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排序方式: 共有21条查询结果,搜索用时 763 毫秒
1.
木兰科分类系统初探   总被引:2,自引:0,他引:2  
根据形态解剖学的主要特征,提出把木兰科分为木莲属、厚壁木属、华盖木属、木兰属、南美盖裂木属、香木兰属、拟单性木兰属、单性木兰属、长蕊木兰属、南洋含笑属、含笑属、合果木属、观光木属、鹅掌楸属等14个属,并讨论了木兰科的演化途径  相似文献   
2.
 本文对我国原始木本被子植物木兰科中的木兰属Magnolia、木莲属Manglietia、含笑属Michelia、 合果木属Paramichelia、观光木属Tsoongioderdron、拟单性木兰属Parakmeria、鹅掌楸属Liriodendron、 华盖木属Manglietiastrum 8属代表种的核型进行了研究。各属代表种的核型公式如下:夜合Magnolia coco 32m+4sm+2st(2SAT);灰木莲Manglieatia glauca 32m+4sm+2st(2SAT);合果木Paramichelia baillonii 34m(2SAT)+2sm+2st(2SAT);观光木Tsoongiodendron odorum 32m+6sn(2SAT);拟单性木 兰Parakmeria omeiensis 56m+16sm+4st(2SAT);鹅掌楸Liriodendron chinense 32+4sm(2SAT)+2st (2SAT);华盖木Manglietiastrum sinicum 28m+4sm+6st(6SAT);白兰 Michelia alba 34m+4sm(2SAT)。作者对木兰科核型进化问题进行了讨论。  相似文献   
3.
调查分析了木兰科23个树种在丽水地区的引种栽培情况,概述了引种地生态条件与栽培基地的营建技术。在引种的4属23种木兰科树种中,20种生长良好,平均高达3.68m,地径5.52cm,部分树种已进入开花结实期,其它3种因不适应死亡,引种结果表明木兰科植物在该试验地的引种保存基本是成功的。  相似文献   
4.
木兰科Magnoliaceae 13个分类群的染色体进行了计数, 其中落叶木莲Manglietia decidua、香港木兰Magnolia championii、馨香玉兰Magnolia odoratissima、香木兰Magnolia guangnanensis等12个种的染色体数目为首次报道。同时对木兰科属内属间的12个人工杂交组合的后代进行了染色体鉴定,其中,二乔玉兰红元宝Magnolia×soulangeana“Hongyuanbao” (♀,2n=4x=76)与云南含笑Michelia yunnanensis (♂,2n=2x=38)、红元宝与金叶含笑Michelia foveolata(♂,2n=2x=38)杂交后代的染色体为2n=3x=57,为其亲本染色体半数之和,证明这两个远缘杂交后代为真实杂种。  相似文献   
5.
玉兰种子的芳香油提取试验   总被引:1,自引:0,他引:1  
闫茂华 《科学教育》2002,8(1):48-49
  相似文献   
6.
中国部分木兰科植物染色体数目   总被引:2,自引:0,他引:2  
作者观察了我国木兰科7属30种植物的染色体数目,其中23种为首次报道.  相似文献   
7.
在扫描电镜下系统研究了木兰科10属52种成熟种子内种皮合点区形态。该形态分为孔型和管型两大类。孔型为内种皮合点区具一小穿孔。木莲属Manglietia、香木兰属Aromadendron、盖裂木属Talauma(8种)、南洋含笑属Elmerrillia和鹅掌楸属Liriodendron具此类型。管型由内种皮合点区向下凹陷形成的小窝和由窝底向外伸出的小管组成。华盖木属Manglietiastrum、盖裂木属Talauma(3种)、长蕊木兰属Alcimandra、含笑属Michelia、合果木属Paramichelia和观光木属Tsoongiodendron具此类型。在木兰属部分种中还观察到两种形态之间的过渡类型。上述形态特征在属内稳定并为木兰科植物所特有,而且明显表现出原始类群的合点区形态大多为孔型,进化类群的合点区形态大多为管型的特点。  相似文献   
8.
木兰科分类系统的初步研究   总被引:10,自引:0,他引:10  
A new system of classification of Magnoliaceae proposed.  This paper deals mainly with taxonomy and phytogeography of the family Magnoliaceae on the basis of external morphology, wood anatomy and palynology.  Different  authors have had different ideas about the delimitation of genera of this family, their controversy being carried on through more than one hundred years (Table I).  Since I have been engaged in the work of the Flora Reipublicae Popularis Sinicae, I have accumulated a considerable amount of information and material and have investigated the living plants at their natural localities, which enable me to find out the evolutionary tendencies and primitive morphological characters of various genera of the family.  According to the evolutionary tendencies of the characters and the geographical distribution of this family I propose a new system by dividing it into two subfamilies, Magnolioideae and Liriodendroideae Law (1979), two tribes, Magnolieae and Michelieae Law, four subtribes, Manglietiinae Law, Magnoliinae, Elmerrilliinae Law and Micheliinae, and fifteen genera (Fig. 1 ), a system which is different from those by J. D. Dandy (1964-1974) and the other authors.      The recent distribution and possible survival centre of Magnoliaceae. The members of Magnoliaceae are distributed chiefly in temperate and tropical zones of the Northern Hemisphere, ——Southeast Asia and southeast North America, but a few genera and species also occur in the Malay Archipelago and Brazil of the Southern Hemisphere. Forty species of 4 genera occur in America, among which one genus (Dugendiodendron) is endemic to the continent, while about 200 species of 14 genera occur in Southeast Asia, of which 12 genera are endemic.  In China there are about 110 species of 11 genera which mostly occur in Guangxi, Guangdong and Yunnan; 58 species and more than 9 genera occur in the mountainous districts of Yunnan.   Moreover,  one  genus (Manglietiastrum Law, 1979) and 19 species are endemic to this region.  The family in discussion is much limited to or interruptedly distributed in the mountainous regions of Guangxi, Guangdong and Yunnan.  The regions are found to have a great abundance of species, and the members of the relatively primitive taxa are also much more there than in the other regions of the world.      The major genera, Manglietia, Magnolia and Michelia, possess 160 out of a total of 240 species in the whole family.  Talauma has 40 species, while the other eleven genera each contain only 2 to 7 species, even with one monotypic genus.   These three major genera are sufficient for indicating the evolutionary tendency and geographical distribution of Magnoliaceae.  It is worthwhile discussing their morphological  characters  and distributional patterns as follows:      The members of Manglietia are all evergreen trees, with flowers terminal, anthers dehiscing introrsely, filaments very short and flat, ovules 4 or more per carpel.  This is considered as the most primitive genus in subtribe Manglietiinae.  Eighteen out of a total  of 35 species of the genus are distributed in the western, southwest to southeast Yunnan. Very primitive species, such as Manglietia hookeri, M. insignis  and M. mega- phylla, M. grandis, also occur in this region. They are distributed from Yunnan eastwards to Zhejiang and Fujian through central China, south China, with only one species (Manglietia microtricha) of the genus westwards to Xizang.  There are several species distributing southwards from northeast India to the Malay Archipelago (Fig. 7).      The members of Magnolia are evergreen and deciduous trees or shrubs, with flowers terminal, anthers dehiscing introrsely or laterally, ovules 2 per carpel, stipule adnate to the petiole.  The genus Magnolia is the most primitive in the subtribe Magnoliinae and is the largest genus of the family Magnoliaceae. Its deciduous species are distributed from Yunnan north-eastwards to Korea and Japan (Kurile N. 46’) through Central China, North China and westwards to Burma, the eastern Himalayas  and northeast India.  The evergreen species are distributed from northeast  Yunnan  (China)  to  the Malay Archipelago.  In China there are 23 species, of which 15 seem to be very primi- tive, e.g. Magnolia henryi, M. delavayi, M. officinalis and M. rostrata, which occur in Guangxi, Guangdong and Yunnan.      The members of Michelia are evergreen trees or shrubs, with flowers axillary, an- thers dehiscing laterally or sublaterally, gynoecium stipitate, carpels numerous or few. Michelia is considered to be the most primitive in the subtribe Micheliinae, and is to the second largest genus of the family.  About 23 out of a total of 50 species of this genus are very primitive, e.g. Michelia sphaerantha, M. lacei, M. champaca,  and  M. flavidiflora, which occur in Guangdong, Guangxi and Yunnan (the distributional center of the family under discussion)  and extend eastwards to Taiwan  of  China, southern Japan through central China, southwards to the Malay Archipelago through Indo-China. westwards to Xizang of China, and south-westwards to India and Sri Lanka (Fig. 7).      The members of Magnoliaceae are concentrated in Guangxi, Guangdong and Yunnan and radiate from there.  The farther away from the centre, the less members we are able to find, but the more advanced they are in morphology.  In this old geographical centre there are more primitive species, more  endemics  and  more monotypic genera. Thus it is reasonable to assume that the region of Guangxi, Guangdong and Yunnan, China, is not only the centre of recent distribution, but also the chief survival centreof Magnoliaceae in the world.  相似文献   
9.
1977年,中科院华南热带植物所著名的木兰科植物学家刘玉壶教授,应邀到云南省林业科学院,对该院的一些植物标本进行鉴定。这些标本是在滇东南西畴县坪寨林场的原始常绿阔叶林中采集到的。鉴定过程中,刘教授对一个从未见过的奇特木兰科果实产生了极大的兴趣。为进一步了解该植物,第二年春秋两季,他不辞辛苦,千里迢迢赶到这种植物的产地——西畴县法斗林区采集标  相似文献   
10.
单性木兰     
冯倩 《百科知识》2011,(12):45-45
木兰科植物是地球上最古老的高等植物,也是庭园栽培中最为主要的一类植物,我国远在春秋时期即有种植。楚国大诗人屈原《离骚》中即有"朝饮木兰之坠露兮,夕餐秋菊之落英"的佳句。当今国际植物学界,把对木兰科植物的研究视为研究植物进化史的关键,这其中对单性木兰的研究更为重中之重。  相似文献   
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