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1.
珍珠菜属三种植物的核型研究   总被引:3,自引:0,他引:3  
对国产三种珍珠菜属 (Lysimachia)植物进行了核型研究 ,其中点腺过路黄 (LysimachiahemsleyanaMaxim .)染色体核型 2n =2 2 =2m +4sm +8st+8t,聚花过路黄 (L .congestifloraHesmsl.)核型 2n =2 4=2m +2sm +1 0st+1 0t及山萝过路黄 (L .melampyroidesR .Knuth)染色体数目 2n =2 2 ,核型 2n =2 2 =4m +6sm +4st+8t,为首次报道。本文还分析了黄连花亚属 (subgen.Lysimachia) 2组 8种植物的核型 ,结果表明黄连花组(sect.Lysimachia)核型类型 1A ,过路黄组 (sect.Nummularia)核型类型 3A或 3B。  相似文献   

2.
葱属植物棱叶薤的形态性状与核型特征   总被引:1,自引:0,他引:1  
对新疆不同地理位置分布的葱属植物棱叶薤的形态性状以及核型特征进行了研究,结果表明:鳞茎、株型、叶形等43个形态性状在3个棱叶薤居群之间不存在差异,而株芽、叶色、叶长、单株叶片数、小花数目、花序高度、花葶长度等19个性状在3个棱叶薤居群之间存在显著或极显著差异。采集自乌鲁木齐红旗水库居群的棱叶薤的核型公式是2n=2x=16=12m+4sm;塔城阿西尔乡巴尔鲁克山居群的棱叶薤的核型公式是2n=3x=24=18m+3sm+3st;裕民巴旦杏保护区居群的棱叶薤的核型公式是2n=4x=32=28m(4SAT)﹢4sm。棱叶薤居群内形态性状和倍性稳定,居群间存在形态性状分化,同时还存在二倍体、三倍体、四倍体的倍性分化。居群间染色体结构组成和相对长度组成也存在差异。核型类型均为2A型。  相似文献   

3.
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   

4.
三倍体换锦花在安徽发现   总被引:5,自引:0,他引:5  
本文对分布于安徽江南和江淮两个地区野生居群的换锦花Lycoris sprengeri进行了细胞学研究, 发现换锦花为一复合体,包括两个不同类型:(1)三倍体类型,分布于安徽马鞍山市采石的野生居群,其 染色体数目和核型为2n=33=9st+21t+3T,属4A核型,极其稳定,该种的三倍体类型为首次发现;(2) 二倍体类型,分布于滁州市琅琊山的野生居群,发现有2个核型,核型I,2n=22=8st+14t,属4A核型, 约占观察细胞的80%;核型Ⅱ,2n=22=1m+1sm+14st+6t,属3B核型,约占观察细胞的20%,该染色 体核型为首次报道。换锦花三倍体居群和二倍体居群的植物外部形态特征基本相同。本文还指出罗伯逊变化在石蒜属核型演化中起了关键作用。  相似文献   

5.
珍珠菜属3种植物的核型分析   总被引:1,自引:0,他引:1  
采用常规压片法,对珍珠菜属(Lysimachia L.)3种植物的核型进行了研究。结果表明,长蕊珍珠菜的核型为2n=2x=24=12m 10sm 2st,显苞过路黄的核型为2n=2x=24=4m 6sm 6st 8t,均属首次报道。过路黄的核型为2n=2x=24=2m 2sm 4st 16t,与前人报道的有所不同。还对已报道的珍珠菜属的核型类型与不对称系数进行了比较。  相似文献   

6.
三倍体短葶飞蓬的发现及其在育种上的意义   总被引:1,自引:0,他引:1  
对云南省野生居群的短葶飞蓬有丝分裂的细胞学特征进行观察研究。在云南省大理苍山、腾冲杨家坪的二倍体野生居群中,发现有三倍体个体的存在。苍山居群的两种核型分别为2n=2x=18=4m 10sm 4st,2n=3x=27=6m 12sm 9st;杨家坪居群的两种核型分别为2n=2x=18=6m 10sm 2st,2n=3x=27=3m 15sm 9st。通过对其生物学特性及表型的分析,认为短葶飞蓬可以采取多倍体育种方式获得更优良的品种。  相似文献   

7.
中国山芹属的核型演化及地理分布的研究   总被引:1,自引:0,他引:1  
本文报道了山芹属Ostericum 5种1变种13个居群的核型,其中4种为首次报道。其核型如下:隔山香 O.citriodorum 广东宝安的居群,2n=22=16m+6sm;江西鹰潭的居群,2n=22=14m+6sm+2st;华东山芹 O.huadongensis本所药物园居群,2n=22=16m+6sm;安徽广德的居群,2n=22=16m+4sm+2sm(SAT);绿花山芹 O.viridiflorum内蒙古额右旗的居群,2n=22=18m+4sm;黑龙江双鸭山居群,2n=22=18m+2sm+2st(SAT);山芹 O.sieboldii 辽宁庄河居群,2n=22=4sm+16st+2st(SAT);吉林长白山居群,2n+22+2sm+20st;狭叶山芹 O. sieboldii var.praetieritum 辽宁鞍山的居群,2n=22=2sm+20st;大齿山芹 O.grosseserratum 辽宁庄河居群,2n=18=2sm+16st;江苏宜兴居群,2n=18=2sm+16st;安徽广德居群,2n=18=18st;浙江天目山居群,2n=18=18st。隔山香、华东山芹和绿花山芹具较原始的2A型,山芹和大齿山芹则具较为进化的4A型。此外,大齿山芹具有下行性的染色体基数n=9,这在整个前胡族中都具独特性。根据各居群在种分布区内的核型演化方向及现代地理分布格局并结合形态和孢粉学资料,提出本属的起源是从近缘的当归属起源地横断山区沿着东北和东南两个方向迁移扩散,演化发展形成两个现代次生分布中心,一个是东北向具温带性广布型的分布中心(东北地区),另一个是东南向具亚热带性特有种型的分布中心(华东地区),两个分布中心之间有一个分化活跃、演化最高的纽带种一大齿山芹。  相似文献   

8.
5种珍珠菜属植物的核型分析   总被引:12,自引:3,他引:9  
对 5种珍珠菜属 (LysimachiaL .)植物的核型进行了研究 ,其中巴东过路黄 2n =2x =2 4 =6m 4sm 6st 8t、光叶巴东过路黄 2n =2x =2 4 =6m 4sm 6st 8t、临时救 2n =2x =2 4=2m 4sm 4st 14t的核型属首次报道。过路黄 2n =2x =2 4 =2m 4sm 6st 12t和星宿菜2n =2x =2 4 =2 0m 4sm与前人报道的一致。本文还对该属已报道的 17种植物的核型资料进行了总结和比较分析 ,对珍珠菜属植物的核型进化方向作了初步推测。另外对一存疑过路黄(2n =2x =2 4 =2m 6sm 4st 12t)与其近缘种的核型进行了比较研究。  相似文献   

9.
以滇北球花报春(Primula denticulata ssp.sinodenticulata)为供试材料,在离体条件下,采用秋水仙素对其丛生芽进行诱导,比较不同浓度、不同处理时间秋水仙素诱导多倍体的效果.结果表明:以0.6%的秋水仙素处理72 h诱导效果最佳,诱导率达54%.经形态学观察发现,变异材料叶色变深,叶片质感变厚;气孔面积增大,单位面积气孔数目减少;染色体计数及核型分析显示,滇北球花报春的二倍体核型为2n=2x=4m+16sm+2st,四倍体核型为2n=4x=8m+32sm+4st,均属3A核型,并成功获得了滇北球花报春的四倍体植株.  相似文献   

10.
不同居群白木香的染色体研究   总被引:1,自引:0,他引:1  
采用常规压片法和改良BSG法对3个居群白木香的染色体核型及Giemsa C-带带型进行研究。结果表明:3个居群白木香的核型均属2B类型,其中广西居群白木香的核型公式为2n=16=4m+8sm+4st;其他两个居群白木香的核型公式为2n=16=6m+6sm+4st,居群间核型变异不明显。白木香的C带带型为CIT型,具有着丝粒带、中间带、端带和全带。3个居群白木香C带的分布、数目和类型不完全一样,出现了带型的多态性。  相似文献   

11.
石斛属植物倍性与形态学性状的相关性研究   总被引:1,自引:0,他引:1  
采用根尖压片法对55份石斛属资源的倍性进行了鉴定,并测量它们的气孔长度、气孔密度、叶长、叶宽、叶厚、株高、茎粗、花朵直径和花瓣厚度9个形态学性状。结果显示:(1)55份供试石斛属资源材料中有:四倍体40份、占72.73%,三倍体11份、占20.00%,二倍体4份、占7.27%。(2)对石斛属倍性与9个形态学性状进行相关分析表明,气孔长度、叶长、叶宽、叶厚、茎粗、花朵直径和花瓣厚度7个性状与染色体倍性呈极显著正相关,气孔密度与染色体倍性呈极显著负相关,株高与染色体倍性相关性不显著。  相似文献   

12.
Recent molecular phylogenetic analyses indicate that Dubyaea glaucescens (Compositae–Cichorieae) should be transferred to the genus Faberia as F. glaucescens. Here, we present cytological evidence for this transfer. Dubyaea glaucescens comprises two ploidy levels, 2n = 34 (diploid) and 2n = 51 (triploid), making the basic chromosome number x = 17. The chromosomes vary in length from 5.82 μm to 2.11 μm, and the karyotypes are 2n = 20m + 14sm (3sat) for the diploid cytotype and 2n = 30m + 21sm (3sat) for the triploid cytotype. Karyological characters of D. glaucescens, including chromosome number, size, morphology, and karyotype asymmetry, all agree remarkably with those reported previously in Faberia, but are distinct from those in other species of Dubyaea. The transfer of D. glaucescens to Faberia is thus strongly corroborated.  相似文献   

13.
In recent years the coastal dune vegetation of the state of Yucatan, Mexico has become highly fragmented due to clearing for development. We evaluated patterns of genetic differentiation and genetic variability among orchid populations (Myrmecophila christinae var christinae) in eight habitat fragments along a west‐to‐east disturbance gradient in which sites located on the western end began experiencing fragmentation earlier than those in the east. Leaf samples from adult individuals and juvenile plants were collected from all eight populations, and analyzed using starch‐gel electrophoresis in a lithium buffer system. Per population estimates of genetic diversity, proportion of polymorphic loci at 95 percent, mean number of alleles per locus, allelic richness, and population structure were calculated, as well as estimate comparisons between generations. Genetic diversity at the loci analyzed did not show significant differences among the eight populations. Based on the results, the model of isolation by distance does not fit the M. christinae populations under study; in some cases, populations close to one another apparently experienced very little genetic exchange. Thus, we propose that so far, fragmentation has not led to significant genetic differences between populations subject to different historical backgrounds of disturbance (i.e., time since onset of disturbance), as well as between generations within each of the M. christinae study populations. Nevertheless, the genetic characteristics of some remnant populations might change over time due to a future decrease in the opportunities for genetic exchange with other populations.  相似文献   

14.
为探究凤仙花近缘种植物的细胞学和微形态学方面的亲缘关系,该文选取荔波凤仙花(Impatiens liboensis)及近缘种赤水凤仙花(I.chishuiensis)和管茎凤仙花(I.tubulosa)的根尖和叶表皮为实验材料,采用体细胞染色体常规压片法和叶表皮光学显微镜观察法对凤仙花近缘种植物进行染色体及叶表皮特征研...  相似文献   

15.
以紫薇(Lagerstroemia indica)、尾叶紫薇(L.caudata)、屋久岛紫薇(L.fauriei)和福建紫薇(L.limii)4种紫薇属植物为材料,利用染色体荧光原位杂交技术(FISH)获得了4种紫薇属植物的有丝分裂中期染色体FISH图及核型参数,分析了45SrDNA在紫薇属植物染色体上的数量和分布特点。结果表明,4种紫薇属植物染色体上均具有1对45SrDNA杂交位点,位于较长染色体短臂的近端部,紫薇、尾叶紫薇、屋久岛紫薇和福建紫薇的核型公式分别为2n=48=2M+24m+22sm、2n=48=30m+18sm、2n=48=2M+20m+26sm和2n=48=2M+32m+14sm,均为2A型。该研究首次获得了紫薇属植物45SrDNA荧光原位杂交核型,为紫薇属植物亲缘关系研究和细胞生物学研究提供了分子细胞学依据。  相似文献   

16.
We have employed a new scale for characterizing chromosomal forms in the karyotypes of four species of Bipalium from five localities in Japan. Specimens of Bipalium nobile Kawakatsu et Makino, 1982, from Yokohama had a diploid chromosome number of 2x = 10 (2m + 2sm + 2sm + st & sm + 2sm); specimens of the same species from Toyonaka had this number as well but with slightly different chromosomal form (2m + 2sm + sm & st + 2st + m & sm). An undescribed species from Sanjô, Bipalium sp. 2, with two dorsal stripes and a yellow head crescent, had 2x = 10 (2m + 2sm + 2sm + 2sm + 2m); and another undescribed species from Chichijima Island, Bipalium sp. 3, with five dorsal stripes, had 2x = 10 (2m + 2sm + 2sm + 2sm + 2m). A non-sexual bipaliid tentatively identified as Bipalium kewense Moseley, 1878, from Chichijima Island had 2x = 18 (2m + 2m + 2m + 2sm + 2st + 2sm + 2sm + 2sm + 2sm).  相似文献   

17.
Abstract Anaphalis is one of the largest genera of the Asian Gnaphalieae (Asteraceae) and is most diversified on the Qinghai‐Tibet Plateau. The chromosome numbers and karyomorphology of six species from seven populations were investigated for the first time for this region. Chromosome numbers have been newly documented for four species: Anaphalis deserti (2n = 56 = 24 median [m]+ 24 submedian [sm]+ 8 acrocentric [st]); Anaphalis plicata (2n = 56 = 26m + 30sm); Anaphalis xylorhiza (2n = 28 = 2 median point [M]+ 14m + 12sm); and Anaphalis rhododactyla (2n = 56 = 32m + 24sm). Two further counts are in agreement with the previously reported numbers, that is, Anaphalis royleana (2n = 28 = 4M + 6m + 18sm) and Anaphalis margaritacea (2n = 28 = 12m + 16sm). A new polyploid cytotype (2n = 56 = 26m + 30sm) was found in the Zougong population of A. margaritacea. Polyploidy is for the first time reported for Anaphalis, with four out of seven counts being tetraploid. Our cytological results suggest that polyploids might have played an important role in the evolution of Anaphalis on the Qinghai‐Tibet Plateau.  相似文献   

18.
该试验对浙江大罗山一个薤白种群的13个个体进行了染色体计数和核型分析,并对探讨七倍体薤白的可能形成机制进行了讨论。结果表明:(1)大罗山薤白种群为混倍种群,其中3个个体为七倍体,染色体组型是2n=7x=46m(2SAT)+10sm(2SAT),核型为2B型;10个个体为四倍体,染色体组型是2n=4x=26m(1SAT)+6sm(1SAT),核型为2B型。薤白种群的混倍性和七倍体均为首次报道。(2)对七倍体薤白的成因分析认为,七倍体是通过三倍体和四倍体未减数配子结合产生;随体染色体数目并不与植株的倍性相对应,而且并不都是出现于同源染色体上;薤白种内倍性增大与其物种进化的趋势一致,即倍性越大,种群越进化。  相似文献   

19.
The vegetative characters of Ligusticum chuanxiong Hort. cv. Fuxiong are described in comparison with L. chuanxiong Hort. and L. sinense Oliv. The chromosome numbers and karyotypes of the three taxa were studied in root tip cells by Feulgen’s squash method. Their karyotypes are determined as follows: L. chuanxiong, K(2n)=22=16 m+ 4sm+2st (sat); L. chuanxiong cv. Fuxiong, K(2n)=33=24 m+6sm+3st (sat); L. sinense, K(2n)=22=12 m+6sm+2sm (sat)+2st (sat). The karyotypic similarities are found between L. chuanxiong and its cultivariety, butthe former is a diploid while the latter probably is a homologous triploid.  相似文献   

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