数字农科院2.0

Soil Properties Rather Than Climate And Ecosystem Type Control The Vertical Variations Of Soil Organic Carbon, Microbial Carbon, And Microbial Quotient

文献类型: 外文期刊

作者: Sun, TT; Wang, YG; Hui, DF; Jing, X; Feng, WT

作者机构:

关键词: Global; Soil Texture; Soil Day Content; Soil C/N Ratio; Random Forest Modeling; Spatial Variation; Geographical Pattern

期刊名称: SOIL BIOLOGY & BIOCHEMISTRY

ISSN: 0038-0717

年卷期: 2020 年 148 卷

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: Small changes in soil organic carbon (SOC) may have great influences on the climate-carbon (C) cycling feedback. However, there are large uncertainties in predicting the dynamics of SOC in soil profiles at the global scale, especially on the role of soil microbial biomass in regulating the vertical distribution of SOC. Here, we developed a database of soil microbial biomass carbon (SMBC), SOC, and soil microbial quotient (SMQ = SMBC/SOC) from 289 soil profiles globally, as well as climate, ecosystem types, and edaphic factors associated with these soil profiles. We assessed the vertical distribution patterns of SMBC and SMQ and the contributions of climate, ecosystem type, and edaphic condition to their vertical patterns. Our results showed that SMBC and SMQ decreased exponentially with soil depth, especially within the 0-40 cm soil depth. SOC also decreased exponentially with depth but in different magnitudes compared to SMBC and SMQ. Edaphic factors (e.g., soil clay content and C/N ratio) had the strongest control on the vertical distributions of SMBC and SMQ, probably by mediating substrate and nutrient supplies for microbial growth in soils. Mean annual temperature and ecosystem types (Le., forests, grasslands, and croplands) had weak influences on SMBC and SMQ. In contrast, the vertical distribution of SOC was significantly affected by climate and edaphic factors. Climate and ecosystem types likely simultaneously affected multiple factors that control SMBC, such as the distribution of soil clay and nutrients along soil profiles. Overall, our data synthesis provides quantitative information of how SMBC, SMQ, and SOC changed along soil profiles at large spatial scales and identifies important factors that influence their vertical distributions. The findings can help improve the prediction of C cycling in terrestrial ecosystems by incorporating the contribution of soil microbes in Earth system models.

分类号:

  • 相关文献

[1]长江经济带农业绿色生产效率及其时空分异特征研究. 肖琴,周振亚,罗其友. 2020

[2]GLOBAL WATER VAPOR CONTENT AND VEGETATION CHANGE ANALYSIS BASED ON REMOTE SENSING DATA. Mao, K. B.,Ma, Y.,Zuo, Z. Y.,Liu, Q.,Mao, K. B.,Mao, K. B.,Jiao, Y. Q.,Mao, K. B.,Ma, Y.,Wang, F.,Sun, Z. W.. 2016

[3]WHICH YEAR IS THE HOTTEST OR COLDEST FROM 2001 TO 2012 BASED ON REMOTE SENSING DATA. Mao, K. B.,Ma, Y.,Zuo, Z. Y.,Liu, Q.,Mao, K. B.,Mao, K. B.,Wang, F.,Mao, K. B.,Ma, Y.,Jiao, Y. Q.,Shen, X. Y.. 2016

[4]Generating global crop distribution maps: From census to grid. You, Liangzhi,You, Liangzhi,Wood-Sichra, Ulrike,Wood, Stanley,Wu, Wenbin. 2014

[5]Global surface temperature change analysis based on MODIS data in recent twelve years. Mao, K. B.,Ma, Y.,Li, Z. L.,Mao, K. B.,Liu, G.,Mao, K. B.,Liu, G.,Tan, X. L.,Shen, X. Y.,Chen, J. M.,Xia, L.,Mao, K. B.,Ma, Y..

[6]Analysis Of The Inhibitory Effects O.f Chloropicrin Fumigation On N itrification In Various Soil Types. Ouyang, Canbin,Wang, Qiuxia,Yan, Dongdong,Cao, Aocheng,Guo, Meixia,Li, Yuan. 2017

[7]Attribution Of Explanatory Factors For C.hange In Soil Organic C arbon Density In The Native Grasslands Of Inner Mongolia, China. Jin, DY, Murray, PJ, Xin, XP, Qin, YF, Chen, BR, Qing, GL, Zhang, Z, Yan, RR. 2018

[8]Grazing Altered Carbon Exchange In A. Dry Mixed-Grass Prairie A s A Function Of Soil Texture. Thomas, BW, Gao, XL, Zhao, ML, Bork, EW, Hao, XY. 2018

[9]Divergent vertical distributions of microbial biomass with soil depth among groups and land uses. Sun Tingting,Wang Yugang,Lucas-Borja Manuel Esteban,Jing Xin,Feng Wenting. 2021

[10]Spatial Variation Of Attainable Yield A.nd Fertilizer Requirements For M aize At The Regional Scale In China. Xu, XP, He, P, Zhang, JJ, Pampolino, MF, Johnston, AM, Zhou, W. 2017

[11]Two-Dimensional Monitoring Of Soil Water C.ontent In Fields With P lastic Mulching Using Electrical Resistivity Tomography. Chen, BQ, Garre, S, Liu, HT, Yan, CR, Liu, EK, Gong, DZ, Mei, XR. 2019

[12]Modelling Soil Water Dynamic In R.ain-Fed Spring Maize Field W ith Plastic Mulching. Chen, BQ, Liu, EK, Mei, XR, Yan, CR, Garre, S. 2018

[13]Impacts Of The North Migration O.f China'S Rice Production O n Its Ecosystem Service Value During The Last Three Decades (1980-2014). Fang, FP, Feng, JF, Li, FB, Peng, SB. 2017

[14]Temporal And Spatial Heterogeneity Of D.rought Impact On Vegetation G rowth On The Inner Mongolian Plateau. Miao, BL, Li, ZY, Liang, CZ, Wang, LX, Jia, CZ, Bao, FX, Jiang, C. 2018

[15]Spatial patterns and driving factors of aboveground and belowground biomass over the eastern Eurasian steppe. Ding L., Li Z., Shen B., Wang X., Xu D., Yan R., Yan Y., Xin X., Xiao J., Li M., Wang P.. 2022

[16]Spatial Variation Of Technical Efficiency Of Cereal Production In China At The Farm Level. Zhou, WB, Wang, HY, Hu, X, Duan, FY. 2021

作者其他论文 更多>>