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Fluidigm 시스템을 이용한 고추 유전자원의 주요병 유전형 평가.

Authors :
금보라
노나영
허온숙
왕샤오한
최유미
고호철
이수경
Source :
Korean Journal of Breeding Science. Dec2021, Vol. 53 Issue 4, p432-449. 18p.
Publication Year :
2021

Abstract

In this study, genotype analysis was conducted using the Fluidigm system with 13 SNP markers related to anthracnose, powdery mildew, phytophthora root rot, cucumber mosaic virus (CMV), potyvirus, and tobacco mosaic virus (TMV) resistance. A total of 25,350 data points were obtained, 8.2% of which indicated resistance genotypes. Resources having perfect resistance genotype to each disease-related molecular marker set were 58 accessions for anthracnose, 57 for powdery mildew, 246 for phytophthora root rot, and 765 for CMV. There was no resource having a perfect resistance genotype of all three potyvirus-related molecular SNP markers including pvr1, pvr2 (123457), and pvr2 (689). Thirty-seven accessions for pvr1, 349 accessions for pvr2 (123457), and 23 accessions for pvr2 (689) were identified as resources with resistance genotype. No resource with the TMV-resistance genotype was found in this study. The resources with complex resistance genotypes of anthracnose and powdery mildew were 55 accessions, and they were mainly Capsicum baccatum. Among these, seven accessions had a three-disease combined resistance genotype with phytophthora root rot. Thirty-six accessions, 16 accessions, and nine accessions each had resistance genotypes of the three potyvirus-related markers. These resources also had CMV and phytophthora root rot resistance genotypes, and they were mainly Capsicum chinense. The statistical analysis considering the evaluated resistance genotypes, revealed that the anthracnose resistance genotype showed a tendency to be linked with powdery mildew resistance genotype. The potyvirus-related marker pvr1 was positively correlated with Phytophthora root rot markers. [ABSTRACT FROM AUTHOR]

Details

Language :
Korean
ISSN :
02503360
Volume :
53
Issue :
4
Database :
Academic Search Index
Journal :
Korean Journal of Breeding Science
Publication Type :
Academic Journal
Accession number :
153985068
Full Text :
https://doi.org/10.9787/KJBS.2021.53.4.432