4.7 Article

Rice fatty acyl-CoA synthetase OsACOS12 is required for tapetum programmed cell death and male fertility

Journal

PLANTA
Volume 246, Issue 1, Pages 105-122

Publisher

SPRINGER
DOI: 10.1007/s00425-017-2691-y

Keywords

Acyl-activating enzyme; Anther cuticle; Male sterility; Oryza sativa; Pollen exine

Categories

Funding

  1. National Key Research and Development Program of China [2016YFD0101107]
  2. National Key Technologies Research and Development Program of China [2016YFD0100804]
  3. The Science and Technology Commission of Shanghai Municipality [13JC1408200]
  4. China Innovative Research Team, Ministry of Education
  5. Programme of Introducing Talents of Discipline to Universities (111 Project) [B14016]

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Main Conclusion Loss of function mutation of rice OsACOS12 impairs lipid metabolism-mediated anther cuticle and pollen wall formation, and interferes with tapetum programmed cell death, leading to male sterility. Acyl-CoA Synthetase (ACOS) is one of the enzymes activating fatty acids for various metabolic functions in plants. Here, we show that OsACOS12, an orthologue of Arabidopsis ACOS5 in rice, is crucial for rice fertility. Similar to acos5, osaocs12 mutant had no mature pollen. But unlike acos5, osaocs12 produced defective anthers lacking cutin and Ubisch bodies on the epidermal and inner surfaces, respectively, and delayed programmed cell death (PCD)-induced tapetum degradation. Those phenotypic changes were evident at stage 10, during which OsACOS12 had its maximum expression in tapetal cells and microspores. Chemical analysis revealed that the levels of anther cuticular lipid components (wax and cutin monomers) were significantly reduced in osaocs12, while the expression levels of three known lipid biosynthetic genes were unchanged. Recombinant OsACOS12 enzyme was shown to catalyze the conversion of C18:1 fatty acid to C18:1 CoA in vitro. Phylogenetic analysis indicated that OsACOS12 is an ancient and conserved enzyme associated with the plant's colonization to earth. Collectively, our study suggests that OsACOS12 is an ancient enzyme participating in a conserved metabolic pathway for diversified biochemical functions to secure male reproduction in plants.

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