A Drying-Rewetting Cycle Imposes More Important Shifts on Soil Microbial Communities than Does Reduced Precipitation

被引:12
|
作者
Wang, Xiao-Bo [1 ,2 ,3 ,5 ]
Azarbad, Hamed [4 ]
Leclerc, Laura [3 ]
Dozois, Jessica [3 ]
Mukula, Eugenie [3 ]
Yergeau, Etienne [3 ]
机构
[1] Lanzhou Univ, Ctr Grassland Microbiome, State Key Lab Grassland Agroecosyst, Lanzhou, Peoples R China
[2] Lanzhou Univ, Coll Pastoral Agr Sci & Technol, Lanzhou, Peoples R China
[3] Inst Natl Rech Sci, Ctr Armand Frappier Sante Biotechnol, Laval, PQ, Canada
[4] Philipps Univ Marburg, Dept Biol Evolutionary Ecol Plants, Marburg, Germany
[5] Chinese Acad Sci, Inst Appl Ecol, Erguna Forest Steppe Ecotone Res Stn, Shenyang, Peoples R China
关键词
soil microbes; bacterial and fungal diversity; community assembly; rainfall; dry-rewet events; wheat cultivar; agroecosystems; global change; microbial diversity; precipitation; CLIMATE-CHANGE; CARBON; BACTERIAL; RESPONSES; WATER; DIVERSITY; DROUGHT; PULSES; AVAILABILITY; RESPIRATION;
D O I
10.1128/msystems.00247-22
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Global changes will result in altered precipitation patterns, among which the increasing frequency of drought events has the highest deleterious potential for agriculture. Soil microbes have shown some promise to help crops adapt to drought events, but it is uncertain how crop-associated microorganisms will respond to altered precipitation patterns. To investigate this matter, we conducted a field experiment where we seeded two wheat cultivars (one resistant to water stress and the other sensitive) that were subjected to four precipitation exclusion (PE) regimes (0%, 25%, 50%, and 75% exclusion). These cultivars were sampled seven times (every 2 weeks, from May to August) within one growing season to investigate short-term microbiome responses to altered precipitation regimes and seasonality using 16S rRNA gene and internal transcribed spacer (ITS) region amplicon sequencing. One of the most striking features of the data set was the dramatic shift in microbial community diversity, structure, and composition together with a doubling of the relative abundance of the archaeal ammonia oxidizer genus Nitrososphaera following an important drying-rewetting event. Comparatively small but significant effects of PE and wheat cultivar on microbial community diversity, composition, and structure were observed. Taken together, our results demonstrate an uneven response of microbial taxa to decreasing soil water content, which was dwarfed by drying-rewetting events, to which soil bacteria and archaea were more sensitive than fungi. Importantly, our study showed that an increase in drying-rewetting cycles will cause larger shifts in soil microbial communities than a decrease in total precipitation, suggesting that under climate changes, the distribution of precipitation will be more important than small variations in the total quantity of precipitation. IMPORTANCE Climate change will have a profound effect on the precipitation patterns of global terrestrial ecosystems. Seasonal and interannual uneven distributions of precipitation will lead to increasing frequencies and intensities of extreme drought and rainfall events, which will affect crop productivity and nutrient contents in various agroecosystems. However, we still lack knowledge about the responses of soil microbial communities to reduced precipitation and drying-rewetting events in agroecosystems. Our results demonstrated an uneven response of the soil microbiome and a dramatic shift in microbial community diversity and structure to a significant drying-rewetting event with a large increase in the relative abundance of archaeal ammonia oxidizers. These findings highlight the larger importance of rewetting of dry soils on microbial communities, as compared to decreased precipitation, with potential for changes in the soil nitrogen cycling.
引用
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页数:18
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  • [1] Response of Microbial Communities and Their Metabolic Functions to Drying-Rewetting Stress in a Temperate Forest Soil
    Liu, Dong
    Keiblinger, Katharina M.
    Leitner, Sonja
    Wegner, Uwe
    Zimmermann, Michael
    Fuchs, Stephan
    Lassek, Christian
    Riedel, Katharina
    Zechmeister-Boltenstern, Sophie
    [J]. MICROORGANISMS, 2019, 7 (05):
  • [2] Impact of soil drying-rewetting stress microbial communities and activities and on degradation of two crop protection products
    Pesaro, M
    Nicollier, G
    Zeyer, J
    Widmer, F
    [J]. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2004, 70 (05) : 2577 - 2587
  • [3] Soil microbial community response to drying and rewetting stress: does historical precipitation regime matter?
    Sarah E. Evans
    Matthew D. Wallenstein
    [J]. Biogeochemistry, 2012, 109 : 101 - 116
  • [4] Soil microbial community response to drying and rewetting stress: does historical precipitation regime matter?
    Evans, Sarah E.
    Wallenstein, Matthew D.
    [J]. BIOGEOCHEMISTRY, 2012, 109 (1-3) : 101 - 116
  • [5] Disturbance is more important than seeding or grazing in determining soil microbial communities in a semiarid grassland
    Farrell, Hannah L.
    Barberan, Albert
    Danielson, Rachel E.
    Fehmi, Jeffrey S.
    Gornish, Elise S.
    [J]. RESTORATION ECOLOGY, 2020, 28 : S335 - S343
  • [6] Space Is More Important than Season when Shaping Soil Microbial Communities at a Large Spatial Scale
    Zhang, Kaoping
    Delgado-Baquerizo, Manuel
    Zhu, Yong-Guan
    Chu, Haiyan
    [J]. MSYSTEMS, 2020, 5 (03)