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Scanning RNA-Seq and RAD-Seq approach to develop SNP markers closely linked to <i>MALE STERILITY 1</i> (<i>MS1</i>) in <i>Cryptomeria japonica</i> D. Don

Saneyoshi UenoDepartment of Forest Molecular Genetics and Biotechnology, Forestry and Forest Products Research Institute, Forest Research and Management OrganizationKentaro UchiyamaDepartment of Forest Molecular Genetics and Biotechnology, Forestry and Forest Products Research Institute, Forest Research and Management OrganizationYoshinari MoriguchiGraduate School of Science and Technology, Niigata UniversityTokuko Ujino‐IharaDepartment of Forest Molecular Genetics and Biotechnology, Forestry and Forest Products Research Institute, Forest Research and Management OrganizationAsako MatsumotoDepartment of Forest Molecular Genetics and Biotechnology, Forestry and Forest Products Research Institute, Forest Research and Management OrganizationFu‐Jin WeiDepartment of Forest Molecular Genetics and Biotechnology, Forestry and Forest Products Research Institute, Forest Research and Management OrganizationMaki SaitoToyama Prefectural Agricultural Forestry and Fisheries Research Center, Forestry Research InstituteYumi HiguchiNiigata Prefectural Forest Research InstituteNorihiro FutamuraDepartment of Forest Molecular Genetics and Biotechnology, Forestry and Forest Products Research Institute, Forest Research and Management OrganizationHiroyuki KanamoriNational Institute of Agrobiological SciencesYūichi KatayoseNational Institute of Agrobiological SciencesYoshihiko TsumuraDepartment of Forest Molecular Genetics and Biotechnology, Forestry and Forest Products Research Institute, Forest Research and Management Organization
Breeding Sciencejournal2019en
ABI

Аннотация

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 (MS1) were identified from an analysis of RNA-Seq and RAD-Seq, respectively. SNPs closely linked to MS1 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 MS1. Linkage analysis of selected SNP markers confirmed a higher efficiency of the current method to construct a partial map around MS1. Allele-specific PCR primer pair for the most closely linked SNP with MS1 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.

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