首页> 外文期刊>African Journal of Agricultural Research >Combining ability studies amongst AREX and CIMMYT maize (Zea mays L.) inbred lines under stress and non stress conditions
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Combining ability studies amongst AREX and CIMMYT maize (Zea mays L.) inbred lines under stress and non stress conditions

机译:胁迫和非胁迫条件下AREX和CIMMYT玉米(Zea mays L.)自交系的配合力研究

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Maize (Zea mays?L.) is the staple food crop in Zimbabwe with a per capita consumption of 93 kg. It is grown in a wide range of environments with 80% being produced by the smallholder farmers who occupying more than 90% of the marginal areas of the country. Marginal area production has seen a high hybrid turnover on the market hence the need to develop hybrids with stable yields under diverse environments. National program use of inbred lines as testers has had shortcomings in the early identification of good inbred lines, resulting in slow variety development, poor commercial seed production and eventual variety release for farmer use. The objectives of this study were to develop single cross hybrid testers among AREX and CIMMYT lines as well as determine the heterotic relationship among the two sets of inbred lines. In the study, testcross development was done using 10 elite inbred lines each from AREX and CIMMYT programs. Using North Carolina Design II the resultant 100 hybrids were evaluated under optimum and stress (low N and drought) environments. Alpha (0,1) lattice design was used in the evaluation process with traits such as flowering dates, standability, disease scores, plant heights and grain weight being recorded. An across site analysis was done and results showed that there were significant differences (P<0.05) for environments, genotypes and genotype x environment interactions. Significant general combining ability (GCA) effects for all the traits (P<0.05) measured except for plant heights and stem lodging were observed, with five lines being identified as having good (positive) GCA effects for grain yield. Non additive genes were also predominant in most traits except for anthesis dates, anthesis silking interval and ear heights. A total of 39 testcrosses were also assigned heterotic groups basing on the N and SC heterotic groups. Tester identification was based on good GCA for grain yield, stability under diverse environments and maturity of genotype. In the N heterotic group, genotype LT52 (NAW5885/CMML442) was identified as a potential single cross tester in the intermediate maturity group while in the SC heterotic group genotype LT26 (SC5522/ZM621A-BBBB) was identified as another intermediate maturity group tester. In the early maturing category the only possible candidate identified was LT99 (RS61P/CML508) which is in the SC heterotic group. The study also showed that there were heterotic group overlaps of the N and SC groups in relation to CIMMYT’s A and B heterotic groups as some genotype combinations had to be assigned new heterotic groups or had their group unidentified resulting in the need for further evaluation.
机译:玉米(Zea mays?L。)是津巴布韦的主要粮食作物,人均消费量为93公斤。它在各种各样的环境中生长,其中80%由小农户生产,他们占该国边缘地区的90%以上。边缘地区的生产在市场上看到了很高的杂种周转率,因此需要在各种环境下开发具有稳定产量的杂种。国家计划使用自交系作为测试者,在早期发现优质自交系方面存在缺陷,导致品种发展缓慢,商业种子生产不佳以及最终向农民发布品种。这项研究的目的是开发AREX和CIMMYT品系之间的单交叉杂交测试仪,并确定两组自交系之间的杂种关系。在这项研究中,使用来自AREX和CIMMYT程序的10个优良近交系进行了testcross开发。使用北卡罗莱纳州设计II,在最佳和胁迫(低氮和干旱)环境下评估了100个杂种。在评估过程中使用了Alpha(0,1)晶格设计,并记录了诸如开花日期,站立性,疾病评分,植物高度和粒重等特征。进行了跨站点分析,结果表明环境,基因型和基因型x环境之间的相互作用存在显着差异(P <0.05)。观察到除株高和茎秆倒伏外,其他所有性状(P <0.05)均具有显着的一般配合力(GCA)效应,其中五株品系对谷物产量具有良好(正)GCA效应。除花期,花期和穗高外,大多数性状中非加性基因也是主要特征。在N和SC杂种群的基础上,总共为39个测试杂交指定了杂种群。测试人员的鉴定是基于良好的GCA进行的,以确保谷物产量,在不同环境下的稳定性以及基因型的成熟度。在N杂种群体中,基因型LT52(NAW5885 / CMML442)被鉴定为中等成熟度组中潜在的单交叉测试仪,而在SC杂种群体中,基因型LT26(SC5522 / ZM621A-BBBB)被鉴定为另一种中等成熟度组测试仪。在早熟类别中,唯一可能的候选者是SC杂种群体中的LT99(RS61P / CML508)。研究还表明,与CIMMYT的A和B杂种基团相比,N和SC组存在杂种基团重叠,因为某些基因型组合必须分配新的杂种基团,或者其基团尚未确定,因此需要进一步评估。

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