Genetic analysis and QTL mapping for silique density in rapeseed (Brassica napus L.)

Author:

Ma Xingrong1,Wang Jinhua1,Gu Yongfen1,Fang Pengpeng1,Nie Wenjing1,Luo Ruirui1,Liu Jin1,Qian Wei1,Mei Jiaqin1ORCID

Affiliation:

1. Southwest University

Abstract

Abstract Silique density is one of the critical factors to determine seed yield and plant architecture in rapeseed (Brassica napus L.), however, the genetic control of this trait is largely unknown. In this study, the genetic model for silique density on main inflorescence (SDMI) of rapeseed was estimated according to the phenotypic data of P1 (an inbreed line with high SDMI), P2 (an inbreed line with low SDMI), F1, F2, BC1P1 and BC1P2 populations, revealing that SDMI is probably controlled by multi minor genes with or without major gene. The QTLs for SDMI and its component characters including silique number on main inflorescence (SNMI) and main inflorescence length (MIL) were consequently mapped from a DH population derived from P1 and P2 by using a genetic linkage map constructed by RAD-seq technology. A total of eight, 14 and three QTLs were identified for SDMI, SNMI and MIL under three environments, respectively, with an overlap among SDMI and SNMI in 55.7-75.4 cM on linkage group C06 which corresponding to 11.6-27.3 Mb on chromosome C06. Genomic resequencing was further conducted between a high- and a low-SDMI pool constructed from the DH population, and QTL-seq analysis identified a 0.15-Mb interval (25.98-26.13 Mb) from the C06-QTL region aforementioned. Transcriptome sequencing and qRT-PCR identified one possible candidate gene (BnARGOS) from the 0.15-Mb interval. This study will provide novel insights into the genetic basis of SD in rapeseed.

Publisher

Research Square Platform LLC

Reference45 articles.

1. The significance of digital gene expression profiles;Audic S;Genome Res,1997

2. Rapid SNP discovery and genetic mapping using sequenced RAD markers;Baird NA;PLoS ONE,2008

3. Mapping of quantitative trait loci for yield and yield components in Brassica napus L;Bin Y;Acta Agron Sinica,2006

4. Association mapping of six yield-related traits in rapeseed (Brassica napus L.);Cai D;Theor Appl Genet,2014

5. Genetic dissection of plant architecture and yield-related traits in Brassica napus;Cai G,2016

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