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首页> 外文期刊>Tree Genetics & Genomes >Mapping species differences for adventitious rooting in a Corymbia torelliana × Corymbia citriodora subspecies variegata hybrid
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Mapping species differences for adventitious rooting in a Corymbia torelliana × Corymbia citriodora subspecies variegata hybrid

机译:绘制Corymbia torelliana×Corymbia citriodora杂种亚种杂种不定根的种间差异图

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Quantitative trait loci (QTL) detection was carried out for adventitious rooting and associated propagation traits in a second-generation outbred Corymbia torelliana × Corymbia citriodora subspecies variegata hybrid family (n=186). The parental species of this cross are divergent in their capacity to develop roots adventitiously on stem cuttings and their propensity to form lignotubers. For the ten traits studied, there was one or two QTL detected, with some QTL explaining large amounts of phenotypic variation (e.g. 66% for one QTL for percentage rooting), suggesting that major effects influence rooting in this cross. Collocation of QTL for many strongly genetically correlated rooting traits to a single region on linkage group 12 suggested pleiotropy. A three locus model was most parsimonious for linkage group 12, however, as differences in QTL position and lower genetic correlations suggested separate loci for each of the traits of shoot production and root initiation. Species differences were thought to be the major source of phenotypic variation for some rooting rate and root quality traits because of the major QTL effects and up to 59-fold larger homospecific deviations (attributed to species differences) relative to heterospecific deviations (attributed to standing variation within species) evident at some QTL for these traits. A large homospecific/hetero-specific ratio at major QTL suggested that the gene action evident in one cross may be indicative of gene; action more broadly in hybrids between these species for some traits.
机译:对第二代近交Corymbia torelliana×Corymbia citriodora杂色杂种亚科杂种(n = 186)进行了不定根和相关繁殖性状的数量性状基因座(QTL)检测。该杂交的亲本物种在茎s插上不定根生长的能力和形成木质块茎的倾向方面存在差异。对于所研究的十个性状,检测到一个或两个QTL,其中一些QTL解释了大量的表型变异(例如,一个QTL的生根百分比为66%),表明主要影响会影响此杂交的生根。 QTL与许多强烈遗传相关的生根性状的搭配在连锁群12上的单个区域表明多效性。对于连锁组12,三个基因座模型最为简约,但是,由于QTL位置的差异和较低的遗传相关性,表明芽产生和根萌生的每个性状都具有单独的基因座。物种差异被认为是某些生根率和根系品质性状表型变异的主要来源,因为主要的QTL效应和相对于异种变异(归因于站立变异)最多高达59倍的同种异性变异(归因于物种差异)。种内)在这些性状的一些QTL上很明显。在主要的QTL处,较大的同种/异种比表明,在一次杂交中明显的基因作用可能是基因的指示。这些物种在某些性状的杂种中的作用更广泛。

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