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首页> 外文期刊>Journal of Food Security >Gene Action for Grain Yield and Agronomic Traits in Selected Maize Inbred Lines with Resistance to Striga Hermonthica in Uganda
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Gene Action for Grain Yield and Agronomic Traits in Selected Maize Inbred Lines with Resistance to Striga Hermonthica in Uganda

机译:乌干达部分抗Striga Hermonthica玉米自交系的籽粒产量和农艺性状的基因作用

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Combining ability of inbred lines is crucial information in maize hybrid breeding programs incorporating materials from various germplasm sources. This study was conducted to assess the gene action for grain yield and other agronomic traits for germplasm having varying resistance to Striga hermonthica and genetic. In a half diallel cross of ten parents, general and specific combining abilities for grain yield, plant and ear height, plant and ear aspect, ears and plants harvested, ear rot, husk cover, moisture and resistance to Striga hermonthica were determined. The grain yields of the single crosses were significantly higher for 1368STR x TZISTR1198, TZISTR1132 x CML442, TZISTR1174 x TZISTR1198 and TZISTR1199 x TZISTR1174. The importance of both GCA (50%) and SCA (50%) for grain yield, ear rot, ear texture and ears harvested were observed, but a preponderance of GCA was existed for AUSNPC, whereas plant and ear height, plant and ear aspect, and moisture content exhibited preponderant SCA. TZISTR1174, TZISTR1162, TZISTR1192, and CML442 were good general combiners for grain yield showing highly significant positive GCA effects of 0.40, 0.2, 0.17, and 0.22, respectively while lines TZISTR1199, TZISTR1192, TZISTR1174 and TZISTR1162 were good general combiners for resistance to Striga showing highly significant negative GCA effects of-646.99,-428.21,-338.00, and-76.51. These inbred lines could be exploited in hybrid breeding to develop high yielding Striga resistant maize varieties. Hybrids such as TZISTR1174 x CML312, TZISTR1192 x CML442and TZISTR1174 x 1368STR had significant positive SCA effects for grain yield whereas crosses like TZISTR1162×TZISTR1198, TZISTR1199×TZISTR1181, TZISTR1192×1368STR had highest negative significant SCA effects of-1453.19,-1058.28, and-808.252 for AUSNPC which can be used for direct production as single cross hybrids or developed further as three way cross hybrids.
机译:自交系的结合能力是玉米杂交育种计划的重要信息,该计划结合了来自各种种质资源的材料。进行了这项研究,以评估基因对谷物产量的作用以及其他对Striga hermonthica和遗传具有抗性的种质的农艺性状。在十个亲本的半拨号杂交中,确定了谷物产量,植物和穗高,植物和穗的纵横比,收获的穗和植物,穗腐烂,稻壳覆盖,水分和对Striga hermonthica的抗性的一般和特殊组合能力。对于1368STR x TZISTR1198,TZISTR1132 x CML442,TZISTR1174 x TZISTR1198和TZISTR1199 x TZISTR1174,单杂交的谷物产量显着更高。观察到GCA(50%)和SCA(50%)对谷物产量,耳朵腐烂,耳朵质地和收获的耳朵的重要性,但AUSNPC存在GCA的优势,而植物和耳朵的高度,植物和耳朵的长势并且水分含量显示出优势SCA。 TZISTR1174,TZISTR1162,TZISTR1192和CML442是良好的谷物总产组合剂,分别具有0.40、0.2、0.17和0.22的极显着的GCA正效应,而TZISTR1199,TZISTR1192,TZISTR1174和TZISTR1162系是优良的抗Striga通用组合剂-646.99,-428.21,-338.00和-76.51具有极显着的负面GCA负面影响。这些近交系可用于杂交育种,以开发高产抗Striga的玉米品种。 TZISTR1174 x CML312,TZISTR1192 x CML442和TZISTR1174 x 1368STR等杂种对籽粒产量具有显着的正SCA效应,而诸如TZISTR1162×TZISTR1198,TZISTR1199×TZISTR1181,TZISTR1192×1368STR的杂交对SCA的负效应最高,-1,2819和-58的最高显着性。适用于AUSNPC的808.252,可以直接生产为单杂交种,也可以进一步开发为三效杂交种。

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