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Combining ability heritability and genotypic relations of different physiological traits in cacao hybrids

机译:可可杂种不同生理性状的配合力遗传力和基因型关系

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摘要

Selecting parents and evaluating progenies is a very important step in breeding programs and involves approaches such as understanding the initial stages of growth and characterizing the variability among genotypes for different parameters, such as physiological, growth, biomass partitioning and nutrient translocation to the aerial part. In these cases, facilitating tools can be used to understand the involved gene dynamics, such as diallel crosses and genetic and phenotypic correlations. Our main hypothesis is that the contrasting phenotypes of these parental genotypes of cocoa used are due to genetic factors, and progenies derived from crosses of these parental genotypes are useful for breeding programs related to plant architecture, physiological parameters and translocation of mineral nutrients. We aimed to evaluate the combining abilities in progenies of cacao (Theobroma cacao L) originating from contrasting parents for canopy vigor. Emphasis was given to the evaluation of morphological and physiological parameters and the phenotypic and genotypic correlations to understand the dynamics of the action of the genes involved, as well as in expression profile from genes of gibberellins biosynthesis pathway in the parents. Fifteen F1 progenies were obtained from crosses of six clones (IMC 67, P4B, PUCALA, SCA 6, SCA 24 and SJ 02) that were evaluated in a randomized complete block design with four replicates of 12 plants per progeny, in a balanced half table diallel scheme. It is possible to identify and select plants and progenies of low, medium and high height, as there is expressive genetic variability for the evaluated parameters, some of these on higher additive effects, others on larger nonadditive effects and others under a balance of these effects. Most physiological parameters evaluated show that for selection of plants with the desired performance, no complex breeding methods would be necessary due to the high and medium heritability observed. Strong genetic components were observed from many of the correlations, which indicate the possibility to formulate selection indices for multi-traits, such as dwarfism or semidwarfism, tolerance to increase of leaf sodium concentrations and maintenance of the photosynthetic apparatus integrity under these conditions. Additionally, plants with higher carbon fixation, better water use, higher carboxylation efficiency and greater magnesium accumulation in leaves can be selected.
机译:选择亲本并评估后代是育种计划中非常重要的一步,涉及诸如了解生长的初期阶段以及表征基因型之间针对不同参数(例如生理,生长,生物量分配和营养物质向空中转移)的变异性的方法。在这些情况下,可以使用辅助工具来了解所涉及的基因动力学,例如二叉杂交以及遗传和表型相关性。我们的主要假设是,所用可可粉的这些亲本基因型的对比表型是由于遗传因素造成的,而这些亲本基因型的杂交后代可用于与植物结构,生理参数和矿质营养素转运有关的育种程序。我们旨在评估可卡因(Theobroma cacao L)的后代的结合能力,这些可卡因来自于不同亲本的树冠活力。重点是评估形态和生理参数以及表型和基因型的相关性,以了解所涉基因作用的动态以及父母中赤霉素生物合成途径基因表达的概况。从六个克隆(IMC 67,P4B,PUCALA,SCA 6,SCA 24和SJ 02)的杂交中获得了十五个F1后代,这些杂交在一个平衡的半桌中以随机完整块设计进行了评估,每个子代有十二个植物的四个重复拨号方案。可以鉴定和选择低,中,高高度的植物和后代,因为所评估参数具有表达遗传变异性,其中一些具有较高的加性效应,其他具有较大的非加性效应,而其他则在这些效应的平衡下。评估的大多数生理参数表明,由于观察到的高和中等遗传力,对于选择具有所需性能的植物,不需要复杂的育种方法。从许多相关性中都观察到了强大的遗传成分,这表明有可能制定多种性状的选择指数,例如矮化或半矮化,对叶钠浓度增加的耐受性以及在这些条件下维持光合作用的完整性。另外,可以选择具有更高的碳固定性,更好的水分利用,更高的羧化效率和更大的镁在叶片中积累的植物。

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