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本文引用的文献

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Microsatellites Cross-Species Amplification across Some African Cichlids.微卫星在一些非洲丽鱼科鱼类中的跨物种扩增
Int J Evol Biol. 2012;2012:870935. doi: 10.1155/2012/870935. Epub 2012 Jun 4.
2
Fast and cost-effective mining of microsatellite markers using NGS technology: an example of a Korean water deer Hydropotes inermis argyropus.利用 NGS 技术快速、经济地挖掘微卫星标记:以韩国水鹿 Hydropotes inermis argyropus 为例。
PLoS One. 2011;6(11):e26933. doi: 10.1371/journal.pone.0026933. Epub 2011 Nov 1.
3
Rise of the machines--recommendations for ecologists when using next generation sequencing for microsatellite development.机器的崛起——对生态学家在使用下一代测序技术开发微卫星时的建议。
Mol Ecol Resour. 2011 Nov;11(6):1093-101. doi: 10.1111/j.1755-0998.2011.03037.x. Epub 2011 Jun 16.
4
Phylogeny of the gudgeons (Teleostei: Cyprinidae: Gobioninae).泥鳅(硬骨鱼纲:鲤形目:鲤科:副泥鳅属)的系统发育。
Mol Phylogenet Evol. 2011 Oct;61(1):103-24. doi: 10.1016/j.ympev.2011.05.022. Epub 2011 Jun 6.
5
Microsatellites, from molecules to populations and back.微卫星:从分子到群体再到分子。
Trends Ecol Evol. 1996 Oct;11(10):424-9. doi: 10.1016/0169-5347(96)10049-5.
6
Flexibility of reproductive tactics and their consequences in the brood parasitic fish Pungtungia herzi (Teleostei: Cyprinidae).多策略繁殖及其在寄生性鱼类赫氏细鲫(鲤形目:鲤科)中的后果。
J Fish Biol. 2009 Aug;75(3):563-74. doi: 10.1111/j.1095-8649.2009.02306.x.
7
Utility of sequenced genomes for microsatellite marker development in non-model organisms: a case study of functionally important genes in nine-spined sticklebacks (Pungitius pungitius).测序基因组在非模式生物中小卫星标记开发中的应用:以九刺鱼(Pungitius pungitius)9 个功能重要基因为例。
BMC Genomics. 2010 May 27;11:334. doi: 10.1186/1471-2164-11-334.
8
Arlequin (version 3.0): an integrated software package for population genetics data analysis.Arlequin(版本 3.0):一个用于群体遗传学数据分析的集成软件包。
Evol Bioinform Online. 2007 Feb 23;1:47-50.
9
Cross-species amplification of Bovidae microsatellites and low diversity of the endangered Korean goral.牛科微卫星的跨物种扩增与濒危朝鲜斑羚的低多样性
J Hered. 2004 Nov-Dec;95(6):521-5. doi: 10.1093/jhered/esh082.
10
Microsatellites in different eukaryotic genomes: survey and analysis.不同真核生物基因组中的微卫星:调查与分析。
Genome Res. 2000 Jul;10(7):967-81. doi: 10.1101/gr.10.7.967.

利用下一代测序技术在 Pseudopungtungia 属中进行种间扩增,开发 Pungtungia herzi 的微卫星标记。

Development of microsatellite markers in Pungtungia herzi using next-generation sequencing and cross-species amplification in the genus Pseudopungtungia.

机构信息

National Institute of Biological Resources, Incheon 404-708, Korea.

出版信息

Int J Mol Sci. 2013 Oct 1;14(10):19923-31. doi: 10.3390/ijms141019923.

DOI:10.3390/ijms141019923
PMID:24084733
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3821594/
Abstract

Nuclear microsatellite markers for Pungtungia herzi were developed using a combination of next-generation sequencing and Sanger sequencing. One hundred primer sets in the flanking region of dinucleotide and trinucleotide repeat motifs were designed and tested for efficiency in polymerase chain reaction amplification. Of these primer sets, 16 new markers (16%) were successfully amplified with unambiguous polymorphic alleles in 16 individuals of Pungtungia herzi. Cross-species amplification with these markers was then examined in two related species, Pseudopungtungia nigra and Pseudopungtungia tenuicorpa. Fifteen and 11 primer pairs resulted in successful amplification in Pseudopungtungia nigra and Pseudopungtungia tenuicorpa, respectively, with various polymorphisms, ranging from one allele (monomorphic) to 11 alleles per marker. These results indicated that developing microsatellite markers for cross-amplification from a species that is abundant and phylogenetically close to the species of interest is a good alternative when tissue samples of an endangered species are insufficient to develop microsatellites.

摘要

利用下一代测序和 Sanger 测序相结合的方法,为蓬头蓟属植物开发了核微卫星标记。在二核苷酸和三核苷酸重复基序的侧翼区域设计了 100 对引物,并对其在聚合酶链反应扩增中的效率进行了测试。在 16 个蓬头蓟属植物个体中,有 16 对(16%)新的标记成功扩增,具有明确的多态性等位基因。然后,用这些标记对两个相关种,黑毛蓬头蓟和细柄蓬头蓟进行了种间扩增。在黑毛蓬头蓟和细柄蓬头蓟中,分别有 15 对和 11 对引物成功扩增,具有不同的多态性,每个标记从一个等位基因(单态性)到 11 个等位基因不等。这些结果表明,当濒危物种的组织样本不足以开发微卫星时,从丰富且系统发育上与感兴趣的物种接近的物种中开发用于交叉扩增的微卫星标记是一种很好的替代方法。