No-till reduced subsoil organic carbon due to decreased microbial necromass in micro-aggregates
文献类型: 外文期刊
第一作者: Yu, Yalin
作者: Yu, Yalin;Zhang, Xintan;Li, Yanling;Li, Feng-Min;Yang, Haishui;Kan, Zheng-Rong;Xu, Yinan;Virk, Ahmad Latif;Liu, Shiping
作者机构:
关键词: aggregate; bacterial and fungal necromass; soil depth; tillage
期刊名称:LAND DEGRADATION & DEVELOPMENT ( 影响因子:4.7; 五年影响因子:5.0 )
ISSN: 1085-3278
年卷期: 2024 年 35 卷 5 期
页码:
收录情况: SCI
摘要: Microbial necromass is a crucial contributor to the formation of soil aggregates and serves as a key source of stable soil organic carbon (SOC). However, how tillage practices regulate microbial necromass accumulation within aggregate fractions at different soil depths remains unclear. Thus, a 20-year field experiment was carried out to identify how microbial necromass carbon (MC) is distributed in aggregates and its contribution to SOC under no-till (NT) and plow tillage (PT) in a rice-wheat rotation system. The results showed that NT significantly increased bacterial and fungal necromass carbon (C) concentrations in both macro- and micro-aggregates (>0.25 and <0.25 mm), and enhanced the contribution of MC to SOC compared with PT at 0-5 cm topsoil depth. However, NT decreased SOC concentration in micro-aggregates by 12.4% mainly attributed to lower bacterial and fungal necromass C in micro-aggregates by 21.6% and 27.6% compared with PT at 5-15 cm subsoil depth. There was no significant difference for SOC mineralization per unit SOC concentration between NT and PT, which can be attributed to the equilibrium between microbial necromass C and labile C (e.g., dissolved organic C). Random forest and partial least squares path model demonstrated that soil total nitrogen, available NH4+, and NO3- positively regulated beta-glucosidase activity, and thus affected MC and SOC concentration. NT decreased soil nitrogen concentration and beta-glucosidase activity in micro-aggregates, and thus lowered MC formation at 5-15 cm depth. Our findings highlights that NT reduced subsoil organic carbon due to decreased microbial necromass in micro-aggregates.
分类号:
- 相关文献
作者其他论文 更多>>
-
Organic fertilizer substitution increased soil organic carbon through the association of microbial necromass C with iron oxides
作者:Xu, Yinan;Sheng, Jing;Zhang, Liping;Sun, Guofeng;Zheng, Jianchu;Xu, Yinan;Sheng, Jing;Zhang, Liping;Sun, Guofeng;Zheng, Jianchu
关键词:Organic fertilizer; Soil organic carbon; Microbial necromass C; Iron and aluminum oxides
-
Combined Effects of Reduced Tillage and Strip Intercropping on Soil Carbon Sequestration in Semi-Arid Environment
作者:Rehman, Sana ur;Din, Atta Mohi Ud;Haider, Imran;Raza, Muhammad Ali;Ijaz, Shahzada Sohail;Fatima, Shroz;Al-Dosary, Munirah Abdullah;Ansar, Muhammad;Siddiqa, Ayesha;Ashraf, Muhammad Nadeem;Junaid, Muhammad Bilawal;Raza, Muhammad Ali;Yang, Haishui
关键词:Cropping systems; Reduced tillage; Carbon sequestration; Strip intercropping; Biodiversity
-
Optimizing Labor Intensity Improves Economic and Environmental Performances in Pu'er Tea Plantations in China
作者:Li, Panfeng;Xian, Yuanran;Huang, Xinhui;Wang, Biao;Yan, Juping;Chen, Yuanquan;Gao, Wangsheng;Wang, Xiaolong;Xu, Yinan;Cui, Jixiao
关键词:
-
Global synthesis on the responses of microbial- and plant-derived carbon to conservation tillage
作者:Yu, Yalin;Li, Li;Yang, Jinkang;Zhou, Jie;Li, Feng-Min;Yang, Haishui;Kan, Zheng-Rong;Xu, Yinan;Virk, Ahmad Latif
关键词:Conservation tillage; Soil organic carbon; Microbial-derived C; Plant-derived C; Meta-analysis
-
Effects of crop rotation on plant- and microbial-derived carbon within particulate and mineral fractions in paddy soils
作者:Yu, Yalin;Zhu, Ningxuan;Ren, Ying;Dong, Menghan;Li, Feng-Min;Yang, Haishui;Kan, Zheng-Rong;Sun, Guofeng;Virk, Ahmad Latif
关键词:Crop rotation; Rice yield; Soil organic carbon; Lignin phenol; Amino sugar
-
Depth-dependent patterns in soil organic C, enzymatic stochiometric ratio, and soil quality under conventional tillage and reduced tillage after 55-years
作者:Feng, Wenhao;Zhang, Wentao;Yang, Haishui;Li, Feng-Min;Zhou, Jie;Feng, Wenhao;Ai, Juanjuan;Dippold, Michaela A.;Sanchez-Rodriguez, Antonio Rafael;Li, Shiwei;Dittert, Klaus;Wang, Haitao;Apostolakis, Antonios;Muenter, Christiane
关键词:Reduced tillage; Soil organic carbon; Soil ecosystem multifunctionality; Soil depth; Enzymatic stoichiometric ratio; Microbial metabolic limitation
-
Genetic dissection of flowering time and fine mapping of qFT.A02-1 in rapeseed (Brassica napus L.)
作者:Li, Yanling;Li, Xin;Du, Dezhi;Ma, Qianru;Zhao, Zhi;Wang, Long;Zhang, Yongshun;Shi, Huiqin;Zhao, Hongping;Li, Huaxin;Pei, Damei;Zhao, Zhigang;Tang, Guoyong;Liu, Haidong;Xiao, Lu;Li, Xin;Li, Haojie
关键词: