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二倍体和三倍体基因型古老谱系的分子重建

Molecular Reconstruction of an Old Pedigree of Diploid and Triploid Genotypes.

作者信息

Hempel Peter, Hohe Annette, Tränkner Conny

机构信息

Leibniz Institute of Vegetable and Ornamental Crops, Erfurt, Germany.

Faculty of Landscape Architecture, Horticulture and Forestry, University of Applied Sciences Erfurt, Erfurt, Germany.

出版信息

Front Plant Sci. 2018 Apr 18;9:429. doi: 10.3389/fpls.2018.00429. eCollection 2018.

Abstract

The ornamental crop species exhibits diploid and triploid levels of ploidy and develops lacecap (wild type) or mophead inflorescences. In order to characterize a germplasm collection, we determined the inflorescence type and the 2C DNA content of 120 plants representing 43 cultivars. We identified 78 putative diploid and 39 putative triploid plants by flow cytometry. In our collection 69 out of 98 flowering plants produced lacecap inflorescences, whereas 29 plants developed mophead inflorescences. Surprisingly, 12 cultivars included diploid as well as triploid plants, while 5 cultivars contained plants with different inflorescence types. We genotyped this germplasm collection using 12 SSR markers that detected 2-7 alleles per marker, and identified 51 different alleles in this collection. We detected 62 distinct fingerprints, revealing a higher genetic variation than the number of cultivars suggested. Only one genotype per cultivar is expected due to the vegetative propagation of cultivars; however we identified 25 cultivars containing 2-4 different genotypes. These different genotypes explained the variation in DNA content and inflorescence type. Diploid and triploid plants with the same cultivar name were exclusively mix-ups. We therefor assume, that 36% of the tested plants were mislabeled. Based on the "Wädenswil" pedigree, which includes 31 of the tested cultivars, we predicted cultivar-specific fingerprints and identified at least 21 out of 31 cultivars by SSR marker-based reconstruction of the "Wädenswil" pedigree. Furthermore, we detected 4 putative interploid crosses between diploid and triploid plants in this pedigree. These interploid crosses resulted in diploid or/and triploid offspring, suggesting that crosses with triploids were successfully applied in breeding of .

摘要

该观赏作物物种具有二倍体和三倍体水平的倍性,并发育出平瓣(野生型)或球状花序。为了对种质资源库进行特征描述,我们测定了代表43个品种的120株植物的花序类型和2C DNA含量。通过流式细胞术,我们鉴定出78株假定的二倍体植物和39株假定的三倍体植物。在我们的种质资源库中,98株开花植物中有69株产生平瓣花序,而29株植物发育出球状花序。令人惊讶的是,12个品种同时包含二倍体和三倍体植株,而5个品种包含具有不同花序类型的植株。我们使用12个SSR标记对该种质资源库进行基因分型,每个标记检测到2 - 7个等位基因,并在该资源库中鉴定出51个不同的等位基因。我们检测到62个不同的指纹图谱,揭示出的遗传变异高于品种数量所表明的。由于品种是营养繁殖而来,每个品种预期只有一种基因型;然而,我们鉴定出25个品种包含2 - 4种不同的基因型。这些不同的基因型解释了DNA含量和花序类型的变异。具有相同品种名称的二倍体和三倍体植株完全是混淆的。因此,我们推测36%的测试植株被错误标记。基于包括31个测试品种的“瓦登斯维尔”谱系,我们预测了品种特异性指纹图谱,并通过基于SSR标记的“瓦登斯维尔”谱系重建,在31个品种中至少鉴定出21个品种。此外,我们在这个谱系中检测到了4个二倍体和三倍体植株之间假定的倍性间杂交。这些倍性间杂交产生了二倍体或/和三倍体后代,表明与三倍体的杂交已成功应用于……的育种中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04d4/5915539/5b1316c388e7/fpls-09-00429-g0001.jpg

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