杏仁品种和基因型表型特征的多样性和广义遗传力

A. Imani, Ghader Amani, M. Shamili, A. Mousavi, Rezaie Hamed, M. Rasouli, P. García
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引用次数: 5

摘要

表型和遗传多样性是未来果树育种的必要条件。本研究旨在研究几种杏仁基因型重要物候性状的遗传多样性和遗传力。幼苗采用完全随机区组设计,3个重复,每个重复2棵树。物候性状包括花大小、花瓣长度、花瓣宽度、萼片长度、萼片宽度、雌蕊长度、雌蕊厚度。在2017年2月27日至3月29日期间,对33个杏仁品种和基因型的雄蕊数、首次花期、10%花期、50%花期、90%花期和开花日期进行了评价。结果表明,所研究品种和基因型之间存在遗传变异。雌蕊长度、花瓣宽度和花期表型差异较大。所有杏仁新材料的精确和扩展特性可以为育种者提供新的机会,以开发未来的杂交品种,并获得更具抗性的幼苗,这些幼苗可以更好地适应该地区和世界其他地区的极端和不断变化的天气条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diversity and Broad Sense Heritability of Phenotypic Characteristic in Almond Cultivars and Genotypes
Phenotypic and genetic diversity are mandatory aspects to allow future breeding in fruit trees. This work was aimed to study the genetic diversity and heritability of important phenological traits in several almond genotypes. The seedlings were planted in randomized complete block design with 3 replications (two trees in each replication). Phenological traits including flower size, petal length, petal width, sepal length, sepal width, pistil length, pistil thickness were evaluated. Furthermore, number of stamens, first flowering, 10% flowering, 50% flowering, 90% flowering, date of flowering among 33 selected almond cultivars and genotypes were also evaluated using almond descriptors during 27 February to 29 March 2017. The results showed the existence of genetic variation among the studied cultivars and genotypes. A great phenotypic variation was observed for pistil length, petal width and flowering time. The exact and extended characterizations of all the new materials of almond could provide breeders new opportunities to develop future crosses and to obtain more resistant seedlings that can be better adapted to extreme and changing weather conditions in this area and in other regions of the world.
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