Diapari Marwan
Southern Crop Protection and Food Research Centre, Agriculture and Agri-Food Canada / Agriculture et Agroalimentaire Canada, 1391 Sandford St., London, ON, N5V 4T3 Canada.
Curr Issues Mol Biol. 2016;19:137-44. Epub 2015 Sep 11.
It is envisioned that a more precise study of the association between the traits and biomarkers will dramatically decrease the time and costs required to bring new improved disease resistance lines to market. The field of omics has an enormous potential to assess diseases more precise, including the identification and understanding of pathogenic mechanisms in legume crops, and have been exemplified by a relatively large number of studies. Recently, molecular genetic studies have accumulated a huge amount of genotypic data, through a more affordable next generation sequencing (NGS) technology, causing the omics approaches to fall behind. In this paper I provide an overview of genomics and proteomics and their use in legume crops, including the use of comparative genomics to identify homologous markers within legume crops.
可以预见,对这些性状与生物标志物之间的关联进行更精确的研究,将大幅减少培育新的改良抗病品系并推向市场所需的时间和成本。组学领域在更精确地评估疾病方面具有巨大潜力,包括在豆类作物中识别和理解致病机制,并且已经有相当多的研究实例。最近,分子遗传学研究通过更经济实惠的新一代测序(NGS)技术积累了大量的基因型数据,使得组学方法显得滞后。在本文中,我将概述基因组学和蛋白质组学及其在豆类作物中的应用,包括利用比较基因组学在豆类作物中识别同源标记。