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干旱和盐胁迫诱导甘蔗生理生化变化:耐受机制与缓解途径综述

Drought and salinity stresses induced physio-biochemical changes in sugarcane: an overview of tolerance mechanism and mitigating approaches.

作者信息

Kumar Rajeev, Sagar Vidya, Verma Vivek Chandra, Kumari Mala, Gujjar Ranjit Singh, Goswami Sanjay K, Kumar Jha Sudhir, Pandey Himanshu, Dubey Abhishek Kumar, Srivastava Sangeeta, Singh S P, Mall Ashutosh K, Pathak Ashwini Dutt, Singh Hemlata, Jha Prakash Kumar, Prasad P V Vara

机构信息

Indian Council of Agricultural Research (ICAR)-Indian Institute of Sugarcane Research, Lucknow, India.

Indian Council of Agricultural Research (ICAR)-Indian Institute of Vegetable Research, Varanasi, India.

出版信息

Front Plant Sci. 2023 Aug 11;14:1225234. doi: 10.3389/fpls.2023.1225234. eCollection 2023.

Abstract

Sugarcane productivity is being hampered globally under changing environmental scenarios like drought and salinity. The highly complex nature of the plant responses against these stresses is determined by a variety of factors such as genotype, developmental phase of the plant, progression rate and stress, intensity, and duration. These factors influence plant responses and can determine whether mitigation approaches associated with acclimation are implemented. In this review, we attempt to summarize the effects of drought and salinity on sugarcane growth, specifically on the plant's responses at various levels, viz., physiological, biochemical, and metabolic responses, to these stresses. Furthermore, mitigation strategies for dealing with these stresses have been discussed. Despite sugarcane's complex genomes, conventional breeding approaches can be utilized in conjunction with molecular breeding and omics technologies to develop drought- and salinity-tolerant cultivars. The significant role of plant growth-promoting bacteria in sustaining sugarcane productivity under drought and salinity cannot be overlooked.

摘要

在干旱和盐碱化等不断变化的环境情景下,全球甘蔗产量受到阻碍。植物对这些胁迫的反应具有高度复杂性,这是由多种因素决定的,如基因型、植物发育阶段、胁迫进展速率以及胁迫强度和持续时间。这些因素影响植物的反应,并能决定是否实施与适应性相关的缓解措施。在本综述中,我们试图总结干旱和盐碱化对甘蔗生长的影响,特别是植物在生理、生化和代谢等各个层面上对这些胁迫的反应。此外,还讨论了应对这些胁迫的缓解策略。尽管甘蔗基因组复杂,但传统育种方法可与分子育种和组学技术结合使用,以培育耐旱和耐盐碱品种。植物促生细菌在干旱和盐碱条件下维持甘蔗产量方面的重要作用不可忽视。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0c8/10461627/e7dee23416f3/fpls-14-1225234-g001.jpg

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