Genetic modification strategies for enhancing plant resilience to abiotic stresses in the context of climate change

被引:0
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作者
Amman KhokharVoytas
Muhammad Shahbaz
Muhammad Faisal Maqsood
Usman Zulfiqar
Nargis Naz
Usama Zafar Iqbal
Maheen Sara
Muhammad Aqeel
Noreen Khalid
Ali Noman
Faisal Zulfiqar
Khalid M. Al Syaad
Manal Abdullah AlShaqhaa
机构
[1] University of Agriculture,Department of Botany
[2] The Islamia University of Bahawalpur,Department of Botany
[3] The Islamia University of Bahawalpur,Department of Agronomy, Faculty of Agriculture and Environment
[4] Government College Women University,Department of Nutritional Sciences
[5] Lanzhou University,State Key Laboratory of Herbage Improvement and Grassland Agro
[6] Government College Women University Sialkot,ecosystems (SKLHIGA), College of Ecology
[7] Government College University,Department of Botany
[8] The Islamia University of Bahawalpur,Department of Botany
[9] King Khalid University,Department of Horticultural Sciences, Faculty of Agriculture and Environment
来源
关键词
Genome editing; Genetic engineering; Abiotic stress; Crop improvement; CRISPR/Cas9;
D O I
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学科分类号
摘要
Enhancing the resilience of plants to abiotic stresses, such as drought, salinity, heat, and cold, is crucial for ensuring global food security challenge in the context of climate change. The adverse effects of climate change, characterized by rising temperatures, shifting rainfall patterns, and increased frequency of extreme weather events, pose significant threats to agricultural systems worldwide. Genetic modification strategies offer promising approaches to develop crops with improved abiotic stress tolerance. This review article provides a comprehensive overview of various genetic modification techniques employed to enhance plant resilience. These strategies include the introduction of stress-responsive genes, transcription factors, and regulatory elements to enhance stress signaling pathways. Additionally, the manipulation of hormone signaling pathways, osmoprotectant accumulation, and antioxidant defense mechanisms is discussed. The use of genome editing tools, such as CRISPR-Cas9, for precise modification of target genes related to stress tolerance is also explored. Furthermore, the challenges and future prospects of genetic modification for abiotic stress tolerance are highlighted. Understanding and harnessing the potential of genetic modification strategies can contribute to the development of resilient crop varieties capable of withstanding adverse environmental conditions caused by climate change, thereby ensuring sustainable agricultural productivity and food security.
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