Affiliation:
1. State Key Laboratory of Tree Genetics and Breeding Northeast Forestry University Harbin 150040 China
2. Shanghai Key Laboratory of Plant Molecular Sciences Shanghai Normal University Shanghai 200234 China
3. College of Life Sciences Northeast Forestry University Harbin 150040 China
Abstract
ABSTRACTIn angiosperms, pollen tube growth is critical for double fertilization and seed formation. Many of the factors involved in pollen tube tip growth are unknown. Here, we report the roles of pollen‐specific GLYCEROPHOSPHODIESTER PHOSPHODIESTERASE‐LIKE (GDPD‐LIKE) genes in pollen tube tip growth. Arabidopsis thaliana GDPD‐LIKE6 (AtGDPDL6) and AtGDPDL7 were specifically expressed in mature pollen grains and pollen tubes and green fluorescent protein (GFP)‐AtGDPDL6 and GFP‐AtGDPDL7 fusion proteins were enriched at the plasma membrane at the apex of forming pollen tubes. Atgdpdl6 Atgdpdl7 double mutants displayed severe sterility that was rescued by genetic complementation with AtGDPDL6 or AtGDPDL7. This sterility was associated with defective male gametophytic transmission. Atgdpdl6 Atgdpdl7 pollen tubes burst immediately after initiation of pollen germination in vitro and in vivo, consistent with the thin and fragile walls in their tips. Cellulose deposition was greatly reduced along the mutant pollen tube tip walls, and the localization of pollen‐specific CELLULOSE SYNTHASE‐LIKE D1 (CSLD1) and CSLD4 was impaired to the apex of mutant pollen tubes. A rice pollen‐specific GDPD‐LIKE protein also contributed to pollen tube tip growth, suggesting that members of this family have conserved functions in angiosperms. Thus, pollen‐specific GDPD‐LIKEs mediate pollen tube tip growth, possibly by modulating cellulose deposition in pollen tube walls.
Subject
Plant Science,General Biochemistry, Genetics and Molecular Biology,Biochemistry
Cited by
2 articles.
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