Automated Author Profile

Xiang, Wenhua

Current S-Index

2.3

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.3

Average Dataset Index per dataset

Total Datasets

8

Total datasets for this author

Average FAIR Score

60.6%

Average FAIR Score per dataset

Total Citations

0

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

The data of " Mycorrhizal types and leaf habits co-regulate soil organic carbon in subtropical forests"

Forest soil organic carbon (SOC) constitutes a critical component of the terrestrial carbon pool. While the two tree characteristics [arbuscular mycorrhizal (AM) and ectomycorrhizal (ECM)] and the leaf habits (e.g. evergreen vs. deciduous) are known to significantly influence soil carbon cycling. The combined effects of mycorrhizal types and leaf habits on SOC accumulation in subtropical forests are poorly understood. To elucidate the relative importance of mycorrhizal types and leaf habits on SOC accumulation and its drivers, we sampled soil at four subtropical forests, representing distinct mycorrhizal-leaf habits combinations: evergreen ECM-associated, evergreen AM-associated, deciduous ECM-associated and deciduous AM-associated forests. Our results showed that both mycorrhizal types and leaf habits significantly influenced SOC accumulation. ECM-evergreen forests exhibited the highest SOC stocks, primarily driven by enhanced particulate organic carbon accumulation, together with elevated extracellular enzyme activities and a higher ratio of fungi to bacteria (F/B), consistent with a slow-decomposition strategy. In contrast, AM-associated and deciduous forests promoted a greater proportion of mineral-associated organic carbon, reflecting faster microbial turnover and more efficient microbial–mineral stabilization. Leaf habits modulated mycorrhizal effects, attenuating differences between AM and ECM forests. Our work elucidated how mycorrhizal types and leaf habits co-shape SOC accumulation in subtropical forests, offering valuable scientific insights for species selection in forest management strategies focused on carbon accumulation.

Authors

  • Jiang, Wanting ;
  • Zhang, Rui ;
  • Xiang, Wenhua ;
  • Fang, Xi ;
  • Deng, Xiangwen ;
  • Chen, Liang ;
  • Lei, Pifeng ;
  • Zeng, Yeilin ;
  • Hu, Yanting ;
  • Wu, Huili ;
  • Hu, Baoan ;
  • Ouyang, Shuai
0 Citations0 Mentions69% FAIR0.4 Dataset Index
10.17632/cxd6z6kdph2026

The data of " Mycorrhizal types and leaf habits co-regulate soil organic carbon in subtropical forests"

Forest soil organic carbon (SOC) constitutes a critical component of the terrestrial carbon pool. While the two tree characteristics [arbuscular mycorrhizal (AM) and ectomycorrhizal (ECM)] and the leaf habits (e.g. evergreen vs. deciduous) are known to significantly influence soil carbon cycling. The combined effects of mycorrhizal types and leaf habits on SOC accumulation in subtropical forests are poorly understood. To elucidate the relative importance of mycorrhizal types and leaf habits on SOC accumulation and its drivers, we sampled soil at four subtropical forests, representing distinct mycorrhizal-leaf habits combinations: evergreen ECM-associated, evergreen AM-associated, deciduous ECM-associated and deciduous AM-associated forests. Our results showed that both mycorrhizal types and leaf habits significantly influenced SOC accumulation. ECM-evergreen forests exhibited the highest SOC stocks, primarily driven by enhanced particulate organic carbon accumulation, together with elevated extracellular enzyme activities and a higher ratio of fungi to bacteria (F/B), consistent with a slow-decomposition strategy. In contrast, AM-associated and deciduous forests promoted a greater proportion of mineral-associated organic carbon, reflecting faster microbial turnover and more efficient microbial–mineral stabilization. Leaf habits modulated mycorrhizal effects, attenuating differences between AM and ECM forests. Our work elucidated how mycorrhizal types and leaf habits co-shape SOC accumulation in subtropical forests, offering valuable scientific insights for species selection in forest management strategies focused on carbon accumulation.

Authors

  • Jiang, Wanting ;
  • Zhang, Rui ;
  • Xiang, Wenhua ;
  • Fang, Xi ;
  • Deng, Xiangwen ;
  • Chen, Liang ;
  • Lei, Pifeng ;
  • Zeng, Yeilin ;
  • Hu, Yanting ;
  • Wu, Huili ;
  • Hu, Baoan ;
  • Ouyang, Shuai
0 Citations0 Mentions69% FAIR0.4 Dataset Index
10.17632/cxd6z6kdph.12026

data_.xlsx

Based on a dataset of 150 forest plots in subtropical China, we examined the relationship between forest dead fuel loading and stand and topographic factors.

Authors

  • Liang, Sheng ;
  • Deng, Xiangwen ;
  • Wang, Yiying ;
  • Zeng, Xiaolin ;
  • Hu, Hongmei ;
  • Long, Jun ;
  • Li, Ziming ;
  • Ouyang, Shuai ;
  • Xiang, Wenhua
0 Citations0 Mentions15% FAIR0.1 Dataset Index
10.6084/m9.figshare.24711663.v12023

<b>Variations and estimation models of dead fuel loading at five typical forest ecosystems in</b><b>the middle subtropical area</b>

Based on a dataset of 150 forest plots in subtropical China, we examined the relationship between forest dead fuel loading and stand and topographic factors.

Authors

  • Liang, Sheng ;
  • Deng, Xiangwen ;
  • Wang, Yiying ;
  • Zeng, Xiaolin ;
  • Hu, Hongmei ;
  • Long, Jun ;
  • Li, Ziming ;
  • Ouyang, Shuai ;
  • Xiang, Wenhua
0 Citations0 Mentions15% FAIR0.1 Dataset Index
10.6084/m9.figshare.247116632023

<b>Variations and estimation models of dead fuel loading at five typical forest ecosystems in</b><b>the middle subtropical area</b>

Based on a dataset of 150 forest plots in subtropical China, we examined the relationship between forest dead fuel loading and stand and topographic factors.

Authors

  • Liang, Sheng ;
  • Deng, Xiangwen ;
  • Wang, Yiying ;
  • Zeng, Xiaolin ;
  • Hu, Hongmei ;
  • Long, Jun ;
  • Li, Ziming ;
  • Ouyang, Shuai ;
  • Xiang, Wenhua
0 Citations0 Mentions85% FAIR0.7 Dataset Index
10.6084/m9.figshare.24711663.v22023

Data_Dryad (Version: 1)

No description available

Authors

  • Ouyang, Shuai ;
  • Xiang, Wenhua ;
  • Wang, Xiangping ;
  • Xiao, Wen-Fa ;
  • Chen, Liang ;
  • Li, Shenggong ;
  • Sun, Han ;
  • Deng, Xiangwen ;
  • Forrester, David ;
  • Zeng, Lixiong ;
  • Lei, Pifeng ;
  • Lei, Xiangdong ;
  • Gou, Mengmeng ;
  • Peng, Changhui
0 Citations0 Mentions77% FAIR0.5 Dataset Index
10.5061/dryad.s4r94b0/12019

aat6405

No description available

Authors

  • Huang, Yuanyuan ;
  • Chen, Yuxin ;
  • Castro-Izaguirre, Nadia ;
  • Baruffol, Martin ;
  • Brezzi, Matteo ;
  • Lang, Anne ;
  • Li, Ying ;
  • Härdtle, Werner ;
  • Von Oheimb, Werner ;
  • Yang, Xuefeu ;
  • Liu, Xiaojuan ;
  • Pei, Kequan ;
  • Both, Sabine ;
  • Yang, Bo ;
  • Eichenberg, David ;
  • Assmann, Thorsten ;
  • Bauhus, Jürgen ;
  • Behrens, Thorsten ;
  • Buscot, François ;
  • Chen, Xiao-Yong ;
  • Chester, Douglas ;
  • Ding, Bing-Yang ;
  • Durka, Walter ;
  • Erfmeier, Alexandra ;
  • Fang, Jingyun ;
  • Fischer, Markus ;
  • Guo, Liang-Dong ;
  • Guo, Dali ;
  • Gutknecht, Jessica L. M. ;
  • He, Jin-Sheng ;
  • He, Chun-Ling ;
  • Hector, Andy ;
  • Hönig, Lydia ;
  • Hu, Ren-Yong ;
  • Klein, Alexandra-Maria ;
  • Kühn, Peter ;
  • Liang, Yu ;
  • Li, Shan ;
  • Michalski, Stefan ;
  • Scherer-Lorenzen, Michael ;
  • Schmidt, Karsten ;
  • Scholten, Thomas ;
  • Schuldt, Andreas ;
  • Shi, Xuezheng ;
  • Tan, Man-Zhi ;
  • Tang, Zhiyao ;
  • Trogisch, Stefan ;
  • Wang, Zhengwen ;
  • Welk, Erik ;
  • Wirth, Christian ;
  • Wubet, Tesfaye ;
  • Xiang, Wenhua ;
  • Yu, Mingjian ;
  • Yu, Xiao-Dong ;
  • Zhang, Jiayong ;
  • Zhang, Shouren ;
  • Zhang, Naili ;
  • Zhou, Hong-Zhang ;
  • Zhu, Chao-Dong ;
  • Zhu, Li ;
  • Bruelheide, Helge ;
  • Ma, Keping ;
  • Niklaus, Pascal A. ;
  • Schmid, Bernhard
0 Citations0 Mentions77% FAIR0.4 Dataset Index
10.5061/dryad.t86145r/22018

aat6405_data

No description available

Authors

  • Huang, Yuanyuan ;
  • Chen, Yuxin ;
  • Castro-Izaguirre, Nadia ;
  • Baruffol, Martin ;
  • Brezzi, Matteo ;
  • Lang, Anne ;
  • Li, Ying ;
  • Härdtle, Werner ;
  • Von Oheimb, Werner ;
  • Yang, Xuefeu ;
  • Liu, Xiaojuan ;
  • Pei, Kequan ;
  • Both, Sabine ;
  • Yang, Bo ;
  • Eichenberg, David ;
  • Assmann, Thorsten ;
  • Bauhus, Jürgen ;
  • Behrens, Thorsten ;
  • Buscot, François ;
  • Chen, Xiao-Yong ;
  • Chester, Douglas ;
  • Ding, Bing-Yang ;
  • Durka, Walter ;
  • Erfmeier, Alexandra ;
  • Fang, Jingyun ;
  • Fischer, Markus ;
  • Guo, Liang-Dong ;
  • Guo, Dali ;
  • Gutknecht, Jessica L. M. ;
  • He, Jin-Sheng ;
  • He, Chun-Ling ;
  • Hector, Andy ;
  • Hönig, Lydia ;
  • Hu, Ren-Yong ;
  • Klein, Alexandra-Maria ;
  • Kühn, Peter ;
  • Liang, Yu ;
  • Li, Shan ;
  • Michalski, Stefan ;
  • Scherer-Lorenzen, Michael ;
  • Schmidt, Karsten ;
  • Scholten, Thomas ;
  • Schuldt, Andreas ;
  • Shi, Xuezheng ;
  • Tan, Man-Zhi ;
  • Tang, Zhiyao ;
  • Trogisch, Stefan ;
  • Wang, Zhengwen ;
  • Welk, Erik ;
  • Wirth, Christian ;
  • Wubet, Tesfaye ;
  • Xiang, Wenhua ;
  • Yu, Mingjian ;
  • Yu, Xiao-Dong ;
  • Zhang, Jiayong ;
  • Zhang, Shouren ;
  • Zhang, Naili ;
  • Zhou, Hong-Zhang ;
  • Zhu, Chao-Dong ;
  • Zhu, Li ;
  • Bruelheide, Helge ;
  • Ma, Keping ;
  • Niklaus, Pascal A. ;
  • Schmid, Bernhard
0 Citations0 Mentions77% FAIR0.4 Dataset Index
10.5061/dryad.t86145r/12018