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1.
改变甘肃落后面貌的基本思路························································……”··……贾志杰(1·1)领导与决策··························································································……冯之凌(5·257) ·论坛·构想与实践······················································…  相似文献   

2.
刊头丝语·刊林幼枝十年成木一一献《情报杂志》10周岁····,,··········································……贺克毅1,3诚为敝刊请佳作一一向作者约稿·········································,···························一贺克毅2:3发展社会经济开拓情报市场··································································……本刊编…  相似文献   

3.
第1期创新:《科技与管理》的追求···········································································……本刊编辑部科技企业孵化器发展过程中的问题与对策···················································……杨廷双(1)跨国公司R&D投资活动的新趋势·······························································…  相似文献   

4.
刊头丝语·管理、改革、决策················································……,’’···……本刊编辑部1:深化·扩拓·综合··········································一,“·‘·,’’·····一本刊编辑部2:科学。文学。情报文学.·········.································“,······...··……本刊编辑部3:西北情报发展的战略重点·········,············…  相似文献   

5.
.刊头丝语。杂的特色杂的风格······················“························……场········……关金琦1,2多些评论吧I······,·······································……‘········……‘··,·……关金琦2:2还是要抓好干部培训·····································,·························……关金琦3,2星火声象燎原神州一一第五届全国星火科…  相似文献   

6.
Gentiana was originally proposed by Tournefort in 1700. Linnaeus adopted this generic name in his “Genera Plantarum” published in 1737. He divided the genus into seven groups on the basis of different shapes of corolla and forms of floral appendages. In his “Species Plantarum” he reorganized them into three artificial ones.  Forty years later, Moench established a new genus, Gentianella under which he described G. tetrandra as the type of his new genus.  In the view of identity of Gentianella tetrandra with Gentiana campestris L., it is evident that Gentianella represents only some plants formerly included in Gentiana at Linnaeus time.  In 1796, Froelich’s monograph on Gentiana appeared.  In his work four sections were represented and one of them was Crossopetalum.  In 1845, Grisebach also published a monograph of  Gentianaceae and recorded fifteen sections of which Amarella and Imaicola are two of his seven proposed ones. In 1888, Huxley studied the floral structure of Gentianaceae  in relation with pollination mechanism and, accordingly, divided the family into two  main groups, one with epipetalous glands, the other with glands at the base of the ovary.  In each group, four types of flowers were found.  He concluded that Gentiana was a  complex genus on account of presence of four different types of flowers in this group,  and suggested that many species of the genus should be separated out to form some smaller  generic categories.  Six years after, Kusnezow in his monograph divided Gentiana into  two subgenera Eugentiana and Gentianella.  In his system, subgenus Eugentiana consists  of ten sections and the Gentianella, seven.  He contributed much to the systematic  treatment of Eugnetiana but little to that of Gentianella.  He maintained the genus  Gentiana in a broad sense.  With increased knowledge of this group in the last thirty years, a number of botanists were able to make a clearer delimitation of true Gentiana  and its allies and treated them in more natural way.  Moench’s genus Gentianella was  rerised.  In 1936, H. Smith separated Megacodon from Gentianella as a genus.  In the  present paper, the writer suggests a generic name Gentianopsis for the section Crossopetalum in the same Genus. This new genus is characterized by (1) its large and somewhat flattened ellipsoidal   flower bud, (2) two dissimilar pairs of calyx lobes which are distichously imbricate in  aestivation, (3) four triangular, ciflated intracalyx membranes at the base of and  alternate with the calyx lobes, (4) distinct gynophore and (5) enlarged stigma. While  in typical Gentianella represented by section Amarella, the flower buds are small and terete, a laciniate corona is usually present, and the calyx-lobes are leafy, lanceolate, imbricate, and not provided with intracalyx membrane.       Besides the morphological characters mentioned above, the anatomical structure of  the floral parts is also a significant generic criterion.  In Gentianopsis, eight vascular  bundles are present in calyx, representing four dorsals and four fused ventrals.  In each  corolla-lobe there are five bundles.  In the body of ovary six bundles are present.  The ovule bearing surface is extensive covering nearly to entire surface of the ovary wall with  the exception of a narrow longitudinal zone along the dorsal bundle.  In Gentianella, calyx bundles are three in each lobe, without fusion of the ventrals.  In each corolla- lobe, the bundles are three instead of five as in Gentianopsis but the lateral ones branch once dichotomously after entering the base of corolla. In the body of ovary only four main bundles are present due to the fusion of smaller ventral ones.  The placentation is confined to the region of the ventral bundles.        Phylogenetically Gentianopsis and Gentianella may be regarded as closely reIated and may represent branches of a common line with Gentianopsis standing at a lower level, Gentianella being more advanced. In Gentianella the number of bundles in the corolla segments and ovary wall are reduced by partial or complete fusion and the distribution of ovules is confined only to the region of the ventral bundles.  However, in the calyx of Gentianopsis there is fusion of ventral bundles, whereas the correspound- ing bundles in the Gentianella remain separate.  The Gentianopsis-Gentianella line on the one hand and the Gentiana line on the other may come again from a common acestral stock.  Gentiana possesses only three bundles in each corolla-lobe.  A variety of plicate between corolla lobes except in case of Gentiana lutea and intracalyx membrane above the throat of calyx-tube are also the common structures in Gentiana.  Thus the pollination mechanism is highly specialized in the genus.  As far as we know, in Gentiana the glandular appendages usually exist at the base of ovary.  If those nectarial processes are correctly interpreted as the representatives of staminodes, gentiana would, undoubtedly, be derived from an ancestral  form with  hypogynous  diplostemonous androecium, and bears no direct relationship to Gentianopsis or Gentianella in which the glands are epipetalous.  It may be reasonable to conclude the Gentiana and Gentianopsis- Gentianella line are two parallel derivatives from a common ancestor which has the floral characters of two series of hypogynous stamens. Gentianopsis and Gentianella may represent branches of a common line with Gentianopsis standing at a lower level, Gentianella being more advanced. Their relations may be diagrammed below:                                                       Gentianopsis                                                                                                                               Gentianella Common ancestor                                                       Gentiana        This new genus consists of fourteen species and two varieties in the world.  Onlyeight species and two varieties are represented in China. They are G. barbara, G. barbatavar. sinensis, G. grandis, G. scabromanginata, G. paludosa, G. nana, G. longistyla,G. lutea, G. contorta, and G. contorta var. Wui.     The species of present genus occur in the alpine regions of North Hemisphere.  InChina t,hey are distributed in Kokonor, Kansu, Shensi, Shansi, Chahar, Hopei, Manchuria,Hupeh, Szechuan, Sikang, Tibet, and Yunnan. G. Yabei (Takeda et Hara) is foundin Japan, G. detonsa (Bott&) in North Europe, G. ciliata (Linn.) in South Europe,G. crinita (Froel.) G. procera (Holm.) and G. degans (A. Nels) in North America.G. barbata is the most widespreading species and reported in Sibiria and China.G. contorta (Royle) is a common plant in Himalayan mountaineous range, China andNorth part of India.     The species and varieties cited in this paper are as follows:           t.  Gentianopsis barbata (Froel.) comb. nov.           la. Gentianopsis barbata (Froel.) var. sinensis, var. nov.          2.  Gentian opsis grandis (H. Sm.) comb. nov.          3.  Gentianopsis scabromarginata (H. Sm.) comb. nov.          4.  Gcntianopsis paludosa (Munro) comb. nov.          5.  Gentianopsis nana sp. nov.          6.  Gentianopsis longistyla, sp. nov.          7.  Gentianopsis lutea, sp. nov.  相似文献   

7.
·信息产业· 世界机读数据库产业的现状································,···……胡小普编译(1一2) 韩国数据库产业·········,,········································……刘丹王玮(1一11) 世界信息市场未来的走向················································……汤兆魁(3一l) 吉林省信息产品市场研究~··~”··“·“…马长玉张秋虹许勇李超(3一8) 强化信息产业建设促进我国经济发展…  相似文献   

8.
贯彻国发48号文件精神加快高校科技改革 —全国部分高校科技处长会议侧记···························……本刊编样部(3一1)市场经济给我们带来的机遇和挑战·……,’’····················……本刊编辑部(4一封2) 科技体制改革防“左”:深化科技改革的方向··········································……杨德荣(3一4)解放和发展生产力的思想指南·············································…  相似文献   

9.
第1期No一基础理论YUANJI THE()RY 论元极学物质观···················································································,·····················……赵九明(l) On the Matter View of Yuanji Science···········································································……Zhao Jiuming 元机学理论建设与唯象…  相似文献   

10.
《中国科学基金》2005,19(6):377-384
尊重科学规律把握工作定位发展与完善中国特色科学基金制···························……陈宜瑜2(65) 关于2005年度国家自然科学基金工作····························································……陈宜瑜3(129) 科技发展与知识产权···················································································……沈文庆3(131) 关于(国…  相似文献   

11.
牢固树立持续稳定协调发展经济的指导思想本刊编排部(1·1) ·论坛·我月西北太阳能资源的开发利用展望····························································……黄河上游的一支“火炬’ ·专论·我国边缘地带的社会文化现象与生态经济学分析·································……张维祥关于城市科技、社会协调发展的思考·······················……””””’‘”””””’‘”’‘””‘””’‘在抬…  相似文献   

12.
第5期NO.5元极论坛TREATISE ON YUANJI THEORIES 试论元极能源工程学··············································································……张智铁哀亭芝龚权英(l) A preliminary study of Yuanji Energy Engineering············……Zhang Zhitie Yuan Tingzhi Gong Chuanying 三元的本原性特征·····································……八·············…  相似文献   

13.
加强队伍建设搞好情报工作·························································……邢景文(82·1·2)情报工作要瞄准目标,主动出击··········,····························~·……副省长谈维煦(82·2·6、科技情报工作要为科研和生产服务·······································……副省长张斌(82·2·11)为经济建设服务是情报工作的根本出发点·····,··············…  相似文献   

14.
15.
理论与方法论我国多语种情报检索系统的实现方法·······,····························……周宁(14,1,2)信.忽产业结构与刚度方法的比较研究···························……靖继鹅王欣(14,1,6)论文献信.岛产品开发····························································……卢绍君(14,2,1)论情报原则理论体系··········································…  相似文献   

16.
理论与方法CD一RqM光盘网络化及其影响·······························································“……张保明(!3,1,2)抡信息资源合理布局的评价指标体系及合理性模糊评价(一)···························……魏业华(13,1,6)情报的作用机制及其动力学膜’怜····························、··············,···············,·……李天复〔13,1,13)全标引汉字情报检索系统…  相似文献   

17.
一厂‘,第一期’中国热带、亚热带山区植物资源特点和开发利用中应注意的问题········································……江爱良我国水资源的开发利用问题及其对策········一狱··…,’’’·,1’··························.’...……任光照杨继于我国的漆树资源及其合理利用途径······.·..·...……::................. .....……,.....……,.............……皖南山区国土资源开发利用与整治初探·········……湘西土地资源综合开发问题,…  相似文献   

18.
第期我国猪种资源及其利用·················.·····……,........................................··...················“·········……郑玉留(1)西南地区生物资源现状及其发展战略初探···············..·····......········.·.······································……陈书冲(7)云南省区域生态现状与经济开发···“~···········“~·······~·~········一甫汉听陈定茂杨明华高林…  相似文献   

19.
关于建设黄河上游经济开发试验小区的若干间题·············,··································……贾志杰(1.1)·论坛·论生产力标准与思想政治工作························“···········································……庞道沐(3.129)宜新认识以农业为基础的战略地位···················”··········································……吴…  相似文献   

20.
《中国科学院院刊》2004,19(6):477-482
总结经验规划未来扎扎实实推进知识创新工程试点工作—中国科学院党组召开冬季扩大会议························……(l)关于中国科学技术发展的若干思考·····························································································……路雨祥(81)对我院未来发展的战略思考····································-···················…  相似文献   

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