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PMID: 12061894 Published · ppublish English Journal Article

Male gametophyte development in bread wheat (Triticum aestivum L.): molecular, cellular, and biochemical analyses of a sporophytic contribution to pollen wall ontogeny.

The Plant journal : for cell and molecular biology ·Vol. 30 ·No. 6 ·2002-06-00 ·Pages 613-23

Wang A, Xia Q, Xie W, Dumonceaux T, Zou J, Datla R, Selvaraj G

Abstract

Bread wheat (hexaploid AABBDD genome; 16 billion basepairs) is a genetically complex, self-pollinating plant with bisexual flowers that produce short-lived pollen. Very little is known about the molecular biology of its gametophyte development despite a longstanding interest in hybrid seeds. We present here a comprehensive characterization of three apparently homeologous genes (TAA1a, TAA1b and TAA1c) and demonstrate their anther-specific biochemical function. These eight-exon genes, found at only one copy per haploid complement in this large genome, express specifically within the sporophytic tapetum cells. The presence of TAA1 mRNA and protein was evident only at specific stages of pollen development as the microspore wall thickened during the progression of free microspores into vacuolated-microspores. This temporal regulation matched the assembly of wall-impregnated sporopollenin, a phenylpropanoid-lipid polymer containing very long chain fatty alcohols (VLCFAlc), described in the literature. Our results establish that sporophytic genes contribute to the production of fatty alcohols: Transgenic expression of TAA1 afforded production of long/VLCFAlc in tobacco seeds (18 : 1; 20 : 1; 22 : 1; 24 : 0; 26 : 0) and in Escherichia coli (14 : 0; 16 : 0; 18 : 1), suggesting biochemical versatility of TAA1 with respect to cellular milieu and substrate spectrum. Pollen walls additionally contain fatty alcohols in the form of wax esters and other lipids, and some of these lipids are known to play a role in the highly specific sexual interactions at the pollen-pistil interface. This study provides a handle to study these and to manipulate pollen traits, and, furthermore, to understand the molecular biology of fatty alcohol metabolism in general.

MeSH Terms
Amino Acid Sequence Biopolymers/metabolism Carotenoids/metabolism Cell Wall/genetics,physiology DNA, Complementary/chemistry,genetics Escherichia coli/genetics Fatty Acids/metabolism Fatty Alcohols/metabolism Gene Expression Regulation, Plant In Situ Hybridization Molecular Sequence Data Plant Proteins/genetics,metabolism Plants, Genetically Modified Pollen/chemistry,cytology,growth & development Polyploidy RNA, Messenger/metabolism Reproduction/genetics Seeds/genetics Sequence Analysis, DNA Sequence Homology, Amino Acid Tobacco/genetics Triticum/chemistry,cytology,genetics
Chemicals
Biopolymers DNA, Complementary Fatty Acids Fatty Alcohols Plant Proteins RNA, Messenger sporopollenin Carotenoids
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Wang Aiming
Plant Biotechnology Institute, National Research Council of Canada, 110 Gymnasium Place, Saskatoon, Saskatchewan, Canada S7N 0W9.
Xia Qun
Xie Wenshuang
Dumonceaux Tim
Zou Jitao
Datla Raju
Selvaraj Gopalan
Article Info
Journal
The Plant journal : for cell and molecular biology
Abbr.
Plant J
ISSN
0960-7412
Published
2002-06-00
Pages
613-23
Language
English
Region
England
NLM ID
9207397
Subset
IM
Databases
GENBANK
AJ459249, AJ459250, AJ459251, AJ459252, AJ459253, AJ459254
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