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利用完全花葡萄品种‘迪克西’自交构建的作图群体开发葡萄高密度遗传图谱。

Development of a High-Density Genetic Map for Muscadine Grape Using a Mapping Population from Selfing of the Perfect-Flowered Vine 'Dixie'.

作者信息

Lytkin Kirill, Nosulchak Vasily, Agakhanov Magamedgusein, Matveikina Elena, Lushchay Ekaterina, Karzhaev Dmitry, Raines Evgenii, Vasylyk Irina, Rybachenko Nataliya, Grigoreva Elizaveta, Volkov Vladimir, Volynkin Vladimir, Gentzbittel Laurent, Potokina Elena

机构信息

All-Russian National Research Institute of Viticulture and Winemaking 'Magarach' RAS, Yalta 298600, Russia.

Institute of Forest and Natural Resources Management, Saint Petersburg State Forest Technical University, St. Petersburg 194021, Russia.

出版信息

Plants (Basel). 2022 Nov 25;11(23):3231. doi: 10.3390/plants11233231.

Abstract

Intraspecific diversity of the immune grape Michaux. can serve as a rich source of valuable resistance loci to the most widespread pathogens and pests of grapevine. While only one resistance locus has been introgressed from to the gene pool, a number of other genes conferring resistance to powdery mildew and downy mildew have been identified in various cultivars. A larger introduction of varieties to the European continent would greatly facilitate experiments of interspecific crosses as well as stimulate biotechnological efforts to overcome the main barrier to F1 fertility caused by the differences in chromosome number. For the successful introduction of into the new European environment, it is necessary to overcome the difficulties associated with the physiological characteristics of the species, such as insufficient cold tolerance and very late fruit ripening. To facilitate the further discovery of valuable loci in and their transfer to grapevine breeding programs, we constructed a high-density linkage map using an S1 mapping population obtained from the self-pollination of cv. Dixie maintained on the southern coast of Crimea. Using ddRADseq, 3730 SNPs were ordered across 20 linkage groups spanning 2753.6 cM of the total map length. No segregation in resistance to diseases and pests was observed among the 'Dixie' S1 population, suggesting the presence of homozygous non-segregating resistant loci in the genetic background of 'Dixie'. Markers with high segregation distortion showed a bias towards chromosomal intervals on linkage groups 10 and 20, where loci affecting the survival of 'Dixie' S1 progeny may be localized. QTLs with significant additive and dominance effects were discovered on LG14 and LG18, affecting the morphological traits associated with the vigor of growth and adaptability of young vines in the conditions of Crimea.

摘要

免疫葡萄(Michaux.)的种内多样性可作为葡萄最广泛的病原体和害虫的宝贵抗性基因座的丰富来源。虽然只有一个抗性基因座已从[未提及的物种]渗入到[未提及的基因库]基因库中,但在各种[未提及的品种]品种中已鉴定出许多其他对白粉病和霜霉病具有抗性的基因。将[未提及的品种]更多地引入欧洲大陆将极大地促进种间杂交实验,并刺激生物技术努力克服由于染色体数目差异导致的F1育性的主要障碍。为了成功地将[未提及的品种]引入新的欧洲环境,有必要克服与该物种生理特性相关的困难,例如耐寒性不足和果实成熟很晚。为了促进在[未提及的品种]中进一步发现有价值的基因座并将其转移到葡萄育种计划中,我们使用从克里米亚南部海岸种植的‘迪克西’(cv. Dixie)自花授粉获得的S1作图群体构建了高密度连锁图谱。使用ddRADseq,在跨越总图长2753.6 cM的20个连锁群上排列了3730个SNP。在‘迪克西’S1群体中未观察到对病虫害抗性的分离,这表明在‘迪克西’的遗传背景中存在纯合不分离的抗性基因座。具有高分离畸变的标记偏向于连锁群10和20上的染色体区间,影响‘迪克西’S1后代存活的基因座可能定位在那里。在LG14和LG18上发现了具有显著加性和显性效应的QTL,影响与克里米亚条件下年轻[未提及的品种]藤蔓的生长活力和适应性相关的形态性状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cadb/9738875/aeaf4afd39cb/plants-11-03231-g001.jpg

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