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Cytosymbiotic algae within the host's plasma are exposed to completely different ionic conditions than microalgae living in the sea. The altered ionic gradients, in particular, could be the reason for higher in hospite carbon assimilation levels. To study the effect of varying extracellular ionic conditions on isolated zooxanthellae, their photosynthetic capacity in pure seawater was compared to that in a test medium in which the concentrations of the major inorganic ions, the pH and the osmolality were adjusted to the conditions measured in the host cytoplasm. In this test medium the ratio between oxygen evolution and carbon fixation was 1.2:1.0; in contrast, zooxanthellae in the hyperionic seawater medium showed a comparatively higher oxygen production (2.6:1.0). These results are attributed to a higher energy demand for ion regulation of the isolated algae in the hyperionic medium. Isolated cytosymbionts in seawater need more energy both for the readjustment to the original intracellular ion concentration within the host cell and also for the maintenance of a much steeper gradient during incubation under hyperionic conditions outside the host. The particular intracellular ion concentration of the host cells could have been a decisive evolutionary factor for the very successful establishment of the mutualistic symbioses between anthozoans and dinoflagellates more than 200 million years ago. 相似文献
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Dietrich von Holst Hans Hutzelmeyer Paul Kaetzke Martin Khaschei Ronald Schönheiter 《Die Naturwissenschaften》1999,86(8):388-393
Wild rabbits of the two sexes have separate linear rank orders, which are established and maintained by intensive fights.
The social rank of individuals strongly influence their fitness: males and females that gain a high social rank, at least
at the outset of their second breeding season, have a much higher lifetime fitness than subordinate individuals. This is because
of two separate factors: a much higher fecundity and annual reproductive success and a 50% longer reproductive life span.
These results are in contrast to the view in evolutionary biology that current reproduction can be increased only at the expense
of future survival and/or fecundity. These concepts entail higher physiological costs in high-ranking mammals, which is not
supported by our data: In wild rabbits the physiological costs of social positions are caused predominantly by differential
psychosocial stress responses that are much lower in high-ranking than in low-ranking individuals.
Received: 23 February 1999 / Accepted: 17 March 1999 相似文献
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