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绿水螅:水螅与共生藻类之间的代谢物转移

Hydra viridis: transfer of metabolites between Hydra and symbiotic algae.

作者信息

Thorington G, Margulis L

出版信息

Biol Bull. 1981 Feb;160(1):175-88. doi: 10.2307/1540911.

Abstract

"Back transfer" of metabolites from food to endosymbiotic algae in the digestive cells of Hydra viridis was demonstrated. Brine shrimp nauplii labeled with tritiated precursors of protein and nucleic acids (DNA and RNA) were fed to light and dark grown hydras. The fate of the label after a single feeding with radioactive material in hydra and algal fractions was followed by scintillation counting and autoradiographic techniques. Labeled thymidine was incorporated into DNA in both light- and dark-grown hydras. Although the symbiosis persists indefinitely in hydras in darkness (7-10 days) the number of algae per cell is reduced. Tritiated orotic acid and tritiated uridine, RNA precursors, were incorporated into peptides and proteins, and to a lesser extent into simple sugars, oligosaccharides, and oligonucleotides in hydra and algal fractions. Thus the metabolites of the brine shrimp food are available to both partners. A decrease over time in label introduced as 3H-orotic acid and 3H-uridine and incorporated into hydra RNA is compensated for by an increase in label in the algae, implying competition for constant quantities of metabolites from the single feeding. Although food availability, light, number of algae per cell, and other factors influence the quantity and rate of nutrient transfer between the partners, in both light and dark grown hydras the amount of "back transfer" of metabolites to the symbiotic algae is impressive.

摘要

在绿水螅消化细胞中,已证实存在代谢产物从食物到内共生藻类的“反向转移”。将用蛋白质和核酸(DNA和RNA)的氚化前体标记的卤虫无节幼体投喂给在光照和黑暗条件下生长的水螅。在用放射性物质单次投喂后,通过闪烁计数和放射自显影技术追踪水螅和藻类部分中标记物的去向。标记的胸腺嘧啶核苷在光照和黑暗条件下生长的水螅中均掺入到DNA中。尽管在黑暗中(7 - 10天)水螅中的共生关系可无限期持续,但每个细胞中的藻类数量会减少。RNA前体氚化乳清酸和氚化尿苷在水螅和藻类部分中掺入到肽和蛋白质中,在较小程度上也掺入到单糖、寡糖和寡核苷酸中。因此,卤虫食物中的代谢产物可供双方利用。随着时间推移,作为3H - 乳清酸和3H - 尿苷引入并掺入水螅RNA中的标记物减少,这被藻类中标记物的增加所补偿,这意味着在单次投喂后对恒定数量代谢产物存在竞争。尽管食物供应、光照、每个细胞中的藻类数量以及其他因素会影响共生体之间营养物质转移的数量和速率,但在光照和黑暗条件下生长的水螅中,代谢产物向共生藻类的“反向转移”量都令人印象深刻。

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