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首页> 外文期刊>Scientia horticulturae >Heritability of drought resistance in Solanum aethiopicum Shum group and combining ability of genotypes for drought tolerance and recovery
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Heritability of drought resistance in Solanum aethiopicum Shum group and combining ability of genotypes for drought tolerance and recovery

机译:Solanum Aethiopicum Shum组抗旱性的遗传性,以及基因型对耐旱性及恢复的基因型能力

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摘要

Drought tolerance is a complex trait whose inheritance had not been investigated in Solarium aethiopicum L. Shum group. This is partly because of perceived cross incompatibilities in the crop. This study relied on 24 successful crosses from an incomplete 9 x 4 North Carolina II mating design, evaluated under five watering conditions based on plant growth stage and watering level in order to determine the heritability of drought resistance and combining ability. Subsequent data analyses were based on restricted maximum likelihood. Overall, specific combining ability (SCA) effects were significant across and within watering environments for all study traits. The most highly heritable traits (in the narrow-sense) were identified as leaves per plant, chlorophyll content (CHL), leaf fresh yield and leaf dry yield while leaf area (LA), leaf relative water content (LRWC) and leaf mass area (LMA) were least heritable. However, the broad sense heritability (H-2) was over 0.80 for seven of the traits, indicating that dominance gene action surpass additive gene effects for drought resistance in S. aethiopicum Shum. Further analysis showed that LA is suited for selection of best combiners under well watered and drought-stress (DS) treatments. The LRWC served best in separating the SCA effects of crosses under DS. The CHL produced clear separations of SCA effects under both DS and drought recovery while LMA served best under the latter.
机译:干旱耐受性是一种复杂的特征,其遗传尚未在日光浴杆菌组织中进行调查。这部分是因为在作物中感知交叉不兼容性。这项研究依赖于24个成功的十字架,来自不完整的9 x 4北卡罗来纳州II交配设计,根据植物生长阶段和浇水水平在五个浇水条件下评估,以确定抗旱性和结合能力的可遗传性。随后的数据分析基于受限制的最大可能性。总体而言,针对所有研究特征的浇水环境中,具体的组合能力(SCA)效应是显着的。最高兴处的性状(狭义)被鉴定为每种植物的叶片,叶绿素含量(CHL),叶片新鲜产率和叶片干屈服,而叶面积(LA),叶相对含水量(LRWC)和叶片质量区域(LMA)是最不可遗传的。然而,七种性状的广义遗传性(H-2)超过0.80,表明占主导地位基因动作超越了抗旱性抗旱性的添加剂基因效应。进一步的分析表明,LA适用于在良好的浇水和干旱应激(DS)处理下选择最佳组合器。 LRWC最好分离DS下交叉的SCA效应。 CHL在DS和干旱恢复下产生了清晰的SCA效应的分离,而LMA在后者下面最佳。

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