Spike index stability of bread wheat grown on halomorphic soil

N. Ljubičić, V. Popović, Bojana Ivošević, V. Rajičić, D. Simić, M. Kostić, Miloš Pajić
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引用次数: 2

Abstract

Bread wheat is one of the most important crops in the world. Wheat breeding has been based on science and has been constantly evolving due to breeding program improvements. Improving yield potential, resistance/tolerance to biotic and abiotic stresses, and baking quality are priorities for breeding this cereal. Soil and climatic conditions are one of the most important factors affecting the grain yield of wheat. During the two vegetation seasons, phenotypic variability and genotype by environment interaction (GEI) for spike index of eleven wheat genotypes were studied under specific growing conditions of halomorphic soil, solonetz type. The combined ANOVA showed that the phenotypic expression of spike index was significantly influenced by environmental variations, because the significant variance explained 48.8 % of the total variation, while genotype contributed with 7.8 % of the total variation of the experiment. The first source of variation IPCA1 explained 55.6 % of the GEI variation for the spike index of wheat. Genetics analysis of different wheat genotypes grown in different agro-ecological conditions contributes to their better utilization, as well as, selection for crosses in wheat breeding programs.
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半胚土壤上面包小麦穗指数稳定性研究
面包小麦是世界上最重要的农作物之一。小麦育种以科学为基础,由于育种计划的改进而不断发展。提高产量潜力、对生物和非生物胁迫的抗性/耐受性以及烘焙品质是该谷物育种的重点。土壤和气候条件是影响小麦产量的重要因素之一。研究了在半形土(solonetz型)特定生长条件下11个小麦基因型穗指数的表型变异和环境互作基因型(GEI)。联合方差分析表明,穗指数表型表达受环境变异的影响显著,显著变异解释了总变异的48.8%,而基因型对总变异的贡献率为7.8%。第一变异源IPCA1解释了小麦穗指数GEI变异的55.6%。对不同农业生态条件下生长的不同小麦基因型进行遗传分析,有助于更好地利用这些基因型,并在小麦育种中进行杂交选择。
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审稿时长
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