Soil fungal communities show more specificity than bacteria for plant species composition in a temperate forest in China

Wang KB, Zhang YW, Tang ZS, Shangguan ZP, Chang F, Jia FA, et al. Effects of grassland afforestation on structure and function of soil bacterial and fungal communities. Sci Total Environ. 2019;676:396–406.

CAS  PubMed  Article  Google Scholar 

Manuel EL, Manuel D. Plant diversity and soil stoichiometry regulates the changes in multifunctionality during pine temperate forest secondary succession. Sci Total Environ. 2019;697:134204.

Article  CAS  Google Scholar 

Liu L, Zhu K, Krause SMB, Li S, Wang X, Zhang Z, et al. Changes in assembly processes of soil microbial communities during secondary succession in two subtropical forests. Soil Biol Biochem. 2021;154:108144.

CAS  Article  Google Scholar 

Meisner A, De Deyn GB, de Boer W, van der Putten WH. Soil biotic legacy effects of extreme weather events influence plant invasiveness. P Natl Acad Sci USA. 2013;110(24):9835–8.

CAS  Article  Google Scholar 

Kröel-Dulay G, Ransijn J, Schmidt IK, Beier C, De Angelis P, de Dato G, et al. Increased sensitivity to climate change in disturbed ecosystems. Nat Commun. 2015;6(1):1–7.

Article  CAS  Google Scholar 

Kaisermann A, de Vries FT, Griffiths RI, Bardgett RD. Legacy effects of drought on plant-soil feedbacks and plant-plant interactions. New Phytol. 2017;215(4):1413–24.

CAS  PubMed  Article  Google Scholar 

Geisen S, Heinen R, Andreou E, van Lent T, Ten HFC, Thakur MP. Contrasting effects of soil microbial interactions on growth-defence relationships between early- and mid-successional plant communities. New Phytol. 2021;233(3):1345–57.

PubMed  PubMed Central  Article  CAS  Google Scholar 

Mangan SA, Schnitzer SA, Herre EA, Mack KML, Valencia MC, Sanchez EI, et al. Negative plant-soil feedback predicts tree-species relative abundance in a tropical forest. Nature. 2010;466(7307):710–52.

Article  CAS  Google Scholar 

Kyle EH, Richard C, Stephen PH, Robin BF. Habitat Associations of Trees and Shrubs in a 50-Ha Neotropical Forest Plot. J Ecol. 2001;89(6):947–59.

Article  Google Scholar 

Nathan JBK, Renato V, David DA. Functional Traits and Niche-Based Tree Community Assembly in an Amazonian Forest. Science. 2008;322(5901):580–2.

Article  CAS  Google Scholar 

Benjamin B. Hypervolume concepts in niche- and trait-based ecology. Ecography. 2018;41(9):1441–55.

Article  Google Scholar 

Jonathan S. Plant coexistence and the niche. Trends Ecol Evol. 2004;19(11):605–11.

Article  Google Scholar 

Griffin EA, Traw MB, Morin PJ, Pruitt JN, Wright SJ, Carson WP. Foliar bacteria and soil fertility mediate seedling performance: a new and cryptic dimension of niche differentiation. Ecology. 2016;97(11):2998–3008.

PubMed  Article  Google Scholar 

Griffin EA, Wright SJ, Morin PJ, Carson WP. Pervasive interactions between foliar microbes and soil nutrients mediate leaf production and herbivore damage in a tropical forest. New Phytol. 2017;216(1):99–112.

PubMed  Article  Google Scholar 

Chen Y, Yuan Z, Bi S, Wang X, Ye Y, Svenning J. Macrofungal species distributions depend on habitat partitioning of topography, light, and vegetation in a temperate mountain forest. Sci Rep-UK. 2018;8(1):1–13.

Google Scholar 

Chen Y, Shao Y, Xi J, Yuan Z, Ye Y, Wang T. Community Preferences of Woody Plant Species in a Heterogeneous Temperate Forest China. Front Ecol Evol. 2020;8:165.

Article  Google Scholar 

Jens-Christian S. Microhabitat Specialization in a Species-Rich Palm Community in Amazonian Ecuador. J Ecol. 1999;87(1):55–65.

Article  Google Scholar 

Guo Y, Li D, Wang B, He Y, Xiang W, Jiang Y, et al. Composition and spatio-temporal dynamics of litter fall in a northern tropical karst seasonal rainforest in Nonggang, Guangxi, southern China. Biodiversity Sci. 2017;25(3):265.

Article  Google Scholar 

Comita LS, Condit R, Hubbell SP. Developmental Changes in Habitat Associations of Tropical Trees. J Ecol. 2007;95(3):482–92.

Article  Google Scholar 

Lai J, Mi X, Ren H, Ma K. Species-Habitat Associations Change in a Subtropical Forest of China. J Veg Sci. 2009;20(3):415–23.

Article  Google Scholar 

Yuan Z, Gazol A, Wang X, Xing D, Lin F, Bai X, et al. What happens below the canopy? Direct and indirect influences of the dominant species on forest vertical layers. Oikos. 2012;121(7):1145–53.

Article  Google Scholar 

Jia H, Chen Y, Wang X, Li P, Yuan Z, Ye Y. The Relationships among Topographically-driven Habitats, Dominant Species and Vertical Layers in Temperate Forest in China. Russ J Ecol. 2019;50(2):172–86.

Article  Google Scholar 

Valerie TE. Plant Traits That Influence Ecosystem Processes Vary Independently among Species. Ecology. 2004;85(8):2215–29.

Article  Google Scholar 

De Deyn GB, Cornelissen JHC, Bardgett RD. Plant functional traits and soil carbon sequestration in contrasting biomes. Ecol Lett. 2008;11(5):516–31.

PubMed  Article  Google Scholar 

Sun HZ. Microbial community Characteristics of different forest types and their relationship with environmental factors in permafrost region of Daxing’anling. China: Harbin Normal University; 2019.

Su L, Cheng A, Lin Y, Fu W, Zheng P. Investigation on mycorrhizae of forest trees in natural Reserve of mount tianmu. J Zhejiang For Coll. 1992;9:263–76.

Google Scholar 

Powell JR, Karunaratne S, Campbell CD, Yao H, Robinson L, Singh BK. Deterministic processes vary during community assembly for ecologically dissimilar taxa. Nat Commun. 2015;6(1):1–10.

CAS  Article  Google Scholar 

Franciska TDV, Rob IG, Mark B, Hayley C, Mariangela G, Hyun SG, et al. Soil bacterial networks are less stable under drought than fungal networks. Nat Commun. 2018;9(1):1–12.

Article  CAS  Google Scholar 

Bapiri A, Bååth E, Rousk J. Drying-rewetting cycles affect fungal and bacterial growth differently in an arable soil. Microb Ecol. 2010;60(2):419–28.

PubMed  Article  Google Scholar 

Franciska TDV, Mira EL, Lisa B, Matthew AB, Søren C, Heikki MS, et al. Land use alters the resistance and resilience of soil food webs to drought. Nat Clim Change. 2012;2(4):276–80.

Article  Google Scholar 

Barnard RL, Osborne CA, Firestone MK. Responses of soil bacterial and fungal communities to extreme desiccation and rewetting. ISME J. 2013;7(11):2229–41.

CAS  PubMed  PubMed Central  Article  Google Scholar 

de Vries FT, Shade A. Controls on soil microbial community stability under climate change. Front Microbiol. 2013;4:265.

PubMed  PubMed Central  Article  Google Scholar 

Bi H, Wang B, Yang H, Feng J, Zheng J, Gao X. Study on the dynamic change of the tree layer biomass of the community Quercus aliena var. acutiserrata-Pinus armandii of Baiyunshan Mountain in Henan Province. J Henan Agric Univ. 2014;48(06):736–40.

Google Scholar 

Lin B. Overview of Baiyun Mountain National Forest Park. Henan forestry. 1999;02:40.

Google Scholar 

Xu C, Chen Z, Hao C, Ding X. Research on the correlation between plant species diversity and its main environmental factors of Mt. Baiyunshan in the transitional region from warm temperate zone to subtropical zone. Ecol Enviro Sci. 2014;23(03):371–6.

Google Scholar 

Chen Y, Guo L, Yao C, Wei B, Yuan Z, Ye Y, et al. Community characteristics of a deciduous broad-leaved forest in a temperatesubtropical ecological transition zone: Analyses of a 5-hm2 forest dynamics plot in Baiyunshan Nature Reserve. Henan Provinc Acta Ecol Sin. 2017;37(17):5602–11.

Google Scholar 

Li L, Yang H, Wang J, Qin Y, Fu Q. Species Structure and Diversity of Plant Community of Luhua Valley in Baiyun Mountain of Henan Province. J Hunan Agric Univ. 2017;10:44–7.

Google Scholar 

Zhao A, Zhang J, Zhang S, Jiao Z. Soil bacterial diversity in the Baotianman deciduous broad-leaved forest. Biodiversity Sci. 2015;23(5):649–57.

Article  Google Scholar 

Zhang N, Li Y, Wubet T, Bruelheide H, Liang Y, Purahong W, et al. Tree species richness and fungi in freshly fallen leaf litter: Unique patterns of fungal species composition and their implications for enzymatic decomposition. Soil Biol Biochem. 2018;127:120–6.

CAS  Article  Google Scholar 

Kõljalg U, Nilsson RH, Abarenkov K, Tedersoo L, Taylor AFS, Bahram M, et al. Towards a unified paradigm for sequence-based identification of fungi. Mol Ecol. 2013;22(21):5271–7.

PubMed  Article  CAS  Google Scholar 

Magoč T, Salzberg SL. FLASH: fast length adjustment of short reads to improve genome assemblies. Bioinformatics (Oxford, England). 2011;27(21):2957–63.

Article  CAS  Google Scholar 

Ma H, Wen Y, Han Y, Li S. Correlations between Light Distribution of the Crown Layer and Natural Regeneration of Fraxinus mandshurica. J Northwest Forestry Univ. 2021;36(02):97–101.

Google Scholar 

Lu N, Xu X, Wang P, Zhang P, Ji B, Wang X. Succession in arbuscular mycorrhizal fungi can be attributed to a chronosequence of Cunninghamia lanceolata. Sci Rep-UK. 2019;9(1):1–12.

Article  CAS  Google Scholar 

Zhang J, He P, Liu Y. Du Wei, Jing H, Nie C: Soil properties and microbial abundance explain variations in N2O fluxes from temperate steppe soil treated with nitrogen and water in Inner Mongolia. China Appl Soil Ecol. 2021;165:103984.

Article  Google Scholar 

Yang G, Ma Y, Jiang B, Ma H, Li Y. Analysis of the bacterial community and diversity in tea plantation soil via 16S rDNA sequencing. Acta Ecol Sin. 2019;39(22):8452–61.

CAS  Google Scholar 

Sui X, Zhang R, Frey B, Yang L, Li M, Ni H. Land use change effects on diversity of soil bacterial, Acidobacterial and fungal communities in wetlands of the Sanjiang Plain, northeastern China. Sci Rep-UK. 2019;9(1):1–14.

CAS  Article  Google Scholar 

Magurran AE, Henderson PA. Explaining the excess of rare species in natural species abundance distributions. Nature. 2003;422(6933):714–6.

CAS  PubMed  Article  Google Scholar 

Jiao S, Yang Y, Xu Y, Zhang J, Lu Y. Balance between community assembly processes mediates species coexistence in agricultural soil microbiomes across eastern China. ISME J. 2020;14(1):202–16.

PubMed  Article  Google Scholar 

Mo Y, Peng F, Gao X, Xiao P, Logares R, Jeppesen E, et al. Low shifts in salinity determined assembly processes and network stability of microeukaryotic plankton communities in a subtropical urban reservoir. Microbiome. 2021;9(1):1–17.

Article  CAS 

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