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A Novel Male-sterile Mutant of Arabidopsis Thaliana, Faceless Pollen-1, Produces Pollen with a Smooth Surface and an Acetolysis-sensitive Exine

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Journal Plant Mol Biol
Date 2004 Feb 6
PMID 14756310
Citations 71
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Abstract

A mutant exhibiting conditional male sterility, in which fertility was restored under conditions of high humidity, was identified in T-DNA tagged lines of Arabidopsis thaliana. Scanning electron microscopy (SEM) demonstrated that the pollen surface was almost smooth and the reticulate pattern not prominent. Thus, the mutant was named faceless pollen-1 (flp1). Transmission electron microscopy (TEM) revealed that the smooth appearance was due to tryphine filling in the exine cavities and covering the pollen surface. The lipid droplets in the tryphine of mutant pollen were smaller and more numerous than those of the wild type. SEM analysis also demonstrated that pollen exine was easily damaged by acetolysis, suggesting that a component of exine, sporopollenin, was defective in the mutant. In addition, the stems and siliques had reduced amounts of wax crystals. A predicted amino acid sequence of the cDNA that corresponded to the tagged gene, fip1, showed sequence similarity to proteins involved in wax biosynthesis. The FLP1 protein is likely to play a role in the synthesis of the components of tryphine, sporopollenin of exine and the wax of stems and siliques.

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References
1.
Shanklin J, Whittle E, Fox B . Eight histidine residues are catalytically essential in a membrane-associated iron enzyme, stearoyl-CoA desaturase, and are conserved in alkane hydroxylase and xylene monooxygenase. Biochemistry. 1994; 33(43):12787-94. DOI: 10.1021/bi00209a009. View

2.
Dodrill C, Owen H, Makaroff C . DEX1, a novel plant protein, is required for exine pattern formation during pollen development in Arabidopsis. Plant Physiol. 2001; 127(4):1739-49. PMC: 133577. View

3.
Hansen J, Pyee J, Xia Y, Wen T, Robertson D, Kolattukudy P . The glossy1 locus of maize and an epidermis-specific cDNA from Kleinia odora define a class of receptor-like proteins required for the normal accumulation of cuticular waxes. Plant Physiol. 1997; 113(4):1091-100. PMC: 158232. DOI: 10.1104/pp.113.4.1091. View

4.
Ishiguro S, Ueda J, Nishida I, Okada K . The DEFECTIVE IN ANTHER DEHISCIENCE gene encodes a novel phospholipase A1 catalyzing the initial step of jasmonic acid biosynthesis, which synchronizes pollen maturation, anther dehiscence, and flower opening in Arabidopsis. Plant Cell. 2001; 13(10):2191-209. PMC: 139153. DOI: 10.1105/tpc.010192. View

5.
Aarts M, Keijzer C, Stiekema W, Pereira A . Molecular characterization of the CER1 gene of arabidopsis involved in epicuticular wax biosynthesis and pollen fertility. Plant Cell. 1995; 7(12):2115-27. PMC: 161066. DOI: 10.1105/tpc.7.12.2115. View