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Novel Genomic Tools and Modern Genetic and Breeding Approaches for Crop Improvement

机译:新型基因组工具和现代遗传育种方法

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In recent past, genomic tools especially molecular markers have been extensively used for understanding genome dynamics as well for applied aspects in crop breeding. Several new genomics technologies such as next generation sequencing (NGS), high-throughput marker genotyping, -omics technologies have emerged as powerful tools for understanding genome variation in crop species at DNA, RNA as well as protein level. These technologies promise to provide an insight into the way gene(s) are expressed and regulated in cell and to unveil metabolic pathways involved in trait(s) of interest for breeders not only in model-major- but even for under-resourced crop species which were once considered "orphan" crops. In parallel, genetic variation for a species present not only in cultivated genepool but even in landraces and wild species can be harnessed by using new genetic approaches such as advanced-backcross OTL (AB-QTL) analysis, introgression libraries (ILs), multi-parent advanced generation intercross (MAGIC) population and association genetics. The gene(s) or genomic regions, responsible for trait(s) of interest, identified either through conventional linkage mapping or above mentioned approaches can be introgressed or pyramided to develop superior genotypes through molecular breeding approaches such as marker-assisted back crossing (MABC), marker assisted recurrent selection (MARS) and genome wide selection (GWS). This article provides an overview on some recent genomic tools and novel genetic and breeding approaches as mentioned above with a final aim of crop improvement.
机译:在最近的过去,基因组学工具,尤其是分子标记,已广泛用于理解基因组动力学以及在作物育种中的应用方面。几种新的基因组学技术,例如下一代测序(NGS),高通量标记基因分型,-组学技术,已经成为了解DNA,RNA和蛋白质水平的农作物基因组变异的强大工具。这些技术有望提供有关基因在细胞中表达和调控方式的见解,并揭示与模型有关的育种者的代谢途径,这些育种不仅限于主要模型的物种,甚至包括资源贫乏的作物物种。曾经被视为“孤儿”的农作物同时,不仅可以通过使用新的遗传方法(例如先进回交OTL(AB-QTL)分析,基因渗入文库(ILs),多种父代高级杂交(MAGIC)群体和协会遗传学。通过常规连锁作图或上述方法鉴定的负责目的性状的基因或基因组区域,可以通过分子育种方法(例如标记辅助回交(MABC))进行基因导入或金字塔合成,以发展出优良的基因型。 ),标记辅助的复发选择(MARS)和全基因组选择(GWS)。本文概述了上述一些最新的基因组工具以及新颖的遗传和育种方法,最终目的是改善作物。

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