Rare taxa mediate microbial carbon and nutrient limitation in the rhizosphere and bulk soil under sugarcane-peanut intercropping systems
文献类型: 外文期刊
作者: Fu, Yue 1 ; Tang, Xiumei 3 ; Sun, Tingting 1 ; Lin, Litao 4 ; Wu, Lixue 1 ; Zhang, Tian 1 ; Gong, Yifei 1 ; Li, Yuting 1 ; Wu, Haining 3 ; Xiong, Jun 3 ; Tang, Ronghua 3 ;
作者机构: 1.Guangxi Univ, Coll Agron, Nanning, Guangxi, Peoples R China
2.Guangxi Univ, Key Lab Agroenvironm & Agroprod Safety, Nanning, Peoples R China
3.Guangxi Acad Agr Sci, Cash Crops Res Inst, Nanning, Guangxi, Peoples R China
4.Chinese Res Inst Environm Sci, Ctr Ecol Civilizat Res, Beijing, Peoples R China
关键词: microbial nutrient limitation; intercropping; rhizosphere; microbial community; rare taxa
期刊名称:FRONTIERS IN MICROBIOLOGY ( 影响因子:4.0; 五年影响因子:5.1 )
ISSN:
年卷期: 2024 年 15 卷
页码:
收录情况: SCI
摘要: Introduction Microbial carbon (C) and nutrient limitation exert key influences on soil organic carbon (SOC) and nutrient cycling through enzyme production for C and nutrient acquisition. However, the intercropping effects on microbial C and nutrient limitation and its driving factors between rhizosphere and bulk soil are unclear.Methods Therefore, we conducted a field experiment that covered sugarcane-peanut intercropping with sole sugarcane and peanut as controls and to explore microbial C and nutrient limitation based on the vector analysis of enzyme stoichiometry; in addition, microbial diversity was investigated in the rhizosphere and bulk soil. High throughput sequencing was used to analyze soil bacterial and fungal diversity through the 16S rRNA gene and internal transcribed spacer (ITS) gene at a phylum level.Results Our results showed that sugarcane-peanut intercropping alleviated microbial C limitation in all soils, whereas enhanced microbial phosphorus (P) limitation solely in bulk soil. Microbial P limitation was also stronger in the rhizosphere than in bulk soil. These results revealed that sugarcane-peanut intercropping and rhizosphere promoted soil P decomposition and facilitated soil nutrient cycles. The Pearson correlation results showed that microbial C limitation was primarily correlated with fungal diversity and fungal rare taxa (Rozellomycota, Chyltridiomycota, and Calcarisporiellomycota) in rhizosphere soil and was correlated with bacterial diversity and most rare taxa in bulk soil. Microbial P limitation was solely related to rare taxa (Patescibacteria and Glomeromycota) in rhizosphere soil and related to microbial diversity and most rare taxa in bulk soil. The variation partitioning analysis further indicated that microbial C and P limitation was explained by rare taxa (7%-35%) and the interactions of rare and abundant taxa (65%-93%).Conclusion This study indicated the different intercropping effects on microbial C and nutrient limitation in the rhizosphere and bulk soil and emphasized the importance of microbial diversity, particularly rare taxa.
- 相关文献
作者其他论文 更多>>
-
A Ralstonia effector RipAU impairs peanut AhSBT1.7 immunity for pathogenicity via AhPME-mediated cell wall degradation
作者:Chen, Kun;Zhuang, Yuhui;Chen, Hua;Lei, Taijie;Li, Mengke;Wang, Shanshan;Wang, Lihui;Fu, Huiwen;Lu, Wenzhi;Lai, Qiaoqiao;Xu, Xiaolin;Ji, Biaojun;Zhang, Chong;Varshney, Rajeev K.;Zhuang, Weijian;Chen, Kun;Chen, Hua;Lei, Taijie;Li, Mengke;Wang, Shanshan;Wang, Lihui;Fu, Huiwen;Lu, Wenzhi;Lai, Qiaoqiao;Xu, Xiaolin;Ji, Biaojun;Zhang, Chong;Zhuang, Weijian;Zhuang, Yuhui;Bohra, Abhishek;Garg, Vanika;Barmukh, Rutwik;Varshney, Rajeev K.;Pandey, Manish K.;Tang, Ronghua
关键词:
Ralstonia solanacearum ; pathogenicity; RipAU; peanut;AhSBT1.7 ; AhPME4 -
Genome-wide identification of Saccharum Sec14-like PITP gene family reveals that ScSEC14-1 is positively involved in disease resistance
作者:Su, Yachun;Feng, Jingfang;You, Chuihuai;Zang, Shoujian;Wang, Wei;Wang, Dongjiao;Mao, Huaying;Chen, Yao;Luo, Jun;Que, Youxiong;Su, Yachun;Su, Yachun;Sun, Tingting;Que, Youxiong
关键词:Sugarcane; Phosphatidylinositol transfer protein (PITP); Genome-wide identification; Pathogen infection; Disease resistance
-
Effects of Intercropping and Nitrogen Application on Soil Fertility and Microbial Communities in Peanut Rhizosphere Soil
作者:Wu, Haining;Chen, Shufang;Huang, Zhipeng;Tang, Xiumei;He, Liangqiong;Xiong, Jun;Zhong, Ruichun;Jiang, Jing;Han, Zhuqiang;Tang, Ronghua;Huang, Tangwei;Li, Zhong
关键词:peanut; intercropping; nitrogen fertilizer; soil fertility; soil microorganisms
-
Effects of Sugarcane/Peanut Intercropping on Root Exudates and Rhizosphere Soil Nutrient
作者:Tang, Xiumei;Liao, Lulu;Wu, Haining;Xiong, Jun;Huang, Zhipeng;He, Liangqiong;Jiang, Jing;Zhong, Ruichun;Han, Zhuqiang;Tang, Ronghua;Li, Zhong
关键词:intercropping; root metabolites; root exudates; rhizosphere soil enzymes; rhizosphere soil nutrients
-
The effect of soil environmental factors on the yield and quality of Pueraria lobata
作者:Li, Fahuo;Li, Yong;He, Longfei;Li, Yuting;Huang, Jianming;Li, Jingying;Xiao, Dong;Wang, Ai-qin
关键词:
-
Root Metabolism and Effects of Root Exudates on the Growth of Ralstonia solanacearum and Fusarium moniliforme Were Significantly Different between the Two Genotypes of Peanuts
作者:Li, Zhong;Guo, Wenfeng;Mo, Changming;Wu, Xingjian;Tang, Ronghua;He, Liangqiong;Wu, Haining;Tang, Xiumei;Huang, Zhipeng;Du, Lin;Li, Ming
关键词:peanut; root exudates; differentially expressed genes; differentially expressed metabolites; pathogens; interaction
-
Genome-Wide Association Studies Revealed the Genetic Loci and Candidate Genes of Pod-Related Traits in Peanut (Arachis hypogaea L.)
作者:Zhang, Xiaoli;Zhu, Linglong;Ren, Mengyun;Xiang, Chao;Song, Dulin;Li, Fuzhen;Tang, Xiumei;Xia, Youlin
关键词:Peanut (Arachis hypogaea L; ); Pod-related traits; Single nucleotide polymorphism (SNP); GWAS; Candidate genes



