Institut de Recerca i Tecnologia Agroalimentàries, Centre for Research in Agricultural Genomics, CSIC-IRTA-UAB-UB, Barcelona, Spain.
Physiol Plant. 2015 Sep;155(1):4-11. doi: 10.1111/ppl.12323. Epub 2015 Feb 6.
The availability of the genome sequence of many crop species during the past few years has opened a new era in plant biology, allowing for the performance of massive genomic studies in plant species other than the classical models Arabidopsis and rice. One of these crop species is melon (Cucumis melo), a cucurbit of high economic value that has become an interesting model for the study of biological processes such as fruit ripening, sex determination and phloem transport. The recent availability of the melon genome sequence, together with a number of genetic and genomic resources, provides powerful tools that can be used to assist in the main melon breeding targets, namely disease resistance and fruit quality. In this review, we will describe recent data obtained combining the use of a melon near isogenic line (NIL) population and genomic resources to gain insight into agronomically important traits as fruit ripening, resistance to Cucumber Mosaic virus (CMV) and the accumulation of sugars in fruits.
在过去的几年中,许多作物物种的基因组序列的可用性开启了植物生物学的新纪元,使得在除经典模式植物拟南芥和水稻之外的植物物种中进行大规模基因组研究成为可能。其中一种作物是甜瓜(Cucumis melo),这是一种具有高经济价值的葫芦科植物,已成为研究果实成熟、性别决定和韧皮部运输等生物学过程的有趣模型。最近甜瓜基因组序列的可用性,以及一系列遗传和基因组资源,提供了强大的工具,可以用于辅助甜瓜的主要育种目标,即抗病性和果实品质。在这篇综述中,我们将描述结合使用甜瓜近等基因系(NIL)群体和基因组资源获得的最新数据,深入了解果实成熟、对黄瓜花叶病毒(CMV)的抗性和果实中糖积累等农业上重要的性状。