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Genetic Engineering for Modern Agriculture: Challenges and Perspectives

机译:现代农业基因工程:挑战与前景

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摘要

Abiotic stress conditions such as drought, heat, or salinity cause extensive losses to agricultural production worldwide. Progress in generating transgenic crops with enhanced tolerance to abiotic stresses has nevertheless been slow. The complex field environment with its heterogenic conditions, abiotic stress combinations, and global climatic changes are but a few of the challenges facing modern agriculture. A combination of approaches will likely be needed to significantly improve the abiotic stress tolerance of crops in the field. These will include mechanistic understanding and subsequent utilization of stress response and stress acclimation networks, with careful attention to field growth conditions, extensive testing in the laboratory, greenhouse, and the field; the use of innovative approaches that take into consideration the genetic background and physiology of different crops; the use of enzymes and proteins from other organisms; and the integration of QTL mapping and other genetic and breeding tools.
机译:非生物胁迫条件(例如干旱,高温或盐碱化)导致全世界农业生产遭受广泛损失。然而,产生对非生物胁迫具有增强的耐受性的转基因作物的进展缓慢。复杂的田间环境及其异质条件,非生物胁迫组合和全球气候变化,只是现代农业面临的一些挑战。可能需要采用多种方法来显着提高田间作物的非生物胁迫耐受性。这些将包括对应力响应和应力适应网络的机械理解和后续利用,并应特别注意田间生长条件,在实验室,温室和田间进行大量测试;考虑到不同农作物的遗传背景和生理的创新方法的使用;使用来自其他生物的酶和蛋白质;以及整合了QTL定位和其他遗传育种工具。

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