Opposite Response of DNA and RNA Viruses to Soil Warming and Implications for Microbial Functions

Soil viruses control the dynamics and metabolism of their hosts, strongly modifying carbon and nutrient cycling as well as soil biochemistry. Warming specifically affects viruses and their hosts, but the consequences of climate warming on the virus–host interactions, and for soil functions, remain unknown. We investigated the viral communities and the virus–host interactions under warming in situ based on a forest soil column translocation experiment. The abundance of the Petitvirales (DNA viruses) decreased by 25%, but that of the Durnavirales and Martellivirales (RNA viruses) strongly increased. The DNA viral lysogenic signals and RNA viral lytic proteins increased in soil, indicating the opposite lifestyles of DNA and RNA viruses. Correspondingly, the DNA abundance of viral hosts increased, whereas RNA viral hosts remained stable. The high DNA viruses/host ratios reflect very intensive interactions between the virus and host, leading to the drop in the host functions (such as carbon metabolism processes and nitrogen and phosphorus cycles) up to 43%. In contrast, the functions of the hosts for RNA viruses increased by up to 48%. The fundamental difference in behaviour of DNA and RNA viruses is that the former use mainly lysogenic, whereas the latter lytic, lifestyles and thus control the responses of host communities to warming. Conclusively, the opposite response of DNA and RNA viruses to warming in abundance, lifestyle, and interactions with hosts leads to divergent changes in nutrient fluxes in soil. These new perspectives on viral regulations of microbial communities and their function under soil warming reveal the undeniable role of viruses in microbial ecology.

Авторы
Zhao Xue1, 2 , Zhao Fazhu1, 2, 3, 4 , Wang Jieying1, 2, 5 , He Liyuan6 , Chen Ji7 , Ren Chengjie8 , Guo Yaoxin9 , Wang Jun1, 2, 3, 10 , Zhou Sha11 , Kuzyakov Yakov 12, 13
Издательство
Blackwell Publishing Ltd
Номер выпуска
4
Язык
Английский
Статус
Опубликовано
Том
76
Год
2025
Организации
  • 1 College of Urban and Environmental Sciences Northwest University Xi'an Shaanxi China
  • 2 Shaanxi Key Laboratory of Earth Surface System and Environmental Carrying Capacity Northwest University Xi'an Shaanxi China
  • 3 Carbon Neutrality College (Yulin) Northwest University Xi'an Xi'an Shaanxi China
  • 4 Shaanxi Xi'an Urban Ecosystem National Observation and Research Station National Forestry and Grassland Administration Xi'an China
  • 5 The Institute of Natural Resources and Agrobiology of Seville (IRNAS), Superior Council of Scientific Investigations (CSIC) Sevilla Spain
  • 6 Environmental Sciences Division and Climate Change Science Institute, Oak Ridge National Laboratory Oak Ridge Tennessee USA
  • 7 State Key Laboratory of Loess and Quaternary Geology Institute of Earth Environment, Chinese Academy of Sciences Xi'an China
  • 8 College of Agronomy Northwest A&amp
  • 9 The College of Life Sciences Northwest University Xi'an Shaanxi China
  • 10 State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau Institute of Soil and Water Conservation, Chinese Academy of Sciences and Ministry of Water Resources Yangling China
  • 11 Xi'an Botanical Garden of Shaanxi Province (Institute of Botany of Shaanxi Province) Xi'an China
  • 12 Department of Soil Science of Temperate Ecosystems, Department of Agricultural Soil Science University of Goettingen Göttingen Germany
  • 13 Peoples Friendship University of Russia (RUDN University) Moscow Russia
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