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目的 通过对医疗卫生机构2002-2009年获科技进步奖情况的统计分析,客观评价卫生机构科研工作的优势及问题,为进一步促进卫生科研工作提供借鉴. 方法 通过查阅徐州市科技局科技进步奖成果档案及各单位科技档案,对医疗卫生机构获徐州市科技进步奖的等级、研究类型等情况进行统计分析. 结果 2002-2009年14家医疗卫生机构获徐州市科技进步奖239项,呈逐年增长之势,特别是近4年明显上升.学科分布以基础医学、临床医学成果为主. 结论 在成果数量增加的同时更应该注重成果的含金量;应加强学科建设及各重点学科间的联合,获取大成果. 相似文献
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Fang Chang An Yan Li-Na Zhao Wei-Hua Wu Zhenbiao Yang 《植物学报(英文版)》2007,49(8):1261-1270
A tip-focused Ca^2+ gradient is tightly coupled to polarized pollen tube growth, and tip-localized influxes of extracellular Ca^2+ are required for this process. However the molecular identity and regulation of the potential Ca^2+ channels remains elusive. The present study has implicated CNGC18 (cyclic nucleotide-gated channel 18) in polarized pollen tube growth, because its overexpression induced wider and shorter pollen tubes. Moreover, CNGC18 overexpression induced depolarization of pollen tube growth was suppressed by lower extracellular calcium ([Ca^2+]ex). CNGC18-yellow fluorescence protein (YFP) was preferentially localized to the apparent post-Golgi vesicles and the plasma membrane (PM) in the apex of pollen tubes. The PM localization was affected by tip-localized ROP1 signaling. Expression of wild type ROP1 or an active form of ROP1 enhanced CNGC18-YFP localization to the apical region of the PM, whereas expression of RopGAP1 (a ROP1 deactivator) blocked the PM localization. These results support a role for PM-Iocalized CNGC18 in the regulation of polarized pollen tube growth through its potential function in the modulation of calcium influxes. 相似文献
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Effects of peach branches returning on autotoxins and microbes in soil and tree growth of peaches 下载免费PDF全文
《植物生态学报》2016,40(2):140
Aims This study aimed to investigate the effects of branch returning on the growth of peach (Amygdalus persica "Chunmei/Maotao") saplings, soil enzyme activity, and soil contents of phenolic acids and amygdalin, thereby providing scientific evidence against the application of branch returning for peach trees. Methods One-year-old potted peach tree (Amygdalus persica "Chunmei/Maotao") was used in this study with four agricultural treatments applied, including soil coverage by fragmented peach tree branches (fragment treatment;1.5 and 22.5 g·kg-1) and applying leachate solutions of peach tree branches to soil (leachate treatment; 1.5 and 22.5 g·kg-1). No branch addition was used as control (CK). Solid phase extraction, high performance liquid chromatography (HPLC), biological high-throughput sequencing was used to determine the content of autotoxic substances, and microbial community structure in soil. Soil coverage and leachate solution treatments of 30 g and 450 g branches applied to the peach trees were described as 1.5 and 22.5 g·kg-1, respectively in this paper.Important findings Compared with CK, the phenolic acid and amygdalin contents significantly increased after both fragment and leachate treatments in high quantities (22.5 g·kg-1). Soil microbial community structure altered in both treatments, with the proportion of fungi (particularly Agaricomycetes, Tubeufia and Cystofilobasidiaceae) increased significantly and bacteria decreased accordingly. Invertase activity in both high-quantity treatments exceeded that in the CK significantly. The activity of catalase and urease was higher at first and then decreased relative to CK under high-quantity fragment and leachate treatments. Specifically, the effect of leachate treatment on enzyme activity was higher than the fragment treatment in the short term. Chlorophyll content, ground diameter (diameter of 5 cm from the ground) growth and net photosynthesis rate of plants were lower in high-quantity fragment and leachate treatments than those in CK, with earlier retardation of new shoot growth. We observed an increase in soil phenolic acids and enzymes in treatments in normal pruning quantity, while no inhibition effect was found on the tree growth. In conclusion, autotoxins (such as phenolic acid and amygdalin) inhibited the growth of peach trees both directly and indirectly through changing soil enzyme activity and microbial community. 相似文献
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转化生长因子β(transforming growth factor β,TGFβ)家族成员是一类分泌的细胞因子,在胚胎发育、免疫调节、伤口修复、细胞增殖和抑制等过程中发挥重要作用。其中,TGFβ1、TGFβ2和TGFβ3在进化上最晚出现,并以潜伏态分泌。有别于家族中的大多数成员,TGFβ1-3的信号具有时空区域性,并依赖于其所处的微环境。阐明依赖于微环境的TGFβ信号的多层次调控机制对于理解TGFβ信号在免疫、癌症等生理、病理条件下的功能,以及开发临床治疗策略具有重要意义。本文从TGFβ前体复合物的结构入手,并从TGFβ的激活,配体-受体识别,跨膜信号传导及转录调控等方面,论述依赖于微环境的TGFβ信号的调控机制,同时讨论肿瘤微环境中多效的TGFβ信号,进而对今后的研究方向进行展望。 相似文献
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1988年测定栽种于山东农业大学蔬菜标本园的生姜(Zingiber officinalis)品种“莱芜片姜”的某些生理指标和生化物质含量变化,得到如下结果,供参考:种姜在萌芽时,其淀粉及干物质含量迅速下降(图1,表1),至盛长期又逐渐回升,可溶性糖呈增加的趋势(表2);新姜(根茎)的淀粉及可溶性糖含量均随生长的进行而增加。这种变化与淀粉酶、转化酶活性变化相协 相似文献
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