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首页> 外文期刊>African Journal of Agricultural Research >Selection efficiency of yield based drought tolerance indices to identify superior sorghum [Sorghum bicolor (L.) Moench] near isogenic lines (NILs) under two-contrasting environments
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Selection efficiency of yield based drought tolerance indices to identify superior sorghum [Sorghum bicolor (L.) Moench] near isogenic lines (NILs) under two-contrasting environments

机译:基于产量的干旱耐受指数的选择效率,以在两种不同的环境下识别等基因系(NIL)附近的优质高粱[高粱]

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Drought is the most significant environmental calamity on sorghum in Ethiopia and hence improving yield under drought is a major goal of plant breeding. This study was designed to introgress drought tolerant genes into adapted varieties through marker-assisted backcrossing and select based on tolerance indices. Sixty-one near isogenic lines and along with their nine parental lines were evaluated under full-irrigation and water-limited condition in Alpha lattice design with three replications. Yield-based drought tolerance indices including stress tolerance index (STI), mean relative performance (MRP), geometric mean productivity (GMP), harmonic mean (HM), mean productivity(MP), tolerance index (TOL), stress susceptible index(SSI), yield stability index (YSI) and yield index (YI)were calculated based on yield obtained from the two moisture regimes. Results showed that genotypes differed significantly in yield and their indices. Mean grain yields that varied widely in stressed (1.1? to 4.42 t ha-1) and full-irrigation (2.25 to 5.71 t ha-1) were 1.93 and 3.7 t ha-1, respectively. Of the near isogenic lines, four (BC2F3_ETSC_16258,BC2F3_ETSC_16216, BC2F3_ETSC_16257, and BC2F3_ETSC_16213) were top yielding in stressed conditions with values of 4.42, 3.5, 3.1, and 2.83 t ha-1, respectively. These progenies also showed consistently higher values of STI, MRP, GMP, HM, MP, YSI, and YI and lower values of SSI and TOL indicating less sensitive to stress. The correlation and principal component analyses also revealed STI, MRP, GMP, HM, MP and YI showed highly significant positive correlation among themselves and yield in both environments, indicating their suitability for identifying superior genotypes. Overall, STI, MRP, GMP, HM and MP indices can be efficiently exploited to screen drought tolerance or superior genotype(s) under both moisture conditions.
机译:干旱是埃塞俄比亚高粱最严重的环境灾害,因此在干旱下提高产量是植物育种的主要目标。本研究旨在通过标记辅助回交将耐旱基因导入适合的品种,并根据耐性指数进行选择。在Alpha晶格设计中,在完全灌溉和缺水的条件下,评估了61个近等基因系及其9个亲本系,并进行了3次重复。基于产量的干旱耐受指数,包括胁迫耐受指数(STI),平均相对性能(MRP),几何平均生产率(GMP),谐波平均值(HM),平均生产率(MP),耐受指数(TOL),胁迫敏感性指数( SSI),产量稳定性指数(YSI)和产量指数(YI)是根据从两种水分制度获得的产量计算得出的。结果表明,基因型在产量和指标上存在显着差异。在压力(1.1?至4.42 t ha-1)和完全灌溉(2.25至5.71 t ha-1)之间,平均谷物产量差异很大,分别为1.93和3.7 t ha-1。在近等基因系中,四个(BC2F3_ETSC_16258,BC2F3_ETSC_16216,BC2F3_ETSC_16257和BC2F3_ETSC_16213)在受压条件下的产量最高,分别为4.42、3.5、3.1和2.83 t ha-1。这些子代还显示出始终较高的STI,MRP,GMP,HM,MP,YSI和YI值,以及较低的SSI和TOL值,表明它们对压力的敏感性较低。相关性和主成分分析还显示,STI,MRP,GMP,HM,MP和YI在两种环境下之间和产量之间均显示出高度显着的正相关,表明它们适用于鉴定优良基因型。总体而言,可以有效利用STI,MRP,GMP,HM和MP指数来筛选两种水分条件下的耐旱性或优良基因型。

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