生物
非生物成分
非生物胁迫
热休克蛋白
转基因作物
分子育种
生物技术
转录因子
转基因
作物
基因
棉属
农学
细胞生物学
遗传学
生态学
作者
Kashif Rafiq Zahid,Farhan Ali,Farooq Shah,Muhammad Younas,Tariq Shah,Durri Shahwar,Waseem Hassan,Zahoor Ahmad,Chao Qi,Yanli Lu,Amjad Iqbal,Wei Wu
标识
DOI:10.3389/fpls.2016.00937
摘要
Cotton is an important multipurpose crop which is highly sensitive to both biotic and abiotic stresses. Proper management of this cash crop requires systematic understanding of various environmental conditions that are vital to yield and quality. High temperature stress can severely affect the viability of pollens and anther indehiscence, which leads to significant yield losses. Cotton can respond to withstand adverse environmental condition in several phases among which the accumulation of chemicals is extremely vital. Calcium, kinases, reactive oxygen species, carbohydrate, transcription factors, gene expression regulation, and plant hormones signaling pathways are playing a handy role in activating the major genes responsible to encounter and defend elevated temperature stress. The production of heat shock proteins is up-regulated when crops are unleashed to high temperature stress. Molecular breeding can play a functional role to identify superior genes for all the important attributes as well as provide breeder ready markers for developing ideotypes. The development of high-temperature resistant transgenic cultivars of cotton can grant a stability benefit and can also ameliorate the production capacity in response to elevated temperature.
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