马夫达什特和MV-17杂交小麦正常和末期干旱胁迫条件下后代农艺性状遗传控制模型的估计

R. Amiri, S. Bahraminejad, K. Cheghamirza
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引用次数: 0

摘要

研究控制农艺性状的遗传结构是选择适宜的育种方法的前提之一。为了利用代均值分析分析面包小麦部分农艺性状的遗传特性,在2015-2016年种植季,在伊朗拉兹大学研究农场,采用3个重复的随机完全区组设计,对Marvdasht × MV-17小麦品种杂交的亲本和不同世代进行了评价。加权方差分析结果显示,在两种条件下,大多数性状在不同世代之间存在显著差异。代均值分析表明,除加性和显性基因效应外,多种上位性效应也对大多数性状的遗传起作用,因此不能指望第一代选择成功。在株高、花梗长度和芒长上,加性基因效应的作用大于显性效应,说明利用循环选择将这些基因聚集起来,然后选择农艺性状较好的品系是有益的。在两种条件下,大部分性状的遗传控制模式在有无非等位基因相互作用方面是相似的,并且没有受到干旱胁迫的广泛影响。在两种条件下,株高、花序梗长和芒长的广义遗传力均较高。两种条件下籽粒产量的广义遗传力均为中等,而狭义遗传力极低。一般来说,考虑到非加性基因效应对大多数性状的作用更大,建议在高级代和获得高水平基因固定后进行选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of Genetic Control Model for Agronomic Traits in the Progeny of Marvdasht and MV-17 Wheat Cross under Normal and Terminal Drought Stress Conditions
The study of the genetic structure controlling agronomic traits is one of the preconditions for selecting the appropriate breeding method. In order to analyze genetic of some agronomic traits of bread wheat using generation mean analysis, parents and different generations resulting from the cross of Marvdasht × MV-17 wheat cultivars were assessed in a randomized complete block design with three replicates under normal and terminal drought stress conditions in Research Farm of Razi University (Iran) during 2015-2016 cropping season. Based on the results of weighted ANOVA, a significant difference was observed between different generations for most of the studied traits under both conditions. Generations mean analysis revealed that in addition to the additive and dominance gene effects, a variety of epistatic effects also played a role in the inheritance of most traits, and therefore cannot hope for the success of selection in first generations. The role of additive gene effect was greater than the dominance one for plant height, peduncle length and awn length, indicating usefulness of using recurrent selection to aggregate these genes followed by selecting lines with favorable agronomic characteristics. The model of genetic control for most of the traits was similar under both conditions in terms of the presence or absence of non-allelic interactions and it has not been widely affected by drought stress. The broad-sense heritability for plant height, peduncle length and awn length was estimated to be high under both conditions. The broad-sense heritability for kernel yield was moderate estimated under both conditions, but the narrow-sense heritability was very low. In general, considering the greater role of the non-additive gene effect for most of the traits, the selection is suggested in advanced generations and after access to a high level of gene fixation.
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