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31.
Gao Dawen Liu Fengqin Xie Yue Liang Hong 《Applied microbiology and biotechnology》2018,102(16):7195-7205
Applied Microbiology and Biotechnology - Ammonia-oxidizing archaea (AOA) and ammonia-oxidizing bacteria (AOB) contribute significantly to the nitrogen cycle. The community structure of AOA and AOB... 相似文献
32.
33.
Plant and Soil - Global nitrogen enrichment has been identified as a major environmental problem that poses a threat to ecosystem functioning. However, there is no consensus on the impact of... 相似文献
34.
Jun Zou Xiao-Yang Yue Sheng-Chao Zheng Guangwei Zhang He Chang Yan-Chun Liao Ye Zhang Mao-Qiang Xue Zhi Qi 《生物化学与生物物理学报:生物膜》2014
It has been shown that cholesterol modulates activity of protein kinase C (PKC), and PKC phosphorylates connexin 43 (Cx43) to regulate its function, respectively. However, it is not known whether cholesterol modulates function of Cx43 through regulating activity of PKC. In the present study, we demonstrated that cholesterol enrichment reduced the dye transfer ability of Cx43 in cultured H9c2 cells. Western blot analysis indicated that cholesterol enrichment enhanced the phosphorylated state of Cx43. Immunofluorescent images showed that cholesterol enrichment made the Cx43 distribution from condensed to diffused manner in the interface between the cells. In cholesterol enriched cells, PKC antagonists partially restored the dye transfer ability among the cells, downregulated the phosphorylation of Cx43 and redistributed Cx43 from the diffused manner to the condensed manner in the cell interface. In addition, reduction of cholesterol level suppressed PKC activity to phosphorylate Cx43 and restored Cx43 function in PKC agonist-treated cells. Furthermore, we demonstrated that cholesterol enrichment upregulated the phosphorylated state of Cx43 at Ser368, while PKC antagonists reversed the effect. Taken together, cholesterol level in the cells plays important roles in regulating Cx43 function through activation of the PKC signaling pathway. 相似文献
35.
Xingliang Xu Qingkang Li Jingyuan Wang Leiming Zhang Shengni Tian Lin Zhi Qianru Li Yue Sun 《PloS one》2014,9(5)
The fern Dicranopteris dichotoma is an important pioneer species of the understory in Masson pine (Pinus massoniana) forests growing on acidic soils in the subtropical and tropical China. To improve our understanding of the role of D. dichotoma in nitrogen (N) uptake of these forests, a short-term 15N experiment was conducted at mountain ridge (MR, with low N level) and mountain foot (MF, with high N level). We injected 15N tracers as 15NH4, 15NO3 or 15N-glycine into the soil surrounding each plant at both MR and MF sites. Three hours after tracer injection, the fern D. dichotoma took up 15NH4
+ significantly faster at MF than at MR, but it showed significantly slower uptake of 15NO3
− at MF than at MR. Consequently, 15NO3
− made greater contribution to the total N uptake (50% to the total N uptake) at MR than at MF, but 15N-glycine only contributed around 11% at both sites. Twenty-four hours after tracer injection, D. dichotoma preferred 15NH4
+ (63%) at MR, whereas it preferred 15NO3
− (47%) at MF. We concluded that the D. dichotoma responds distinctly in its uptake pattern for three available N species over temporal and spatial scales, but mainly relies on inorganic N species in the subtropical forest. This suggests that the fern employs different strategies to acquire available N which depends on N levels and time. 相似文献
36.
Subcellular distribution patterns and elevated expression of GNA11 and GNA14 proteins in the lungs of humans with pulmonary arterial hypertension 下载免费PDF全文
37.
Shan Y Pan Q Liu J Huang F Sun H Nishino K Yan A 《Biochemical and biophysical research communications》2012,417(1):43-48
Glutathione (GSH) serves as an important anti-oxidant in the brain by scavenging harmful reactive oxygen species that are generated during different molecular processes. The GSH level in the brain provides indirect information on oxidative stress of the brain. We report in vivo detection of GSH non-invasively from various brain regions (frontal cortex, parietal cortex, hippocampus and cerebellum) in bilateral hemispheres of healthy male and female subjects and from bi-lateral frontal cortices in patients with mild cognitive impairment (MCI) and Alzheimer's disease (AD). All AD patients who participated in this study were on medication with cholinesterase inhibitors. Healthy young male (age 26.4±3.0) and healthy young female (age 23.6±2.1) subjects have higher amount of GSH in the parietal cortical region and a specific GSH distribution pattern (parietal cortex>frontal cortex>hippocampus ~ cerebellum) has been found. Overall mean GSH content is higher in healthy young female compared to healthy young male subjects and GSH is distributed differently in two hemispheres among male and female subjects. In both young female and male subjects, statistically significant (p=0.02 for young female and p=0.001 for young male) difference in mean GSH content is found when compared between left frontal cortex (LFC) and right frontal cortex (RFC). In healthy young female subjects, we report statistically significant positive correlation of GSH content between RFC and LFC (r=0.641, p=0.004) as well as right parietal cortex (RPC) and left parietal cortex (LPC) (r=0.797, p=0.000) regions. In healthy young male subjects, statistically significant positive correlation of GSH content was observed between LFC and LPC (r=0.481, p=0.032) regions. This statistical analysis implicates that in case of a high GSH content in LPC of a young male, his LFC region would also contain high GSH and vice versa. The difference in mean of GSH content between healthy young female control and female AD patients in RFC region (p=0.003) and difference in mean of GSH content between healthy young male control and male AD patients (p=0.05) in LFC region is found to be statistically significant. It is the first scientific report correlating alteration (in selective brain regions) of GSH level with clinical status of male and female subjects using non-invasive imaging technique. 相似文献
38.
碳汇产业,即利用植物吸收二氧化碳的潜力及规律,在人工适度干预下获得清洁空气、满足人们生产和生活对生态环境需求的产业,为原有相对均衡或稳定的农业产业-资源系统的优化升级提供突破口和新的增长点.退耕区域生态系统服务中,固碳释氧功能的经济显化、碳汇潜力的迅速提高,以及国内外碳汇交易与碳汇市场的兴起等,为碳汇产业的发展奠定了理论和现实基础.随着碳汇产业的发展,生产经营者必然以提高碳汇产出为核心,形成对碳源的控制及对碳贮量增加路径的开发,重新布局农业产业-资源结构,因而为退耕区域可持续发展带来新的活力;同时,也隐含了下一步需要研发的重点,即碳汇产业融入后的农业产业-资源的配置结构及良性耦合机制. 相似文献
39.
葛根素对糖尿病心肌细胞的保护及其机制研究 总被引:1,自引:0,他引:1
观察葛根素(Puerarin)对链脲佐菌素(streptozotocin,STZ)诱导的糖尿病大鼠心肌细胞的保护作用,并探讨血小板反应素1(Thrombospondin-1,TSP-1)的表达改变及其作用。雄性SD大鼠45只随机分为三组(n=15):糖尿病组和葛根素治疗组采用一次腹腔注射链脲佐菌素(STZ)65mg/kg制备糖尿病模型,其中葛根素治疗组于造模后葛根素腹腔注射4周(100mg/kg/day),正常对照组仅腹腔注射等量生理盐水(6ml/kg),同样喂养4周。四周后各组大鼠处死。H—E染色及透射电子显微镜观察三组大鼠心肌细胞纤维显微结构和超微结构的病理改变.免疫组化和实时荧光定量PCR法观察大鼠心肌细胞中TSP-1蛋白和mRNA表达的变化.同时利用Langendorff离体心脏灌流法测定各组大鼠心室肌细胞功能。结果发现葛根素治疗组较糖尿病组大鼠的体重增加明显,同时血糖下降,有显著性差异(P〈0.01)。H—E染色显示糖尿病大鼠多处心肌肌丝紊乱伴少量炎症细胞浸润,电镜下发现有线粒体嵴消失溶解,肌丝排列紊乱等病理改变,而葛根素治疗组大鼠偶见上述病理变化。免疫组化显示葛根素治疗组心肌内TSP-1阳性细胞密度小于糖尿病大鼠,TSP-1 mRNA表达也比糖尿病大鼠要低。此外葛根素治疗组大鼠的左室收缩末压(LVSEP)、左心室舒张末期压(LVEDP)等心功能指标均明显低于正常组(P〈0.01),但较糖尿病组有显著改善(P〈0.01)。上述结果显示葛根素能保护糖尿病大鼠心肌细胞的高糖损伤和维持心室肌细胞的功能,而该机制可能与抑制心肌细胞TSP-1表达的水平有关。 相似文献
40.
螺旋粉虱对不同波长发光二极管的趋光反应 总被引:3,自引:0,他引:3
螺旋粉虱Aleurodicus disperses Russell是很多果树和观赏植物的重要害虫.本文应用六角体装置研究了螺旋粉虱成虫对6种波长发光二极管(LED)的趋性反应,这些LED分别为:紫(405 nm);蓝(461 nm);绿(519 nm);黄(570 nm);红(650 nm)和红外(850 nm).结果表明紫光LED(405 nm)对螺旋粉虱的吸引率显著高于其它波长的LED,两性间没有显著的差异.短波长较长波长的可见光对螺旋粉虱更具吸引力.研究结果可为提高灯诱对螺旋粉虱的吸引率提供依据. 相似文献