耐旱性
生物技术
生物
标记辅助选择
分子育种
数量性状位点
抗旱性
选择(遗传算法)
植物育种
适应(眼睛)
栽培
干旱胁迫
特质
抗性(生态学)
基因
农学
遗传学
计算机科学
人工智能
神经科学
程序设计语言
作者
Yusuff Oladosu,Mohd Y. Rafii,Samuel Chibuike Chukwu,Fatai Arolu,Muhammad Usman,Isiaka Kareem,Zarifth Shafika Kamarudin,Isma’ila Muhammad,Kazeem Kolapo
摘要
Drought is the leading threat to agricultural food production, especially in the cultivation of rice, a semi-aquatic plant. Drought tolerance is a complex quantitative trait with a complicated phenotype that affects different developmental stages in plants. The level of susceptibility or tolerance of rice to several drought conditions is coordinated by the action of different drought-responsive genes in relation with other stress components which stimulate signal transduction pathways. Interdisciplinary researchers have broken the complex mechanism of plant tolerance using various methods such as genetic engineering or marker-assisted selection to develop a new cultivar with improved drought resistance. The main objectives of this review were to highlight the current method of developing a durable drought-resistant rice variety through conventional breeding and the use of biotechnological tools and to comprehensively review the available information on drought-resistant genes, QTL analysis, gene transformation and marker-assisted selection. The response, indicators, causes, and adaptation processes to the drought stress were discussed in the review. Overall, this review provides a systemic glimpse of breeding methods from conventional to the latest innovation in molecular development of drought-tolerant rice variety. This information could serve as guidance for researchers and rice breeders.
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