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1.
广西苦苣苔科四种植物的染色体数目报道   总被引:4,自引:0,他引:4  
首次报道了产于广西的苦苣苔科(Gesneriaceae)4属4种植物的染色体数目。其中,(1)单座苣苔属(Metabriggsia):单座苣苔(M.ovalifolia)的染色体数目2n=24;(2)异裂苣苔属(Pseudochirita):异裂苣苔(P.guangxiensis)的染色体数目为2n=28;(3)长蒴苣苔属(Didymocarpus):东南长蒴苣苔(D.hancei)的染色体数目为2n=20;(4)唇柱苣苔属(Chirita):弄岗唇柱苣苔(Ch.longgangensis)的染色体数目为2n=28。4种植物的染色体大多数为小型染色体。  相似文献   

2.
染色体数目和倍性是系统与进化生物学和遗传学研究中十分重要的基础信息。为探索半蒴苣苔属染色体制片的适宜条件以及染色体数目的进化模式及其与物种的进化关系,该研究基于半蒴苣苔属染色体数目的进化历史,并根据该属植物具有叶片扦插繁殖的特性,采用叶片水培生根法获取半蒴苣苔(Hemiboea subcapitata)、弄岗半蒴苣苔(H.longgangensis)、龙州半蒴苣苔(H.longzhouensis)、江西半蒴苣苔(H.subacaulis var.jiangxiensis)、华南半蒴苣苔(H.follicularis)和永福半蒴苣苔(H.yongfuensis)6种植物的根尖材料,分析不同实验条件对染色体制片效果的影响,对染色体制片实验的条件进行优化及染色体计数,结果表明:(1)9:30—10:00取材,解离10 min以及染色15 min为半蒴苣苔属染色体制片的适宜条件。(2)上述6种半蒴苣苔属植物均为二倍体,染色体数目均为32(2n=2x=32)。(3)除个别物种染色体数目有变化以外,该属大部分物种染色体数目可能为2n=2x=32且染色体数目变化可能是非整倍化的作用,与物种进化没有明...  相似文献   

3.
本文报道了苦苣苔科直瓣苣苔属Ancylostemon、筒花苣苔属Briggsiopsis和吊石苣苔属Lysionotus 中4个种的染色体数目和核形态。凹瓣苣苔A.aureus的染色体数目为n=34,与其近缘种凸瓣苣苔 A.convexus的染色体数目相同。该种的核型公式为2n=20m(1sat)+14sm,核型类型属于2A。间期核 为复杂染色中心型(complex chromocenter type);细胞有丝分裂前期的染色体为近基型(proximal type) 我国特有单种属筒花苣苔属Briggsiopsis的间期核为简单—复杂染色中心型(simple-complex chromocenter type);细胞有丝分裂前期的染色体为中间—渐变型(interstitial—gradient type);核型公式为2n=34=25m +6sm+3st,与近缘类群——粗筒苣苔属Briggsia染色体数目2n=34,68相比,无论染色体数目还是核 型均显示比较原始的特征。吊石苣苔属的蒙自吊石苣苔L.carnosus和翅茎吊石苣苔L.serratus D. Don var.pterocaulis的核型公式分别是2n=30=21m+5sm+3st+1t和2n=32=21m+10sm+1t。核 型类型分别属于2A和2B。间期核均为简单—复杂染色中心型(simple-complex chromocenter type);细胞 有丝分裂前期的染色体为渐变型(gradient type)。  相似文献   

4.
吕文君  徐慧  万佐玺  黄升 《广西植物》2017,37(10):1279-1289
该研究对苦苣苔科的蛛毛苣苔属[Paraboea(C.B.Clarke)Ridley]、马铃苣苔属(Oreocharis Bentham)、报春苣苔属(Primulina Hance)、吊石苣苔属(Lysionotus D.Don)、台闽苣苔属(Titanotrichum Solereder)、半蒴苣苔属(Hemiboea C.B.Clarke)、长蒴苣苔属(Didymocarpus Wallich)、光叶苣苔属(Glabrella Mich.MollerW.H.Chen)进行属间远缘杂交,对马铃苣苔属的马铃苣苔组、川滇马铃苣苔组、大叶石上莲组进行组间远缘杂交,统计不同杂交组合的结实情况及播种后的种子萌发情况,以明确不同属(组)间远缘杂交亲和性,为通过远缘杂交进行苦苣苔科种质资源的创新奠定基础。结果表明:(1)不同属作为父本,与同一母本进行杂交,以及同一属内不同种作为父本,与同一母本进行杂交,结实情况差异显著。(2)不同属作为母本,与同一父本进行杂交,以及同一属内不同种作为母本,与同一父本进行杂交,结实情况同样存在显著差异。(3)相同两个种正反交杂交成功率也并不一致。(4)马铃苣苔属与半蒴苣苔属,报春苣苔属与吊石苣苔属,吊石苣苔属与报春苣苔属和半蒴苣苔属,光叶苣苔属与报春苣苔属和吊石苣苔属之间部分种进行远缘杂交能够正常结实,且杂交种子能够正常萌发。(5)马铃苣苔属内组间杂交无明显生殖隔离的现象。  相似文献   

5.
中国苦苣苔科植物的多样性与地理分布(附表)   总被引:2,自引:0,他引:2  
许为斌  郭婧  盘波  张强  刘演 《广西植物》2017,37(10):1226-1226
物种多样性编目是开展生物多样性保护的重要基础,该研究结合最新分子系统学研究成果以及近年来发表的新资料,对中国苦苣苔科植物多样性和地理分布数据进行了统计和分析.结果表明:中国苦苣苔科植物共有44属671种(含种下单位,下同),其中特有属11个;特有种573种,占总种数的85.39%.种数最多的10个属依次为广义报春苣苔属(180种)、广义马铃苣苔属(122种)、石蝴蝶属(39种)、半蒴苣苔属(39种)、芒毛苣苔属(38种)、长蒴苣苔属(35种)、石山苣苔属(31种)、吊石苣苔属(31种)、蛛毛苣苔属(28种)、汉克苣苔属(22种).在地理分布上,种数排名前10的省份(区)有广西(260种,33属)、云南(236种,30属)、贵州(96种,28属)、广东(93种,17属)、四川(85种,21属)、湖南(58种,13属)、西藏(39种,9属)、湖北(29种,15属)、福建(26种,13属)、江西(25种,9属).含中国特有苦苣苔科植物的属中排前10位的分别为广义报春苣苔属(178种)、广义马铃苣苔属(119种)、石蝴蝶属(37种)、半蒴苣苔属(35种)、石山苣苔属(30种)、长蒴苣苔属(29种)、吊石苣苔属(23种)、蛛毛苣苔属(19种)、芒毛苣苔属(19种)、汉克苣苔属(11种).这表明中国南部和西南部是苦苣苔科植物的一个分布中心,特别是石灰岩地区有着高度的物种多样性和特有性,广义报春苣苔属、广义马铃苣苔属、石蝴蝶属、半蒴苣苔属、石山苣苔属、吊石苣苔属等为我国典型的优势属.此外,根据目前的研究现状,还对我国苦苣苔科植物资源的调查、分类学和系统发育研究、保护和可持续利用等进行了讨论.  相似文献   

6.
中国苦苣苔科植物的多样性与地理分布   总被引:2,自引:0,他引:2  
物种多样性编目是开展生物多样性保护的重要基础,该研究结合最新分子系统学研究成果以及近年来发表的新资料,对中国苦苣苔科植物多样性和地理分布数据进行了统计和分析。结果表明:中国苦苣苔科植物共有44属671种(含种下单位,下同),其中特有属11个;特有种573种,占总种数的85.39%。种数最多的10个属依次为广义报春苣苔属(180种)、广义马铃苣苔属(122种)、石蝴蝶属(39种)、半蒴苣苔属(39种)、芒毛苣苔属(38种)、长蒴苣苔属(35种)、石山苣苔属(31种)、吊石苣苔属(31种)、蛛毛苣苔属(28种)、汉克苣苔属(22种)。在地理分布上,种数排名前10的省份(区)有广西(260种,33属)、云南(236种,30属)、贵州(96种,28属)、广东(93种,17属)、四川(85种,21属)、湖南(58种,13属)、西藏(39种,9属)、湖北(29种,15属)、福建(26种,13属)、江西(25种,9属)。含中国特有苦苣苔科植物的属中排前10位的分别为广义报春苣苔属(178种)、广义马铃苣苔属(119种)、石蝴蝶属(37种)、半蒴苣苔属(35种)、石山苣苔属(30种)、长蒴苣苔属(29种)、吊石苣苔属(23种)、蛛毛苣苔属(19种)、芒毛苣苔属(19种)、汉克苣苔属(11种)。这表明中国南部和西南部是苦苣苔科植物的一个分布中心,特别是石灰岩地区有着高度的物种多样性和特有性,广义报春苣苔属、广义马铃苣苔属、石蝴蝶属、半蒴苣苔属、石山苣苔属、吊石苣苔属等为我国典型的优势属。此外,根据目前的研究现状,还对我国苦苣苔科植物资源的调查、分类学和系统发育研究、保护和可持续利用等进行了讨论。  相似文献   

7.
广西苦苣苔科植物花粉形态   总被引:3,自引:0,他引:3  
曹明  林春蕊  唐赛春  韦毅刚 《广西植物》2003,23(2):139-T004
对广西苦苣苔科(Gesneriaceae)8个属(1个特有属)11个种(8个特有种)的花粉形态进行了扫描电镜的观察。结果发现这些不同属种的花粉形状均为长球形或近球形,花粉形状对苦苣苔科的系统与分类没有多大的参考价值。但花粉外壁纹饰则有多种类型。其中,吊石苣苔属(Lysionotus)、金盏苣苔属(I sometrum)、长檐苣苔属(Dolicholoma)、紫花苣苔属(Loxostigma)、半蒴苣苔属(Hemiboea)、圆唇苣苔属(Gy rocheilos)及唇柱苣苔属(Chirita)中的百寿唇柱苣苔(C.baishouensis)为网状纹饰;唇柱苣苔属(Chirita)的桂林唇柱苣苔(C.gueilinensis)和融安唇柱苣苔(C.ronganensis)为拟网状纹饰;异唇苣苔属(Allocheilos)为脑纹状纹饰。孢粉学特征表明,花粉外壁纹饰特征在苦苣苔科的分类与系统研究方面可能具有较大价值。  相似文献   

8.
越南苦苣苔科植物四新记录种   总被引:2,自引:0,他引:2  
报道了4个苦苣苔科(Gesneriaceae)植物在越南的分布新记录,其中1种为半蒴苣苔属(Hemiboea)的红苞半蒴苣苔(H.rubribracteata),2种为报春苣苔属(Primulina Hance)的文采报春苣苔(P.wentsaii)和疏花报春苣苔(P.laxi flora),还有1种为吊石苣苔属(Lysionotus)的桂黔吊石苣苔(L.aesch ynanthoides)。文中列出了每个种的标本引证和地理分布情况。  相似文献   

9.
蔡磊  BORAH Dipankar  刀志灵  温放 《广西植物》2020,40(10):1402-1408
通过查阅相关文献和标本,作者发现近期发表的苦苣苔科吊石苣苔属植物一新种——Lysionotus bijantiae D. Borah & A. Joe实为鉴定错误,应是汉克苣苔属的长圆叶汉克苣苔[Henckelia oblongifolia(Roxb.)D. J. Middleton & Mich. Möller] [原长圆叶唇柱苣苔Chirita oblongifolia(Roxb.)Sinclair]。Lysionotus bijantiae的模式标本采集于中国西藏东南部地区的喜马拉雅南坡,该地区苦苣苔植物多样性较为丰富。作者因其花具2枚发育雄蕊而将其归于吊石苣苔属,花萼分裂不达基部而与吊石苣苔属其他相关种类比较,而忽略了其种子先端不具附属物的特征。通过电镜扫描观察到,该种在墨脱境内居群以及其模式产地居群的种子均无附属物,从而证实了该种不是吊石苣苔属的物种,而是属于汉克苣苔属。因此,作者将Lysionotus bijantiae处理为Henckelia oblongifolia的新异名,同时提供了长圆叶汉克苣苔的彩色图片(含种子扫描图)、选定模式标本,并给出了吊石苣苔属和汉克苣苔属的区分方法和主要识别特征,不仅为这两个属的物种鉴定提供了参考,而且避免更多的物种分类混淆问题出现。  相似文献   

10.
异叶苣苔属(苦苣苔科)的核型研究   总被引:4,自引:0,他引:4  
本文首次报道了中国特有异叶苣苔属的染色体数目及核型。该属所研究种类的染色体数目均为 2n=18,染色体长度在2.0µm以上,在尖舌苣苔族所报道的染色体中显示出较原始的性状。尖舌苣苔 族的染色体基数可能是x=9。异叶苣苔属的间期核均为复杂型;前期染色体呈渐变型。核型从对称型 向不对称型的演化主要表现在近中部着丝粒,尤其是近端部着丝粒染色体比例的增大。毕节异叶苣苔 W.bljieensis和峨眉异叶苣苔W.tsiangiana var.wilsonii的核型分别为2n=2m+8m+8sm(1sat)和 2n=2m+8m(1sat)+8sm(2sat),较为对称。紫红异叶苣苔W.purpurascens和白花异叶苣苔W. tsiangiana var. tsiangiana的核型分别为2n=4m+6sm+8st(1sat)和2n=4m+8sm(2sat)+6st,比较 特化。河口异叶苣苔W.hekouensis的核型是2n=4m+10sm(1sat)+4st,处于二者之间。峨眉异叶苣 苔和原变种白花异叶苣苔的核型差异较大,在外部形态方面二者之间的性状变异也间断较大。本文建 议将该变种从白花异叶苣苔W.tsiangiana中移出自成一种,并和毕节异叶苣苔近缘。  相似文献   

11.
Karyotypes of Chironomus fraternus Wülker (2n = 8) (cytocomplex thummi) and Ch. beljaninae Wülker (2n = 6) (cytocomplex modified thummi) from the aberratus group are described. Both species are recorded for the first time for the Russian fauna. Their karyotypes are similar in the banding sequences of chromosome arms A, C, D, E, and F, which suggests that Ch. fraternus and Ch. beljaninae are sister species. Besides the chromosome number, the two species differ in some karyotype markers, the amount of heterochromatin in the centromeres, and the chromosome arm combinations (AB, CD, EF, G in Ch. fraternus and GAB, CD, EF in Ch. beljaninae).  相似文献   

12.
A chromosome survey ofPoa macrocalyx growing on the coast of Hokkaido was carried out. Counts were made for 619 samples collected from 37 populations. A large variation in the chromosome numbers (2n=42-2n=87) was disclosed, and on the basis of this and some other observations, this species was presumed to represent an apomictic polyploid complex. Three main cytotypes with 2n=42, 2n=49 and 2n=68 were discovered. They differed in their geographical distribution. Plants with 2n=70 and 2n=77 appeared to a considerable extent, but it could not be ascertained whether they were good “races”. Other plants with diverse chromosome numbers, and in some cases only ephemeral, were also sporadically detected. Infrapopulational variation was scarce in some populations while fairly common in some others. Uneven segregation of chromosomes at meiosis and the fusion of reduced and unreduced gametes seemed to be the main factors contributing to chromosome fluctuations within a population.  相似文献   

13.
雅江点地梅(报春花科)3个居群的核型和倍性变化   总被引:1,自引:0,他引:1  
黄荣福 《西北植物学报》2001,21(3):526-531,T001
首次报道了雅江点地梅(Androsace yargongensis)3个居群的染色体数目和核型,对倍性也进行研究。3个居群的染色体数目(2n),核型公式(KF),染色体相长度组成(C.RL),核型不对4称系数(As,K%)和核型类型(KT)分别为:野牛沟居群2n=40,KF=36m(1SAT) 2SM 2ST b,C,RL=2L 14M2 22M1 2S 2bS,As.K=54.75%,KT=2A;巴颜喀拉山居群2n=40,KF=36m 2sm 2st 1b,C.RL=4L 16M2 18M1 2S 1bS,As.K=56.31%,KT=2B;达坂山居群2n=60,KF=40m 14sm 6st,C.RL=4L 24M2 26M1 6S,As.K=59.56%,KT=2B。根据3个居群的染色体和核型不对称性与居群所在地的地理位置,认为雅江点地梅核型和倍性的演化与高海拔生态环境和寒冷、干旱的气候加剧有密切关系。  相似文献   

14.
报道了唐古特大黄(Rheum tanguticum)5个居群的染色体数目和核型,结果如下:大武、柯曲、达卡三个居群均为2n=2x=22=2sm 20m;吉卡居群为2n=2x=22=20m 2M;松潘居群为2n=2x=22=2sm 18m 2M。大武,柯曲和吉卡居群核型类型属于1A型,达卡和松潘居群属于2A型。Q型聚类分析结果表明,5个居群在核型上存在一定分化,这可能是由不同的生境造成的。  相似文献   

15.
B chromosomes occur in several Neotropical fish species. Cytogenetic analysis of 27 specimens (15 females and 12 males) of Astyanax scabripinnis paranae from the Araquá river (a small headwater tributary of the Tietê river) shows that this population has 2n=50 chromosomes (4M+30 SM+4ST+12A), two chromosome pairs with NORs and conspicuous C-band positive blocks in the terminal position of the long arm of four chromosome pairs. In this population, eight females presented 2n=51 chromosomes and the extra chromosome was a large metacentric similar in size and morphology to the first chromosome pair in the karotype. This accessory chromosome is entirely heterochromatic in C-banded metaphases and shows a late replication pattern evidenced by BrdU incorporation. There was no significant correlation between the presence of B chromosomes and increased NOR activity at the P>0.05 level. Some aspects related to these B chromosomes are discussed.  相似文献   

16.
宽叶韭居群间核型研究   总被引:1,自引:0,他引:1  
张绍斌  许介眉 《广西植物》2002,22(4):345-348,T002
对宽叶韭 1 0个居群的核型进行了研究 ,结果如下 :四川武隆居群 2 n=2 x=2 2 =1 6sm+6st;四川大飞水居群 2 n=2 x=2 2 =1 6sm +4st+2 t(2 SAT) ;四川南川居群 2 n=2 x=2 2 =2 m+1 4sm+4st+2 t;四川宝兴居群 2 n=2 x=2 2 =1 4sm+6st+2 t;四川青神居群 2 n=2 x=2 2 =2 m+6sm+1 0 st+4t;四川沐川居群 2 n=2 x=2 2 =2 m+1 4sm+2 st+4t;四川屏山居群 2 n=3 x=3 3 =3 m+2 1 sm+9st;云南西双版纳居群 2 n=2 x=2 2 =1 4sm+6st+2 t(2 SAT) ;广东乳源居群 2 n=3 x=3 3 =2 1 sm+6st+6t(3 SAT) ;广西龙胜居群 2 n=3 x=3 3 =2 1 sm+6st+6t(3 SAT)。研究表明 ,除四川屏山居群、广东乳源居群、广西龙胜居群是三倍体外 ,其余均为二倍体。它们都属于 Stebbins的 3 A型。此外 ,宽叶韭的不同居群间还存在随体染色体和核型组成的多态性。本文最后讨论了宽叶韭种内居群间核型分化的原因。  相似文献   

17.
青海南部太白韭4居群的核型研究   总被引:1,自引:0,他引:1  
研究了葱属太白韭青海4个居群的染色体数目和核型。结果如下,居群1:2n=2x=16=12m+2sm+2st(2SAT),居群2:2n=2x=16=14m+2st(2SAT);居群3:2n=4x=32=24m+4sm+4st(4SAT),居群4:2n=2x=16=14m+2st(2SAT)+Bs(0-2)。并讨论了多倍体和B染色体形成与分析。  相似文献   

18.
A total of 61 chromosome counts from 11 taxa of Korean Spiraea was made. Our counts are the first report for eight taxa;S. blumei (2n=18, 36),S. chartacea (2n=36),S. chinensis (2n=36),S. fritschiana (2n=27, 36),S. microgyna (2n=18),S. prunifolia var.simpliciflora (2n=18),S. pseudocrenata (2n=36), andS. trichocarpa (2n=18). A new chromosome number of 2n=36 (tetraploid) is reported forS. pubescence. Populations of three species includingS. blumei, S. pubescence and .V.fritschiana, show different ploidy levels; diploid and tetraploid populations are found in the former two species and triploid and tetraploid ones, in latter species. Multiplication of chromosome numbers contributes to increase in size of pollen and stomata in the three species. Populations with different ploidy levels inS. blumei occupy different regions; diploid populations in inland Korea and tetraploid ones in Ullung Island. Island tetraploid population of 5.blumei might be originated from intra-island polyploidization through the introduction of diploid from inland Korea, considering the worldwide distribution of this species. Pollen fertilities of island populations of ,S′.blumei are relatively low, and sometimes no pollen grain is produced in anther sacs; it suggests that tetraploid population of the island is gynodioecious which may serve reduction of inbreeding depression.  相似文献   

19.
Investigation of chromosome numbers of allAzolla species, and for the first time of hybrids, has been undertaken. Removal of wax from the leaf surface proved invaluable in achieving clear cytological preparations and providing unambiguous chromosome numbers. In contrast to previous records, the speciesA. pinnata, A. filiculoides, A. filiculoides var.rubra, A. caroliniana, A. microphylla, andA. mexicana were found to be 2n=44, andA. nilotica to be 2n=52. Several triploids (2n=66) and one tetraploid (2n=88) were identified. No geographical pattern could be observed in the distribution of triploids which probably derive from the function of unreduced gametes. The chromosome number of hybrids occasionally deviates from the diploid chromosome number (2n=44). The small chromosome size limits karyotypic analysis and only differences in overall chromosome size can be observed. Taxonomic implications of chromosome numbers and sizes are discussed.  相似文献   

20.
In this paper the Authors decribe the karyogram of three species of Scincidae (Chalcides chalcides chalcides, Chalcides ocellatus tiligugu, and Mabuya striata). The diploid number of these species is 2n=28. It is not possible to subdivide the chromosome set in micro- and macrochromosomes or to recognize the heterochromosomes morphologically. Ch. ocellatus and M. striata have very similar karyograms; that of Ch. ch. chalcides is different in that chromosomes 6, 7, 8, 9, and 10 are acrocentric. Pericentric inversion is probably involved in the karyotypic evolution of these species.  相似文献   

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