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Combining Ability and Heterosis in Corn Breeding Lines to Forage and Grain

机译:玉米育种和谷物的配合力和杂种优势

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This study was conducted in two stages, in 2006 the formation of cross, in the experimental field of the Universidad Autonoma Agraria Antonio Narro Unidad Laguna (UAAANUL), and the evaluation of the same in 2007; at two locations with three environments, a locality was the experimental field of UAAANUL during spring and summer cycles and another location was the Niagara, Municipality of Aguascalientes, during the spring cycle. The genetic material used consisted of three groups of lines: the first group formed by four lines from the UAAANUL, the second group, two lines from INIFAP, and the third group, 10 lines of the International Center for Maize Improvement and Wheat (CIMMYT). The main objective was to estimate the effects of general combining ability (GCA) of the lines, and the specific combining ability (SCA) of their crosses and heterosis, to estimate its use in a breeding program. Estimates of general combining ability (GCA) and specific combining ability (SCA) were obtained using an analysis of line x line. To forage yield (FY), B-40 (16.84 t·ha-1) and AN-447 (1.54 t·ha-1) and to grain yield (GY), AN-388R (2.31 t·ha-1) had the greatest effect of GCA in both types of yield. The greatest effects of SCA for (FY) were cross AN-447XCML-264 (17.56 t·ha-1) and AN-388RXCML-319 (16.54 t·ha-1), in (GY) were cross AN-447XCML-315 (1.94 t·ha-1) and B-40XCML-319 (1.78 t·ha-1). For heterosis, higher value in forage yield was cross AN-447XCML-264 (20.7%), in grain yield, were B-40XCML-319 (27.1%) and B-32XCML-319 (22.1%) crosses. These results show that it is possible to structure a hybrid program using best lines from CIMMYT, INIFAP and UAAANUL.
机译:这项研究分两个阶段进行,2006年在Autonoma Autonoma Agraria Antonio Narro Unidad Laguna大学(UAAANUL)的实验场中形成交叉,2007年对其进行了评估。在两个具有三种环境的地点,一个地点是春季和夏季周期的UAAANUL实验场,另一个地点是春季周期的阿瓜斯卡连特斯市尼亚加拉。所使用的遗传材料包括三类品系:第一类由UAAANUL的四品系组成,第二组由INIFAP的两品系组成,第三组由国际玉米改良和小麦中心(CIMMYT)的10品系组成。主要目的是评估品系的一般结合能力(GCA)以及其杂交和杂种优势的特定结合能力(SCA)的影响,以评估其在育种程序中的用途。使用线x线的分析获得总体结合能力(GCA)和特异性结合能力(SCA)的估计值。 B-40(16.84 t·ha-1)和AN-447(1.54 t·ha-1)的饲料产量(FY)和谷物产量(GY),AN-388R(2.31 t·ha-1)的饲料产量在两种类型的产量中,GCA的影响最大。 SCA对(FY)的最大影响是AN-447XCML-264(17.56 t·ha-1)和AN-388RXCML-319(16.54 t·ha-1),(GY)AN-447XCML-315 (1.94 t·ha-1)和B-40XCML-319(1.78 t·ha-1)。对于杂种优势,较高的饲草产量值是AN-447XCML-264(20.7%),谷物产量是B-40XCML-319(27.1%)和B-32XCML-319(22.1%)。这些结果表明,可以使用CIMMYT,INIFAP和UAAANUL的最佳代码构建混合程序。

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