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Genetic engineering of crops: a ray of hope for enhanced food security

机译:作物基因工程:增强粮食安全的一线希望

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摘要

Crop improvement has been a basic and essential chase since organized cultivation of crops began thousands of years ago. Abiotic stresses as a whole are regarded as the crucial factors restricting the plant species to reach their full genetic potential to deliver desired productivity. The changing global climatic conditions are making them worse and pointing toward food insecurity. Agriculture biotechnology or genetic engineering has allowed us to look into and understand the complex nature of abiotic stresses and measures to improve the crop productivity under adverse conditions. Various candidate genes have been identified and transformed in model plants as well as agriculturally important crop plants to develop abiotic stress-tolerant plants for crop improvement. The views presented here are an attempt toward realizing the potential of genetic engineering for improving crops to better tolerate abiotic stresses in the era of climate change, which is now essential for global food security. There is great urgency in speeding up crop improvement programs that can use modern biotechnological tools in addition to current breeding practices for providing enhanced food security.
机译:自数千年前开始有组织地种植农作物以来,作物改良一直是基本和必不可少的追求。总体而言,非生物胁迫被视为限制植物物种发挥其全部遗传潜能以提供所需生产力的关键因素。不断变化的全球气候条件正在使它们变得更糟,并指出了粮食不安全。农业生物技术或基因工程使我们能够研究和了解非生物胁迫的复杂性质以及在不利条件下提高作物生产力的措施。已经鉴定了各种候选基因并在模型植物以及农业上重要的农作物中进行了转化,以开发非生物胁迫耐受性植物以改善农作物。此处提出的观点是在实现基因工程潜力的尝试,旨在在气候变化时代实现改良农作物以更好地耐受非生物胁迫,而现在这对于全球粮食安全至关重要。迫切需要加快作物改良计划,除了目前的育种做法以外,还可以使用现代生物技术工具来增强粮食安全。

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