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首页> 外文期刊>African Journal of Agricultural Research >Genetic analysis of resistance to common smut in maize (Zea mays L.) using triple test cross
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Genetic analysis of resistance to common smut in maize (Zea mays L.) using triple test cross

机译:利用三重杂交法对玉米(Zea mays L.)普通黑穗病的抗性进行遗传分析

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摘要

Understanding of gene action for resistance to maize common smut is essential for maize breeding programs, therefore, triple test cross analysis was employed to assess gene action controlling resistance to common smut in maize. Parental inbred lines and their progenies were evaluated using randomized complete block design with three replications in Karaj Field Station, Seed and Plant Improvement Institute, in 2007 and 2008 cropping seasons. Epistasis was observed for resistance to maize common smut. Partitioning of the total epistasis revealed that [i] type (additive × additive) and [I+J] types (additive × dominance and dominance × dominance) were highly significant. Additive (L1i+L2i) and dominance (L1i?– L2i) effects for resistance to maize common smut were also significant, over two growing seasons. Dominance ratio (H/D)?1/2?indicated that resistance to maize common smut was controlled by dominance effect. However, the direction of dominance (rs,d) for this character in two growing seasons was not-significant which implies that dominant alleles were distributed in parents, therefore they did not express any directional dominance for this attribute. Since F′ was positive, therefore, dominant alleles increased disease severity of maize common smut.? Cytoplasmic effects were also important for resistance to maize common smut. Combined analysis of variance showed that the effect of year and genotype × year interaction were highly significant. Generally, the additive, dominance and epistatic components were important in resistance to maize common smut. It is concluded that Genetic analysis of Resistance to Common Smut in Maize (Zea mays?L.) using triple test cross recurrent selection procedure may be efficient in breeding for resistant to maize common smut, since it exploits additive and non-additive components of genetic variation for improvement resistance to maize common smut.
机译:了解基因对玉米普通黑穗病的抗性对于玉米育种计划至关重要,因此,采用三重测试交叉分析来评估控制玉米对普通黑穗病的抗性的基因作用。亲本近交系及其后代在2007年和2008年种植季节使用Karaj田间站,种子和植物改良研究所的随机完整区组设计进行了三次重复评估。观察到对玉米普通黑穗病具有抗性。全部上位性的划分显示[i]型(加性×加性)和[I + J]型(加性×优势和优势×优势)非常重要。在两个生长季节中,添加性(L1i + L2i)和优势性(L1i?–L2i)对玉米黑穗病的抗性也很显着。优势比(H / D)≥1/ 2,说明对玉米黑穗病的抗性受优势效应控制。但是,在两个生长季节中,此角色的优势方向(rs,d)并不显着,这意味着优势等位基因分布在父母中,因此它们没有对此属性表达任何方向优势。因此,由于F'为阳性,优势等位基因增加了玉米普通黑穗病的病害严重程度。细胞质效应对于抵抗玉米常见黑穗病也很重要。方差的组合分析表明,年份和基因型×年份相互作用的影响非常显着。通常,添加剂,优势成分和上位性成分对于抵抗玉米常见黑穗病很重要。结论是,利用三重​​试验交叉轮回选择程序对玉米(Sea mays?L。)的玉米黑穗病的抗性进行了遗传分析,因为它利用了遗传的加性和非加性成分,因此在育种抗玉米黑穗病中可能是有效的。改良抗玉米普通黑穗病的品种。

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