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德国果树基因库中苹果品种的果树学和分子特征分析

Pomological and Molecular Characterization of Apple Cultivars in the German Fruit Genebank.

作者信息

Broschewitz Lea, Reim Stefanie, Flachowsky Henryk, Höfer Monika

机构信息

Julius Kühn Institute (JKI), Federal Research Centre for Cultivated Plants, Institute of Breeding Research on Fruit Crops, Pillnitzer Platz 3a, 01326 Dresden, Germany.

出版信息

Plants (Basel). 2024 Sep 26;13(19):2699. doi: 10.3390/plants13192699.

Abstract

Traditional varieties are a valuable tool in modern apple breeding. However, the use of synonyms and missing source documentation hinder an effective identification and conservation of relevant cultivars. During several projects, the authenticity and diversity of the apple cultivar collection of the German Fruit Genebank (GFG) was evaluated extensively. The trueness-to-type of 7890 apple trees was assessed on a pomological and molecular level. Pomological evaluations were performed by at least two experienced experts to identify the original cultivar names. On the molecular level, a set of 17 SSR markers was used to determine a unique genetic profile for each apple cultivar. The pomological and molecular characterization was expressed in terms of a comprehensive trueness-to-type criterion and the results were previously published as a well-curated dataset. In this study, the published dataset was analyzed to evaluate the quality and diversity of the apple collection of the GFG and highlight new findings based on phylogenetic and parentage analysis. The dataset contains 1404 unique genetic profiles corresponding to unambiguous cultivar names. Of these 1404 cultivars, 74% were assessed as true-to-type. The collection of diploid apple cultivars showed a high degree of expected heterozygosity ( = 0.84). Genetic diversity in terms of year and location of origin was investigated with a STRUCTURE analysis. It was hypothesized that genetic diversity might decline overtime due to restrictive breeding programs. The results showed a shift dynamic between older and newer cultivars in one specific cluster, but no significant decrease in genetic diversity was observed in this study. Lastly, a parentage analysis was performed to check parental relationships based on historical research. Out of 128 parent-child trios, 110 trios resulted in significant relationships and reconfirmed the information from the literature. In some cases, the information from the literature was disproven. This analysis also allowed for readjusting the trueness-to-type criteria for previously undetermined cultivars. Overall, the importance of authenticity evaluations for gene bank cultivars was highlighted. Furthermore, the direct use of the dataset was shown by relevant investigations on the genetic diversity and structure of the apple cultivar collections of the GFG.

摘要

传统品种是现代苹果育种中的宝贵工具。然而,同义词的使用和源文档缺失阻碍了相关品种的有效鉴定和保存。在多个项目中,对德国果树基因库(GFG)苹果品种收集的真实性和多样性进行了广泛评估。在果树学和分子水平上评估了7890株苹果树的品种纯度。由至少两名经验丰富的专家进行果树学评估,以确定原始品种名称。在分子水平上,使用一组17个SSR标记来确定每个苹果品种的独特遗传图谱。果树学和分子特征根据全面的品种纯度标准进行表达,结果先前已作为精心整理的数据集发表。在本研究中,对已发表的数据集进行分析,以评估GFG苹果收集的质量和多样性,并突出基于系统发育和谱系分析的新发现。该数据集包含1404个与明确品种名称相对应的独特遗传图谱。在这1404个品种中,74%被评估为品种纯正。二倍体苹果品种的收集显示出高度的预期杂合度( = 0.84)。通过STRUCTURE分析研究了起源年份和地点方面的遗传多样性。据推测,由于限制性育种计划,遗传多样性可能会随时间下降。结果显示在一个特定聚类中,较老和较新的品种之间存在动态变化,但在本研究中未观察到遗传多样性的显著下降。最后,进行了谱系分析,以根据历史研究检查亲子关系。在128个亲子三元组中,110个三元组显示出显著关系,并再次证实了文献中的信息。在某些情况下,文献中的信息被证伪。该分析还允许重新调整先前未确定品种的品种纯度标准。总体而言,强调了对基因库品种进行真实性评估的重要性。此外,通过对GFG苹果品种收集的遗传多样性和结构的相关研究,展示了该数据集的直接用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/390b/11478905/863eb45d998e/plants-13-02699-g001.jpg

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