80 research outputs found

    《上博(七)‧鄭子家喪》文本問題檢討

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    此文是以《上博(七)‧鄭子家喪》文本問題為中心,處理如下三項課題:(1) 參酌學者研究成果與筆者個人淺見,重新編訂《鄭子家喪》釋文;(2)探討公元前 597年楚莊王伐鄭的動機,認為《鄭子家喪》所載楚莊王反對子家葬禮「將保其恭嚴」, 可能只是檯面上冠冕堂皇的藉口,更重要的原因在於《左傳》所說的「怒其貳」, 也就是《史記》所說的「以鄭與晉盟來伐」;(3)檢討《鄭子家喪》文本屬性,認 為此篇文獻是研究春秋歷史的重要史料,不宜將之視為「由多個不同的歷史事件移 花接木雜糅而成的故事」

    SIRT7基因低表达胶质瘤细胞株代谢特征的NMR分析

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    肿瘤是一种代谢疾病,癌基因表达对肿瘤细胞代谢的影响是目前肿瘤研究的热点之一.本文利用基于核磁共振氢谱(~1H NMR)的代谢组学方法对癌基因SIRT7低表达胶质瘤细胞株的代谢特征进行分析,寻找与SIRT7基因表达相关的特征性代谢物和代谢通路.分析结果表明,SIRT7基因低表达组与对照组细胞的代谢轮廓存在显著性差异,其细胞水溶性萃取物中有22种代谢物浓度发生明显变化.与对照组相比,SIRT7基因低表达胶质瘤细胞株中乳酸、甘氨酸、谷氨酸等12种代谢物浓度升高;缬氨酸、亮氨酸、赖氨酸等10种代谢物浓度降低.通路富集分析提示氨酰-tRNA生物合成、氨基酸代谢等代谢通路与SIRT7低表达密切相关.以上结果为进一步阐明癌基因SIRT7调控胶质瘤细胞代谢的作用机制提供了理论依据.厦门市科技计划社会发展项目(3502Z20184064

    Biosynthesis of Silver Nanoparticles from Various Medicinal Plant Extracts and Their Antibacterial Properties

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    作者简介:林源(1985-),女,硕士研究生。联系人:李清彪(1963-),教授,博士生导师,电话:0592- 2189595,E-mail:kelqb@xmu.[中文摘要]分别以中草药丁香、山茱萸、地榆和乌梅的提取液为还原剂和保护剂合成银纳米颗粒,利用紫外-可见吸收光谱(UV-vis)、透射电镜(TEM)以及X射线粉末衍射(XRD)对产物进行了表征。结果表明,所得银纳米颗粒呈近球形,提高提取液的pH有利于获得粒径较小、分散性好、稳定性高的银纳米颗粒。进一步考察制得的银纳米颗粒的抗菌性能,结果表明,其对大肠杆菌和金黄色葡萄球菌有很强的抑制作用,最小抑菌质量浓度(M IC)分别可达1.69和3.38 mg/L。[英文摘要]Quasi-spherical silver nanoparticles(AgNPs) were synthesized from the extracts of different medicinal plants including Syzygium aromaticum,Cornus officinalis,Prunus mume and Sanguisorba officinalis,and were subsequently characterized by means of UV-visible spectroscopy,transmission electron microscopy and X-ray diffraction.When pH values of the extracts were adjusted to 10,the biosynthesized AgNPs were well-dispersed,highly stable,and relatively small in size.Thus obtained AgNPs were found to demonstrate good antibacterial activity against Escherichia coli and Staphylococcus aureus,with minimum inhibitory concentrations of 1.69 and 3.38 mg /L required,respectively.国家自然科学基金重点项目(21036004);国家自然科学基金面上项目(20976146);福建省科技计划重点项目(2009H0041

    武夷山自然保护区生物多样性研究 1.小叶黄杨矮曲林物种多样性

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    本文为武夷山自然保护区生物多样性GEF项目内容之一 ,调查了保护区内不同海拔高度的代表性森林生态系统的物种多样性 .小叶黄杨 (Buxussinicavar .parvifolia)林是中山矮曲林的代表性类型之一 .应用Shannon Wiener多样性指数、Pielou均匀度、Simpson指数和PIE对武夷山小叶黄杨群落高等植物进行了物种多样性研究 .结果表明前两者是较好的多样性指标 ,该群落的Shannon Wiener指数值为 1.80 6 8,Pielou均匀度为 49.6 7% ,Simpson指数值为 2 .9146 ,PIE为 0 .6 5 6 9.群落乔木层与藤本植物的物种多样性较高 ,前者各项指数值分别为 2 .2 312 ,71.16 % ,5 .0 783,0 .80 31;后者各项指数值分别为 1.3371,83.0 8% ,3.5 32 7,0 .716 9

    Species diversity in mangrove wetlands of China and its causation analyses

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    作者简介: 何斌源( 1969 ~ ), 男, 广西东兴市人, 博士生, 主要从事海洋生态学研究. E-mail: [email protected] * 通讯作者Corresponding author. E-mai:l [email protected][中文文摘]目前中国红树林湿地共记录了2854种生物,包括真菌136种、放线菌13种、细菌7种、小型藻类441种、大型藻类55种、维管束植物37种、浮游动物109种、底栖动物873种、游泳动物258种、昆虫434种、蜘蛛31种、两栖类13种、爬行类39种、鸟类421种和兽类28种。这些动物中有8种国家一级保护动物,75种二级保护动物。中国红树林湿地是中国濒危生物保存和发展的重要基地,并在跨国鸟类保护中起着重要作用。中国红树林湿地单位面积的物种丰度是海洋平均水平的1766倍。从初级生产物质基础、食物关系多样性、宏观尺度和微观尺度的空间异质性、生境利用的时序性等方面分析了中国红树林湿地物种多样性极其丰富的原因。 [英文文摘]To date,total of 2854 species of organisms were recorded in Chinese mangrove wetlands,including 136 species of fungi,13 species of actinobacteria,7 species of bacteria,441 species of microalgae,55 species of macroalgae,37 species of vascular plants,109 species of zooplankton,873 species of macrobenthos,258 species of nektons,434 species of insects,31 species of spiders,13 species of amphibians,39 species of reptiles,421 species of birds and 28 species of mammals.Among them,8 species belonged to the category 1 of Chinese national protected animals and 75 species belonged to the category 2.Chinese mangrove wetlands are very important bases for the conservation and development of the endangered species to China,and playing a critical role in the international activities for protecting the migrating birds.The species abundance in Chinese mangrove wetlands was 1766 times as much as that for the averaged species abundance in Chinese sea fields.The prolific species diversity in Chinese mangrove wetlands can be attributed to their high primary productivity,high diversity in their consumers’ food preferences,high spatial heterogeneity at macroscopical and microscopic scale levels,and their dynamic temporal sequence in habitat utilization.国家自然科学基金资助项目(40676050);联合国环境规划署(UNEP)全球环境基金(GEF)资助项目;广西科学基金资助项目(0640014
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