Classical Genetics and Traditional Breeding in Cucumber (Cucumis sativus L.)

Gograj Singh Jat, Tusar Kanti Behera, S. Lata, Sachin Kumar
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引用次数: 1

Abstract

Rapid progress has been made in classical genetics and traditional breeding in cucumber for various quantitative and qualitative traits which greatly benefited the development of superior varieties suitable for open field and protected cultivation. The different breeding methods like plant introductions, hybridizations, pedigree selection, recombination breeding and marker assisted selection have been employed successfully in developing superior varieties and F1 hybrids. The development of new varieties with earliness, high-yield and resistance to diseases (powdery mildew, downy mildew and tolerant to virus) through selection of superior parental lines followed by hybridization and marker assisted introgression of desired genes was a game changer in cucumber breeding. The exploitation of gynoecious sex along with parthenocarpic traits in traditional breeding has made revolution in cucumber cultivation throughout the world which enabled the adoption of cucumber crop by farming community on large scale. Molecular markers technology could be exploited to overcome the obstacle of traditional breeding by accelerating the breeding cycle and selection of desirable traits. The high density genetic maps for various traits have been constructed in cucumber to detected quantitative traits loci (QTLs) for genetic enhancement in different market classes of cucumber. Therefore, this chapter highlighted the concepts of genetic foundations for advancement made in cucumber breeding.
黄瓜经典遗传与传统育种
黄瓜各种数量和质量性状的经典遗传和传统育种取得了迅速进展,为开发适合大田和设施栽培的优良品种提供了有利条件。植物引种、杂交、家系选择、重组育种和标记辅助选择等育种方法已成功培育出优良品种和F1杂交种。通过选择优良亲本,然后进行杂交和标记辅助基因渗入,培育出早熟、高产、抗病(白粉病、霜霉病和耐病毒)的新品种,是黄瓜育种的一大变革。传统育种中对雌雄同体性状和孤雌性性状的开发利用,使世界各地的黄瓜栽培发生了革命,使黄瓜作物得以大规模地为农业社区所采用。分子标记技术可以通过加快育种周期和选择理想性状来克服传统育种的障碍。构建了黄瓜各性状的高密度遗传图谱,以检测黄瓜不同市场类别的数量性状位点(qtl)。因此,本章重点介绍了黄瓜育种进展的遗传基础概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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