数字农科院2.0

Harnessing microbial interactions with rice: Strategies for abiotic stress alleviation in the face of environmental challenges and climate change

文献类型: 外文期刊

作者: Zhao J.;Yu X.;Zhang C.;Hou L.;Wu N.;Zhang W.;Wang Y.;Yao B.;Delaplace P.;Tian J.

作者机构:

关键词: Abiotic stress;Microbial inoculants;Microbiome interactions;Rice growth;Stress tolerance mechanisms;Sustainable agriculture

期刊名称: Science of the Total Environment

ISSN: 0048-9697

年卷期: 2024 年 912 卷

页码:

收录情况: SCIE(2024版) ; ; EI(2024版)

摘要: Rice, which feeds more than half of the world's population, confronts significant challenges due to environmental and climatic changes. Abiotic stressors such as extreme temperatures, drought, heavy metals, organic pollutants, and salinity disrupt its cellular balance, impair photosynthetic efficiency, and degrade grain quality. Beneficial microorganisms from rice and soil microbiomes have emerged as crucial in enhancing rice's tolerance to these stresses. This review delves into the multifaceted impacts of these abiotic stressors on rice growth, exploring the origins of the interacting microorganisms and the intricate dynamics between rice-associated and soil microbiomes. We highlight their synergistic roles in mitigating rice's abiotic stresses and outline rice's strategies for recruiting these microorganisms under various environmental conditions, including the development of techniques to maximize their benefits. Through an in-depth analysis, we shed light on the multifarious mechanisms through which microorganisms fortify rice resilience, such as modulation of antioxidant enzymes, enhanced nutrient uptake, plant hormone adjustments, exopolysaccharide secretion, and strategic gene expression regulation, emphasizing the objective of leveraging microorganisms to boost rice's stress tolerance. The review also recognizes the growing prominence of microbial inoculants in modern rice cultivation for their eco-friendliness and sustainability. We discuss ongoing efforts to optimize these inoculants, providing insights into the rigorous processes involved in their formulation and strategic deployment. In conclusion, this review emphasizes the importance of microbial interventions in bolstering rice agriculture and ensuring its resilience in the face of rising environmental challenges. © 2023 Elsevier B.V.

分类号:

  • 相关文献

[1]From lab bench to farmers' fields: Co-creating microbial inoculants with farmers input. Adegboyega Adeniji,Ayomide Emmanuel Fadiji,Shidong Li,Rongjun Guo. 2024

[2]miRNAs for crop improvement. Raza, Ali,Charagh, Sidra,Karikari, Benjamin,Sharif, Rahat,Yadav, Vivek,Mubarik, Muhammad Salman,Habib, Madiha,Zhuang, Yuhui,Zhang, Chong,Chen, Hua,Varshney, Rajeev K.,Zhuang, Weijian. 2023

[3]Multidimensional Role of Silicon to Activate Resilient Plant Growth and to Mitigate Abiotic Stress. Rakeeb Ahmad Mir,Basharat Ahmad Bhat,Henan Yousuf,Sheikh Tajamul Islam,Ali Raza,Masood Ahmad Rizvi,Sidra Charagh,Mohammed Albaqami,Parvaze A. Sofi,Sajad Majeed Zargar. 2022

[4]Advancing Chickpea Breeding: Omics Insights for Targeted Abiotic Stress Mitigation and Genetic Enhancement. Altaf, Muhammad Tanveer,Liaqat, Waqas,Ali, Amjad,Jamil, Amna,Fahad, Muhammad,Rahman, Muhammad Aneeq Ur,Baloch, Faheem Shehzad,Mohamed, Heba I.. 2024

[5]Root application of selenite can simultaneously reduce arsenic and cadmium accumulation and maintain grain yields, but show negative effects on the grain quality of paddy rice. Liao, Guojian,Wu, Qianhua,Feng, Renwei,Guo, Junkang,Wang, Ruigang,Ding, Yongzhen,Sun, Yang,Xu, Yingming,Xia, Wei,Feng, Renwei,Guo, Junkang,Wang, Ruigang,Sun, Yang,Xu, Yingming,Liao, Guojian,Wu, Qianhua,Feng, Renwei,Fan, Zhilian,Mo, Liangyu,Chen, Cheng,Xu, Yi.

[6]Influence of High Temperature Stress on Net Photosynthesis, Dry Matter Partitioning and Rice Grain Yield at Flowering and Grain Filling Stages. Lu Guo-hua,Wu Yong-feng,Bai Wen-bo,Ma Bao,Wang Chun-yan,Song Ji-qing. 2013

[7]Yield and Quality of Rice under the Effects of Digestate Application. Ran Y.,Bai X.,Long Y.,Ai P.. 2022

[8]Microbial inoculants and garbage fermentation liquid reduced root-knot nematode disease and As uptake in Panax quinquefolium cultivation by modulating rhizosphere microbiota community. Pei Cao,Xuemin Wei,Gang Wang,Xiaochen Chen,Jianping Han,Yuan Li. 2022

[9]Microbial-based detonation and processing of vegetable waste for high quality compost production at low temperatures. Shi W.,Dong Q.,Saleem M.,Wu X.,Wang N.,Ding S.,Huang J.,Wang X.,Zhou B.,Gao Z.. 2022

[10]Role of crop residue management in sustainable agricultural development in the North China Plain. Wu, Wenliang,Zhang, Qingzhong,Yang, Zhengli. 2008

[11]The development of China-DNDC and review of its applications for sustaining Chinese agriculture. Li Hu,Wang Ligang,Li Jianzheng,Gao Maofang,Zhang Jing,Zhang Jianfeng,Qiu Jianjun,Deng Jia,Changsheng Li,Frolking, Steve,Li Hu,Wang Ligang,Li Jianzheng,Gao Maofang,Zhang Jing,Zhang Jianfeng,Qiu Jianjun,Deng Jia,Changsheng Li,Frolking, Steve.

[12]Does Crop Rotation Yield More In China? A Meta-Analysis. Zhao, Jie,Jeong, Jaehak,Zhao, Jie,Zhang, Kai,Zang, Huadong,Yang, Yadong,Zeng, Zhaohai. 2020

[13]Soil nitrate distribution, N2O emission and crop performance after the application of N fertilizers to greenhouse vegetables. Lou, Y.,Xu, M.,He, X.,Duan, Y.,He, X.,Li, L..

[14]A holistic approach to the development of sustainable agriculture: application of the ecosystem health model. Liu, Wenna,Wu, Wenliang,Wang, Xiubin.

[15]Wheat (Triticum aestivum L.)-based intercropping systems for biological pest control. Hatt, Severin,Xu, Qinxuan,Francis, Frederic,Hatt, Severin,Xu, Qinxuan,Chen, Julian,Liu, Yong.

[16]Comprehensive assessment of integrated rice-crayfish farming system as a new paradigm to air-water-food nexus sustainability. Qiaoyu Sun,Benyamin Khoshnevisan,Jianqiang Zhu,Weiwei Wang,Yilin Liu,Junting Pan,Xianpeng Fan,Dingyue Zhang,Maoqian Wu,Hongbin Liu. 2022

[17]Barriers, Challenges, and Requirements for ICT Usage among Sub-Assistant Agricultural Officers in Bangladesh: Toward Sustainability in Agriculture. Ahsan M.B.,Leifeng G.,Safiul Azam F.M.,Xu B.,Rayhan S.J.,Kaium A.,Wensheng W.. 2023

[18]pH-Responsive On-Demand Alkaloids Release from Core-Shell ZnO@ZIF-8 Nanosphere for Synergistic Control of Bacterial Wilt Disease. Wenlong Liang,Jingli Cheng,Jiadong Zhang,Qiuyu Xiong,Maojun Jin,Jinhao Zhao. 2022

[19]Effects and potential of optimized fertilization practices for rice production in China. Yanhua Zhuang,Shuhe Ruan,Liang Zhang,Jingrui Chen,Sisi Li,Weijia Wen,Hongbin Liu. 2022

[20]Self-Assembled Sphere Covalent Organic Framework with Enhanced Herbicidal Activity by Loading Cyhalofop-butyl. Xile Deng,Pengyue Zhao,Yong Xie,Lianyang Bai. 2023

作者其他论文 更多>>