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1.
This paper deals with the taxa of tribe Arundinarieae Steud. subtribe Pleiobalastinae Keng and Keng f. which comprised three genera (Pseudosasa Makino, Pleioblastus Nakai and Brachystachyum Keng) when it was established in 1957. With the analysis of morphological characters and geographical distribution, a number of revisions connected with the taxon are made as follows:      (1)  Genus Brachystachyum Keng is transferred to the tribe Shibataeeae Nakai ac- cording to its false inflorescence.      (2)  Genus Pseudosasa Makino is transferred to subtribe Sasinae Keng f. according to our study on the numerical taxonomic method.      (3)  Some species of Pleioblastus Nakai established by Keng and Keng f. should be revised. Pleioblastus actinotrichus (Merr. and Chun) Keng f. should be Ampelocalamus actinotrichus (Merr. and Chun) S. L. Chen, T. H. Wen and G. Y. Sheng in subtribe Tham- nocalaminae Keng f.; Pleioblastus dolichanthus (Keng) Keng f. is the synonym of Sinobam- busa tootsik (Sieb.) Makino, belonging to tribe Shibataeeae Nakai. The rest species remain in this genus. Since the genus Pleioblastus is related to genus Arundinaria Michaux., subtribe Pleioblastus Keng and Keng f. does not seem to have a reason to be retained as a subtribe in tribe Arundinarieae Steud., according to the newest Code (1978). A part of it should be a synonym of subtribe Arundinariinae and we may cite it as follows: Subtribe Arundinariinae——Subtribe Pleioblastinae Keng and Keng f. pro parte, syn. nov. The other parts of it should be transferred to other subtribes or tribes.       In addition, one new variety in Branchystachyum, two new species, one new variety in Pseudosasa and six new species, three new varieties in Pleioblastus, are described in this paper.  相似文献   

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中国大节竹属的研究   总被引:1,自引:0,他引:1  
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4.
This paper is here presented as a material for a flora of the Chinese grasses.  At the beginning, it chronologically gives a brief historical sketch on the study of the sub- tribe Isachninae.  The category which this group should constitute is here delimited, and its position in the natural system of grass-classification is also discussed.       Secondly it deals with a taxonomic treatment on the genus Isachne which comprises 16 species and 7 varieties in China, amongst which two species (I. hoi and I. hainanensis) and four varieties (I. albens var. glandulifera, I. truncata vars. crispa & maxima, and I. nipponensis var. kiangsiensis) are published here as new to science.  In addition, a new combination, I. hirsuta, (Hook. f.) Keng, f., based upon I. albens var. hirsuta Hook. f., is made here.  The two species (I. ciliatiflora Keng, and  I. tenuis  Keng)  published in Chinese only in the “Flora Illustralis Plantarum Primarum Sinicarum Graimeae 1959”, arehere supplemented with Latin diagnoses for validation.  相似文献   

5.
The morphological characters in the genus Orobanche were evaluated from the taxonomic point of view.  The author finds that the plants of this genus are relatively similar to each other in respect to characters of vegetative organs, fruits and seeds.  But the differences in the floral structures can be served as a basis for delimitating infrageneric taxa.   The seed coat of 18 species and pollen grains of  6 species were also examined under scanning electron microscope (SEM). They seem to have little significance for distinguishing species.       The result supports G. Beck’s (1930) division of the genus Orobanche into 4 sections, of which 2 occur in China, based on the characters of the inflorescence, bracteoles and calyx. The author considers that some characters, such as anther hairy or not, upper lip of corolla entire or not, lower lip longer or shorter than the upper one, the state of corolla-tube inflec-  tion and the hair type of filaments and plants, are important in distinguishing Chinese species.  A key to the species of Orobanche in China is given.       This genus consists of about 100 species, and is mostly confined to Eurasia, with over 60  species found in Caucasus and Middle Asia of USSR, where may be the mordern  distribu-  tional  centre.        Orobanche L. in China is represented by 23 species, 3 varieties and l forma. As shown in  Table 1, most species (12 species) are found in Xinjiang, which clearly shows a close floristic  relationship between this region and Middle Asia of USSR.  6 species are endemic to China,  of which 4 are confined to the Hengduan Mountains  (Yangtze-Mekong-Salwin divide).        The relationships between this genus and related ones of Orobanchaceae are also discussed.  The author holds the following opinions: the genus Phelypaea Desf. should be considered as a   member of Orobanche L. Sect. Gymnocaulis G. Beck,  the monotypic genus,   Necranthus A.   Gilli endemic to Turkey, is allied with Orobanche L. Sect.  Orobanche, the monotypic genus,   Platypholis Maxim, endemic to Bonin Is. of Japan, is far from Orobanche L. in relation and   should be regarded as a separate genus.        The 11 OTU’s, including all the sections of Orobanche L. and 7 genera of Orobanchaceae,   and 15 morphological characters were used in the  numerical  taxonomic treatment  to  test  the   above-mentioned  suggestions.   After standardization of characters, the correlation matrices were   computerized.  The correlation matrices were made to test the various clustering methods.   At    last the UPGMA clustering method was chosen and its result is shown in a phenogram.  The   result of numerical analysis is basically in accordance with the suggestions.  相似文献   

6.
The reproductive feature of the nemalionalean genus Liagora is characterized by the laterally situated carpogonial branch which is produced by the ordinarily assi- milative filament.  A study of L. farinosa Lamx. has revealed that the carpogonial branches of this species are not borne on the  ordinarily  assimilative  filaments  but restricted to a kind of short filaments (referring to as “fertile filaments”  in the present article) which are, in turn, initiated by the basal cells of the assimilative filaments.  The carpogonial branches are modified furcations of the fertile filaments. The fertile filaments may, however, grow and send out assimilative filaments concur- rently with the maturation of the carpogonial branches.  Therefore, the origin of the carpogonial branches is best shown in their younger developing stages but more or less obscure in age.      Boergesen, who examined Lamouroux's type, made a detailed study of L. farinosa from the Canary Islands.  The depictions given by Boergesen, Yamada (1938, f. 15), Tseng (1941, f. 6) and Umezaki (1961, f. lA) concisely illustrated the feature of the fertile filaments in this species, although all these workers had not envisaged the taxonomical significance of the peculiar position of the female organs.  In our opin- ion, the differentiation of cortical filaments into assimilative and reproductive as seen in L. farinosa (even though in a preliminary stage)  suggests that the progressive evolutionary changes have occurred in this species.  The unique situation of L. fari- nosa is, in fact, no parallel in any genus of the, family where female organs are directly produced (or transformed) by the assimilative filaments.       It thus appears there is no justification for retaining L. farinosa in the genus Liagora.  A new genus, Ganonema Fan et Wang gen. nov. is therefore proposedfor accommodating the species, G. farinosa (Lamx.) Fan et Wang comb. nov.  相似文献   

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 When F. A. McClure published the new genus Sinocalamus McClure in 1940, the 4 species he listed are S. latiflorus (Munro) McClure, S. beecheyanus (Munro) Mc- Clure, S. oldhami (Munro) McClure and S. affinis (Rendle) McClure.  After careful examination, the authors of this paper considered that the type species of McClure’s genus S. latiflorus (Munro) McClure should belong to the genus Dendrocalamus Nees, and the other species are of Bambusa Schreber.  Owing to Sinocalamus McClure is not a taxon representative of its type species, but a mixture, it must be rejected as a synonym of Dendrocalamus Nees.  In consequence then, the authors make adjustment to the taxonomic category of the 14 species and 1 variety which have ever been in Sinocalamus McClure.      As for the characters of Lingnania McClure, except that some differences exist in the vegetative parts, the structure of the spikelets is in the main the same as that of Bambusa Schreber.  Consequently, with regard to the systematic relationship, the authors consider it may be more resonable that the rank of Lingnania McClure should be alter- ed to Bambusa Schreber subg.  Lingnania (MeClure) Chia  et H. L. Fung; all the species of Lingnania McClure, except that L. tsiangii McClure should be transferred to Dendrocalamus Nees, should be assignable to Bambusa Schreber subg.  Lingnania (McClure) Chia et H. L. Fung.  相似文献   

10.
 Xizang (Tibet) is rich in Leguminosae flora, comprising 41 genera and 254 species so far known, exclusive of the commonly cultivated taxa (including 11 genera and 16 species). There are 4 endemic genera (with 8 species), 10 temperate genera (with 175 species) and 19 tropical genera (with 46 species) as well as the representatives of those genera whose distribution centers are in East Asia-North  America, Mediterranean and Central Asia.       1.  There are altogether 4 endemic genera of Leguminosae in this region. Accord- ing to their morphological characters, systematic position and geographical distribution, it would appear that Salweenia and Piptanthus are Tertiary paleo-endemics, while Straceya and Cochlianths are neo-endemics. Salweenia and Piptanthus may be some of more primitive members in the subfamily Papilionasae and their allies are largely distributed in the southern Hemisphere.  The other two genera might have been derived from the northern temperate genus Hedysarum and the East Asian-North American genus Apios respectively, because of their morphological resemblance. They probably came into existanc during the uplifting of the Himalayas.       2. An analysis of temperate genera       There are twelve temperate genera of Leguminosae in the region, of which the more important elements in composition of flora, is Astragalus, Oxytropis and Cara- gana.       Astragalus  is a  cosmopolitan  genus comprising 2000 species, with its center distribution in Central Asia. 250 species, are from China so far known, in alpine zone of Southwest and Northwest, with 70 species extending farther to the Himalayas and Xizang Plateau.       Among them, there are 7 species (10%) common to Central Asia, 12 species (15.7%) to Southwest China and 40 species (60%) are endemic, it indicates that the differentia- tion of the species of the genus in the region is very active, especially in the subgenus Pogonophace with beards in stigma. 27 species amounting to 78.5% of the total species of the subgenus, are distributed in this region.  The species in the region mainly occur in alpine zone between altitude of 3500—300 m. above sea-level. They have developed into a member of representative of arid and cold alpine regions.      The endemic species of Astragalus in Xizang might be formed by specialization of the alien and native elements. It will be proved by a series of horizontal and vertical vicarism of endemic species.  For example, Astragalus bomiensis and A. englerianus are horizontal and vertical vicarism species, the former being distributed in southeast part of Xizang and the latter in Yunnan; also A. arnoldii and A. chomutovii, the former being an endemic on Xizang Plateau and latter in Central Asia.      The genus Oxytropis comprises 300 species which are mainly distributed in the north temperate zone. About 100 species are from China so far known, with 40 species extending to Himalayas and Xizang Plateau.  The distribution, formation and differ- entiation of the genus in this region are resembled to Astragalus.  These two genera are usually growing together, composing the main accompanying elements of alpine mea- dow and steppe.      Caragana is an endemic genus in Eurasian temperate zone and one of constructive elements of alpine bush-wood. About 100 species are from China, with 16 species in Xi- zang. According to the elements of composition, 4 species are common to Inner Mon- golia and Kausu, 4 species to Southwest of China, the others are endemic. This not only indicates that the species of Caragana in Xizang is closely related to those species of above mentioned regions, but the differentiation of the genus in the region is obviously effected by the uplifting of Himalayas, thus leading to the formations of endemic species reaching up to 50%.      3. An Analysis of Tropical Genera      There are 19 tropical genera in the region. They concentrate in southeast of Xizang and southern flank of the Himalayas. All of them but Indigofera and Desmodium are represented by a few species, especially the endemic species. Thus, it can be seen that they are less differentiated than the temperate genera.      However, the genus Desmodium which extends from tropical southeast and northeast Asia to Mexio is more active in differentiation than the other genera. According to Oha- Shi,s system about the genus in 1973, the species of Desmodium distributed in Sino-Hima- laya region mostly belong to the subgenus Dollinera and subgenus Podocarpium.  The subgenus Dollinera concentrates in both Sino-Himalaya region and Indo-China with 14 species, of which 7 species are endemic in Sino-Himalaya.  They are closely related to species of Indo-China, southern Yunnan and Assam and shows tha tthey have close con- nections in origin and that the former might be derived from the latter.      Another subgenus extending from subtropical to temperate zone is Podocarpium. Five out of the total eight species belonging to the subgenus are distributed in Sino- Himalaya and three of them are endemic.      An investigation on interspecific evolutionary relationship and geographic distribu- tion of the subgenus shows that the primary center of differentiation of Podocarpium is in the Sino-Himalaya region.      Finally, our survey shows that owing to the uplifting of the Himalayas which has brought about complicated geographic and climatic situations, the favorable conditions have been provided not only for the formation of the species but also for the genus in cer-tain degree.  相似文献   

11.
藁本属Ligusticum L.属伞形科Umbelliferae芹亚科Apioideae Drude阿米芹族Ammineae Koch。它在阿米芹族中,是一个较进化的类群,是介于阿米芹族与前胡族Peucedaneae DC.之间的一个过渡类型。藁本属全世界60余种。我国现知有34种,占该属种数的二分之一,其中28种及2个栽培变种为我国所特有。本文比较分析藁本属的形态学性状和孢粉学性状,以小总苞片及其相关特征作为该属次级划分的主要依据,将藁本属分为两个类群,并对该属的种类作了增补,对一些种的名称、分布作了补充修订。文中还记载了4个新种。喜马拉雅藁本L.elatum(Edgew.)C.B.Clarke和开展藁本L. thomsonii C. B. Clarke var.evolutior C. B.Clarke,系我国首次记录。  相似文献   

12.
 In the present paper several species of Lycopodium L. from Sichuan, West China, are enumerated, of which 4 are described as new. They are: L. emeiense Ching et H. S. Kung, L. nanchuanense Ching et H. S. Kung, L. crispatum Ching and L. kangdingense Ching.  In the course of this study, the writer has tried as much as he could to review rather exhaustively all the Lycopodium species of the province published sporadically in the literature in the past and their identity is established on the basis of rich ma- terials available, thus a number of mistakes by earlier authors being revised.      My thanks are due to the comrades of herbaria of many botanical institutions and universities for their friendly co-operation, and to Prof. R. C. Ching of the Instituteof Botany, Academia Sinica, under whose guidance the present study was carried out.  相似文献   

13.
本文对国产石松科(狭义)进行了分类学研究,共记载本科植物6属15种3变型。文中引用新建 立的1属,即拟小石松属Pseudolycopodiella Holub,并包含1个新命名:Lycopodium neopungens H.S.Kung et L.B.Zhang,1个新变型:Palhinhaea hainanensis C.Y. Yang f.glabra H.S.Kung et L.B.Zhang和9个新 异名:Lycopodium annotinum L.var.brevifolium Christ(=L .zonatum),L.annotinum L.var.aciculare Christ (=L.zonatum),L.alticola Ching(=L.zonatum),L.simulans Ching et H.S.Kung ex Ching(=L.japoni- cum),L.interjectum Ching et H.S.Kung ex Ching(=L.japonicum),L. taliense Ching(=L.japonicum),L.pseudoclavatum Ching(:=L.japonicm.),L. pseudoclavatum Ching var.yunnanense Ching(=L.japonicum),及L. centro-chinense Ching(=L. japonicum).本文还记述了有关分类群的地理分布,并认为中国没有Dipha- siastrum wightianum(Wall.ex Grev.et Hook.)Holub的分布。  相似文献   

14.
中国绞股蓝属(葫芦科)的研究   总被引:2,自引:0,他引:2  
 The genus Gynostemma B1. consists of 13 species and 2 varieties in the whole world, among which 11 species and 2 varieties occur in China. They are distributed in S. Shaanxi and the southern part of the Yangtze River (including Taiwan province) in China and also in Korea, Japan, Sri Lanka, India and Malesia. Based on the characters and dehiscence of fruit, the genus Gynostemma B1. may be divided into two subgenera, i.e. Subgen. I. Gynostemma and Subgen. II. Trirostllum (Z. P. Wang et Q. Z. Xie) C. Y. Wu ct S. K. Chen, comb. nov.        1.  Subgenus Gynostemma. The fruits are baccate, globose, 3-umbonate and incorni culate on the apical side, indehiscent when mature. The style apex in female flower is bifid.       Type of subgenus: Gynostemma pentaphyllum (Thunb.) Mak.       This subgenus contains 8 species and 2 varieties in the world, among which 6 speci- es and 2 varieties occur in China, i.e.1.G. simplicifolium B1. (Yunnan, Hainan of Guang- dong); 2. G. laxum (Wall.) Cogn. (S. Yunnan, Hainan of Guangdong and Guangxi); 3. G. burmanicum King ex Chakr. (Yunnan), 3a. G. burmanicum var. molle C. Y. Wu (Yun- nan); 4. G. pentaphyllum (Thunb.) Mak. (S. Shaanxi and the soutern area of the Yangtze River of China), 4a. G. pentaphyllum (Thunb.) Mak. var. dasycarpum C. V. Wu (Yun- nan); 5. G. pubescens (Gagnep.) C. Y. Wu, st. nov. (Yunnan); 6. G. longipes C. Y. Wu, sp. nov. (endemic to China: Yunnan, Sichuan, Guizhou, Shaanxi and Guangxi).       2.  Subgenus Trirostellum (Z. P. Wang et Q. Z. Xie) C. Y. Wu et S. K. Chen, comb. nov.——Trirostellum Z. P. Wang et Q. Z. Xie in Acta Phytotaxonomia Sinica 19 (4): 483. 1981, syn. nov. The fruit are capsules, subcampanulate, 3-corniculate on the apical side, dehiscent when mature. The style apex in female flower is luniform and irregularly denticulate at margin, rarely bifid.       Type of subgenus: Gynostemma cardiospermum Cogn. ex Oliv.      This subgenus comprises 5 species, which are all endemic to China.  1. G. yixingense (Z. P. Wang et Q. Z. Xie) C. Y. Wu et S. K. Chen (Jiangsu and Zhejiang); 2. G. cardio spermum Cogn. ex Oliv. (Hubei, Shaanxi and Sichuan); 3. G. microspermum C. Y. Wu et S. K. Chen (S. Yunnan); 4. G. aggregatum C. Y. Wu et S. K. Chen (NW. Yunnan); 5. G.laxiflorum C. Y. Wu et S. K. Chen (Anhui).  相似文献   

15.
本文研究了黄枝油杉Keteleeria calcarea Cheng et L.K.Fu.和矩鳞油杉Keteleeria   oblonga Cheng et L. K. Fu. 的核型。  并与江南油杉 K.cyclolepis Flous.和台湾油杉  K.   formosana Mast. 的核型比较,讨论四种油杉核型进化趋势。  黄枝油杉核型公式K(2n)=   24=16m+8sm;矩鳞油杉核型公式K(2n)=24=18m+6sm。  黄枝油杉在第1、3、6号   染色体短臂上具次缢痕;而矩鳞油杉在第2、4、6号染色体短臂上具次缢痕。二者均属较对称  的“2A“核型。  四种油杉核型进化趋势是江南油杉→矩鳞油杉→黄枝油杉→台湾油杉。  相似文献   

16.
 One new species of the genus Mecodium, M. paramnioides H. G.Zhou et W. M. Chu, is described from Guangxi, China.  相似文献   

17.
国产三角瓣花属(茜草科)订正   总被引:1,自引:0,他引:1  
三角瓣花属Prismatomeris Thw.在Hooker(1873)和K.Schumann(1891)的茜草   科分类系统中隶于巴戟族Morindeae Miq.但在 Bremekamp(1966年)的分类系统中,其分类   位置未定。本属的胚根下位,花冠裂片镊合状排列和具针晶等特征与巴戟族相同,但它的花   离生,子房2室,胚珠盾形而着生于子房隔膜上半部等特征则与巴戟族明显不同。  因此,   将本属分立作族并置于Bremekamp所定界的茜草亚科Rubioideae中似乎较合适。  本文还提   供了经挑选的本属10对特征及其分类价值的说明。辨别了两个种:(1)将分布于中国的P.   tetrandra(Roxb.)K.Schum. 修订为 “P.tetrandra  (Roxb.)  K.  Schum. subsp. multiflora   (Ridley,)Y.Z.Ruan”. (2)P.  connata Y.  Z.  Ruan 被记述作新种它的热带新亚种是  P.  connata Y.  Z.  Ruan  subsp.  hainanensis Y.  Z.  Ruan。  相似文献   

18.
福建柏是我国特有裸子植物之一。它的原胚经过三次有丝分裂,产生8个游离核,然后形成细胞壁。原胚属标准型。开放层细胞与初生胚细胞的比率多数为4:4;少数为5:3或6:2。福建柏具裂生多胚,由于初生胚柄的生长速度不同,引起胚细胞的独立发育,从而产生多胚。    从早期胚胎发育的资料看,福建柏属与柏木属、扁柏属比较类似,它们应属于柏木亚科。福建柏属的系统位置,可能介于扁柏属和圆柏属之间。  相似文献   

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