Arbuscular mycorrhizal fungi alleviate salinity stress in peanut: Evidence from pot-grown and field experiments
文献类型: 外文期刊
作者: Qin, Wenjie 1 ; Yan, Hengyu 1 ; Zou, Bingyin 1 ; Guo, Runze 1 ; Ci, Dunwei 2 ; Tang, Zhaohui 3 ; Zou, Xiaoxia 1 ; Zhang, 1 ;
作者机构: 1.Qingdao Agr Univ, Coll Agron, Shandong Prov Key Lab Dryland Farming Technol, Qingdao, Peoples R China
2.Shandong Peanut Res Inst, Qingdao, Peoples R China
3.Shandong Acad Agr Sci SAAS, Inst Crop Germplasm Resources, Jinan, Peoples R China
关键词: antioxidant system; Arbuscular mycorrhizal fungi; photosystem; salt tolerance; yield
期刊名称:FOOD AND ENERGY SECURITY ( 影响因子:4.109; 五年影响因子:8.33 )
ISSN: 2048-3694
年卷期: 2021 年 10 卷 4 期
页码:
收录情况: SCI
摘要: Arbuscular mycorrhizal fungi (AMF) species are essential for sustainable agriculture of legume crops; however, the AMF response in legume crops, especially from the perspective of physiological and molecular mechanisms under salinity conditions, is largely unknown. In this study, peanut (Arachis hypogaea L.) seeds were inoculated with AMF to investigate its salinity stress alleviation effects using the pot-grown and 2-year field experiments. Seeds from two peanut cultivars (HY22 and HY25) were inoculated with AMF Rhizophagus irregularis SA and Funneliformis mosseae BEG95 (1:1), and the physiological and transcriptional responses were compared between the AMF-inoculated and non-inoculated peanut plants. Under the salinity stress, compared with the control samples, the AMF-inoculated plants showed higher net photosynthetic rate, leaf relative water content (RWC), plant height, osmolyte accumulation, but lower leaf relative electrolyte conductivity (REC). Also, the malondialdehyde (MDA) concentration was reduced while the antioxidant enzymes such as superoxide dismutase (SOD), guaiacol peroxidase (G-POD), catalase (CAT), and ascorbate peroxidase (APX) were activated. Furthermore, transcriptome data revealed that AMF potentially alleviates salt stress by regulating redox processes, cell wall assembly, cell growth, and other similar processes. In the 2-year field experiment, AMF-inoculated peanut seeds of HY22 and HY25 were cultivated in both non-saline and saline soils. Under salinity conditions, AMF inoculation induced the total protein concentration by 11.11 and 2.32% in kernels and further increased the peanut pod yield by 21.83 and 21.89% in HY22 and HY25, respectively. In non-saline soil too, AMF increased the peanut pod yield by 11.47 and 23.98% in HY22 and HY25, respectively. Taken together, these results strongly demonstrate that the combination of AMF Rhizophagus irregularis SA and Funneliformis mosseae BEG95 (1:1) can alleviate salinity stress in peanuts by improving plant growth, photosystem, and antioxidant system. Additionally, it increases the peanut pod yield under both normal and salinity conditions.
- 相关文献
作者其他论文 更多>>
-
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
-
Calcium/calmodulin modulates salt responses by binding a novel interacting protein SAMS1 in peanut (Arachis hypogaea L.)
作者:Yang, Sha;Wang, Jianguo;Tang, Zhaohui;Zhang, Jialei;Guo, Feng;Meng, Jingjing;Cui, Feng;Li, Xinguo;Li, Yan;Wan, Shubo
关键词:AhCaM4; AhSAMS1; Protein interaction; Polyamines; Salt tolerance
-
Arbuscular Mycorrhizal Fungi Restored the Saline-Alkali Soil and Promoted the Growth of Peanut Roots
作者:Ci, Dunwei;Qin, Feifei;Zhang, Guanchu;Yang, Jishun;Xu, Yang;Yu, Tianyi;Xu, Manlin;He, Kang;Tang, Zhaohui;Zhang, Jialei;Si, Tong
关键词:arbuscular mycorrhizal fungi; peanuts; saline-alkali soil; soil enzyme activity; soil nutrient
-
Physiological, transcriptional and metabolomic evidence for arbuscular mycorrhizal fungi and Lactobacillus plantarum in peanut resistance to salinity stress
作者:Si, Tong;Lu, Jinhao;Cao, Yidan;Yu, Xiaona;Zhang, Xiaojun;Wang, Yuefu;Zou, Xiaoxia;Tang, Zhaohui;Ci, Dunwei;Zou, Xiaoxia
关键词:arbuscular mycorrhizal fungi; Lactobacillus plantarum; peanut; salinity stress; synergistic effect
-
Inclusion of peanut in wheat-maize rotation increases wheat yield and net return and improves soil organic carbon pool by optimizing bacterial community
作者:Zou, Xiao-xia;Huang, Ming-ming;Yan, Liu;Si, Tong;Zhang, Xiao-jun;Yu, Xiao-na;Guo, Feng;Wan, Shu-bo
关键词:composite planting; carbon sequestration; labile carbon fraction; bacterial community structure; bacterial functions
-
Nitrogen fertilization rates mediate rhizosphere soil carbon emissions of continuous peanut monoculture by altering cellulose-specific microbess
作者:Wu, Zhengfeng;Yu, Tianyi;Zhang, Jiancheng;Zheng, Yongmei;Yang, Jishun;Wu, Yue;Sun, Qiqi;Tang, Zhaohui
关键词:microbes; soil carbon; N fertilization; rhizosphere; peanut
-
The multifaceted roles of Arbuscular Mycorrhizal Fungi in peanut responses to salt, drought, and cold stress
作者:Liu, Yuexu;Lu, Jinhao;Zou, Xiaoxia;Zhang, Xiaojun;Yu, Xiaona;Wang, Yuefu;Si, Tong;Cui, Li;Tang, Zhaohui;Ci, Dunwei
关键词:AMF; Legumes; Environmental stress; Plant physiology; Metabolic pathway



