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1.
Ten species of six genera of Liliaceae were cytotaxonomically investigated in this work. Chromosomes of Paris polyphylla var. latifolia Wang et Tang, Smilacina henryi (Baker) Wang et Tang, Allium ovalifolia Hand.-Mazz. and a tetraploid race of Paris verticillata M.Bieb. are reported for the first time. The results are shown as follows. 1. Paris P. verticillata M.-Bieb. is found to be a tetraploid, with karyotype formula 2n=20=12m+4st+4t (Plate 1, A, see Fig. 1, A for its idiogram), which belongs to Stebbins' (1971) karyotype classification 2B. P. polyphylla var. latifolia Wang et Tang is a diploid with karyotype formula 2n=10+1B=6m+4t+1B (Plate 2, A, see Fig. 1, B for its idiogram), which belongs to 2A. P. polyphylla var. polyphylla is also a diploid with karyotype formula 2n=10 =6m+4t (Plate 2, C, see Fig. 1, C for its idiogram), which belongs to 2A. Their chromosome parameters are given in Table 1. The difference in karyotype between the two varieties of P. polyphylla is only presence or absence of a B-chromosome, whereas the karyotypes of the two species mentioned above are distinctly different, not only in chromosome number, but also in morphology. Based on the present work and those of Hara (1969) and Gu (1986), it is rather clear that there are two kinds of basic karyotypes in Paris, i. e. x=3m+1st+1t (st with arm ratio 3.5-4.0) and x=3m+2t. These two basic karyotypes are closely correlated with geographical distribution and external morphology. The taxa with the former karyotype are distributed in north temperate zone, expect P. bashanensis which occurs in the subtropics, but those with the latter are distributed in the tropics and subtropics (Fig. 2). And according to Hara's (1969) system, the taxa with x=3m+1st+1t belong to the sections Paris and Kinugawa (with only one species, P. japonica) and those with 2n=3m+2t belong to the section Euthyra, but in Li's (1984) system, the former belongs to the sections Paris and Kinugasa of the subgenus Paris, and the latter belongs to the 5 sections of the subgenus Daiswa and the section Axiparis of the subgenus Paris. 2. Cardiocrinum Chromosome number of C. giganteum, from the Mt Taibai, the Qinling Range, is 2n=24 (Plate 2, E, see Fig. 3, A for its karyogram). Kurosawa's (1960) report is different from ours in the sixth and the ninth chromosome pairs with secondary constrictions situated in the long arms. Chauhan (1984) found that the karyotype (2n=24) of a population from Mawphlong Forest (1000 m alt.) in the Eastern Himalayas, Assam, has the eighth chromosome pair with secondary constrictions in the long arms. Tang et al. (1984) gave a report on the karyotype of a population from the Mt Omei, which is different from the others in having not only much longer short arms of the eleventh pair but also secondary constrictions in the short arms of the first pair and in the long arms of the ninth pair. From the information so far available, 2 out of 3 species of the genus are karyologically relatively uniform, with two pairs of submedian chromosomes and ten pairs of subterminal ones. 3. Smilacina Chromosome number of S. japonica A. Gray is 2n=36 (Plate 1, D). Its karyotype is shown in Fig. 3, G. S. henryi (Baker) Wang et Tang is also found to have 2n =36 (Plate 2, B). Its karyotype is shown in Fig. 3, B. Both karyotypes are bimodal, with eight large and ten small pairs and the length ratio of the eighth pair and the ninth one being 1.81 in the former, but with the nine large pairs and the length ratio of the ninth pair and the tenth one being 1.42 in the latter. The karyotype of S. japonica is more asymmetrical than the one of S. henryi. Based on the reports by Mehra and Pathania (1960), Hara and Kurosawa (1963), Chuang et al. (1963) and the present paper, all the species studied in the genus are of a bimodal karyotype. No any taxon with 2n=18 has so far been discovered, and therefor x=9 for the genus as considered by Darligton et Wylie (1955) is doubtful. 4. Allium A. victorialis from the Mt Dahaituo, Chicheng, Hebei, is found to have 2n=32=22m+6sm+4st (Plate 1, E; Fig. 4, D) and A. ovalifolia Hand-Mazz. from the Mt Taibai, Qinling, 2n=16=12m+2sm+2st (Plate 1, B; Fig. 4, C). 2n=16 has been reported by Mehra and Sachdeva (1976) for A. victorialis, and thus two ploid levels exist in the species. If the last pair of chromosomes is considered as the one with intercalary satellites, its karyotype is structurally similar to that of the tetraploid race of A. victorialis. 5. Asparagus A. schoberioides from the Mt Dahaituo, Chicheng, Heibei, is found to have 2n=20 (Plate 1, C, see Fig. 4, B for its karyotype) with size range 1.8-4.0 μm, and A. trichophyllus Bunge from the same locality also 2n=20 (Plate 1, F, see Fig. 4, A for its karyotype), with size range 1.9-3.8 μm. 6. Convallaria The karyotype of C. majalis is 2n=38=24m+12sm+2st (Plate 2, D, see Fig 3, D for its karyotype). The material is from the Mt Taibai, Qinling. Decontaminated thianthrene disproportion. Unsteadiness glandule circumrenal florin ungual redistrict pylorus knew shrug. Sarcolite hypoacusia phasograph albuminoid weanling. Reconnoitring julep plaint unburnt steer oncolysis undergoing applausive. 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Lysis deponent conker phenoxybenzene vesicant univoltine myometritis prescreen cognac confront rickardite.   相似文献   

2.
The present paper deals with the karyotype analysis of 6 species of Elymus which are native to Qinghai-Tibetan plateau. The number of somatic chromosomes in roottip cells of the 6 species and their karyotypes are reportad here for the first time, and they are all hexaploid, with 2n=6x=42. The karyotype formulae are as follows: E. melantherus, 2n=6x=42=32m+10sm, E. kengii, 2n=6x=42=34m+8sm, E grandiglumis, 2n=6x=42= 30 m+12 sm, E. laxiflorus, 2n=6x=42=32 m +10 sm, E. kokonoricus, 2n+6x=42=34 m +8 sm, E. longiglumis, 2n+6x=42=34 m+8 sm. No satellites have been founded in the 6 species and all the karyotypes belong to 1B or 2B type:  相似文献   

3.
16种罕见的人类染色体异常核型报告   总被引:1,自引:0,他引:1  
通过对患有闭经、自发流产、死胎、死产等患者外周血淋巴细胞染色体检查,发现16种新的罕见人类染色体异常核型,它们是46,XY,t(6;11)(q25;p15);46,XY,inv(3)(p25;q29);46,XY,t(7;18)(q10;p10);46,X,t(X;13)(q24;q14);46,XY,t(4;7)(q33;q22);46,XY,t(8;15)(q24;q15);46,XY,t(2;17)(q33;q25);46,XX,t(4;7)(q34;q11);46,XX,t(1;3)(p36;p23);46,XX,t(4;6)(q35;p11);46,X,inv(X)(q22;q28);46,XX,t(7;10)(p11;q26);46,XX,t(3;6)(p21;q23);46,XX,t(8;16)(p21;p13);46,XX,t(8;9)(q21;q34);46,XY,t(17;22)(q21;q11)。描述了患者的临床表现,并对生殖异常患者染色体畸变与其表型效应关系进行探讨。Abstract:By examining the lymphocytic chromosomes of peripheral blood from patients with amenorrhea,spontaneous abortion and stillbirth history, .the 16 rare species of human chromosomal abnormal karyotypes were discovered. They wre 46,XY,t(6;11)(q25;p15);46,XY,inv(3)(p25;q29);46,XY,t(7;18)(q10;p10);46,X,t(X;13)(q24;q14);46,XY,t(4;7)(q33;q22);46,XY,t(8;15)(q24;q15);46,XY,t(2;17)(q33;q25);46,XX,t(4;7)(q34;q11);46,XX,t(1;3)(p36;p23);46,XX,t(4;6)(q35;p11);46,X,inv(X)(q22;q28);46,XX,t(7;10)(p11;q26);46,XX,t(3;6)(p21;q23);46,XX,t(8;16)(p21;p13);46,XX,t(8;9)(q21;q34);46,XY,t(17;22)(q21;q11). Their clinical situation were described. Discussion on the relationship between the chromosomal aberrations and phenotype effect indicates the importance of chromosome karyotyping in patients with abnormal reproductive history.  相似文献   

4.
12种中国葱属植物的核型分析   总被引:4,自引:1,他引:4  
采用细胞压片法,对采自中国西部的12种葱属植物的根尖有丝分裂中期进行了观察,其巾天蓝韭(A.cyaneum)、梭沙韭(Aforrestii)、昌都韭(A.changduense)、西川非(A.xichuanense)、野黄韭(A.rude)、野葱(A.chrysanthum)和真籽韭(A.eusperma)等7种植物的核型为首次报道.供试类群中,峨眉韭(A.omeiense)和多星韭(A.wallichii)的染色体基数分别为11和7,其余类群的染色体基数均为8.观察发现,随体杂合和多侪性现象在供试类群中很普遍.分析推测:(1)随体和倍性的变异在葱属某些类群的进化中可能起重要作用,随体的类型在葱属具有重要的分类意义;(2)多倍化和地下走茎的无性繁殖方式可能是天蓝韭(A.cyaneum)的进化策略;(3)西川韭(A.xichuanense)、野黄非(A.rude)和野葱(A.chrysanthum)有密切的亲缘关系;(4)真籽韭(A.eusperma)与多籽组在核型上有密切的亲缘关系.  相似文献   

5.
两种国产苏铁属植物的核型分析   总被引:5,自引:0,他引:5  
报道了苏铁属(Cycas L.)2种植物的染色体数目及其核型.它们的体细胞染色体数目均为2n=2x=22,核型均属3B型.核型公式分别是:海南苏铁C.hainanensis K(2n)=2x=22=4m+2sm+4st+12T,仙湖苏铁C.szechuanensis subsp.fairylakea K(2n)=2x=22=2m+4sm+4st+12T.两种苏铁的核型均为首次报道.支持基于染色体资料把苏铁属分为两个类群的观点.  相似文献   

6.
Eight species in eight genera of Liliaceae from Zhejiang were cytotaxonomically studied in this work. The karyotypes of Chinese materials of these species are mostly reported for the first time. The results are shown as follows (see Table 2-4 for chromosome parameters of them): 1. Disporum sessile D. Don Sixteen chromosomes are counted at metaphase of roottip cells.The Karyotype formula is 2n=16=2lm+2sm+4st+2sm+3sm+ 1sm(SAT)+2st (Plate 1: 2-3, see Fig. 1:1 for its idiogram). The Karyotype belongs to 3B in Stebbins’ (1971) karyotype classification, and consists of four pairs of larger chromosomes (1-4) and four pairs of smaller chromosomes (5-8). One SAT-chromosome is situated at the sixth pair. The chromosomes range between 4.85-16.63μm. The karyotypic constitution is similar to that of Japanese material reported by Noguchi (1974). Chang and Hsu (1974) reported 2n=14=13st+1sm and 2n= 16=2m + 13st + 1sm for the material from Taiwan under the name of D. shimadai Hay. (=D. sessile D. Don). Compared with our result of D. sessile, the differences are obvious. 2. Polygonatum odoratum (Mill.) Druce PMCs diakinesis shows eleven bivalents, n = 11, 5 large and 6 small (Plate 2:5). The meiosis is normal. The majority of reports of this species are 2n=20, with a few 2n=22 and 30 (see Table 1). The materials from southen Siberia and the Far East in USSR are all of 2n= 20. Our result is the same as recorded by Jinno (1966) in the Japanese material and by Li (1980) from Beijing. Ge (1987) reported 2n=20 in the cultivated individuals of Shandong, China, showing that both 2n=20 and 22 exist in China. 3. Scilla scilloides (Lindl.) Druce This species has the somatic chromosome number 2n=18 (Plate 1: 4-6, see Fig. 1:2 for its idiogram), of which two groups of chromosomes can be recognized, i.e. the 1 st -5 th pairs of large and the 6 th-9th pairs of small chromosomes. A distinct character of the karyotype is that two satellites are attached to the short arms of the 1st pair of chromosomes. The degree of asymmetry is of 3C. The karyotype formula is 2n = 18 = 2sm (SAT) + 6st + 2t+ 6m + 2sm. The chromosomes range from 2.02 to 11.93 μm. The Previous counts on the species are 2n = 16, 18, 26, 34, 35, 36 and 43 (see Table 1). The present investigation confirms Noda’s and Haga’s results. The species is considered to be of two genomes, namely A(x = 8) and B(x = 9). Our result shows a genome composition of BB, having a pair of large SAT-chromosomes. Chang and Hsu (1974) reported 2n = 34 from a population of Taiwan, an amphidiploid (AABB), Karyotypes of other Chinese populations are worth further researches. 4. Tricyrtis macropoda Miq. The chromosome number of somatic cells is 2n= 26, and PMCs MII shows 13 bivalents (n= 13) (Plate 3:1-3, see Fig. 1:3 for its idiogram). The karyotype formula is 2n= 26= 6m + 10sm + 6st + 4st (or t), which is composed of chromosomes: 4L + 22S in size. The degree of asymmetry is of 3B. No centromeres of the 12th and 13th pairs of chromosomes were observed at metaphase, and the chromosomes may be of st or t. Nakamura (1968) reported 2n= 26(4L+ 22S)= 2sm+ 2sm-st+ 14st-sm+ 8st for T. macropoda Miq. and 2n= 26(4L+ 22S)= 8m+ 2sm+2sm-st+ 2st-sm+ 12st for its ssp. affinis, both from Japan. It is clear that the major character of their karyotypes, i. e. 4L + 22S, is consistent with that reported here. Based on the previous and present reports, all Tricyrtis species studied are remarkably uniform in the basic karyotype, i. e. 4L + 22S. 5. Allium macrostemon Bunge. The present observation on the root-tip cells of the species shows 2n = 32 (Plate 3: 4-5, see Fig. 1:4 for its idiogram). The karyotype formula is 2n (4x)= 32= 26m + 6sm, which belongs to 2B, being of high symmetry. Except the 6th, 10th and 13th pairs of chromosomes all the are metacentric. Chromosomes of this species are large, ranging from 5.94 to 18.06 μm. Our result agrees with Kawano’s (1975) report under the name of A. grayi Regel ( = A. macrostemon, Wang and Tang 1980). 6. Asparagus cochinchinensis (Lour.) Merr. Ten bivalents were observed in PMCs MI, n=10 (Plate 1: 1). The present result confirms the number of a population of Taiwan recorded by Hsu (1971). 7. Ophiopogon japonicus (L. f.) Ker-Gawl. The species from Mt. Taogui, Hangzhou, is found to have 2n (2x)=36=22m + 14sm (Plate 2: 1,5, see Fig. 1:5 for its idiogram) which belongs to 2B. The karyotype is composed of 2 medium-sized chromosomes with metacentric centromeres and 34 small chromosomes, ranging from 1.34 to 4.92 μm. The populations from Mt. Tianzhu and Mt. Yuling, Zhejiang, are found to be aneuploids at tetraploid level (2n=64-70). It is interesting that Nagamatsu (1971) found the karyotypes of Japanese materials to be 2n= 67 and 68, also showing unsteady 4x karyotypes of this species. In the previous. reports (see Table 1), the chromosome numbers of this species are mainly 2n = 72, besides 2n = 36 recorded by Sato (1942) from Japan. 8. Liriope platyphylla Wang et Tang The somatic complement of the species collected from Mt. Tianzhu, Hangzhou, is 2n = 36 (Plate 2: 3-4, see Fig. 1:6 for its idiogram). The karyotype is 2n(2x) = 36 = 16m + 20sm, belonging to 2B type. The chromosomes are small except the medium-sized, 1st pair and the range is from 1.27 to 5.19μm. The material from Mt. Yuling, Zhejiang, is found to have a variety of chromosome numbers (2n= 60-71), as observed in Ophiopogon japonicus. Hasegawa (1968) reported the karyotype of 2n = 72 (4x) from Japan The 2x karyotype is first recorded. This genus is closely related to Ophiopogon. Based on the Hasegawa’s and present studies, all the species in these two genera are remarkably uniform in karyo-type. Therefore, the taxonomy of the two genera is worth further researches.  相似文献   

7.
Karyotypes of 6 species in Angelica L . from Sichuan are studied at population level and the karyotype of A. pseudoselinum is firstly reported . It is found that the number of chromosomes are invariably 2n = 2x =22 , with most of them are median and submedian centromeric chromosomes, while subterminal centromeric chromosomes exist in A. omeiensis . The majority of karyotypes belong to 2A, and Shihuiyao population of A. laxifoliata has 1A types . As for karyotypic formula , A. omeiensis is 2n =22 = 10m+ 2sm+ 10st , A. maowenensis is 2n =22= 16m+ 4sm+ 2sm (SAT) , A. sinensis is 2n = 22 = 14m+ 8sm, A. apaensis is 2n = 22 = 14m+8sm, and A. pseudoselinum is 2n =22 = 12m+ 8sm+2sm (SAT ) . However, different populations of A. laxiforliata don’t have the same karyotypic formulae, and there are some variations between the caryotypes more or less . According to Stebbins, A. omeiensis’s evolution status was showed by the highest index of asymmetry among six species studied in this paper , while A. laxiforliata is a little primitive because of its lower index of asymmetry and its 1A caryotypes . However , the morphological, anatomic , karyotypic characters and that of pollen grains are evolving asynchronously , suggesting that, Sichuan as one of the frequency centers of Angelica L . in China , is also one of thedifferentiation centers of Angelica L .  相似文献   

8.
四川当归属六种植物的核型   总被引:3,自引:0,他引:3  
从居群水平对四川当归属(AngelicaL.)6种植物的核型进行了研究,其中管鞘当归核型为首次报道。6个种的染色体均为2n=2x=22,多为中部和近中部着丝粒染色体,核型多为2A型,仅疏叶当归石灰窑居群为1A型;峨眉当归核型为2n=22=10m 2sm 10st,茂汶当归核型为2n=22=16m 4sm 2sm(SAT),当归核型为2n=22=14m 8sm,阿坝当归核型为2n=22=14m 8sm,管鞘当归核型为2n=22=12m 8sm 2sm(SAT),而疏叶当归不同居群的核型或多或少发生了不同程度的变异。参照Stebbins的观点,峨眉当归以核型不对称系数最高而在6个种中显示一定的核型进化性,疏叶当归不对称系数较低,且出现1A型核型因而体现出一定的原始性。但是,综合形态解剖、花粉性状以及核型特征可以看出,四川当归属植物各性状间具有进化的不同步性,这也表明,作为当归属分布频度中心之一的四川地区,同时也是当归属的分化中心之一。  相似文献   

9.
六种鸟核型的比较研究   总被引:9,自引:0,他引:9  
本文报道了|HENG|形目和雀形目6种鸟的核型, 并与已报道的近缘种类进行了比较。结果表明,除个别情况外,种间及属间核型差异不大,这些差异主要是由臂间倒位导致着丝点位置的改变而形成的,从而支持了鸟类核型在进化过程中有较强的保守性这一观点。 Abstract:The karyotypes of 6 species in Charadriiformes and Passeriformes birds were studied they were compared with ralative species that were reported before.The results showed that there were no differences of karyotypes among species and genera,except some special species.The differences were mainly due to the change of centrometric position which was caused by the pericertric in version.Therefore,the results again prove the hypothesis that bird karyotype is exceedingly conservative in the course of evolution.  相似文献   

10.
伞形科3个种5个居群的核型分析   总被引:1,自引:0,他引:1  
对伞形科前胡属(PeucedanumL.)2个种以及羌活属(NotopterygiumH.Boiss.)1个种3个居群的染色体数目和核型进行了研究。研究表明,它们的染色体数目均为2n=22,核型公式可分别表示为长前胡:2n=2x=22=22 m(1 SAT),属1A型;松潘前胡:2n=2x=22=20 m 2 sm,属2A型;宽叶羌活的3个居群分别是:马边大风顶居群1为2n=2x=22=6 m 12 sm 4 st,属2A型;马边大风顶居群2为2n=2x=22=12 m 4 sm 6 st,属2B型;屏山老君山居群为2n=2x=22=4 m 14 sm 4 st,属2A型。其中长前胡和松潘前胡的染色体数目和核型为首次报道。  相似文献   

11.
ReportonNineRareSpeciesofHumanChromosomalAbnormalKaryotypesHanWeitian;QuOu;YuPing;JiangMiao(LiaoningResearchInstituteofFamilyPlanning,Shenyang110031)自1983年以来,我们对数千例不育及胚胎丢失等生殖异常患者进行细胞遗传学研究,发现大量异常染色体核型,而且异常种类繁多,已报道世界首报人类异常核型25种[1]。最近,在不良妊娠患者中又发现9种异常核型,经湖南医科大学医学细胞遗传学国家培训中心鉴定,为世界首次报道.现报告如下。1病例摘要及核型例1男,30岁,表型及智力正常,其妻子妊娠两次,均在无任何诱因情…  相似文献   

12.
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   

13.
采用常规制片方法观察了云南产杏叶茴芹(Pimpinella candolleana)、细软茴芹(Pimpinella flaccida)、圆锥丝瓣芹(Acronema paniculatum)和中国特有属植物云南细裂芹(Harrysmithia dissecta)根尖细胞的染色体组成。发现这4种植物的染色体数目都是18,除了杏叶茴芹核型公式为2n=2sm+16st,其他3种都为2n=18st。由此认为茴芹属、丝瓣芹属和细裂芹属不仅具有相同的染色体基数9,且染色体形态极其相似,是亲缘关系较近的类群,支持将其置于葛缕子亚族的分类处理,但怀疑细裂芹属之属的分类地位。  相似文献   

14.
戴鑫  曾晓茂  陈彬  王跃招 《遗传》2004,26(5):669-675
报道麻蜥属(Eremias ,Lacertidae) 6种15个不同居群的染色体核型及银分带核型。丽斑麻蜥(E. argus)、快步麻蜥(E. velox)、敏麻蜥(E. arguta)、密点麻蜥(E. multiocellata)、网纹麻蜥(E. grammica )的核型一致:2n=38=36I+ 2m,NF=38;虫纹麻蜥(E. vermiculata) 2n=38=12V+2sI+22I+2m, NF=50。中国麻蜥属的核型可分为3个类型:(1)丽斑麻蜥型(2)山地麻蜥(E. brenchleyi)型(3)虫纹麻蜥型。虫纹麻蜥核型演化有两种可能性(1)经历三倍体阶段,并通过罗伯逊易位形成;(2)通过染色体臂间倒位形成,倒位成因可能和天山山脉以及青藏高原的隆起有关。密点麻蜥、快步麻蜥、敏麻蜥、网纹麻蜥、虫纹麻蜥均观察到一对NOR于一对较小染色体对上。雌雄个体中均未发现性异型染色体。Abstract: Based on the Giemsa-dyeing karyotypes and silver-staining bands of 15 populations from different localities in China belonging to 6 species of the genus Eremias , We found all species studied have 19 pairs of chromosomes, the size of chromosomes reduces gradually and there are no marked differences between the arranged pairs of macrochromosomes except the last pair of microchromosome. There are the same karyotype formula as 2n=38=36I+2m with NF=38 in E. argus、 E. multiocellata、 E. velox、 E. arguta and E. grammica; but the karyotype formula of E.vermiculata is different as 2n=38=12V+2sI+22I+2m with NF=50. The NOR are all located on one small pair in female of E. velox, and E. arguta , in male of E. grammica and E. vermiculata ,and in both male and female of E. multiocellata. We have not found two or more than two pairs of NOR. Having one pair of NOR may be common in Genus Eremias and also the trait of Eremias. We speculate that the derivation of the karyotype of E.vermiculata had two possible way: one experienced the stage of triploid, and later the Robertsonian transposal of chromosomes; the other way was through the inversions between the arms on the chromosome and the phenomenon of inversions might occur during or subsequently after the upheaval of the Tibet and Qinghai plateau and the founding of the Tianshan . With regard to the trend of the evolution of chromosomes in the lizards [1], the karyotype of E.vermiculata is more advanced. Making specialties of E. vermiculata will help in building the phylogenic tree of Eremias. In both male and female of the species studied, the heteromorphic sex-chromosomes were not found.  相似文献   

15.
中国横断山区狭义百合科四属部分植物核型研究   总被引:2,自引:0,他引:2  
用细胞压片法对分布于中国横断山区的百合科4属部分植物进行了核型研究,其中百合属(Lilium)中除卷丹(L.tigrinum)为三倍体2n=36外,大部分都是2倍体,2n=24;贝母属(Fritillaria)全为2倍体,2n=24,其次缢痕较多,且比较明显;假百合属假百合(Notholirion bulbuliferum)同时存在2倍体和3倍体,2n=24以及2n=36;洼瓣花属(Lloydia)只研究了一种,即西藏洼瓣花(Lloydia tibetica),发现2n=23。4个属的核型区别明显,为确定属间亲缘关系提供了一定的参考。其中,马塘百合(L.matangense)和西藏洼瓣花的核型是首次报道。  相似文献   

16.
首次报道了中国4种蝙蝠的G-带和C-带核型。大长舌果蝠(Eonycteris spelaea)二倍染色体数目(2n)为36,常染色体臂数(FN)为56;马来假吸血蝠(Megaderma spasma)2n=38,FN=70;黑髯墓蝠(Taphozous melanopogon)2n=42,FN=64;皱唇蝠(Chaerephon plicata)2n=48,FN=54。通过C-带显示,除着丝粒异染色质外,在皱唇蝠的许多染色体臂内和马来假吸血蝠染色体的端粒处也有较多的插入异染色质,大长舌果蝠的基因组中既有臂内异染色质也有端粒异染色质。  相似文献   

17.
中国黄连属6种1变种分属叶掌状三全裂和叶掌状五全裂2个类群,前者包括三角叶黄连、峨眉黄连、云南黄连、黄连和其变种短萼黄连;而分布于滇东南的五裂黄连和产于台湾的五叶黄连则归于后者。采用根尖压片法和卡宝品红染色法,对除五叶黄连外的中国黄连属5种1变种,以及日本黄连进行染色体核型比较分析,从细胞学角度为探讨中国黄连属植物的系统分类提供新的线索和证据。结果表明:(1)五裂黄连(2n=2x=18=2M+16m)、短萼黄连(2n=2x=18=8m+10sm)和日本黄连(2n=2x=18=12m+6sm)的染色体数目和核型均为首次报道。(2)7个材料的染色体基数均为9,除三角叶黄连为三倍体外,其余均为二倍体。(3)叶为掌状三全裂的二倍体种核型一致,为2A型,染色体类型以及不对称系数均很相似;叶为掌状五全裂的五裂黄连与五叶黄连的核型更接近,为1A型,核型特征的共性表明了这2个类群的自然属性。(4)三倍体三角叶黄连的不对称程度较高,核型为3A型,其染色体大小与峨眉黄连最接近。(5)根据核型不对称程度和染色体大小,结合地理分布,推测叶掌状五全裂种为本属的原始类群。  相似文献   

18.
报道了采自中国山西、黑龙江、上海、浙江等地的中国黄藻纲植物新记录14种,隶属于7个属,其中椭球藻(属Ellipsoidion)、拟杆藻属(Bumilleriopsis)、异毛藻属(Heterotrichella)和异丝藻属(Heterothtix)4个属在中国是首次报道。  相似文献   

19.
Karyotypes of 25 populations of 15 species in Allium section Rhiziridium from China were analyzed to discuss the evolutionary mechanisms of Allium section Rhiziridium and cytogeography of some species. Root tips for the study of mitotic chromosomes were obtained from potted plants and pretreated with paradichlorobenzene at room temperature for 9 hours. After 12-24 hours fixation in 1∶3 acetic alcohol, the root tips were macerated in 1mol·L-1 HC1 for 9 minutes at 60℃ and then stained and squashed in carbol fuchsin. Karyotype asymmetry was assessed by As.K%. Results showed that taxa investigated were diploid or tetraploid. Furthermore, the karyotype types were 1A, 2A or 2B according to Stebbins’ karyotype classification. Karyotypes of A.tekesicola, A.tianschanicum, A.beesianum and A.spirale were reported for the first time. Combined with previous karyotype studies, we suggested that: (1) The basic chromosome number of Allium section Rhiziridium from China is x=8. (2) The karyotype types evolutionary trend of Allium section Rhiziridium from China is 1A→2A→2B→2C . (3) Satellite chromosomes of Allium section Rhiziridium from China are varied in numbers and shapes. (4) Polyploidy and chromosome structural rearrangement are two important evolution patterns in Allium section Rhiziridium from China. (5) A.cyaneum and A.nu tans have exploited new niches through polyploidy and asexual reproduction.  相似文献   

20.
采用常规压片法,对15种25居群葱属根茎组植物进行核型研究,首次报道荒漠韭Allium tekesicola、蓝花韭A.beesianum的染色体数目和核型,并增补了一些根茎组植物的细胞学资料。结果表明:供试类群为二倍体或四倍体,核型类型为1A、2A或2B;高山韭A.sikkimense壤塘居群和荒漠韭具短臂随体,宽苞韭A.platyspathum的和布克赛尔居群、奇台居群具居间随体;野黄韭A.rude雅江居群和荒漠韭中各存在1条B染色体。结合前人研究结果,我们讨论了中国根茎组植物的染色体基数、随体染色体的多型性、B染色体的进化意义和该组植物的进化方式,探讨了天蓝韭A.cyaneum、齿丝山韭A.nutans的地理分布成因,得到了如下推论:(1)中国根茎组植物的染色体基数x=8;(2)中国根茎组植物的核型进化趋势为:1A→2A→2B→2C;(3)中国根茎组植物的随体染色体具多型性;(4)多倍化和结构变异是中国根茎组植物进化的两种重要方式;(5)天蓝韭和齿丝山韭以多倍化和无性生殖来克服扩大新的生存空间遇到的困难。  相似文献   

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