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小球藻中的硫脂代谢

Sulfolipid metabolism in chlorella.

作者信息

Miyachi S, Miyachi S

机构信息

Department of Marine Biology, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California.

出版信息

Plant Physiol. 1966 Mar;41(3):479-86. doi: 10.1104/pp.41.3.479.

Abstract

When S-deficient cells of Chlorella cllipsoidea were incubated in radio-sulfate in light or in aerobic darkness for 1 hour, equal amounts of radioactivity were found in sulfolipid and glutathione but none was detected in sulfoquinovosyl glycerol which is one of the major S-compounds in this alga. No assimilation of radiosulfate was observed under anaerobic darkness.To elucidate the function of sulfolipid in algal cells uniformly (35)S-labeled Chlorella cells were transferred to S-deficient culture medium or unlabeled normal culture medium and the changes of radioactivity in sulfolipid and the related compounds were followed. A) On incubating (35)S-labeled algal cells in S-deficient medium under photosynthetic conditions, the amounts of radioactivity in sulfate, sulfoquinovosyl glycerol and sulfolipid decreased rapidly. B) When (35)S-labeled cells were cultured photoautotrophically in unlabeled medium, no decrease of radioactivity was observed in sulfoquinovosyl glycerol and sulfolipid. C) A decrease of (35)S-sulfolipid and an increase of (35)S-sulfoquinovosyl glycerol were observed when the uniformly (35)S-labeled algal cells were illuminated in CO(2)-free air.When S-deficient Chlorella cells were incubated in (35)S-sulfolipid under photosynthetic conditions, significant radioactivity was found in the insoluble fraction of the cells. A similar result was observed when normal Chlorella cells were incubated in (14)C-sulfolipid and CO(2)-free air.It is inferred from these observations that sulfolipid is a reservoir of sulfur and carbon compounds.In order to ascertain if the sulfolipid is involved in the mechanism of photosynthetic oxygen evolution, the rate of photosynthesis was measured during the incubation of (35)S-labeled cells in a S-deficient medium. Parallelism was not observed between the rate of photosynthetic activity and the decrease of sulfolipid.

摘要

当椭圆小球藻的缺硫细胞在放射性硫酸盐中于光照下或好氧黑暗中孵育1小时后,在硫脂和谷胱甘肽中发现了等量的放射性,但在磺基喹喔啉基甘油(该藻类主要含硫化合物之一)中未检测到放射性。在厌氧黑暗条件下未观察到放射性硫酸盐的同化作用。为了统一阐明硫脂在藻类细胞中的功能,将均匀(35)S标记的小球藻细胞转移至缺硫培养基或未标记的正常培养基中,并追踪硫脂及相关化合物中放射性的变化。A)在光合条件下将(35)S标记的藻类细胞在缺硫培养基中孵育时,硫酸盐、磺基喹喔啉基甘油和硫脂中的放射性量迅速减少。B)当(35)S标记的细胞在未标记的培养基中进行光合自养培养时,磺基喹喔啉基甘油和硫脂中的放射性未观察到减少。C)当均匀(35)S标记的藻类细胞在无CO2的空气中光照时,观察到(35)S - 硫脂减少而(35)S - 磺基喹喔啉基甘油增加。当缺硫的小球藻细胞在光合条件下于(35)S - 硫脂中孵育时,在细胞的不溶性部分发现了显著的放射性。当正常小球藻细胞在(14)C - 硫脂和无CO2的空气中孵育时,观察到了类似的结果。从这些观察结果推断,硫脂是硫和碳化合物的储存库。为了确定硫脂是否参与光合放氧机制,在缺硫培养基中孵育(35)S标记的细胞期间测量了光合速率。未观察到光合活性速率与硫脂减少之间的平行关系。

相似文献

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Sulfolipid metabolism in chlorella.小球藻中的硫脂代谢
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本文引用的文献

1
A SULFOLIPID IN PLANTS.植物中的一种硫脂
Proc Natl Acad Sci U S A. 1959 Nov;45(11):1582-7. doi: 10.1073/pnas.45.11.1582.
3
THE PLANT SULFOLIPID.植物硫脂
Adv Lipid Res. 1963;1:387-94. doi: 10.1016/b978-1-4831-9937-5.50016-8.

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