Genetic dissection of leaf development in Brassica rapa using a ‘geneticalgenomics’ approach

D. Xiao, H. Wang, R.K. Basnet, Jianjun Jianjun Zhao, K. Lin, X. Hou, A.B. Bonnema

Research output: Contribution to journalArticleAcademicpeer-review

40 Citations (Scopus)

Abstract

The paleohexaploid crop Brassica rapa harbors an enormous reservoir of morphological variation, encompassing leafy vegetables, vegetable and fodder turnips (Brassica rapa, ssp. campestris), and oil crops, with different crops having very different leaf morphologies. In the triplicated B. rapa genome, many genes have multiple paralogs that may be regulated differentially and contribute to phenotypic variation. Using a genetical genomics approach, phenotypic data from a segregating doubled haploid population derived from a cross between cultivar Yellow sarson (oil type) and cultivar Pak choi (vegetable type) were used to identify loci controlling leaf development. Twenty-five colocalized phenotypic quantitative trait loci (QTLs) contributing to natural variation for leaf morphological traits, leaf number, plant architecture, and flowering time were identified. Genetic analysis showed that four colocalized phenotypic QTLs colocalized with flowering time and leaf trait candidate genes, with their cis-expression QTLs and cis- or trans-expression QTLs for homologs of genes playing a role in leaf development in Arabidopsis (Arabidopsis thaliana). The leaf gene BRASSICA RAPA KIP-RELATED PROTEIN2_A03 colocalized with QTLs for leaf shape and plant height; BRASSICA RAPA ERECTA_A09 colocalized with QTLs for leaf color and leaf shape; BRASSICA RAPA LONGIFOLIA1_A10 colocalized with QTLs for leaf size, leaf color, plant branching, and flowering time; while the major flowering time gene, BRASSICA RAPA FLOWERING LOCUS C_A02, colocalized with QTLs explaining variation in flowering time, plant architectural traits, and leaf size. Colocalization of these QTLs points to pleiotropic regulation of leaf development and plant architectural traits in B. rapa.
Original languageEnglish
Pages (from-to)1309-1325
JournalPlant Physiology
Volume164
Issue number3
DOIs
Publication statusPublished - 2014

Keywords

  • quantitative trait loci
  • flowering time
  • arabidopsis-thaliana
  • morphological traits
  • functional divergence
  • natural variation
  • duplicated genes
  • organ growth
  • expression
  • cell

Fingerprint

Dive into the research topics of 'Genetic dissection of leaf development in Brassica rapa using a ‘geneticalgenomics’ approach'. Together they form a unique fingerprint.

Cite this