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作为遗传资源保存的向日葵种群的分子多样性受繁殖过程和主要性状育种的影响。

Molecular diversity of sunflower populations maintained as genetic resources is affected by multiplication processes and breeding for major traits.

作者信息

Mangin Brigitte, Pouilly Nicolas, Boniface Marie-Claude, Langlade Nicolas B, Vincourt Patrick, Vear Felicity, Muños Stéphane

机构信息

LIPM, Université de Toulouse, INRA, CNRS, Castanet-Tolosan, France.

GDEC, INRA, Université Clermont II Blaise Pascal, Clermont-Ferrand, France.

出版信息

Theor Appl Genet. 2017 Jun;130(6):1099-1112. doi: 10.1007/s00122-017-2872-x. Epub 2017 Mar 2.

Abstract

SNP genotyping of 114 cultivated sunflower populations showed that the multiplication process and the main traits selected during breeding of sunflower cultivars drove molecular diversity of the populations. The molecular diversity in a set of 114 cultivated sunflower populations was studied by single-nucleotide polymorphism genotyping. These populations were chosen as representative of the 400 entries in the INRA collection received or developed between 1962 and 2011 and made up of land races, open-pollinated varieties, and breeding pools. Mean allele number varied from 1.07 to 1.90. Intra-population variability was slightly reduced according to the number of multiplications since entry but some entries were probably largely homozygous when received. A principal component analysis was used to study inter-population variability. The first 3 axes accounted for 17% of total intra-population variability. The first axis was significantly correlated with seed oil content, more closely than just the distinction between oil and confectionary types. The second axis was related to the presence or absence of restorer genes and the third axis to flowering date and possibly to adaptation to different climates. Our results provide arguments highlighting the effect of the maintenance process on the within population genetic variability as well as on the impact of breeding for major agronomic traits on the between population variability of the collection. Propositions are made to improve sunflower population maintenance procedures to keep maximum genetic variability for future breeding.

摘要

对114个栽培向日葵种群进行的单核苷酸多态性基因分型表明,向日葵品种育种过程中的繁殖过程和所选主要性状推动了种群的分子多样性。通过单核苷酸多态性基因分型研究了114个栽培向日葵种群的分子多样性。这些种群被选为1962年至2011年期间收到或培育的法国国家农业研究院(INRA)收集中400个样本的代表,由地方品种、开放授粉品种和育种群体组成。平均等位基因数从1.07到1.90不等。自进入以来,种群内变异性根据繁殖次数略有降低,但一些样本在收到时可能大多是纯合的。主成分分析用于研究种群间变异性。前3个轴占种群内总变异性的17%。第一轴与种子含油量显著相关,比油用型和食用型之间的区别更密切。第二轴与恢复基因的有无有关,第三轴与开花日期有关,可能还与对不同气候的适应性有关。我们的结果提供了论据,突出了维持过程对种群内遗传变异性的影响,以及主要农艺性状育种对收集中种群间变异性的影响。提出了改进向日葵种群维持程序的建议,以保持最大的遗传变异性用于未来育种。

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