同叶片健康状况的叶片中内生微生物群落结构、网络复杂性和组装过程的差异,人们关注较少。在这里,我们使用16S rRNA基因和内部转录间隔区测序研究了[具体植物]健康叶片(HLs)和不健康叶片(NLs)中的内生细菌和真菌群落,并基于共现网络、生态位宽度指数、中性群落模型和C分数指标,评估了叶片健康状况如何影响叶片内生微生物群落的共现模式和组装过程。HLs的内生细菌和真菌丰度及多样性显著高于NLs,HLs和NLs之间的内生微生物群落存在显著差异。对叶片健康敏感的内生微生物在分类学上具有多样性,并根据叶片健康状况主要分为四个生态簇。叶片健康状况不佳降低了内生细菌和真菌群落网络的复杂性,表现为网络节点和边的减少以及中介中心性和聚类系数的增加。内生细菌和真菌群落组装的随机过程减弱,随着叶片健康状况下降,确定性过程变得更加重要。这些结果对于理解内生微生物群落响应叶片健康状况变化的生态模式和相互作用具有重要意义,并为进一步研究利用植物内生微生物保护这种濒危物种提供了机会。