Final program and abstracts of oral and poster presentations of PLANT BIOLOGY '97 the 1997 annual meetings of the American Society of Plant Physiologists and the Canadian Society of Plant Physiologists with the invited participation of the Japanese Society of Plant Physiologists and the Australian Society of Plant Physiologists Hotel Vancouver and Hyatt Regency Hotel Vancouver, BC, Canada: Tuesday, August 5, 1997

1997年植物生物学年会(美国植物生理学会和加拿大植物生理学会联合举办,日本植物生理学会和澳大利亚植物生理学会受邀参加)最终日程及口头和海报展示摘要。会议地点:加拿大不列颠哥伦比亚省温哥华市温哥华酒店和凯悦酒店。时间:1997年8月5日,星期二。

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Abstract

Pollen tubes deliver sperms to the ovule for fertilization via tip growth. The rapid turnover of F-actin in pollen tube tips plays an important role in this process. In this study, we demonstrate that Arabidopsis thaliana RIC1, a member of the ROP-interactive CRIB motif-containing protein family, regulates pollen tube growth via its F-actin severing activity. Knockout of RIC1 enhanced pollen tube elongation, while overexpression of RIC1 dramatically reduced tube growth. Pharmacological analysis indicated that RIC1 affected F-actin dynamics in pollen tubes. In vitro biochemical assays revealed that RIC1 directly bound and severed F-actin in the presence of Ca(2+) in addition to interfering with F-actin turnover by capping F-actin at the barbed ends. In vivo, RIC1 localized primarily to the apical plasma membrane (PM) of pollen tubes. The level of RIC1 at the apical PM oscillated during pollen tube growth. The frequency of F-actin severing at the apex was notably decreased in ric1-1 pollen tubes but was increased in pollen tubes overexpressing RIC1. We propose that RIC1 regulates F-actin dynamics at the apical PM as well as the cytosol by severing F-actin and capping the barbed ends in the cytoplasm, establishing a novel mechanism that underlies the regulation of pollen tube growth.

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