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The role of BoFLC2 in cauliflower (Brassica oleracea var. botrytis L.) reproductive development

journal contribution
posted on 2018-06-28, 00:00 authored by S Ridge, Philip BrownPhilip Brown, V Hecht, RG Driessen, JL Weller
In agricultural species that are sexually propagated or whose marketable organ is a reproductive structure, management of the flowering process is critical. Inflorescence development in cauliflower is particularly complex, presenting unique challenges for those seeking to predict and manage flowering time. In this study, an integrated physiological and molecular approach was used to clarify the environmental control of cauliflower reproductive development at the molecular level. A functional allele of BoFLC2 was identified for the first time in an annual brassica, along with an allele disrupted by a frameshift mutation (boflc2). In a segregating F₂ population derived from a cross between late-flowering (BoFLC2) and early-flowering (boflc2) lines, this gene behaved in a dosage-dependent manner and accounted for up to 65% of flowering time variation. Transcription of BoFLC genes was reduced by vernalization, with the floral integrator BoFT responding inversely. Overall expression of BoFT was significantly higher in early-flowering boflc2 lines, supporting the idea that BoFLC2 plays a key role in maintaining the vegetative state. A homologue of Arabidopsis VIN3 was isolated for the first time in a brassica crop species and was up-regulated by two days of vernalization, in contrast to findings in Arabidopsis where prolonged exposure to cold was required to elicit up-regulation. The correlations observed between gene expression and flowering time in controlled-environment experiments were validated with gene expression analyses of cauliflowers grown outdoors under 'natural' vernalizing conditions, indicating potential for transcript levels of flowering genes to form the basis of predictive assays for curd initiation and flowering time.

Funding

Category 1 - Australian Competitive Grants (this includes ARC, NHMRC)

History

Volume

66

Issue

1

Start Page

125

End Page

135

Number of Pages

11

eISSN

1460-2431

ISSN

0022-0957

Location

England

Publisher

Oxford University Press (OUP)

Additional Rights

CC BY 3.0

Language

eng

Peer Reviewed

  • Yes

Open Access

  • Yes

External Author Affiliations

University of Tasmania; Rijk Zwaan Breeding B.V. De Lier, The Netherlands

Author Research Institute

  • Institute for Future Farming Systems

Era Eligible

  • Yes

Journal

Journal of Experimental Botany