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骨条藻中叶绿素的周转。

Chlorophyll Turnover in Skeletonema costatum, a Marine Plankton Diatom.

机构信息

Oceanographic Sciences Division; Department of Energy and Environment, Brookhaven National Laboratory, Upton, New York 11973.

出版信息

Plant Physiol. 1979 Jul;64(1):49-54. doi: 10.1104/pp.64.1.49.

Abstract

[(3)H]- and delta-[(14)C]Aminolevulinic acids were incorporated into the chlorophylls of Skeletonema costatum, a marine plankton diatom. In the stationary phase of growth, the tetrapyrrole-based pigments reached steady-state labeling after 10 hours. Under conditions of exponential cell division and chlorophyll accumulation, (3)H was rapidly lost from the labeled chlorophylls and was replaced with (14)C derived from delta-[4-(14)C]aminolevulinic acid. The kinetics of isotope dilution suggests recycling of tetrapyrrole precursors and/or two pigment pools, containing both chlorophyll a and chlorophyllide c, one which turns over rapidly (10 hours) and another which turns over more slowly (100 hours). Calculation of turnover times varied from 3 to 10 hours for chlorophyll a and from 7 to 26 hours for chlorophyllide c. The data suggest the dynamics of chlorophyll metabolism in S. costatum and explain the diatom's ability to undergo light-shade adaptation within a generation time.

摘要

[(3)H]-和 delta-[(14)C]氨基酮戊酸被掺入到海洋浮游硅藻角毛藻的叶绿素中。在生长的静止阶段,四吡咯基色素在 10 小时后达到稳定标记。在细胞分裂和叶绿素积累的指数期条件下,标记的叶绿素中的 (3)H 迅速丢失,并被来自 delta-[4-(14)C]氨基酮戊酸的 (14)C 取代。同位素稀释的动力学表明四吡咯前体和/或两个包含叶绿素 a 和叶绿素 c 的色素库的循环利用,一个快速周转(10 小时),另一个缓慢周转(100 小时)。叶绿素 a 的周转率时间从 3 到 10 小时不等,叶绿素 c 的周转率时间从 7 到 26 小时不等。这些数据表明了角毛藻中叶绿素代谢的动态,并解释了硅藻在一个世代时间内进行光适应的能力。

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