Inheritance of Drought Tolerance Using Six Populations Model in Two Bread Wheat Crosses

IF 0.5 Q4 AGRONOMY Egyptian Journal of Agronomy Pub Date : 2021-02-09 DOI:10.21608/AGRO.2021.51233.1239
A. Said, Y. Hefny
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Abstract

Drought stress is the primary restricting factor of crop productivity in Egypt. The development of drought-tolerant lines is urgent. However, drought tolerance is a complex trait. So, this work aimed to reveal the genetic background and gene effects controlling of yield parameters and to discover the epistasis in two bread wheat crosses; Sakha 93 × pureline 5 and Gemmeiza 10 × pureline 42 under irrigated and drought conditions, utilizing seven generations viz. P1, P2, F1, BC1, BC2, F2 and F3. Genetic analysis revealed that additive and dominance effects are involved in the genetics for most traits in both crosses and conditions. Both additive x additive and additive x dominance effects were significant in most cases, supporting the presence of duplicate type of epistasis. Therefore, early generation selection would have failed. F1 hybrids (Drought susceptibility indexes were 0.278 in cross I and 0.295 in cross II), were less affected by drought stress conditions, displaying the presence of heterobeltiosis for drought tolerance. Broad-sense and narrow-sense heritabilities and genetic advance ranged from moderate to high for most of the studied traits and these two crosses could be selected to produce high yielding lines under drought conditions. R
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两个面包小麦杂交组合抗旱性的六种群模型遗传
干旱胁迫是埃及作物生产力的主要制约因素。抗旱系的开发迫在眉睫。然而,耐旱性是一个复杂的特性。因此,本研究旨在揭示两个面包小麦杂交组合的遗传背景和控制产量参数的基因效应,发现其上位性;Sakha 93×pureline 5和Gemmeiza 10×pureline 42在灌溉和干旱条件下,利用P1、P2、F1、BC1、BC2、F2和F3 7代。遗传分析表明,无论是在杂交还是条件下,大多数性状的遗传都涉及加性效应和显性效应。加性x加性和加性x显性效应在大多数情况下都是显著的,支持重复型上位性的存在。因此,早期世代的选择会失败。F1杂交种(抗旱性指数I为0.278,II为0.295)受干旱胁迫条件的影响较小,表现出抗旱性的异带性。所研究的大多数性状的广义和狭义遗传力和遗传进展从中等到高不等,这两个杂交组合可以在干旱条件下生产高产品系。R
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CiteScore
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发文量
10
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