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首页> 外文期刊>Breeding science >Scanning RNA-Seq and RAD-Seq approach to develop SNP markers closely linked to MALE STERILITY 1 (MS1) in Cryptomeria japonica D. Don
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Scanning RNA-Seq and RAD-Seq approach to develop SNP markers closely linked to MALE STERILITY 1 (MS1) in Cryptomeria japonica D. Don

机译:扫描RNA-SEQ和RAD-SEQ方法以开发与雄性不育1(MS1)密切相关的SNP标记(Cryptomeria Japonica D. Don

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摘要

Cryptomeria japonica is a major forestry tree species in Japan. Male sterility of the species is caused by a recessive gene, which shows dysfunction of pollen development and results in no dispersed pollen. Because the pollen of C japonica induces pollinosis, breeding of pollen-free C. japonica is desired. In this study, single nucleotide polymorphism (SNP) markers located at 1.78 and 0.58 cM to a male sterility locus (MSI) were identified from an analysis of RNA-Seq and RAD-Seq, respectively. SNPs closely linked to MSI were first scanned by a method similar to MutMap, where a type of index was calculated to measure the strength of the linkage between a marker sequence and MSI. Linkage analysis of selected SNP markers confirmed a higher efficiency of the current method to construct a partial map around MSI. Allele-specific PCR primer pair for the most closely linked SNP with MSI was developed as a codominant marker, and visualization of the PCR products on an agarose gel enabled rapid screening of male sterile C. japonica. The allele-specific primers developed in this study would be useful for establishing the selection of male sterile C. japonica.
机译:Cryptomeria japonica是日本的主要林业树。物种的雄性不育是由隐性基因引起的,这表现出花粉发育功能障碍,并导致没有分散的花粉。由于C粳稻的花粉诱导花粉,无需养殖花粉C.粳稻。在该研究中,分别从RNA-SEQ和Rad-SEQ的分析中鉴定位于1.78和0.58cm至雄性不育基因座(MSI)的单核苷酸多态性(SNP)标记物。首先通过类似于Mutmap的方法扫描与MSI紧密相关的SNP,其中计算了一种索引以测量标记序列和MSI之间的连接强度。所选SNP标记的连杆分析证实了当前方法的效率更高,以构建MSI周围的偏映射。具有MSI最紧密连接的SNP的等位基因特异性PCR引物对作为Codominant标记,并且PCR产物的可视化在琼脂糖凝胶上能够快速筛选雄性无菌C. japonica。本研究中开发的等位基因特异性引物对于建立雄性无菌C.粳稻的选择是有用的。

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  • 来源
    《Breeding science》 |2019年第1期|共11页
  • 作者单位

    Forest Res &

    Management Org Dept Forest Mol Genet &

    Biotechnol Forest &

    Forest Prod Res Inst 1 Matsunosato Tsukuba Ibaraki 3058687 Japan;

    Forest Res &

    Management Org Dept Forest Mol Genet &

    Biotechnol Forest &

    Forest Prod Res Inst 1 Matsunosato Tsukuba Ibaraki 3058687 Japan;

    Niigata Univ Grad Sch Sci &

    Technol Nishi Ku 8050 Ikarashi 2 Na Cho Niigata 9502181 Japan;

    Forest Res &

    Management Org Dept Forest Mol Genet &

    Biotechnol Forest &

    Forest Prod Res Inst 1 Matsunosato Tsukuba Ibaraki 3058687 Japan;

    Forest Res &

    Management Org Dept Forest Mol Genet &

    Biotechnol Forest &

    Forest Prod Res Inst 1 Matsunosato Tsukuba Ibaraki 3058687 Japan;

    Forest Res &

    Management Org Dept Forest Mol Genet &

    Biotechnol Forest &

    Forest Prod Res Inst 1 Matsunosato Tsukuba Ibaraki 3058687 Japan;

    Forestry Res Inst Toyama Prefectural Agr Forestry &

    Fisheries Res C Yoshimine 3 Tateymna Toyama 9301362 Japan;

    Niigata Prefectural Forest Res Inst 2249-5 Unotoro Murakami Niigata 9580264 Japan;

    Forest Res &

    Management Org Dept Forest Mol Genet &

    Biotechnol Forest &

    Forest Prod Res Inst 1 Matsunosato Tsukuba Ibaraki 3058687 Japan;

    Natl Inst Agrobiol Sci Tsukuba Ibaraki 3058634 Japan;

    Natl Inst Agrobiol Sci Tsukuba Ibaraki 3058634 Japan;

    Forest Res &

    Management Org Dept Forest Mol Genet &

    Biotechnol Forest &

    Forest Prod Res Inst 1 Matsunosato Tsukuba Ibaraki 3058687 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 作物遗传育种与良种繁育;
  • 关键词

    conifer; gymnosperm; non-model organisms; pinales; expressed sequences; restriction-site-associated DNA; marker-assisted selection;

    机译:针叶树;裸子植物;非模型生物;Pinales;表达序列;限制性部位相关的DNA;标记辅助选择;

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