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季节变化对沙漠生态系统中三个流域的潜水植物根系相关微生物群落的影响。

Impact of seasonal changes on root-associated microbial communities among phreatophytes of three basins in desert ecosystem.

作者信息

Zhang Yulin, Du Yi, Mu Zhaobin, Islam Waqar, Zeng Fanjiang, Gonzalez Norela C T, Zhang Zhihao

机构信息

Xinjiang Key Laboratory of Desert Plant Roots Ecology and Vegetation Restoration, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, China.

State Key Laboratory of Ecological Safety and Sustainable Development in Arid Lands, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, China.

出版信息

Front Plant Sci. 2025 Jul 4;16:1554879. doi: 10.3389/fpls.2025.1554879. eCollection 2025.

Abstract

Seasons often alter climate conditions and affect nutrient cycling by altering plant physiology and microbial dynamics. Plant growth and health depend on a symbiotic relationship with root microbes, however, the root-associated microbiota is key to plant evolution and ecosystem function. Seasonal changes in root-associated microbiome diversity and composition of desert plants are vital for understanding plant adaptation in desert ecosystems. We employed high-throughput sequencing to investigate the seasonal dynamics of root-associated microbial communities, including the root endosphere (RE), rhizosphere soil (RS), and bulk soil (BS), across three basins in Xinjiang, China: Turpan, Tarim, and Dzungaria. dominated bacterial communities in different seasons, while prevailed in fungi. The spring and summer conditions favor greater microbial differentiation. The RE, RS, and BS bacterial communities in May (spring) showed a noticeable absence of highly connected nodes within and between modules. However, the opposite trend was observed in July (summer) and September (autumn). The community assembly of root-associated microbiome (bacteria and fungi) in different seasons primarily followed a random process. Random forest analysis found that seasonal variations in RE bacterial communities were primarily influenced by scattered radiation, while fungal communities were mainly affected by soil available potassium. Environmental factors affect the BS bacterial community more than the fungal community across different seasons. A structural equation model revealed temperature and precipitation's direct effects on microbial communities, mediated by soil and root nutrient availability. Soil pH and EC predominantly affected root bacterial communities, not fungal communities. The fungal community within the RE was found to be directly influenced by seasonal shifts, whereas the RS fungal community composition was significantly impacted by changes in precipitation patterns driven by seasonal variation. The climate seems to be a crucial factor in influencing the dynamic of the root microbiome in desert plants, surpassing the influence of soil and root nutrient availability. This study underscores seasonal root-associated microbiome variations and their important roles in desert ecosystem functions.

摘要

季节常常会改变气候条件,并通过改变植物生理和微生物动态来影响养分循环。植物的生长和健康依赖于与根系微生物的共生关系,然而,根系相关微生物群是植物进化和生态系统功能的关键。沙漠植物根系相关微生物群落多样性和组成的季节性变化对于理解沙漠生态系统中的植物适应性至关重要。我们采用高通量测序技术,研究了中国新疆三个盆地(吐鲁番、塔里木和准噶尔)根系相关微生物群落的季节性动态,包括根内圈(RE)、根际土壤(RS)和非根际土壤(BS)。不同季节细菌群落占主导地位,而真菌则占优势。春季和夏季条件有利于更大程度的微生物分化。5月(春季)的RE、RS和BS细菌群落在模块内部和之间明显缺乏高度连接的节点。然而,在7月(夏季)和9月(秋季)观察到相反的趋势。不同季节根系相关微生物群落(细菌和真菌)的组装主要遵循随机过程。随机森林分析发现,RE细菌群落的季节性变化主要受散射辐射影响,并通过土壤和根系养分有效性介导。土壤pH值和电导率主要影响根系细菌群落,而不是真菌群落。发现RE内的真菌群落直接受季节变化影响,而RS真菌群落组成则受季节变化驱动的降水模式变化的显著影响。气候似乎是影响沙漠植物根系微生物动态的关键因素,超过了土壤和根系养分有效性的影响。本研究强调了季节性根系相关微生物群落的变化及其在沙漠生态系统功能中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1007/12272231/8fb137713912/fpls-16-1554879-g001.jpg

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