正常和生理盐水条件下甜菜基因型分型

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引用次数: 0

摘要

为了对育种项目获得的甜菜全兄妹和杂交品种进行排序和分组,于2017年在绵道县农业与自然资源研究站农场分别在生理盐水和正常条件下进行了两次试验。为此,对17个全兄妹和28个杂交种进行了不同性状的环境胁迫抗性和易感性研究。两种条件下的排序结果均表明,全兄妹试验的基因型18和22以及杂交试验的基因型6、23、25、27和29均优于其他基因型。聚类分析表明,在两种实验中(全兄妹和杂交种),正常环境和盐水环境之间存在轻微的匹配,环境影响基因型的分组。全株试验的主成分分析表明,在两种条件下,叶面积、根产量、糖产量、根干重、相对失水、糖含量、糖浆纯度和可提取糖含量在第一和第二组分中贡献最大。杂交试验中,叶面积、根系产量和叶片含水量对第一和第二组分的影响最大。试验研究的性状大多具有多样性,可用于甜菜基因型的分类。此外,分组将根据环境条件而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sugar Beet Genotypes Grouping under Normal and Saline Conditions
For ranking and grouping of full-sibs and hybrids of sugar beet obtained from breeding programs, two separate experiments were carried out at the farm of the Agricultural and Natural Resources Research Station of Miandoab in 2017 under saline and normal conditions. For this purpose, 17 full-sibs and 28 hybrids differing in resistance and susceptibility to environmental stresses were investigated in for different traits. The ranking results in both conditions indicated that genotypes 18 and 22 in full-sibs test and, genotypes 6, 23, 25, 27 and 29 in the hybrid test were superior to all other genotypes. Cluster analysis showed that in both experiments (full-sibs and hybrids), there was a slight matching between the normal and saline environments and the environment affects the grouping of genotypes. Principle Components Analysis in the full-sibs test indicated that in both conditions, leaf area, root yield, sugar yield, root dry weight, relative water loss, sugar content, purity of syrup and extractable sugar content had the highest contribution in the first and second components . In contrast, in the hybrid test, leaf area, root yield and leaf water content had the highest role in the first and second components. Most of the traits studied in the experiments contained diversity and can be used for grouping sugar beet genotypes. Also, groupings will vary depending on environmental conditions.
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