Maize and peanut intercropping improves the nitrogen accumulation and yield per plant of maize by promoting the secretion of flavonoids and abundance of Bradyrhizobium in rhizosphere
文献类型: 外文期刊
作者: Dong, Qiqi 1 ; Zhao, Xinhua 1 ; Zhou, Dongying 1 ; Liu, Zhenhua 1 ; Shi, Xiaolong 1 ; Yuan, Yang 1 ; Jia, Peiyan 1 ; Liu, Yingyan 1 ; Song, Penghao 1 ; Wang, Xiaoguang 1 ; Jiang, Chunji 1 ; Liu, Xibo 1 ; Zhang, He 1 ; Zhong, Chao 1 ; Guo, Feng 2 ; Wan, Shubo 2 ; Yu, Haiqiu 1 ; Zhang, Zheng 2 ;
作者机构: 1.Shenyang Agr Univ, Coll Agron, Shenyang, Liaoning, Peoples R China
2.Shandong Acad Agr Sci, Jinan, Shandong, Peoples R China
关键词: root interaction; yield per plant; nitrogen accumulation; rhizosphere soil enzymes; flavonoids; Bradyrhizobium
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:6.627; 五年影响因子:7.255 )
ISSN: 1664-462X
年卷期: 2022 年 13 卷
页码:
收录情况: SCI
摘要: Belowground interactions mediated by root exudates are critical for the productivity and efficiency of intercropping systems. Herein, we investigated the process of microbial community assembly in maize, peanuts, and shared rhizosphere soil as well as their regulatory mechanisms on root exudates under different planting patterns by combining metabolomic and metagenomic analyses. The results showed that the yield of intercropped maize increased significantly by 21.05% (2020) and 52.81% (2021), while the yield of intercropped peanut significantly decreased by 39.51% (2020) and 32.58% (2021). The nitrogen accumulation was significantly higher in the roots of the intercropped maize than in those of sole maize at 120 days after sowing, it increased by 129.16% (2020) and 151.93% (2021), respectively. The stems and leaves of intercropped peanut significantly decreased by 5.13 and 22.23% (2020) and 14.45 and 24.54% (2021), respectively. The root interaction had a significant effect on the content of ammonium nitrogen (NH4+-N) as well as the activities of urease (UE), nitrate reductase (NR), protease (Pro), and dehydrogenase (DHO) in the rhizosphere soil. A combined network analysis showed that the content of NH4+-N as well as the enzyme activities of UE, NR and Pro increased in the rhizosphere soil, resulting in cyanidin 3-sambubioside 5-glucoside and cyanidin 3-O-(6-Op-coumaroyl) glucoside-5-O-glucoside; shisonin were significantly up-regulated in the shared soil of intercropped maize and peanut, reshaped the bacterial community composition, and increased the relative abundance of Bradyrhizobium. These results indicate that interspecific root interactions improved the soil microenvironment, regulated the absorption and utilization of nitrogen nutrients, and provided a theoretical basis for high yield and sustainable development in the intercropping of maize and peanut.
- 相关文献
作者其他论文 更多>>
-
Day length affects flowering time through regulating circadian oscillator and its downstream genes in photoperiod pathway in Gossypium hirsutum
作者:Pan, Ao;Zhou, Zhonghua;Liu, Zhi;Huo, Xuehan;Gao, Yang;Chen, Yu;Wang, Furong;Zhang, Jun;Huo, Xuehan;Feng, Jiaojiao;Wang, Furong;Zhang, Jun;Yuan, Yang
关键词:Gossypium hirsutum L; Photoperiod; GhFKF1; Flowering; Virus induced gene silencing (VIGS)
-
Magnesium fertilizer application increases peanut growth and pod yield under reduced nitrogen application in southern China
作者:Gao, Yu;Zeng, Ruier;Yao, Suzhe;Wang, Ying;Chen, Tingting;Zhang, Lei;Wang, Jianguo;Wan, Shubo;Hu, Wei
关键词:Peanut; Magnesium; Yield; Reduced nitrogen application rate
-
General and specialized metabolites in peanut roots regulate arbuscular mycorrhizal symbiosis
作者:Cui, Li;Wang, Jianguo;Tang, Zhaohui;Zhang, Zheng;Yang, Sha;Guo, Feng;Li, Xinguo;Meng, Jingjing;Zhang, Jialei;Wan, Shubo;Kuzyakov, Yakov;Kuzyakov, Yakov;Kuzyakov, Yakov
关键词:Arachis hypogaea L.; arbuscular mycorrhizae fungi; metabolites; symbiotic association
-
Mitigating microplastic stress on peanuts: The role of biochar-based synthetic community in the preservation of soil physicochemical properties and microbial diversity
作者:Yu, Hong;Pu, Zitian;Wang, Shuaibing;Wang, Chao;Dong, Yuanjie;Wang, Dandan;Xie, Zhihong;Chen, Yinglong;Wan, Yongshan;Wang, Jianguo;Wan, Shubo
关键词:Rubber crumbs; Peanut; Plant growth -promoting rhizobacteria; Biochar-based syncom
-
Peanut-based intercropping systems altered soil bacterial communities, potential functions, and crop yield
作者:Liu, Zhu;Nan, Zhenwu;Lin, Songming;Meng, Weiwei;Zhang, Zheng;Wan, Shubo;Liu, Zhu;Xie, Liyong;Yu, Haiqiu;Lin, Songming
关键词:Sorghum; Millet; Peanut; Intercropping; Yield; Soil bacterial community
-
Peanut LEAFY COTYLEDON1-type genes participate in regulating the embryo development and the accumulation of storage lipids
作者:Tang, Guiying;Xu, Pingli;Li, Guowei;Shan, Lei;Wan, Shubo;Jiang, Chunyu
关键词:LEAFY COTYLEDON-1 type gene; Seed development; Fatty acid (FA) synthesis; Oil accumulation; Yields
-
Transcriptome profiling of aerial and subterranean peanut pod development
作者:Peng, Zhenying;Jia, Kai-Hua;Meng, Jingjing;Wang, Jianguo;Zhang, Jialei;Li, Xinguo;Wan, Shubo
关键词:



