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弯叶苔草(莎草科)SSR标记的开发及其在研究该物种遗传结构中的重要性。

Development of SSR markers for Carex curvula (Cyperaceae) and their importance in investigating the species genetic structure.

作者信息

Șuteu Dana, Pușcaș Mihai, Băcilă Ioan, Miclăuș Mihai, Balázs Zoltán Robert, Choler Philippe

机构信息

Department of Experimental Biology, National Institute of Research and Development for Biological Sciences, 48 Republicii Street, 400015, Cluj-Napoca, Romania.

A. Borza Botanic Garden, Babeș-Bolyai University, 42 Republicii Street, 400015, Cluj-Napoca, Romania.

出版信息

Mol Biol Rep. 2023 May;50(5):4729-4733. doi: 10.1007/s11033-023-08362-z. Epub 2023 Mar 11.

Abstract

BACKGROUND

Microsatellite primers were developed and tested to genotype several populations of Carex curvula s. l. (Cyperaceae), in order to infer the phylogeographic relationships of the populations within species and the boundaries between the two described subspecies: C. curvula subsp. curvula and C. curvula subsp. rosae.

METHODS AND RESULTS

Candidate microsatellite loci were isolated based on next-generation sequencing. We tested 18 markers for polymorphism and replicability in seven C. curvula s. l. populations and identified 13 polymorphic loci with dinucleotide repeats. Genotyping results showed the total number of alleles per locus varied from four to 23 (including both infrataxa), and the observed and expected heterozygosity ranged between 0.1 to 0.82 and 0.219 to 0.711, respectively. Furthermore, the NJ tree showed a clear separation between C. curvula subsp. curvula and C. curvula subsp. rosae.

CONCLUSION

The development of these highly polymorphic markers proved to be very efficient not only in delineating between the two subspecies, but also in genetic discriminating at population level within each infrataxon. They are promising tools for evolutionary studies in Cariceae section, as well as in providing knowledge on patterns of the species phylogeography.

摘要

背景

开发并测试了微卫星引物,用于对弯喙苔草(Carex curvula s. l.,莎草科)的多个种群进行基因分型,以推断物种内种群的系统地理学关系以及两个已描述亚种之间的界限:弯喙苔草弯喙亚种(C. curvula subsp. curvula)和弯喙苔草蔷薇亚种(C. curvula subsp. rosae)。

方法与结果

基于下一代测序分离出候选微卫星位点。我们在七个弯喙苔草复合种群中测试了18个标记的多态性和可重复性,并鉴定出13个具有二核苷酸重复的多态性位点。基因分型结果显示,每个位点的等位基因总数在4到23之间(包括种下分类单元),观察到的杂合度和预期杂合度分别在0.1至0.82和0.219至0.711之间。此外,NJ树显示弯喙苔草弯喙亚种和弯喙苔草蔷薇亚种之间有明显的分离。

结论

这些高度多态性标记的开发不仅在区分两个亚种方面非常有效,而且在每个种下分类单元内的种群水平上进行遗传鉴别也很有效。它们是莎草科苔草亚科进化研究的有前途的工具,也有助于提供有关该物种系统地理学模式的知识。

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