Agronomic and Morpho-Physiological Characterization of Some Advanced Lines being Selected in Durum Wheat Cultivated in Semi-Arid Conditions

Messaoudi Noura, Benderradji Laid, Bouzerzour Hammena, Benmahammed Ammar, Brini Faiçal
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引用次数: 1

Abstract

Knowledge of agro-physiological traits associated with drought tolerance would be useful for developing breeding materials for drought-prone environments. This study was conducted to estimate genetic variability among nine durum wheat genotypes in response to drought. Our results indicated that the effect of the campaign, genotype, and genotype × interaction was significant for the thirteen variables measured, except for the relative water content. The variability observed was greater for grain yield, biomass, ear fertility, straw and economic yields, chlorophyll content, and cell integrity. Heritability was high for the number of grains per ear and the chlorophyll content; medium for thousand kernel weights, low for grain yield, biomass, and economic yield, and zero for the rest of the variables measured. The results also showed that the agro-morphological characters were significantly linked to each other, unlike the physiological characters which showed non-significant relation between them and with the agro-morphological characters. This suggests that among the varieties evaluated, the selection of those which are tolerant and with high yield potential should therefore be made on a case-by-case basis and not based on a specific physiological character, a marker of tolerance, highly correlated with yield grain. The nine varieties evaluated were subdivided into three divergent clusters of three varieties each. Cluster C1 consists of the least performing varieties, unlike the other two clusters which bring appreciable gains for several characteristics including grain yield, biomass, the weight of 1000 grains, straw yield, and ear fertility and a marked improvement in chlorophyll content and a significant reduction in damage to the cell membrane by thermal stress. In conclusion and following their divergence, it is suggested to use the varieties of clusters C2 and C3 in crossing with the varieties of cluster C1 to improve and reconcile stress tolerance and yield potential in the same genetic background.
半干旱条件下硬粒小麦选育高级品系的农艺和形态生理特性
了解与耐旱性有关的农业生理性状将有助于开发适合干旱易发环境的育种材料。本研究分析了9个硬粒小麦基因型对干旱的遗传变异。结果表明,除相对含水量外,运动、基因型和基因型互作对13个变量的影响均显著。籽粒产量、生物量、穗肥力、秸秆和经济产量、叶绿素含量和细胞完整性的变异较大。穗粒数和叶绿素含量遗传力高;千粒重为中等,粮食产量、生物量和经济产量为低,其余测量变量为零。结果还表明,不同于生理性状与形态性状之间的非显著相关,不同于形态性状与形态性状之间的显著相关。因此,在评价的品种中,选择具有耐受性和高产潜力的品种应根据具体情况进行选择,而不应根据特定的生理性状,即与产量籽粒高度相关的耐受性标志。9个被评估的品种被细分为3个不同的集群,每个集群3个品种。与其他两个在籽粒产量、生物量、千粒重、秸秆产量、穗肥力、叶绿素含量显著提高和热胁迫对细胞膜损伤显著减少等几个特性上带来显著收益的集群不同,集群C1由表现最差的品种组成。综上所述,在其分化之后,建议在相同遗传背景下,利用C2和C3集群品种与C1集群品种杂交,以提高和协调抗逆性和产量潜力。
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