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Retrotransposon-Based Molecular Markers for Analysis of Genetic Diversity within the Genus Linum

机译:基于逆转座子的分子标记用于分析亚麻属内的遗传多样性

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摘要

SSAP method was used to study the genetic diversity of 22 Linum species from sections Linum, Adenolinum, Dasylinum, Stellerolinum, and 46 flax cultivars. All the studied flax varieties were distinguished using SSAP for retrotransposons FL9 and FL11. Thus, the validity of SSAP method was demonstrated for flax marking, identification of accessions in genebank collections, and control during propagation of flax varieties. Polymorphism of Fl1a, Fl1b, and Cassandra insertions were very low in flax varieties, but these retrotransposons were successfully used for the investigation of Linum species. Species clusterization based on SSAP markers was in concordance with their taxonomic division into sections Dasylinum, Stellerolinum, Adenolinum, and Linum. All species of sect. Adenolinum clustered apart from species of sect. Linum. The data confirmed the accuracy of the separation in these sections. Members of section Linum are not as closely related as members of other sections, so taxonomic revision of this section is desirable. L. usitatissimum accessions genetically distant from modern flax cultivars were revealed in our work. These accessions are of utmost interest for flax breeding and introduction of new useful traits into flax cultivars. The chromosome localization of Cassandra retrotransposon in Linum species was determined.
机译:利用SSAP方法研究了亚麻,腺嘌呤,菊科,狼毒和46个亚麻品种中22种亚麻属的遗传多样性。使用SSAP对逆转座子FL9和FL11区分了所有研究的亚麻品种。因此,证明了SSAP方法在亚麻标记,种质库收藏品鉴定以及亚麻品种繁殖期间的控制中的有效性。 Fl1a,Fl1b和Cassandra插入片段的多态性在亚麻品种中非常低,但这些逆转座子已成功用于亚麻属物种的研究。基于SSAP标记的物种聚类与其分类划分为Dasylinum,Stellerolinum,Adenolinum和Linum。所有宗派。 Adenolinum聚集在一起,远离该种。亚麻数据证实了这些部分中分离的准确性。 Linum节的成员与其他节的成员没有那么紧密的联系,因此需要对本节进行分类修订。在我们的工作中揭示了与现代亚麻栽培品种遗传距离遥远的普通乳杆菌。这些种质对于亚麻育种和将新的有用性状引入亚麻品种具有极大的意义。确定了亚麻属中Cassandra逆转录转座子的染色体定位。

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