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/Wednesday, August 5-6, 1997: Session 58 - Session 60

1997年植物生物学年会(PLANT BIOLOGY '97)最终日程及口头和海报报告摘要,本次年会由美国植物生理学会和加拿大植物生理学会联合举办,并邀请日本植物生理学会和澳大利亚植物生理学会参加。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)至6日(星期三),第58场至第60场。

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Abstract

A variety of mechanisms have been proposed to account for the extension of life span in seeds (seed longevity). In this work, we used Arabidopsis (Arabidopsis thaliana) seeds as a model and carried out differential proteomics to investigate this trait, which is of both ecological and agricultural importance. In our system based on a controlled deterioration treatment (CDT), we compared seed samples treated for different periods of time up to 7 d. Germination tests showed a progressive decrease of germination vigor depending on the duration of CDT. Proteomic analyses revealed that this loss in seed vigor can be accounted for by protein changes in the dry seeds and by an inability of the low-vigor seeds to display a normal proteome during germination. Furthermore, CDT strongly increased the extent of protein oxidation (carbonylation), which might induce a loss of functional properties of seed proteins and enzymes and/or enhance their susceptibility toward proteolysis. These results revealed essential mechanisms for seed vigor, such as translational capacity, mobilization of seed storage reserves, and detoxification efficiency. Finally, this work shows that similar molecular events accompany artificial and natural seed aging.

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