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生态学杂志 ›› 2025, Vol. 44 ›› Issue (10): 3396-3406.doi: 10.13292/j.1000-4890.202510.014

• 研究报告 • 上一篇    下一篇

银缕梅叶际细菌群落特征及其影响机制

杨明媚1,2,沈佳豪2,周佳宇2*,汪仁1,2*   

  1. 1南京中医药大学, 南京 210023; 2江苏省中国科学院植物研究所, 南京 210014)
  • 出版日期:2025-10-10 发布日期:2025-10-13

Phyllosphere bacterial community characteristics of Shaniodendron subaequale and the factors influencing its composition and diversity.

YANG Mingmei1,2, SHEN Jiahao2, ZHOU Jiayu2*, WANG Ren1,2*   

  1. (1Nanjing University of Chinese Medicine, Nanjing 210023, China; 2Institute of Botany, Jiangsu Province and Chinese Academy of Sciences, Nanjing 210014, China).

  • Online:2025-10-10 Published:2025-10-13

摘要: 银缕梅(Shaniodendron subaequale)是我国特有第三纪孑遗物种,国家一级重点保护野生植物。叶际细菌对植物的生长发育和环境适应性有着重要影响,探究银缕梅叶际细菌群落的组成和分布格局对于理解其适应环境的机制具有重要意义。为解析主要分布区内银缕梅叶际细菌群落特征及其影响因素,采集6个原生生境中银缕梅植株的叶片,采用高通量测序技术测定其叶际细菌群落,同时,测定其叶片生理生化指标,以及生境内土壤理化性质。结果表明:鞘氨醇单胞菌属、马赛菌属、胺杆菌属等在6个分布区内银缕梅叶际丰度较高,而银缕梅叶际细菌群落结构则在不同分布区间存在显著差异,尤其是浙江省湖州市与其他地区明显不同。银缕梅叶际细菌群落多样性受分布区的纬度影响较大,而叶片生理生化指标和土壤理化性质对叶际细菌群落组成和多样性的影响更为显著。本研究报道了银缕梅叶际存在丰富的细菌类群,不同生境中银缕梅叶际细菌的群落组成和多样性存在明显差异,其主要受叶片防御物质、土壤养分等的调节。研究结果为稳定银缕梅“微生态”环境、强化物种保护提供了理论依据。


关键词: 银缕梅, 叶际细菌, 细菌多样性, 生物地理分布格局, 土壤理化性质

Abstract: Shaniodendron subaequale, a tertiary relict species endemic to China, is designated as a nationally protected wild plant species due to its significant evolutionary status bridging gymnosperms and angiosperms. The plant-associated microbiome is considered the second genome of plants. Phyllosphere bacteria significantly influence plant growth and environmental adaptability. The characteristics and geographical distribution patterns of the bacterial community in S. subaequale phyllosphere are unknown. This study aimed to investigate the composition and diversity of S. subaequale phyllosphere bacteria in its primary distribution areas, as well as the influences of geographical features, soil physical and chemical properties, and leaf physiological and biochemical indices on phyllosphere bacterial composition and diversity. Leaves of S. subaequale from six native sites were collected. The phyllosphere bacterial community was determined by high-throughput sequencing technology. Moreover, leaf physiological and biochemical indices and soil physical and chemical properties in each site were measured. The results revealed a high relative abundance of Sphingomonas, Massilia, and Amnibacterium in the phyllosphere of S. subaequale in all the six sites. Leaf bacterial composition was significantly distinct in different sites. In particular, the phyllosphere bacterial composition in plants from Huzhou City, Zhejiang Province was significantly different from that of other sites. The phyllosphere bacterial diversity was greatly affected by the latitude differences among the sites. However, the effects of leaf physiological and biochemical characteristics and soil physical and chemical properties on the bacterial composition and diversity in the phyllosphere of S. subaequale were more pronounced. This study reported the presence of a wide range of bacterial taxa in S. subaequale phyllosphere. Moreover, there were significant differences in the phyllosphere bacterial composition and diversity in S. subaequale across different sites, which were mainly regulated by leaf defense-related metabolites and soil nutrients. The results provide a theoretical basis for preserving the environment of microecology in S. subaequale and thus strengthening species conservation.


Key words: Shaniodendron subaequale, phyllosphere bacteriome, bacterial diversity, biogeographic distribution pattern, soil physical and chemical properties