Subtropical Horticulture Research Institute and Faculty of Biotechnology, Jeju National University, Jeju, 63243, Korea.
Department of Life Sciences, Presidency University, Kolkata, 700073, India.
Plant Cell Environ. 2017 Nov;40(11):2469-2486. doi: 10.1111/pce.12887. Epub 2017 Mar 20.
The phenotypes associated with plant photomorphogenesis such as the suppressed shade avoidance response and de-etiolation offer the potential for significant enhancement of crop yields. Of many light signal transducers and transcription factors involved in the photomorphogenic responses of plants, this review focuses on the transgenic overexpression of the photoreceptor genes at the uppermost stream of the signalling events, particularly phytochromes, crytochromes and phototropins as the transgenes for the genetic engineering of crops with improved harvest yields. In promoting the harvest yields of crops, the photoreceptors mediate the light regulation of photosynthetically important genes, and the improved yields often come with the tolerance to abiotic stresses such as drought, salinity and heavy metal ions. As a genetic engineering approach, the term photo-biotechnology has been coined to convey the idea that the greater the photosynthetic efficiency that crop plants can be engineered to possess, the stronger the resistance to biotic and abiotic stresses. Development of GM crops based on photoreceptor transgenes (mainly phytochromes, crytochromes and phototropins) is reviewed with the proposal of photo-biotechnology that the photoreceptors mediate the light regulation of photosynthetically important genes, and the improved yields often come with the added benefits of crops' tolerance to environmental stresses.
与植物光形态建成相关的表型,如抑制荫蔽回避反应和去黄化,为显著提高作物产量提供了潜力。在参与植物光形态建成反应的许多光信号转导器和转录因子中,本综述重点关注位于信号事件最上游的光受体基因的转基因过表达,特别是作为遗传工程作物的转基因的光敏色素、隐花色素和光受体,以提高收获产量。在促进作物收获产量方面,光受体介导对光合作用重要基因的光调控,并且产量的提高通常伴随着对非生物胁迫的耐受性,如干旱、盐度和重金属离子。作为一种遗传工程方法,已经创造了“光生物技术”这一术语,以传达这样一种理念,即作物可以被设计具有更高的光合作用效率,从而具有更强的生物和非生物胁迫抗性。本文综述了基于光受体转基因(主要是光敏色素、隐花色素和光受体)的转基因作物的发展,并提出了光生物技术的观点,即光受体介导对光合作用重要基因的光调控,并且产量的提高通常伴随着作物对环境胁迫耐受性的提高。