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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Identification of Quantitative Trait Loci Influencing Wood Property Traits in Loblolly Pine (Pinus taeda L.). III. QTL Verification and Candidate Gene Mapping
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Identification of Quantitative Trait Loci Influencing Wood Property Traits in Loblolly Pine (Pinus taeda L.). III. QTL Verification and Candidate Gene Mapping

机译:确定影响火炬松(Pinus taeda L.)木材特性的数量性状位点。三, QTL验证和候选基因定位

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摘要

A long-term series of experiments to map QTL influencing wood property traits in loblolly pine has been completed. These experiments were designed to identify and subsequently verify QTL in multiple genetic backgrounds, environments, and growing seasons. Verification of QTL is necessary to substantiate a biological basis for observed marker-trait associations, to provide precise estimates of the magnitude of QTL effects, and to predict QTL expression at a given age or in a particular environment. Verification was based on the repeated detection of QTL among populations, as well as among multiple growing seasons for each population. Temporal stability of QTL was moderate, with approximately half being detected in multiple seasons. Fewer QTL were common to different populations, but the results are nonetheless encouraging for restricted applications of marker-assisted selection. QTL from larger populations accounted for less phenotypic variation than QTL detected in smaller populations, emphasizing the need for experiments employing much larger families. Additionally, 18 candidate genes related to lignin biosynthesis and cell wall structure were mapped genetically. Several candidate genes colocated with wood property QTL; however, these relationships must be verified in future experiments.
机译:已经完成了一系列长期实验,以绘制影响火炬松木材特性特征的QTL。这些实验旨在识别并随后验证多种遗传背景,环境和生长季节中的QTL。对QTL进行验证对于证实观察到的标记-性状关联的生物学基础,对QTL效应的大小进行精确估计以及预测在给定年龄或特定环境下的QTL表达是必要的。验证是基于在种群之间以及每个种群的多个生长季节之间反复检测到的QTL。 QTL的时间稳定性中等,在多个季节中约有一半被发现。较少的QTL在不同人群中普遍存在,但结果对于标记物辅助选择的有限应用还是令人鼓舞的。与在较小人群中检测到的QTL相比,来自较大人群的QTL的表型变异较小,这强调需要采用更大家族的实验。此外,与木质素生物合成和细胞壁结构有关的18个候选基因已被遗传定位。几个候选基因与木材特性QTL共存;但是,这些关系必须在以后的实验中进行验证。

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