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首页> 外文期刊>Revista Brasileira de Engenharia Agricola e Ambiental >Maize: Key agricultural crop in food security and sovereignty in a future with water scarcity
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Maize: Key agricultural crop in food security and sovereignty in a future with water scarcity

机译:玉米:在粮食安全和主权中的主要农业作物在未来的水资源稀缺

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The objective in this review was to discuss the importance of maize currently and the crucial role it may play in the future for food production in scenarios of water shortage, as well as the importance of conserving its landrace cultivars, which have a considerable portion of the reserve of genetic variability. Maize plants, when exposed to water deficit, may develop physiological, morphological, biochemical and anatomical adaptation mechanisms. With the aid of genetic improvement, characteristics that impart tolerance are fixed in plants through conventional methods. In this context, ‘Tuxpe?±o Sequia’ cultivars were developed in Mexico, while in Africa, one of the most important strategies was the development of ‘DT’ (Drought-tolerant) cultivars. In the United States, one of the most important processes was the development of PionerAquamax?? hybrids, while in Brazil, it was the development of cultivars with the ‘Maya Latente’ gene. Through genetic transformation, the hybrid ‘MON 87460’ was developed. However, it should be mentioned that, for a cultivar to be well accepted by producers, besides having one or more adaptation characteristics, it must have a high grain yield. Biotechnological tools such as the use of molecular markers, genetic transformation, and modeling through bioinformatics, associated with conventional selection, will be fundamental to guarantee the advancement of water deficit tolerance in maize.
机译:本评价的目的是讨论目前玉米的重要性以及在水资源短缺情况下粮食生产中可能发挥的至关重要作用,以及保护其兰德品种的重要性,这是一个相当大的部分遗传变异率。玉米植物,暴露于水赤字时,可能会产生生理,形态,生化和解剖改编机制。借助遗传改进,通过常规方法在植物中赋予耐受性的特性。在这种情况下,“Tuxpe?±o Sequia”品种在墨西哥开发,而在非洲,最重要的策略之一是“DT'(耐旱)品种的发展。在美国,最重要的过程之一是先锋答案的发展?杂交种,而在巴西,这是具有“Maya Latente”基因的品种的发展。通过遗传转化,开发了Hybrid'Mon 87460'。然而,应该提到的是,除了具有一种或多种适应特征之外,对于生产者提供良好的品种,它必须具有高颗粒产率。诸如使用分子标记,遗传转化和通过与常规选择相关的生物信息学的使用的生物技术工具将是保证玉米水缺陷耐受性的进步的基础。

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