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A 12-month investigation of the population dynamics, growth, ageing, reproduction and sexuality of Anodonta woodiana (Lea, 1834) in Plover Cove Reservoir, Hong Kong, has been undertaken. Recruitment occurs in the summer, May through July being the period of peak incidence of glochidia on captive fish hosts. Juveniles grow rapidly to a shell length of 30 mm and are sexually mature by the following spring. A study of the population structure of A. woodiana indicated that most animals were less than 8 years old. Results of a Walford plot for this species indicated a maximum theoretical shell length (in Plover Cove) of 162·5 mm and a life span of approximately 12 years; the latter is in good agreement with age estimates for European unionids.
Anodonta woodiana is dioecious with females predominating in a ratio of 60:40. A very small number of individuals (0·3%) are hermaphrodite. Males possess mature gonads throughout the year whereas females come into reproductive condition during the spring. There was no evidence of shell form sexual dimorphism, as has been recorded for other unionaceans.
The reproductive strategy and time of gonad maturation of A. woodiana is compared with that of unionids from elsewhere and with other fresh water bivalves from southern China. 相似文献
Anodonta woodiana is dioecious with females predominating in a ratio of 60:40. A very small number of individuals (0·3%) are hermaphrodite. Males possess mature gonads throughout the year whereas females come into reproductive condition during the spring. There was no evidence of shell form sexual dimorphism, as has been recorded for other unionaceans.
The reproductive strategy and time of gonad maturation of A. woodiana is compared with that of unionids from elsewhere and with other fresh water bivalves from southern China. 相似文献
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James W. Wallace Kenneth R. Markham David E. Giannasi John T. Mickel Don L. Yopp Luis D. Gomez J. Dan Pittillo Robert Soeder 《American journal of botany》1982,69(3):356-362
A survey for 1,3,6,7-tetrahydroxy-C-glycosylxanthones of representative species within the primitive vascular plants, emphasizing the leptosporangiate ferns, has indicated a limited distribution of these compounds within three leptosporangiate families: Hymenophyllaceae, Aspleniaceae and Marsileaceae. In the Hymenophyllaceae the distribution of these compounds appears to be a useful criterion for segregating species of Mecodium from other species of Hymenophyllum (sensu lato) and suggests that the tubulate vs. the valvate indusial condition may not be an ideal character for separating all species of Hymenophyllum (s.l.) from those of Trichomanes (s.l.). These compounds appear useful for delimiting several species of Elaphoglossum section Pachyglossa and support a relationship among the Aspleniaceae, Athyriaceae, and Elaphoglossaceae. Their presence in Marsilea also raises questions as to the origin of this group of plants. 相似文献
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Irving H. Fox Thomas D. Palella David Thompson Charles Herring 《Archives of biochemistry and biophysics》1982,215(1):302-308
To elucidate potential toxic properties of S-adenosylhomocysteine and 5′-methylthioadenosine, we have examined the inhibitory properties of these compounds upon enzymes involved with adenosine metabolism. S-Adenosylhomocysteine, but not S-adenosylmethionine, was a noncompetitive inhibitor of adenosine kinase with Ki values ranging from 100 to 400 μm. Methylthioadenosine competitively inhibited adenosine kinase with variable adenosine below 1 μm with a Ki of 120 μm, increased adenosine kinase activity when the adenosine concentration exceeded 2 μm, and did not appear to be a substrate for adenosine kinase. Methylthioadenosine inactivated S-adenosylhomocysteine hydrolase from erythrocytes, B-lymphoblasts, and T-lymphoblasts with Ki values ranging from 65 to 117 μm and “k2” from 0.30 to 0.55 min?1. Adenosine deaminase was not inhibited by 5′-methylthioadenosine up to 1000 μm. To clarify how 5′-methylthioadenosine might accumulate, 5′-methylthioadenosine phosphorylase was evaluated. This enzyme was not blocked by up to 500 μm adenosine, deoxyadenosine, S-adenosylhomocysteine, or S-adenosylmethionine and was not decreased in erythrocytes from patients with adenosine deaminase deficiency, purine nucleoside phosphorylase deficiency, or hypogammaglobulinemia. These observations suggest that the inhibitory properties of 5′-methylthioadenosine upon adenosine kinase and S-adenosylhomocysteine hydrolase may contribute to the toxicity of the exogenously added compound. The toxicity resulting from S-adenosylhomocysteine accumulation intracellularly may be related to adenosine kinase inhibition in addition to disruption of transmethylation reactions. 相似文献