Arid
DOI10.14411/eje.2008.110
Why does the Namib Desert tenebrionid Onymacris unguicularis (Coleoptera: Tenebrionidae) fog-bask?
Naidu, Strinivasan G.
通讯作者Naidu, Strinivasan G.
来源期刊EUROPEAN JOURNAL OF ENTOMOLOGY
EISSN1802-8829
出版年2008
卷号105期号:5页码:829-838
英文摘要

Dehydration of Onymacris unguicularis (Haag) for 10 days at 27 degrees C resulted in a weight loss of 14.9%, and a 37% decrease in haemolymph volume. Although there was an overall decrease in the lipid content during this period, metabolic water production was insufficient to maintain total body water (TBW). Rehydration resulted in increases in body weight (6.2% of initial weight), TBW (to normality), and haemolymph volume (sub-normal at the end of rehydration). Despite an increase of 44.0 mg in the wet weight of O. unguicularis after drinking for 1h, there was little change in the water content at this time, although the total lipid content increased significantly. Increases in haemolymph osmolality, sodium, potassium, chloride, amino acid and total sugar concentrations during dehydration were subject to osmoregulatory control. No evidence of an active amino acid-soluble protein interchange was noted during dehydration or rehydration. Haemolymph trehalose levels were significantly increased at the end of rehydration (relative to immediate pre-rehydration values), indicating de novo sugar synthesis at this time. Osmotic and ionic regulation was evident during rehydration, but control of OP during haemolymph-dilution is poor and accomplished largely by the addition to the haemolymph of free amino acids and solute(s) not measured in this study. There was little mobilization of sodium and chloride ions from storage sites at this time. The lesser osmoregulatory ability of Onymacris unguicularis and perhaps earlier susceptibility to osmotic stress, a significantly high normal blood glycerol level (relative to other diurnal adesmiine tenebrionids), and a water storage mechanism associated with synthesis of fat, probably all contribute to the development of fog-basking behaviour in this species. Water gain in O. unguicularis during periods of relative drought is probably largely accomplished by a greater food consumption.


英文关键词Water balance osmoregulation lipid glycerol Tenebrionidae Onymacris unguicularis Namib Desert
类型Article
语种英语
国家South Africa
收录类别SCI-E
WOS记录号WOS:000262400500005
WOS关键词WATER-BALANCE ; AMERICAN COCKROACH ; COLD-HARDINESS ; AMINO-ACID ; HEMOLYMPH OSMOREGULATION ; PERIPLANETA-AMERICANA ; BEETLE ; GLYCEROL ; REHYDRATION ; DEHYDRATION
WOS类目Entomology
WOS研究方向Entomology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/157268
作者单位(1)Univ KwaZulu Natal, Nelson R Mandela Sch Med, Dept Physiol, ZA-4041 Durban, South Africa
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GB/T 7714
Naidu, Strinivasan G.. Why does the Namib Desert tenebrionid Onymacris unguicularis (Coleoptera: Tenebrionidae) fog-bask?[J],2008,105(5):829-838.
APA Naidu, Strinivasan G..(2008).Why does the Namib Desert tenebrionid Onymacris unguicularis (Coleoptera: Tenebrionidae) fog-bask?.EUROPEAN JOURNAL OF ENTOMOLOGY,105(5),829-838.
MLA Naidu, Strinivasan G.."Why does the Namib Desert tenebrionid Onymacris unguicularis (Coleoptera: Tenebrionidae) fog-bask?".EUROPEAN JOURNAL OF ENTOMOLOGY 105.5(2008):829-838.
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