首页> 外文期刊>African Journal of Plant Science >Validation of the use of secondary traits and selection indices for drought tolerance in tropical maize (Zea mays L.)
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Validation of the use of secondary traits and selection indices for drought tolerance in tropical maize (Zea mays L.)

机译:验证热带玉米干旱耐受次级特征和选择指标(Zea Mays L.)

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Breeding progress for drought tolerance in maize has been slow since drought tolerance is a complex trait controlled by many genes. Breeders improving maize for drought tolerance have therefore been using secondary traits and selection indices for selecting the best genotypes under drought stress. The objectives of this study were to determine the combining ability of the inbred lines in stress and non stress environments as well as compare the use and efficacy of secondary traits and selection indices in selecting for drought tolerant genotypes. Fifty hybrids formed through a North Carolina Design II and four checks were evaluated using the 0.1 alpha lattice planting design under optimum and drought environments. General combining ability (GCA), specific combining ability (SCA) and seven drought indices (SDI), stress susceptibility index (SSI), tolerance (TOL), yield index (YI), yield stability index (YSI), mean productivity index (MPI), stress tolerance index (STI) and geometric productivity index (GMP) were used in the computation of results. Results showed that under drought conditions, GCA was highly significant (P<0.001) for grain yield, anthesis-silking interval (ASI) and ears per plant (EPP) while SCA was significant for grain yield and EPP. Selection indices STI and GMP had positive and significant correlation (P<0.01) with grain yield under both drought stress (Ys) and optimum (Yp) conditions. EPP also had significant (P<0.01) and positive correlation with Ys and Yp. ASI had significant and negative correlation with Ys (P<0.01) and TOL (P <0.05). In addition EPP had a positive and significant correlation with STI (P<0.05) and GMP (P<0.01). The results indicated that ASI, EPP, STI and GMP are effective in identifying high yielding genotypes under different moisture regimes. Narrow sense heritability showed that phenotypic variation attributed to genetic effects increased under stress conditions for EPP and ASI and making them more reliable parameters for use in selecting for genotypes under stress conditions. The two secondary traits (ASI and EPP) together with two drought indices; (STI and GMP) can therefore be used in tandem for increased efficiency in selecting for genotypes under stress environments.
机译:玉米耐旱育种的育种进展缓慢,因为耐旱性是由许多基因控制的复杂性状。因此,育种者改善了玉米的含水耐受性,因此使用辅助特征和选择指标,用于在干旱胁迫下选择最佳基因型。本研究的目的是确定近交系压力和非应力环境中的近交系的组合能力,以及比较二次特征和选择索引在选择耐旱基因型中的使用和功效。通过北卡罗来纳州设计II和四种检查,使用0.1α晶格种植设计在最佳和干旱环境下进行评估五十次杂种。一般结合能力(GCA),特定的组合能力(SCA)和七种干旱指数(SDI),应力易感性指数(SSI),耐受性指数(yi),产量稳定性指数(YSI),平均生产率指数( MPI),应力公差指数(STI)和几何生产率指数(GMP)用于计算结果。结果表明,在干旱条件下,GCA对于籽粒产量,平坦丝绸间隔(ASI)和耳朵(EPP)的颗粒产量(P <0.001)非常显着(P <0.001),而SCA对于籽粒产量和EPP具有重要意义。选择索引STI和GMP在干旱胁迫(Ys)和最佳(yp)条件下具有正且显着的相关性(p <0.01),谷物产量和最佳(yp)条件。 EPP还具有显着的(P <0.01)和与YS和YP的正相关。 ASI与ys(p <0.01)和β具有显着且负相关(p <0.05)。此外,EPP与STI(P <0.05)和GMP(P <0.01)具有正显着和显着相关性。结果表明,ASI,EPP,STI和GMP在不同的湿度制度下鉴定高产基因型有效。狭窄的感穷病表明,在EPP和ASI的胁迫条件下归因于遗传效应的表型变异,并使它们更可靠参数用于在应力条件下选择基因型。两个次级特征(ASI和EPP)与两个干旱指数一起;因此,(STI和GMP)因此可以在串联中使用,以提高效率在应力环境下​​选择基因型。

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