Microbial rrn copy number is associated with soil C: N ratio and pH under long-term fertilization

Soil microbial life-history strategies, as indicated by rRNA operon (rrn) copy numbers, strongly influence agro-ecosystem functioning. Long-term N fertilization causes strong and lasting changes in soil properties, yet its impact on microbial strategies remains largely unexplored. Using long-term field experiments across three agro-ecosystems, we consistently found that N fertilization strongly decreased soil C: N ratio and pH, further increasing the community-level rrn copy number, including both average rrn copy number and total 16S rRNA copy number. Soil C: N stoichiometry balanced by N supplement favored the growth of N-dependent copiotrophic species containing high rrn copy numbers (an average of 2.5) and increased their network connections, predominantly contributing to community-level rrn copy number increase. Decreased soil pH caused by N fertilization also favored the growth of some species whose abundances negatively correlated with pH, partially contributing to the community-level rrn copy number increase. By examining the genomes of two dominant species, we found that microorganisms with a higher rrn copy number (6), e.g., Streptomyces scabiei, possessed more genes related to C and N transport and metabolism. In contrast, the Mycobacterium simiae with a lower rrn copy number (1) has more genes associated with secondary metabolite biosynthesis and lipid transport and metabolism. Our finding challenges the concept of microbial life-strategy regulation solely by nutrient availability, highlighting the important contributions of soil stoichiometric balance and pH to microbial strategies in agro-ecosystems under long-term N inputs. © 2024 Elsevier B.V., All rights reserved.

Авторы
Wang Xiu 1, 2 , Lin Jiahui 1, 2 , Peng Xinyi 1, 2 , Zhao Yifan 1, 2 , Yu Haodan 1, 2 , Zhao Kankan 1, 2 , Barberán Albert 3 , KUZYAKOV Yakov V. 4, 5, 6 , Dai Zhongming 1, 2, 7
Издательство
Elsevier Science Publishing Company, Inc.
Язык
English
Статус
Published
Номер
176675
Том
954
Год
2024
Организации
  • 1 Institute of Soil and Water Resources and Environmental Science, College of Environmental and Resource Sciences Zhejiang University, Hangzhou, China
  • 2 Key Laboratory of Zhejiang Province Agricultural Resources and Environment, Hangzhou, China
  • 3 Department of Environmental Sciences, The University of Arizona, Tucson, United States
  • 4 Department of Agricultural Soil Science, Georg-August-Universität Göttingen, Gottingen, Germany
  • 5 RUDN University, Moscow, Russian Federation
  • 6 Institute of Environmental Sciences, Kazan Federal University, Kazan, Russian Federation
  • 7 China Academy for Rural Development, Zhejiang University, Hangzhou, China
Ключевые слова
Long-term; Nutrient input; pH; Rrn copy number; Stoichiometry
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