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Inaugural Article: Strategies for developing Green Super Rice

机译:开幕文章:发展绿色超级稻的策略

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摘要

From a global viewpoint, a number of challenges need to be met for sustainable rice production: (i) increasingly severe occurrence of insects and diseases and indiscriminate pesticide applications; (ii) high pressure for yield increase and overuse of fertilizers; (iii) water shortage and increasingly frequent occurrence of drought; and (iv) extensive cultivation in marginal lands. A combination of approaches based on the recent advances in genomic research has been formulated to address these challenges, with the long-term goal to develop rice cultivars referred to as Green Super Rice. On the premise of continued yield increase and quality improvement, Green Super Rice should possess resistances to multiple insects and diseases, high nutrient efficiency, and drought resistance, promising to greatly reduce the consumption of pesticides, chemical fertilizers, and water. Large efforts have been focused on identifying germplasms and discovering genes for resistance to diseases and insects, N- and P-use efficiency, drought resistance, grain quality, and yield. The approaches adopted include screening of germplasm collections and mutant libraries, gene discovery and identification, microarray analysis of differentially regulated genes under stressed conditions, and functional test of candidate genes by transgenic analysis. Genes for almost all of the traits have now been isolated in a global perspective and are gradually incorporated into genetic backgrounds of elite cultivars by molecular marker-assisted selection or transformation. It is anticipated that such strategies and efforts would eventually lead to the development of Green Super Rice.
机译:从全球的角度来看,可持续稻米生产需要面对许多挑战:(i)越来越严重的昆虫和疾病的发生以及不加选择的农药施用; (ii)增产和过度使用肥料的高压; (iii)水资源短缺和干旱日益频繁; (iv)在边缘土地上广泛种植。为了解决这些挑战,已经制定了一种基于基因组研究最新进展的方法组合,其长期目标是开发称为绿色超级稻的水稻品种。在持续提高产量和提高质量的前提下,绿色超级稻应该具有对多种病虫的抵抗力,高养分效率和抗旱性,有望大大减少农药,化肥和水的消耗。大量的努力集中在鉴定种质和发现抗病虫害的基因,氮和磷的利用效率,抗旱性,谷物品质和单产上。所采用的方法包括筛选种质集合和突变体文库,发现和鉴定基因,在压力条件下对差异调节基因进行微阵列分析以及通过转基因分析对候选基因进行功能测试。目前,已从全球角度分离了几乎所有性状的基因,并通过分子标记辅助选择或转化逐步将其整合到优良品种的遗传背景中。可以预见,这样的策略和努力最终将导致绿色超级稻的发展。

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