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半枫荷优树子代生长性状的遗传变异与早期选择

Genetic Variation in Growth Traits of progeny of superior trees of Semiliquidambar cathayensis and Early Selection

  • 摘要:
    目的 探究幼林期半枫荷(Semiliquidambar cathayensis)优树子代生长性状的遗传变异规律,筛选优良育种资源。
    方法 以福建、湖南两省60个半枫荷优树子代为试验材料,引种至浙江省景宁畲族自治县开展子代遗传测定,分析其遗传变异规律,评估遗传参数,并开展优良家系和单株选择。
    结果 3年生半枫荷树高、胸径及当年生长量的表型变异系数为35.52%~52.85%,遗传变异系数为13.40%~16.36%,育种选择潜力较大。各生长性状的家系遗传力为0.78~0.85,受较高的遗传控制;采用选择指数法,以10%入选率筛选获得6个优良家系,其胸径、树高、当年生长量的遗传增益分别为23.44%~43.23 %、21.39 %~29.21 %和13.12%~36.44 %;以1%入选率筛选获得31个优良单株。
    结论 3年生半枫荷优树子代的生长性状变异丰富,基于家系与单株的联合选择策略,可获得生长优势显著的优良家系及单株,可为半枫荷良种选育提供优质种质材料。

     

    Abstract:
    Objective This study aims to investigate the genetic variation patterns of growth traits in superior tree progeny of Semiliquidambar cathayensis during the young forest stage, and to screen elite breeding resources.
    Methods Sixty superior tree progenies of S. cathayensis collected from Fujian and Hunan Provinces were introduced to Jingning County, Zhejiang Province for progeny testing. Genetic variation patterns were analyzed, genetic parameters were estimated, and superior families and individuals were selected.
    Results The phenotypic variation coefficients for tree height, diameter at breast height (DBH) and current annual increment of 3-year-old S. cathayensis ranged from 35.52% to 52.85%, while the genetic variation coefficients ranged from 13.40% to 16.36%, indicating high selection potential. The family heritability of each trait ranged from 0.78 to 0.85, suggesting strong genetic control. Using the selection index method with a selection rate of 10%, six superior families were identified, with genetic gains for DBH, height and current annual increment ranging from 23.44% to 43.23%, 21.39% to 29.21%, and 13.12% to 36.44%, respectively. Thirty-one superior individuals were selected at a selection rate of 1%.
    Conclusion The growth traits of 3-year-old S. cathayensis superior tree progeny exhibit rich variation. On the basis of the combined strategies of family and individual selection, superior families and individuals with significant growth advantages can be successfully identified, thereby providing high-quality germplasm resources for the breeding of this species.

     

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