首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到10条相似文献,搜索用时 176 毫秒
1.
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   

2.
10种菊科花卉的染色体观察   总被引:5,自引:0,他引:5  
作者对10种菊科花卉进行了染色体数目的观察,并对其中8种进行了核型分析。结果如下:翠菊(Callistephus chinensis Nees) 2n=18=18m (4SAT);麦秆菊(Helichrysum bracteatum Andr.)2n=24=18m+6sm;蛇目菊(Coreopsis tinctoria Nutt.) 2n=24=16m+8sm (2SAT);黑心菊(Rudbechia hirta L.) 2n=76;肿柄菊(Tithonia diversifolia A. Gray) 2n=34=24m(4SAT)+10sm (2SAT);大丽花(Dahlia pinnata Cav.) 2n=64;硫华菊(Cosmos sulphureus Cav.) 2n=24=2sm+22st;万寿菊(Tagetes erecta L.) 2n=24=6sm+16st(2SAT)+2t;天人菊(Gaillardia pulchella Foug.) 2n=34=22m+12sm;矢车菊(Centaurea cyanus L.) 2n=24=2sm+16st+6t(2SAT)。  相似文献   

3.
The paper identified and compared the karyotypes of 10 species(varieties) of Populus sectTacamhaca.The results were as follows:Ppseudo simonii Kitag.2n=38=27m+6sm(1SAT)+4st(2SAT)+1t(1SAT);Ptrichocarpa Torr.2n=38=2M+18m(1SAT)+8sm+10st(1SAT);Pcathayana Rehd.var.Beijing 2n=38=1M+24m+6sm+7st(2SAT);Pבpopularis’ 2n=38=3M+27m+2sm(1SAT)+4st(2SAT)+2t(1SAT);Pcathayana Rehd.var.Wutai 2n=38=5M+22m+4sm+5st+2t(2SAT);Pcathayana Rehd.var.Gansulinxiaman 2n=38=2M+28m+1sm+7st(1SAT);Pcathayana Rehd.var.Qinghai 2n=38=1M+27m+3sm+6st(3SAT)+1t(1SAT);Pcathayana×Zhongqing 10 2n=38=1M+26m+4sm+5st(2SAT)+2t(2SAT);Pcathayana×Zhongqing 48 2n=38=16m+10sm(1SAT)+10st(2SAT)+2t(1SAT).The results showed definite karyotype differences among the species of Tacamhaca.The karyotypes of most species(varieties) are made of m and sm and a few with st and t chromosomes.The karyotypes of Tacamhaca were all of 2B type of Stebbins.This study provided important basic data for taxon of Populus.  相似文献   

4.
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   

5.
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   

6.
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   

7.
武汉地区野豌豆属3种植物的染色体研究   总被引:4,自引:0,他引:4  
本文报道了武汉地区野豌豆属3种植物的染色体数目及核型,结果如下:窄叶野豌豆为2n=2x=12=2sm+2st(SAT)+8st;小巢菜为2n=2x=14=10m+2sm(SAT)+2st;四籽野豌豆为2n=2x=14=4m+2sm(SAT)+8sm。本文还对野豌豆属染色体进化的有关问题进行了讨论。  相似文献   

8.
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   

9.
王臣  路芳  关旸  张贵一 《植物研究》2001,21(2):215-221,T001,T002,T003
报道东北蒿属艾组12种植物的染色体数及核型资料,结果如下:宽叶山蒿(Artemisia stolonifera (Maixm.)Komar.)2n=4x=36=28m 4sm(4SAT) 4st(4SAT);野艾蒿(A.lavandulaefolia DC)2n=2x=50=40m 4sm 6st(6SAT); 矮蒿(A.lancea Van.)2n=2x=16=10m 4sm 2st;蒙古蒿(A.mongolica (fisch.ex Bess.)Nakai]2n=2x=16=14m 2st;红足蒿(A.rubripes Nakai)2n=2x=16=14m 2st;歧茎蒿(A.igniaria Maixm.)2n=2x=34=28m 2sm 4st(4SAT);柳叶蒿(A.integrifolia Linn.)2n=4x=36=20m 12sm 4st;线叶蒿(A.subula 4st(4SAT);柳叶蒿(A.integrifolia Linn.)2n=4x=36=20m 12sm 4st;线叶蒿(A.subulata Nakai)2n=2x=16=14m 2st;高岭蒿(A.brachyphylla Kitam.)2n=2x=18=14m 2sm 2st;林文稿[A.uiridissima(Komar.)Pamp.]2n=2x=18=14m 4sm;奄癌(A.keiskeana Miq.)2n=2x=18=16m 2sm;阴地蒿(A.sylvatica Maxim.)2n=2x=16=14m 2sm,核型对称性野艾蒿(A.lavandulaefolia)为2B型,其余均为2A型,依据核型资料对个别种的演化 分类进行了初步探讨。  相似文献   

10.
中国西北地区11种黄耆属植物的细胞学研究   总被引:2,自引:2,他引:0  
对分布于中国西北地区的11种黄耆属植物进行了细胞学研究,其中9种作了核型分析。结果表明,杯萼黄耆(Astragalus cupulicalycinus)为六倍体(2n=48),酒泉黄耆(A.jiuquanensis)具有2种细胞型:2n=32的四倍体和2n=48的六倍体,其余种类均为二倍体(2n=16)。9个种的核型公式分别为:木黄耆(A.arbuscula),2n=16=14 2sm,“1A”核型;胀萼黄耆(A.ellipsoideus),2n=16=10m 6sm,“2A”核型;粗毛黄耆(A.scabrisetus),2n=16=14m 2sm,“1A”核型;秦岭黄耆(A.henryi),2n=16=8m 8sm(2SAT),“2A”核型;哈巴河黄耆(A.habaheensis),2n=16=10m 6sm(2SAT),“2A”核型;变异黄耆(A.variabilis),2n=16=4m 10sm(2SAT) 2t,“2A”核型;喜沙黄耆(A.ammodytes),2n=16=6m 10sm(2SAT),“2A”核型;密花黄耆(A.densiflorus),2n=16=6m(2SAT) 10sm,“2A”核型;茧荚黄耆(A.lehmannianus),2n=16=14m(2SAT) 2st,“2A”核型。所有研究种中,仅变异黄耆的染色体数目有过报道,其余种的染色体数目及核型均为首次报道。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号