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1.
四种风毛菊属植物的核型研究   总被引:14,自引:0,他引:14  
黄运平  尹祖棠   《广西植物》1994,14(4):357-360
本文首次报道产于我国华北地区风毛菊属(SaussureaDC.)4种植物的染色体数目和核型。四个种的染色体数目均是2n=26,都是2倍体。它们的核型是:糠风毛菊(S.Paleata)Zn=2x=26=18m+6sm+2st,属2B型,华北风毛菊(S.mongolica)Zn=2x=26=14m+4sm+8st,属2B型;狭苞凤毛菊(S.dielsiana)Zn=2x=26=8m+12sm+6st,属2C型;银背凤毛菊(S.nivea)2n=2x=26=18m+6sm+2st,属2A型。染色体中均未发现随体。  相似文献   

2.
本文对四川金佛山地区4种黄精属植物的核型进行了研究,其结果为:滇黄精:2n=26=6m+12sm(2SAT)+8st(2SAT);距药黄精:2n=26=10m+4sm+12st;垂叶黄精:2n=30=14m(2SAT)+4sm+10st+2t、2n=28=14m+6sm+6st+2t;湖北黄精:2n=30=12m+8sm+10st、2n=28=6m+10sm+10st+2t、2n=22=2m+12sm 8st。通过与其它地区黄精属植物染色体数目与形态的比较,发现本地区所有种类的染色体数目普遍偏高,无论在染色体基数或染色体形态上都比较接近喜马拉雅山地区分布的种类。从实验结果进一步看出了黄精属的染色体变异是相当明显的,并主要表现为非整倍性变异;在有些情况下,染色体数目与结构的变异能与某些形态学特征相联系。  相似文献   

3.
青藏高原一些种子植物的核型研究   总被引:8,自引:3,他引:5  
本文对产于青藏高原地区的11个属12个种植物进行了核型分析。大部份种为首次报道。它们的核型公式和核型不对称性如下:云雾雀儿豆Chesneya nubigena(D.Don)Ali,为2n=16=10m+6sm,属2B型;变色锦鸡儿Caragana versicolor Benth.,为2n=18=14m+4sm,2B型;异叶青兰Dracocephalum heterophyllum Benth.,  相似文献   

4.
獐牙菜属5种植物的核型研究   总被引:4,自引:0,他引:4  
首次报道了中国5种獐芽菜属植物的染色体数目和核型。它们染色体中期核和相对长度组分分别是:四数獐牙菜为2n=14=4m+8sm+2st=2L+6M2+4M1+2S;华北獐牙菜2n=28=12m+14sm+2st=6L+8M1++6S;二叶獐牙菜为2n=28=14m+4sm+10st=2L+14M2+101+sS;抱茎獐 菜为2n=6m+12sm+2st=8M2+12M;浙江獐牙菜为2n=20=8m+  相似文献   

5.
The chromosome complements of six cyprinid fishes were studied, using the routine air-drying Giemsa staining technique. The diploid chromosome number recorded is 2n = 50 (8m+18sm+14st+10t) with NF = 90 in Aspidoparia morar, 2n = 50 (8m+12sm+12st+18t) with NF = 82 in Crossocheilus latius latius, 2n = 50 (6m+12sm–16st+16t) with NF = 90 in Labeo pangusia, 2n = 70 (16m+6sm+16st–32t) with NF = 108 in Perilampus atpar, 2n = 48 (4m+6st+38t) with NF = 58 in Puntius chrysopterus and 2n = 50 (2m+2sm+4st+42t) with NF = 58 in P. tetrarupagus. Sex chromosomes are not identifiable in any of these species. A pair of marker chromosomes has been observed in all species excepting A. morar.  相似文献   

6.
本文对四川金佛山地区4种黄精属植物的核型进行了研究,其结果为:滇黄精:2n=26=6m+12sm(2SAT)+8st(2SAT);距药黄精:2n=26=10m+4sm+12st;垂叶黄精:2n=30=14m(2SAT)+4sm+10st+2t、2n=28=14m+6sm+6st+2t;湖北黄精:2n=30=12m+8sm+10st、2n=28=6m+10sm+10st+2t、2n=22=2m+12sm 8st。通过与其它地区黄精属植物染色体数目与形态的比较,发现本地区所有种类的染色体数目普遍偏高,无论在染色体基数或染色体形态上都比较接近喜马拉雅山地区分布的种类。从实验结果进一步看出了黄精属的染色体变异是相当明显的,并主要表现为非整倍性变异;在有些情况下,染色体数目与结构的变异能与某些形态学特征相联系。  相似文献   

7.
秦岭百合科部分类群的细胞学研究   总被引:3,自引:0,他引:3  
对分布于秦岭地区的4属5种百合科植物进行了细胞学研究。结果表明,这5种百合科植物均为二倍体,其核型公式分别为:大花韭(Allium macranthum),2n=14=8m 2sm 4st,“2B”核型;多叶韭(A.plurifoliatum),2n=16=14m 2sm,“2A”核型;山竹花(Disporum cantoniense),2n=16=8sm 8st(2SAT),“3B”核型;假百合(Notholirion bulbuliferum),2n=24=2m 2sm 20t(4SAT),“3B”核型;黄花油点草(Tricyrtis maculata),2n=26=8m 12sm 4st 2t,“3B”核型。除多叶韭和假百合外,其余各种的染色体数目和核型均为秦岭地区的首次报道。  相似文献   

8.
本文报道了歪头菜V.unijugaA.Br.及其近缘种V.bifoliaNakai的核型。歪头菜V.unijugaA.Br.Zn=24=8m(4SAT)+12sm+4st和2n=12=2m(2SAT)+8sm+2st.RbifoliaNabai;2n=12=4m(2SAT)+6sm+2st.核型分析表明四倍体细胞型是一个同源多倍体。二倍体四倍体细胞型分布式样表明二倍体细胞型占据着较为偏北的区域。根据核型一致性,我们认为将V.bifolia仍处理为歪头菜的变种var.bracteata更为合适。  相似文献   

9.
Fifteen species in six genera of the family Liliaceae were karyomorphologically studied. They share the complex chromocenter type of the resting nuclei and the interstitial type of the prophase chromosomes in somatic cells except that Clintonia udensis Trautv. et Mey is of the densely diffuse type and gradient type respectively. Their karyotype formulas are listed as follows: Clintonia udensis Trautv. et Mey, 2n= 14=8m+4sm+2st (2SAT), belongs to 2A type; Smilacina henryi (Baker) Wang et Tang, 2n=36=12m+16sm+6st+2t (2SAT), 2C type; Smilacina fusca Wall., 2n = 36= 14m (2SAT) + 12sm+ 10st(2SAT), 2B type; Smilacinata tsienensis (Franch.) Wang et Tang, 2n= 36=22m +2sm+ 2st(2SAT), 2C type; Smilacina atropurpurea ( Franch.) Wang et Tang, 2n=36=18m+6sm(2SAT) +12st, 2C type: Polygonatum kingianum Coll, et Hesml., 2n=30= 12m(2SAT) +6sm+ lst+2t, 2C type; Polygonatum cirrhifolium (Wall.) Royal, 2n=30= 10m+4sm+ 12st+4t, 3C type; Polygonatum curvistylum Hua, 2n=78=24m (2SAT)+ 14sm (6SAT)+40st, 3C type; Polygonatum cathcartii Baker, 2n = 32 = 12m + 6sm + 10st+ 2t + 2Bs, 2C type; Lilium henricii Franch., 2n = 24 = 2m(2SAT) + 2sm + 10st+ 10t, 3A type; Lilium bakerianum Coll. et Hesml. var. rubrum Stearn, 2n=24=4m ( 2SAT) +10st+ 10t (2SAT), 3A type; Nomocharis bilouensis Liang, 2n= 24= 2m (2SAT) +2sm+ 12st+ 8t, 3A type; Nomocharis pardanthina Franch., 2n= 24=4m (2SAT)+12st (2SAT)+ 8t, 3A type; Nomocharis sauluensis Balf. f., 2n=24=4m(2SAT) +10st (2SAT) + 10t, 3B type; Notholirion campanulatum Cotton et Stearn 2n = 24 = 2m (2SAT) + 2sm + 14st(2SAT ) + 6t, 3A type.  相似文献   

10.
五种苏铁属植物的核形态   总被引:4,自引:0,他引:4  
报道了苏铁属(Cycas L.)5种植物的染色体数目和核型,除多歧苏铁外,其他种均为首次报道。5个种的体细胞中期染色体核型公式分别为:滇南苏铁C.diannanensis K(2n)=2x=22=2m 4sm 4st 12T;潭清苏铁C.tanqingii K(2n)=2x=22=2m 8sm 2st 10T;多歧苏的Cmultipinnata K(2n)=2x=22=4m 8st 2st 8T;巴兰萨苏铁C.balansae K(2n)=2x=xx=2m 4sm 6st 10T。石山苏铁C.miquelii K(2n)=22=2m 6sm(1SAT) 4st 10T;核型均属于3B型。本研究结果支持苏铁属植物的核型从不对称进化的观点;同时,支持将巴兰萨苏铁和石山苏铁归入攀枝花苏铁组的台湾苏铁亚组的观点。  相似文献   

11.
国产七种和一变种兰属植物的核型研究   总被引:18,自引:0,他引:18  
对国产7种和1变种兰属植物,即邱北冬蕙兰Cymbidium qiubeiense、春兰C. goeringii、春剑 C.longibracteatum、线叶春兰C.serratum、蕙兰C.faberi、送春C.fabri var.szechuanicum、寒兰C.kanran、莎 叶兰C.cyperifolium 的核型进行了研究。具体结果如下:邱北冬蕙兰为2n=40=24m+12sm+4st;蕙兰为2n=40=30m+8sm+2st;送春为2n=40=26m+l0sm+4st;寒兰为2n=40=26m+12sm+2st;莎叶兰为2n=40=24m+12sm+4st;春兰为2n=40=24m+l0sm+4st+2t;春剑为2n=40=24m+l0sm+6st。线叶春兰为2n=40=28m+l0sm+2st。线叶春兰中偶尔发现染色体数有2n=41,43,60,80。  相似文献   

12.
中国甘草属植物的核型分析   总被引:15,自引:2,他引:13  
本文对国产甘草属11种,1变种进行了染色体核型分析,2n=2x=16,并对其种间关系进行了讨论。  相似文献   

13.
对菊属(Dendranthema)在中国分布的10种20个居群的材料进行了细胞学研究,首次报道了异色菊(2n=18,36)、银背菊(2n=56)、楔叶菊(2n=18,72)的染色体数目和核型,以及蒙菊(2n=18)的染色体数目新纪录,并结合前人的工作,分析了菊属的核型特征和演化趋势,及其与该属分类群的关系。  相似文献   

14.
Karyotypes of seven species, one variety and 11 forms of Sect. Thea occurring in Guizhou Province, were investigated by the wall degradation hypotonic method. The micrographs of their somatic metaphase are shown in plates 1-2 and the parameters of chromosomes according to Li and Chen (1985) are given in Table 1 and the idiograms in Fig. 1. The karyotype formulae are as follows: Camellia quinquelocularis 22=30=24m+6sm; C. tetracocca 2n=30=22m+8sm; C. taliensis 2n=30=22m+8sm; C. gymnogyna 2n=30=22m +6sm+2st and 2n=30=20m=8sm+2st; C. gymnogynoides 2n=30=22m +6sm+2st and 2n=30=20m+8sm+2st; C. jungkiangensis 2n=30=20m+8sm+2st; C. sinensis 2n =30+20m+8sm+2st, and C. sinensis var. ruoella 2n=30=20m+8sm+2st. All the karyotypes belong to Stebbins “2A”. The following main aspects are discussed. 1. Chromosome numbers: All these species are found to have 2n=30. Based on the previous and present reports, It clearly indicates that evolution of this group has taken place mainly on diploid level, but not on polyploid one. 2. The karyotype variation: Generally, all the karyotypes examined are similar, but according to symmetry of karyotype, they may be grouped into two types. One is characterized by metacentric (m)and submetacentric (sm)chromosomes, involving C. quinquelochlaris, C. tetracocca, C. taliensis, while the other is characterized by a pair of subtelocentric (st) chromosome besides m and sm chromosomes, involving C. gymnogyna, C. gymnogynoides, C. jungkiangensis, C. sinensis and C. sinensis var. ruoella. It is suggested that the mechanism for karyotype variation and speciation in Sect. Thea be pericentric inversion or reciprocal translocation. The first type is more symmetrical than the second one, and is thus relatively primitive. 3. The orginal center of Sect. Thea: Based on the analysis of karyotypes, morphological characters, geographical distribution and biochemical features, the authors consider that the Yunnan-Guizhou plateau including the contiguous area in Yunnan, Guangxi and Guizhou is the original center, from where it radiated, resulting in the present distribution pattern of Sect. Thea.4. Taxonomic treatment of Sect. Thea: The taxonomic treatment of Sect. Thea is complicated and still confused up to now. The number of species is more than 40 according to Zhang’s taxonomic system (1984), but, recently, most of them are reduced by Min (1992). Further work should be based on the concept of morphological discontinuity and in formation from other branches of sciences. Whether two types of karyotype are two biological species remains questionable.  相似文献   

15.
青海可可西里地区植物的染色体报道(1)   总被引:9,自引:2,他引:7  
  相似文献   

16.
报道了国产10种锦鸡儿的染色体数目,并对其中9种的核型进行了研究。这9个种的核型公式分别为:荒漠锦鸡儿(Caragana roborovskyi),2n=16=10m(2SAT)+6sm;川西锦鸡儿(C. erinacea),2n=16=10m+6sm;密叶锦鸡儿(C. densa),2n=16=10m(2SAT)+6sm;刺叶锦鸡儿(C. acanthophylla),2n=16=12m+4sm;柄荚锦鸡儿(C. stipitata),2n=16=10m+6sm;甘蒙锦鸡儿(C. opulens),2n=16=12m(2SAT)+4sm;白皮锦鸡儿(C. leucophloea),2n=32=22m(4SAT)+10sm;北疆锦鸡儿(C. camilli-schneideri),2n=32=20m(4SAT)+12sm;中亚锦鸡儿(C. tragacanthoides),2n=32=20m(2SAT)+10sm+2st+2B。白毛锦鸡儿(C.licentiana)2个居群的染色体数目均为2n=32,为四倍体。研究结果表明,锦鸡儿属的核型一般比较对称,核型上的特化往往与其形态上的特化相关联,但也有例外。从倍性水平上来看,二倍体类群多是一些羽状叶的种,在分布上倾向于亚洲东部其祖先分布区,而四倍体的种类多是一些假掌状叶的类群,分布于西部干旱生境中,在形态上也表现的较为特化。这也符合锦鸡儿属的演化趋势。  相似文献   

17.
作者研究了中国产黄精属8个种的核型,结果如下:热河黄精,2n=22=14m(4SAT)+2sm(SAT)+6st;多花黄精,2n=22=8m+8sm(2sc)+6st(2sc);玉竹,2n=20=12m+8sm;小玉竹,2n=20=8m(2sc)+8sm+4st;长梗黄精,2n=16(18)=10m+4sm+2st;二苞黄精,2n=18=8m+10sm;黄精,2n=24=4m+8sm(2sc)+12st(2sc);卷叶黄精,2n=20=12m(2sc)+8sm。作者推测该属的染色体基数x=10。染色体数目进化的趋势是:非整倍性变异为主,整倍性变异为次;上升性变异为主,下降性变异为次。按照核型不对称程度,8个种的核型可分为三个等级。核型由对称向不对称进化是与染色体数目的进化趋势大体上相关的。  相似文献   

18.
报道了国产黄耆属(Astragalus)6种植物的染色体数目和核型。结果表明,这6种黄耆属植物均为二倍体,其核型公式分别为:甘青黄耆(A.tangutlcus),2n=16=6m 8sm 2t,“3A”核型;悬垂黄耆(A.dependens),2n=16=10m 6sm,“2A”核型;四川黄耆(A.sutchuenensis),2n=16=8m 8sm,“2A”核型;萨雷古拉黄耆(A.pavlovlanus),2n=16=12m 4sm,“1A”核型;喜石黄耆(A.petraeus),2n=16=14m 2sm,“1A”核型;拟糙叶黄耆(A.pseudoscaberrimus),2n=16=14m 2sm,“1A”核型。这6种黄耆属植物的染色体数目和核型均为首次报道。  相似文献   

19.
金伟  陈辰  王恩波 《植物研究》1998,18(2):163-172
对我国辽宁地区毛莨科(Ranunculaceae)乌头属(Aconitum) 6个种的染色体的数目和形态进行了研究,并进行了核型分析。其染色体基数为X=8,核型公式为:两色乌头:2n=2x=2m+10sm+4st;蛇岛乌头为:2n=4x=10m+20sm(SAT)+2st+2B;黄花乌头为:2n=4x=4m+12sm(SAT)+8st+1B;北乌头三倍体为:2n=3x=2M+4m+18sm;北乌头4倍体为2n=4x=4m+28sm。同时,对乌头属下某些种的分类学问题进行了探讨。  相似文献   

20.
分析了葱属(Allium L.)5个种6个居群的细胞学特征。这些种是太白韭(A.prattii C.H.Wright apud Forb.et Hemsl.),该种包括两个居群(Ⅰ、Ⅱ)。居群Ⅰ:K(2n)=2x=16=9m+1m(SAT)+4sm+2st,居群Ⅱ:K(2n)=2x=16=10m+5sm+1sm(SAT);天蒜(A.paepalanthoides Airy-Shaw):K(2n)=2x=16=14m+2sm+3B;多叶韭(A.Plurifoliatum Rendle):K(2n)=2x=16=14m+2sm+1B;合被韭(A.tubiflorum Rendle):K(2n)=2x=16=12m+2m(SAT)+2sm;峨眉韭(A.omeiense Z.Y.Zhu):K(2n)=2x=22=2m+18sm+2T(SAT)。所研究的6批材料均为二倍体,除合被韭的核型为“1A”型,蛾眉韭的核型为“3A”型外,其余4批材料的核型均为“2A”型。其中峨眉韭和多叶韭的染色体数目为首次报道,天蒜和多叶韭的细胞中首次发现B染色体,并对其相互关系进行了探讨。  相似文献   

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