Long-term cultivation of grass-legume mixtures changed the assembly process of the microbial community and increased microbial community stability.

IF 5.1 Q1 ECOLOGY
ISME communications Pub Date : 2024-12-12 eCollection Date: 2025-01-01 DOI:10.1093/ismeco/ycae157
Huilin Yan, Xin Jin, Xueli Zhou, Songsong Gu, Xuexia Wu, Ping Li, Dejun Shi, Hanjiang Liu, Guangxin Lu, Ye Deng
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Abstract

Grass-legume mixtures are a common cultivation system on the Qinghai-Tibet Plateau, where the interactions between rhizosphere microorganisms and crops under long-term cultivation are complex and dynamic. Investigating the dynamic changes in microbial community structure and ecological functions is essential. This study investigated the dynamic interactions of rhizosphere microbial communities of Elymus nutans Griseb. cv. Aba and Medicago sativa L. cv. Beilin in a grass-legume mixture at a 1:1 ratio >4 years on the Qinghai-Tibet Plateau. The research focused on their long-term effects on plant productivity, soil health, and microbial functions. The results revealed a decline in grass yield and soil properties in the fourth year (P < .05) and significant year-to-year differences in bacterial α-diversity (P < .05). Molecular ecological network analysis showed greater stability in the bacterial network of legumes in the first year, with reduced robustness by the fourth year. Additionally, the average niche widths of bacterial and fungal communities were narrower in the first year than in the fourth, indicating microbial adaptation to the evolving environmental conditions within the mixture system. The transition of bacterial community assembly processes from stochastic to deterministic suggests a shift toward more structured and predictable microbial interactions over time. In conclusion, the results highlight the intricate interplay between plant productivity, soil health, microbial community dynamics, and ecosystem stability under long-term planting of grass-legume mixtures. Our results provide new insights into biomass changes and microbial dynamics in this planting system.

长期种植草豆科植物改变了微生物群落的组装过程,提高了微生物群落的稳定性。
草豆科混作是青藏高原常见的一种栽培系统,长期栽培下根际微生物与作物之间的相互作用是复杂的、动态的。研究微生物群落结构和生态功能的动态变化是必要的。研究了羊草根际微生物群落的动态相互作用。简历。紫花苜蓿与Aba的关系。青藏高原以1:1的比例在草豆科植物混合物中培林4年。研究重点是它们对植物生产力、土壤健康和微生物功能的长期影响。结果表明,第4年牧草产量和土壤性质下降
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