首页> 外文期刊>Alexandria Journal of Agricultural Sciences >Estimates of Combining Ability Effects to New Yellow Maize (Zea mays L.) Inbred Lines and Its Topcrosses
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Estimates of Combining Ability Effects to New Yellow Maize (Zea mays L.) Inbred Lines and Its Topcrosses

机译:黄新玉米自交系及其Topcrosss的配合力效应估算

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摘要

Twelve yellow maize inbred lines isolated from five different sources at maize breeding nursery of Nubaria Agriculture Research Station were used for the present study. These lines were topcrossed to two testers; Cim.325 and Gm.1002. The 24 resultanttopcrosses and the commercial check hybrid SC. 162 were evaluated in replicated yield trials conducted at two locations; i.e., Nubaria and Sids. Data were recorded for ears weight per plot(kg), number of days to mid-silking (d) and plant and ear heights(cm). Ears were weighed in kg/plot, shelled, adjusted to 15.5% grain moisture and converted to grain yield in Mg ha-1.Significant differences were detected among locations, lines and testers for the studied traits at each location and their combined data except grain yield of testers at Nubaria and combined data, and also number of days to mid-silking of lines at combined data. The most superior crosses for grain yield were Nb.603b x Cim.325, Nb.556 x Cim.325, Nb.659a x Gm.1002, Nb556 x Gm.1002, Nb601 x Cim.325 and Nb.603b x Gm.1002, which yielded 10.55, 10.06, 10.06, 9.93, 9.70 and 9.68 Mg ha-1, across the tested locations, respectively. Inbred lines Nb.603b and Nb.556 had significant GCA effects for grain yield, in addition, these lines had favorable alleles for early maturity, short plants and low ear placement. These lines are the most superior inbred line and maybe recommended for further test. For the testers, Cim.325 lines had favorable alleles for grain yield, earliness, short plants and low ear placement, therefore, Cim.325 was recommended as a good tester for determining the superior crosses. Regarding SCAeffects, the topcrosses of Nb.516c x Cim.325, Nb.575 x Gm.1002 and Nb.545 x Gm.1002 possessed high negative SCA values. Results showed that both GCA and SCA effects should be taken into consideration when planning maize breeding programs for developingnew inbred lines and crosses.
机译:本研究使用了来自努比亚农业研究站玉米育种场的五个不同来源的十二个黄色玉米自交系。这些线与两个测试人员交叉。 Cim.325和Gm.1002。 24个结果交叉点和商业检查杂交SC。在两个地点进行的重复产量试验中评估了162个;即Nubaria和Sids。记录的数据包括每块地的耳朵重量(kg),到中旬的天数(d)以及植物和耳朵的高度(cm)。耳朵以千克/地块称重,去壳,调整至15.5%的谷物水分,并以Mg ha-1转换为谷物产量。在各个位置,品系和测试仪之间的差异显着Nubaria和组合数据中的测试者的产量,以及组合数据中线的中期到中期的天数。籽粒产量的最优良杂交是Nb.603b x Cim.325,Nb.556 x Cim.325,Nb.659a x Gm.1002,Nb556 x Gm.1002,Nb601 x Cim.325和Nb.603b x Gm。 1002,在测试位置上分别产生10.55、10.06、10.06、9.93、9.70和9.68 Mg ha-1。自交系Nb.603b和Nb.556对谷物产量具有显着的GCA效应,此外,这些系具有有利于早熟,短株和低穗位的等位基因。这些系是最优良的近交系,并可能建议进一步测试。对于测试者,Cim.325品系具有良好的等位基因,可提高谷物产量,早熟,短株和低穗的位置,因此,Cim.325被推荐为确定优良杂交的良好测试者。关于SCA效应,Nb.516c x Cim.325,Nb.575 x Gm.1002和Nb.545 x Gm.1002的交点具有较高的SCA负值。结果表明,在制定新的近交系和杂交系的玉米育种计划时,应同时考虑GCA和SCA的影响。

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