Expression of 9-cis-EPOXYCAROTENOID DIOXYGENASE4 Is Essential for Thermoinhibition of Lettuce Seed Germination but Not for Seed Development or Stress Tolerance

Author:

Huo Heqiang1,Dahal Peetambar1,Kunusoth Keshavulu2,McCallum Claire M.3,Bradford Kent J.1

Affiliation:

1. Department of Plant Sciences, University of California, Davis, California 95616

2. Department of Seed Science and Technology, Acharya N.G. Ranga Agricultural University, Rajendranagar, Hyderabad 500030, Andhra Pradesh, India

3. Arcadia Biosciences, Davis, California 95618

Abstract

Abstract Thermoinhibition, or failure of seeds to germinate at warm temperatures, is common in lettuce (Lactuca sativa) cultivars. Using a recombinant inbred line population developed from a lettuce cultivar (Salinas) and thermotolerant Lactuca serriola accession UC96US23 (UC), we previously mapped a quantitative trait locus associated with thermoinhibition of germination to a genomic region containing a gene encoding a key regulated enzyme in abscisic acid (ABA) biosynthesis, 9-cis-EPOXYCAROTENOID DIOXYGENASE4 (NCED4). NCED4 from either Salinas or UC complements seeds of the Arabidopsis thaliana nced6-1 nced9-1 double mutant by restoring germination thermosensitivity, indicating that both NCED4 genes encode functional proteins. Transgenic expression of Salinas NCED4 in UC seeds resulted in thermoinhibition, whereas silencing of NCED4 in Salinas seeds led to loss of thermoinhibition. Mutations in NCED4 also alleviated thermoinhibition. NCED4 expression was elevated during late seed development but was not required for seed maturation. Heat but not water stress elevated NCED4 expression in leaves, while NCED2 and NCED3 exhibited the opposite responses. Silencing of NCED4 altered the expression of genes involved in ABA, gibberellin, and ethylene biosynthesis and signaling pathways. Together, these data demonstrate that NCED4 expression is required for thermoinhibition of lettuce seeds and that it may play additional roles in plant responses to elevated temperature.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

Reference82 articles.

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3. A gene encoding an abscisic acid biosynthetic enzyme (LsNCED4) collocates with the high temperature germination locus Htg6.1 in lettuce (Lactuca sp.);Argyris;Theor. Appl. Genet.,2011

4. Argyris, J.M. (2008). Natural Variation and Genetic Analyses of Seed and Seedling Traits in Lettuce: Discovery, Confirmation and Proposed Role for a Quantitative Trait Locus in Regulating Seed Dormancy at High Temperature. PhD dissertation (Davis, CA: University of California).

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