4.8 Article

ABNORMAL POLLEN VACUOLATION1 (APV1) is required for male fertility by contributing to anther cuticle and pollen exine formation in maize

期刊

PLANT JOURNAL
卷 90, 期 1, 页码 96-110

出版社

WILEY
DOI: 10.1111/tpj.13476

关键词

maize; microspore; anther cuticle; pollen exine; tapetum; male sterility

资金

  1. Ministry of Agriculture of China [2016ZX08009003-003]
  2. National Natural Science Foundation of China [31271729]

向作者/读者索取更多资源

Anther cuticle and pollen exine are the major protective barriers against various stresses. The proper functioning of genes expressed in the tapetum is vital for the development of pollen exine and anther cuticle. In this study, we report a tapetum-specific gene, Abnormal Pollen Vacuolation1 (APV1), in maize that affects anther cuticle and pollen exine formation. The apv1 mutant was completely male sterile. Its microspores were swollen, less vacuolated, with a flat and empty anther locule. In the mutant, the anther epidermal surface was smooth, shiny, and plate-shaped compared with the three-dimensional crowded ridges and randomly formed wax crystals on the epidermal surface of the wild-type. The wild-type mature pollen had elaborate exine patterning, whereas the apv1 pollen surface was smooth. Only a few unevenly distributed Ubisch bodies were formed on the apv1 mutant, leading to a more apparent inner surface. A significant reduction in the cutin monomers was observed in the mutant. APV1 encodes a member of the P450 subfamily, CYP703A2-Zm, which contains 530 amino acids. APV1 appeared to be widely expressed in the tapetum at the vacuolation stage, and its protein signal co-localized with the endoplasmic reticulum (ER) signal. RNA-Seq data revealed that most of the genes in the fatty acid metabolism pathway were differentially expressed in the apv1 mutant. Altogether, we suggest that APV1 functions in the fatty acid hydroxylation pathway which is involved in forming sporopollenin precursors and cutin monomers that are essential for the development of pollen exine and anther cuticle in maize. Significance Statement Mutants that fail to properly develop the pollen coat are male-sterile. Here, we describe APV1, a cytochrome P450 important for the proper development of the anther cuticle and pollen exine in maize. As many genes in fatty acid metabolism exhibit reduced expression in the apv1 mutant, we suggest that the fatty acid hydroxylation pathway is important for the formation of the pollen exine and anther cuticle.

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