首页> 外文期刊>African Journal of Agricultural Research >Combining ability of maize (Zea mays) inbred lines resistant to Striga hermonthica (Del.) Benth evaluated under artificial Striga infestation
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Combining ability of maize (Zea mays) inbred lines resistant to Striga hermonthica (Del.) Benth evaluated under artificial Striga infestation

机译:人工Striga侵染对玉米(Zea mays)自交系抗Striga hermonthica(Del。)Benth的结合能力的评价

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The parasitic weed Striga affects maize on an estimated 20 million ha in Africa, making it a major cause of maize yield reduction from near world average of 4.2 t/ha few decades ago to the present 1.5 t/ha. The objectives of this study were to examine the combining ability of 20 inbred lines and identify single crosses which can be used to develop other hybrids resistant to Striga hermonthica (Del.) Benth. Fourteen female lines were mated using North Carolina Design II with all six males. The resulting 84 F1s along with six commercial checks were evaluated in four separate trials for two rainy seasons during 2010. The trials were conducted on station under both artificial Striga infestation and Striga free environments using standard procedures at the Kibos and Alupe sites, both in the Kenya’s Lake Victoria Basin. Data were recorded on Striga counts, Striga damage rating (SDR), grain yield and other agronomic traits. General combining ability (GCA) and specific combining ability (SCA) effects were computed using SAS. The new F1 hybrids outperformed the commercial checks in grain yield and reaction to Striga. Single crosses JI-30-3/TESTR 151, JI-30-18/TESTR 151, CML206//56/44-6-3-7-1/TESTR 149 and JI-30-18/TESTR 156 gave the highest yield while single cross JI10-28-#/TESTR 136 gave the lowest yield. The ratio of GCA: SCA mean squares exhibited a predominance of additive gene effects in the inheritance of Striga resistance traits as opposed to dominance gene effects. Inbred lines with good GCA for yield and Striga resistance traits were identified as TESTR 151, TESTR 156 and OSU231//56/44-6-4-17-3. The high GCA inbred lines and the superior single crosses will provide a basis for future use perse and also development of three-way and double cross hybrids to be grown in Striga prone areas of the Lake Victoria Basin in eastern Africa.
机译:寄生杂草Striga在非洲估计影响了2000万公顷的玉米,这使其成为玉米减产的主要原因,从近几十年前的世界平均水平4.2吨/公顷降低到目前的1.5吨/公顷。这项研究的目的是检查20个自交系的结合能力,并确定可用于开发其他对Striga hermonthica(Del。)Benth产生抗性的杂种的单交。使用北卡罗莱纳州设计II将14条母系与所有6名雄性配对。在2010年期间的两个雨季的四个单独试验中,对由此产生的84辆F1进行了六次商业检查。在Kibos和Alupe基地,在标准的人工Striga侵染和无Striga的环境下,均采用标准程序在工厂进行了试验。肯尼亚的维多利亚湖盆地。记录了有关Striga计数,Striga危害等级(SDR),谷物产量和其他农艺性状的数据。使用SAS计算总的合并能力(GCA)和特定的合并能力(SCA)效果。新的F1杂种在谷物产量和对Striga的反应方面均优于商业检查。单杂交JI-30-3 / TESTR 151,JI-30-18 / TESTR 151,CML206 // 56 / 44-6-3-7-1 / TESTR 149和JI-30-18 / TESTR 156产量最高单十字JI10-28-#/ TESTR 136产量最低。与优势基因效应相反,GCA:SCA均方比在Striga抗性性状的遗传中表现出加性基因效应的优势。具有良好的产量和抗特里加抗性的GCA的近交系被鉴定为TESTR 151,TESTR 156和OSU231 // 56 / 44-6-4-17-3。高GCA自交系和优良的单交系将为将来的使用提供依据,也为在非洲东部维多利亚湖盆地Striga易发地区种植的三向和双交杂交种提供基础。

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