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Molecular breeding of rice for improved disease resistance, a review

机译:水稻分子育种提高抗病性的研究进展

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摘要

Diseases are considered to be the major limiting factors in rice production around the globe. Considering rice as an important cereal crop, developing disease resistant cultivars is a prime objective of breeders. Compared to conventional breeding, molecular breeding especially using marker assisted selection appears to be more effective and precise. The best management of disease is to bring durable wide spectrum resistance in rice cultivars. This can be accomplished by accumulating both qualitative and quantitative resistance genes in to rice cultivars. Introducing these resistance genes from the wild relatives of rice in to commercial cultivars has greatly helped the breeders to accomplish this task. Marker assisted selection is extremely valuable in resolving the issues the breeders face with traditional breeding. A number of transgenic rice lines harboring the so called 'foreign' resistant genes have been produced. However such promising lines must be extensively replicated in fields to evaluate stable integration and continued expression of genes. None the less identification of disease resistance genes and quantitative trait loci (QTLs), use of marker assisted selection along with gene pyramiding and transgenic approaches all provide breeders a hope to build high yielding disease resistant cultivars. Based on such premises, we can truly envision broadening of our understanding the genetic and molecular basis of disease resistance in rice.
机译:疾病被认为是全球水稻生产的主要限制因素。考虑到水稻是重要的谷物作物,发展抗病品种是育种者的主要目标。与常规育种相比,分子育种,尤其是使用标记辅助选择的育种似乎更有效,更精确。最好的疾病控制方法是使水稻品种具有持久的广谱抗性。这可以通过积累对水稻品种的定性和定量抗性基因来实现。将这些抗性基因从水稻的野生近缘种引入商业品种,极大地帮助了育种者完成这项任务。标记辅助选择对于解决育种者传统育种面临的问题非常有价值。已经产生了许多带有所谓的“外源”抗性基因的转基因水稻品系。然而,这种有希望的品系必须在田间广泛复制以评估基因的稳定整合和持续表达。尽管如此,抗病基因和数量性状位点(QTL)的鉴定,标记辅助选择以及基因金字塔和转基因方法的使用都为育种者提供了建立高产抗病品种的希望。基于这样的前提,我们可以真正设想扩大我们对水稻抗病性的遗传和分子基础的理解。

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