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1.
目的:了解坦克部队官兵在野外驻训期间的膳食营养状况,为指导合理膳食提供参考依据。方法:膳食调查采用称重法,能量消耗采用生活观察法,体格检查指标包括体重和皮褶厚度。结果:每日人均禽肉、鱼虾、蔬菜等摄入水平未达到"军人食物定量"标准,而植物油摄入量则超过军标要求;VB1、VC、铁、锌、硒、碘等摄入量未达到"军人营养素供给量"标准要求;三大产能营养素供能比例不合理,脂肪摄入偏高,碳水化合物偏低;多数官兵野外驻训7 d后体重和皮褶厚度降低。结论:该部队在野外驻训期间膳食结构不够合理,部分营养素摄入量未达到军标要求,应调整膳食结构,改善官兵的营养状况。 相似文献
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Although pulsed electromagnetic field (PEMF) exposure has been reported to promote neuronal differentiation, the mechanism is still unclear. Here, we aimed to examine the effects of PEMF exposure on brain-derived neurotrophic factor (Bdnf) mRNA expression and the correlation between the intracellular free calcium concentration ([Ca2+]i) and Bdnf mRNA expression in cultured dorsal root ganglion neurons (DRGNs). Exposure to 50 Hz and 1 mT PEMF for 2 h increased the level of [Ca2+]i and Bdnf mRNA expression, which was found to be mediated by increased [Ca2+]i from Ca2+ influx through L-type voltage-gated calcium channels (VGCCs). However, calcium mobilization was not involved in the increased [Ca2+]i and BDNF expression, indicating that calcium influx was one of the key factors responding to PEMF exposure. Moreover, PD098059, an extracellular signal-regulated kinase (Erk) inhibitor, strongly inhibited PEMF-dependant Erk1/2 activation and BDNF expression, indicating that Erk activation is required for PEMF-induced upregulation of BDNF expression. These findings indicated that PEMF exposure increased BDNF expression in DRGNs by activating Ca2+- and Erk-dependent signaling pathways. 相似文献
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辽宁省菜田生态系统组分优势值与系统优势度分析 总被引:2,自引:1,他引:1
辽宁省菜田生态系统组分优势值与系统优势度分析周宝利,葛晓光李宁义(沈阳农业大学园艺系,110161)(沈阳市城建中专,110013)AnalysisonSuperiorityValueandDominanceDegreeofVariousCompon... 相似文献
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P. K. Lee J. A. Buswell K. Shinagawa 《World journal of microbiology & biotechnology》1995,11(6):696-698
Eleven of 16 samples of rice on sale in rice shops and supermarkets in Hong Kong contained Bacillus cereus. Although B. cereus counts did not exceed 100 bacteria/g in most of the positive samples, a sample of Thai red rice and a poor quality rice originating from China contained between 300 to 1000 cells/g and 104 to 2×105 cells/g, respectively. Nine strains produced an enterotoxin responsible for the diarrhoeal-type B. cereus food poisoning and seven of these strains also produced a haemolysin (haemolysin BL), a dermonecrotic vascular permeability factor which may be a virulence determinant in diarrhoeal illness caused by this bacterium.P.K. Lee and J.A. Buswell are with the Department of Biology, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong; K. Shinagawa is with the Department of Veterinary Medicine, Iwate University, Iwate, Japan. 相似文献
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Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance 下载免费PDF全文
Xin Yin Baohong Zou Xuexue Hong Mingjun Gao Weibing Yang Xiangbin Zhong Yang He Peng Kuai Yonggen Lou Jirong Huang Jian Hua Zuhua He 《Plant biotechnology journal》2018,16(8):1476-1487
Breeding for disease resistance is the most effective strategy to control diseases, particularly with broad‐spectrum disease resistance in many crops. However, knowledge on genes and mechanism of broad‐spectrum resistance and trade‐off between defence and growth in crops is limited. Here, we show that the rice copine genes OsBON1 and OsBON3 are critical suppressors of immunity. Both OsBON1 and OsBON3 changed their protein subcellular localization upon pathogen challenge. Knockdown of OsBON1 and dominant negative mutant of OsBON3 each enhanced resistance to rice bacterial and fungal pathogens with either hemibiotrophic or necrotrophic lifestyles. The defence activation in OsBON1 knockdown mutants was associated with reduced growth, both of which were largely suppressed under high temperature. In contrast, overexpression of OsBON1 or OsBON3 decreased disease resistance and promoted plant growth. However, neither OsBON1 nor OsBON3 could rescue the dwarf phenotype of the Arabidopsis BON1 knockout mutant, suggesting a divergence of the rice and Arabidopsis copine genes. Our study therefore shows that the rice copine genes play a negative role in regulating disease resistance and their expression level and protein location likely have a large impact on the balance between immunity and agronomic traits. 相似文献