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1.
Cypripediumlichiangense S.C.Chen & P.J.Cribb (Orchidaceae),endemic to China,is an endangered species according to I UCN Red List criteria (IUCN,2001:I UCN Red List Categories and Criteria,Version 相似文献
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Yeying Sun a b Quanqi Zhang a Jie Qi a Yanjie Chen a Qiwang Zhong a Chunmei Li a Yan Yu a Shuo Li a Zhigang Wang a a Key Laboratory of Marine Genetics Breeding Ministry of Education Qingdao China b College of Pharmacy Binzhou Medical University Yantai China 《Acta Genetica Sinica》2010,(2)
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Capsaicin treatment destroys small primary sensory neurons including a subpopulation of vagal afferents. Intraperitoneal, fourth ventricular or perivagal application of capsaicin attenuated or abolished cholecystokinin (CCK)-induced suppression of food intake. Capsaicin applied to the thoracolumbar spinal cord or to the pyloric region of the stomach did not alter CCK-induced reductions of food intake. Intraperitoneal capsaicin treatment reduced substance P-like immunoreactivity (SPLI) in the spinal dorsal horn and parts of the dorsal hindbrain. SPLI depletion, therefore, served as a histochemical indicator of the spread of capsaicin from its site of application. Capsaicin applied directly to the vagal trunks did not reduce SPLI in the spinal cord or hindbrain. Intraventricular capsaicin reduced SPLI in the hindbrain but not in the spinal cord. These data indicate that localized capsaicin application attenuates CCK-induced suppression of food intake by impairing the function of either central or peripheral portions of vagal afferent neurons. The data also support the conclusion that intraperitoneal capsaicin attenuates CCK-induced suppression of feeding by impairing vagal sensory function. 相似文献
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Wenyi Yan a bc Shenghai Ye b Qingsheng Jin b Longjun Zeng c Yu Peng c Dawei Yan c Weibing Yang c Donglei Yang c Zuhua He c Yanjun Dong a Xiaoming Zhang b a College of Life Environment Sciences Shanghai Normal University Shanghai China b Institute of Crop Nuclear Technology Utilization Zhejiang Academy of Agricultural Sciences Hangzhou China c Institute of Plant Physiology & Ecology Shanghai Institutes for Biological Sciences Chinese Academy of Sciences Shanghai China 《Acta Genetica Sinica》2010,(1)
Plant senescence plays diverse important roles in development and environmental responses.However,the molecular basis of plant senescence is remained largely unknown.A rice spontaneous mutant with the character of early senescence and male sterility (sms) was found in the breeding line NT10-748.In order to identify the gene SMS1 and the underlying mechanism,we preliminarily analyzed physiological and biochemical phenotypes of the mutant.The mutant contained lower chlorophyll content compared with the wild t... 相似文献
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双歧杆菌影响肌醇三磷酸的实验研究 总被引:2,自引:2,他引:0
本实验首次发现双歧杆菌可降低大肠癌细胞内肌醇三磷酸水平,且存在时间依赖关系,提示双歧杆影响脂代谢通路的信息传递过程,这种影响是通过关闭亚细胞器上钙离子通道实现的。 相似文献
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Exclusion of the Friedreich ataxia gene from chromosome 19 总被引:1,自引:0,他引:1
S. Chamberlain C. S. Worrall S. South J. Shaw M. Farrall R. Williamson 《Human genetics》1987,76(2):186-190
Summary Friedreich ataxia, a progressive neurodegenerative disorder, is an autosomal recessive disease with a carrier frequency of 1/110 in the United Kingdom. The pathophysiological basis for the disease is not known and the chromosomal location of the mutation remains unidentified. As part of an attempt to map the mutation using linked DNA markers, we demonstrate that the Friedreich ataxia gene is excluded from human chromosome 19. This study also demonstrates that the insulin receptor, which maps to chromosome 19 and may be associated with abnormal biochemical features in some patients, is not the basic defect. 相似文献
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