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Use of genetic engineering in rice improvement

机译:基因工程在水稻改良中的应用

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Since the first recovery of a transgenic rice plant in 1988, major progress has been made in manipulating traits of interest through genetic engineering of this plant of high sociological, cultural and economic importance. These traits encompass resistance to insect pests, and fungal, bacterial and viral pathogens, tolerance to abiotic constraints (mineral toxicities and deprivation, low or high temperatures, water excess or shortage) and the nutritional or industrial qualities of the grain. Last but not least, engineering metabolic pathways in a tissue-specific manner have led, for instance, to the accumulation of carotene in the rice endosperm as well as of C4?photosynthetic enzymes in appropriate anatomical compartments of the leaf. Other projects aim at producing molecules for therapeutic or industrial use in the seed. Although some of these innovations have been readily transferable to rice farmers for several years, public policies are still hesitant. The scientific community has taken advantage of this to study the impact on the alimentation and the environment related to the consumption or the deployment of the future engineered crops.
机译:自从1988年首次恢复转基因水稻植物以来,通过对该植物具有高度社会学,文化和经济意义的基因工程,在操纵相关性状方面取得了重大进展。这些性状包括对害虫,真菌,细菌和病毒病原体的抗性,对非生物限制(矿物毒性和剥夺,低温或高温,水过量或短缺)的耐受性以及谷物的营养或工业品质。最后但并非最不重要的一点是,以组织特异性方式进行的工程代谢途径已导致例如,在稻胚乳中胡萝卜素的积累以及在叶片的适当解剖区室中的C4α光合酶的积累。其他项目旨在生产种子中用于治疗或工业用途的分子。尽管这些创新中的一些已经很容易地转移给稻农多年了,但公共政策仍然犹豫不决。科学界已利用这一优势来研究与食用或部署未来工程作物有关的营养和环境影响。

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