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从在植株上发育的野生型和未成熟番茄果实中分离出的线粒体中的能量守恒和能量耗散过程。

The energy-conserving and energy-dissipating processes in mitochondria isolated from wild type and nonripening tomato fruits during development on the plant.

作者信息

Almeida Andréa Miyasaka, Navet Rachel, Jarmuszkiewicz Wieslawa, Vercesi Anibal E, Sluse-Goffart Claudined M, Sluse Francis E

机构信息

Laboratory of Bioenergetics, Department of Life Sciences, Institute of Chemistry B6, University of Liège, Sart Tilman, B-4000 Liège, Belgium.

出版信息

J Bioenerg Biomembr. 2002 Dec;34(6):487-98. doi: 10.1023/a:1022574327117.

Abstract

Bioenergetics of tomato (Lycopersicon esculentum) development on the plant was followed from the early growing stage to senescence in wild type (climacteric) and nonripening mutant (nor, non-climacteric) fruits. Fruit development was expressed in terms of evolution of chlorophyll a content allowing the assessment of a continuous time-course in both cultivars. Measured parameters: the cytochrome pathway-dependent respiration, i.e., the ATP synthesis-sustained respiration (energy-conserving), the uncoupling protein (UCP) activity-sustained respiration (energy-dissipating), the alternative oxidase(AOX)-mediated respiration (energy-dissipating), as well as the protein expression of UCP and AOX, and free fatty acid content exhibited different evolution patterns in the wild type and nor mutant that can be attributed to their climacteric/nonclimacteric properties, respectively. In the wild type, the climacteric respiratory burst observed in vitro depended totally on an increse in the cytochrome pathway activity sustained by ATP synthesis, while the second respiratory rise during the ripening stage was linked to a strong increase in AOX activity accompanied by an overexpression of AOX protein. In wild type mitochondria, the 10-microM linoleic acid-stimulated UCP-activity-dependent respiration remained constant during the whole fruit development except in senescence where general respiratory decay was observed.

摘要

对野生型(跃变型)和非成熟突变体(nor,非跃变型)番茄(Lycopersicon esculentum)果实从植株上的早期生长阶段到衰老阶段的生物能量学进行了跟踪研究。果实发育以叶绿素a含量的变化来表示,从而能够评估两个品种果实连续的时间进程。所测量的参数包括:细胞色素途径依赖性呼吸作用,即ATP合成维持的呼吸作用(能量保守型)、解偶联蛋白(UCP)活性维持的呼吸作用(能量耗散型)、交替氧化酶(AOX)介导的呼吸作用(能量耗散型),以及UCP和AOX的蛋白表达,游离脂肪酸含量在野生型和nor突变体中呈现出不同的变化模式,这可分别归因于它们的跃变/非跃变特性。在野生型中,体外观察到的跃变呼吸高峰完全依赖于由ATP合成维持的细胞色素途径活性的增加,而成熟阶段的第二次呼吸上升与AOX活性的强烈增加以及AOX蛋白的过表达有关。在野生型线粒体中,10微摩尔的亚油酸刺激的UCP活性依赖性呼吸作用在整个果实发育过程中保持恒定,除了在衰老阶段观察到总体呼吸作用下降。

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