998 resultados para KARYOTYPIC EVOLUTION
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翠雀属Delphinium L.是毛茛科中的一个大属,全世界有300-400 余种,广布于北半球温带地区。我国是世界上记载翠雀属植物种类最多的国家,尤以西南横断山区种类最为丰富。 通过文献查阅、标本室研究和野外考察,本文对我国特别是横断山区翠雀属植物的主要形态性状在居群间和居群内的变异式样进行了初步分析,认为根的形态、叶的分裂程度、植株尤其是花序轴和花梗被毛与否以及毛被类型、小苞片的形状和位置、退化雄蕊的颜色、上萼片的形状、心皮数目和种子形态特征是比较可靠的分类性状。但性状之间的相关性往往较小,即使是通常比较稳定的分类性状有时也表现出不同程度的变异,因此同一性状对于不同等级分类群的划分和在不同分类群中的分类价值常不一样。在具体的分类处理中,应具体情况具体分析,尽可能利用较多的分类学性状或性状组合。 根据上述对我国翠雀属植物主要形态性状变异式样的理解,本文主要对我国西南横断山区及其邻近一些地区的翠雀属植物进行了力所能及的分类修订:将42 种和22 变种降为异名,提出2 新组合(毛梗黑水翠雀D. potaninii var. mollipes (W. T. Wang) Q. Yuan & Q. E. Yang 和腺毛康定翠雀D. tatsienense var. pseudomosoynense (W. T. Wang) Q. E. Yang & Q. Yuan),澄清了直距翠雀D. tenii Lévl. 的名实问题和Munz 等学者对我国翠雀属植物标本的鉴定错误以及由此引起的我国有关翠雀属植物的地理分布的混乱; 另有两种( 硕片翠雀D. grandilimbum W. T. Wang & M. J. Warnock 和永宁翠雀D. yongningense W. T. Wang & M. J. Warnock)因未见到模式标本,故暂存疑。本文讨论到的我国翠雀属植物共有87 种、10 变种。 为了在染色体水平上了解横断山区翠雀属植物的物种形成和分化,同时增加对整个翠雀族tribe Delphineae Warming 植物染色体进化的理解,本文报道了我国主要采自该地区的乌头属Aconitum L. 30 种、1 变种共40 个居群和翠雀属 48 种、3 变种共87 个居群的染色体数目,分析了30 种、1 变种乌头属植物和 46 种、3 变种翠雀属植物的核型,发现46 种、3 变种翠雀属植物为二倍体(2n = 2x=16),1 种(黄毛翠雀D. chrysotrichum Finet & Gagnep.)为四倍体(2n = 4x =32),1种(螺距翠雀D. spirocentrum Hand.-Mazz.)有二倍体和四倍体两种细胞型,3 种(宽距翠雀D. beesianum W. W. Smith、裂瓣翠雀D. mosoynense Franch.和康定翠雀 D. tatsienense Franch.)的个别居群有B 染色体出现。这表明横断山区翠雀属植物的物种形成主要在二倍体水平上进行。可能由于核型直向选择(karyotypic orthoselection)的结果,我国翠雀属植物的核型就整体情况而言在属内相当一致,属内核型分化不如乌头属中明显,外部形态上显得最为原始的种类如短距翠雀 D. forrestii Diels 和毛翠雀D. trichophorum Franch.的核型与其他多年生种类的核型相比并无明显区别。尽管如此,翠雀属植物的核型在属内仍表现出一定程度的分化:在多年生种类中,大理翠雀群(D. taliense group)的种类的染色体内部不对称性(intrachromosomal asymmetry) 程度较高, 但染色体之间的不对称性 (interchromosomal asymmetry)程度偏低;一年生种类与多年生种类相比,我国唯一的一年生种还亮草D. anthriscifolium Hance 染色体之间不对称性最高,该种染色体内部不对称性程度在翠雀族中也偏高,因此就其核型的整体不对称性程度而言,在翠雀属乃至整个翠雀族中最高,而地中海分布的一年生种类的染色体内部不对称性明显增强, 但染色体之间的不对称性在翠雀族中最低。这种核型分化的系统学和生物地理学意义尚不清楚,以后需进一步研究。与乌头属相比,翠雀属植物的染色体通常较小,核型中st 染色体明显增多(可达6 对),核型的整体不对称性程度逐渐增强; 虽然乌头属牛扁亚属Aconitum subgen. Lycoctonum (DC.) Peterm.的二倍体种类也一般具有较多的st 染色体(4 对),但这些st 染色体比乌头亚属Aconitum L. subgen. Aconitum和露蕊乌头亚属Aconitum subgen. Gymnaconitum (Stapf) Rapaics 植物核型中相对应的m 或 sm 染色体以及翠雀属和飞燕草属Consolida (DC.) S. F. Gray 植物中相对应的st 或偶尔出现的sm 染色体要大。特别应当注意的是牛扁亚属中外部形态上显得最为原始的展喙乌头A. novoluridum Munz 的核型具有较多而且较大的sm 染色体,所以我们认为展喙乌头的核型保留了较多的原始性质,那些核型中具有较多st 染色体的牛扁亚属植物应当是该亚属中在核型上已比较特化的种类。这一结果不支持前人提出的乌头属植物的核型有从st 染色体进化到m 或sm 染色体的趋势的观点。就整个翠雀族而言,从现有资料看,其核型的进化趋势应当为:(1) 染色体从大进化到小, 从m 或sm 染色体进化到st 染色体;(2) 核型的整体不对称性程度逐渐增强,即核型的二型性从多年生的牛扁亚属植物到翠雀属植物的一年生的还亮草亚属Delphinium subgen. Delphinium 而愈趋明显。翠雀族植物核型的进化方向与整个毛茛科核型的进化方向看来是一致的,即都向核型不对称性增强的方向进化。
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Chromosomal homologies have been established between the Chinese muntjac (Muntiacus reevesi, MRE, 2n = 46) and five ovine species: wild goat (Capra aegagrus, CAE, 2n = 60), argall (Ovis ammon, OAM, 2n = 56), snow sheep (Ovis nivicola, ONI, 2n = 52), red goral (Naemorhedus cranbrooki, NCR, 2n = 56) and Sumatra serow (Capricornis sumatraensis, CSU, 2n = 48) by chromosome painting with a set of chromosome-specific probes of the Chinese muntjac. In total, twenty-two Chinese muntjac autosomal painting probes detected thirty-five homologous segments in the genome of each species. The chromosome X probe hybridized to the whole X chromosomes of all ovine species while the chromosome Y probe gave no signal. Our results demonstrate that almost all homologous segments defined by comparative painting show a high degree of conservation in G-banding patterns and that each speciation event is accompanied by specific chromosomal rearrangements. The combined analysis of our results and previous cytogenetic and molecular systematic results enables us to map the chromosomal rearrangements onto a phylogenetic tree, thus providing new insights into the karyotypic evolution of these species.
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Muntjac deer (Muntiacinae, Cervidae) are of great interest in evolutionary studies because of their dramatic chromosome variations and recent discoveries of several new species. In this paper, we analyze the evolution of karyotypes of muntjac deer in the context of a phylogeny which is based on 1,844-bp mitochondrial DNA sequences of seven generally recognized species in the muntjac subfamily. The phylogenetic results support the hypothesis that karyotypic evolution in muntjac deer has proceeded via reduction in diploid number. However, the reduction in number is not always linear, i.e., not strictly following the order: 46-->14/13-->8/9-->6/7. For example, Muntiacus muntjak (2n = 6/7) shares a common ancestor with Muntiacus feae (2n = 13/14), which indicates that its karyotype was derived in parallel with M. feae's from an ancestral karyotype of 2n greater than or equal to 13/14. The newly discovered giant muntjac (Muntiacus vuquangensis) may represent another pa;allel reduction lineage from the ancestral 2n = 46 karyotype. Our phylogenetic results indicate that the giant muntjac is relatively closer to Muntiacus reevesi than to other muntjacs and may be placed in the genus Muntiacus. Analyses of sequence divergence reveal that the rate of change in chromosome number in muntjac deer is one of the fastest in vertebrates. Within the muntjac subfamily, the fastest evolutionary rate is found in the Fea's lineage, in which two species with different karyotypes diverged in around 0.5 Myr.
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:与其姐妹科(菊头蝠科)相比,蹄蝠科的细胞遗传学研究较少。迄今为止,仅少数蹄蝠科几个物种有高分辨率的G带核型报道,且有关该科核型进化的大多数结论都是基于常规Giemsa染色研究而得。该研究利用三叶小蹄蝠的染色体特异探针,通过比较染色体涂色、G和C显带,建立了5种蹄蝠的染色体同源性图谱,并探讨了它们同源染色体间的G和C带异同。结果表明:罗伯逊易位、臂内倒位以及异染色质的扩增可能是蹄蝠科物种核型进化的主要机制。通过对这5种蹄蝠物种及其外群物种之间的同源染色体片段的比较分析,作者推测蹄蝠科的祖先核型并不像先前认为的全由端着丝粒染色体组成, 而应该含有中着丝粒染色体。
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Gymnotus cf. carapo and Gynznotus sylvius are two fish species inhabiting the Upper Parana River Basin, presenting respectively 2n =54 and 2n = 40 chromosomes. In the present cytogenetic analysis, R-banding and telomere-sequence hybridization were carried out in order to determine the possible relationship between the karyotipes of these two species. Incorporation bands (R-bands) obtained for the two species allowed the identification of chromosome similarities, showing to be an usefull alternative to the G-banding methods, which fail in producing satisfying results in most of analyzed fish species. This approach, associated with the hybridization of telomeric sequences, permited to identify chromosomal rearrangements that could be used as indicators of karyotypic evolution within the group. In the present case, telomeric sequences were detected in the centromeric region of two metacentric chromosome pairs of Gymnotus sylvius. The results obtained after hybridization with the telomere sequences, coupled with the chromosome homeologies detected by R-banding, showed that G. cf carapo and G. sylvius should present a common ancestor, and this may also be corroborated by the similarities found in three chromosome pairs, that seem to have been conserved during the evolution of the two species. Based on the data here presented we propose that G. sylvius may have undergone a recent process of chromosome fusion that resulted in the diminution of its chromosome number.
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Cytogenetic analyses were carried out in five species of Pimelodella from the main sub-basins of Upper Parana River and Paraiba do Sul River. The diploid number ranged from 2n = 46 to 2n = 58 chromosomes, and all populations differed in the karyotype constitution. The presence of supernumerary chromosomes as well as the occurrence of a XX/XY sex chromosome system and heterochromatin polymorphisms were detected. The 18S rDNA FISH confirmed the presence of single NORs and revealed additional sites on supernumerary chromosomes. The number and location of 5S rDNA sites were variable. Aspects related to the karyotypic evolution within the genus are discussed.
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Fluorescence in situ hybridization (FISH) using telomeric and ribosomal sequences was performed in four species of toad genus Chaunus: C. ictericus, C. jimi, C. rubescens and C. schneideri. Analyses based on conventional, C-banding and Ag-NOR staining were also carried out. The four species present a 2n = 22 karyotype, composed by metacentric and submetacentric chromosomes, which were indistinguishable either after conventional staining or banding techniques. Constitutive heterochromatin was predominantly located at pericentromeric regions, and telomeric sequences (TTAGGG)(n) were restricted to the end of all chromosomes. Silver staining revealed Ag-NORs located at the short arm of pair 7, and heteromorphism in size of NOR signals was also observed. By contrast, FISH with ribosomal probes clearly demonstrated absence of any heteromorphism in size of rDNA sequences, suggesting that the difference observed after Ag-staining should be attributed to differences in chromosomal condensation and/or gene activity rather than to the number of ribosomal cistrons.
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Cytogenetics analyses in fish are important because they compose a private group among the vertebrates, occupying a central position in the animal evolution. The Perciforms Order, dominant in the marine and freshwater environment, it constitutes a model potentially useful in the genetic evaluation of populations, as well as in the understanding of its evolutionary processes. In spite of this, cytogenetics studies in this great group is scarce, above all for the inhabitants of sandy bottom and pelagics habits. The present work proposed to contribute for the cytogenetic characterization of nine species of fish marine of sandy bottom of the coast of Rio Grande do Norte (Brazil), identifying the evolutionary patterns related to the karyotype in these species and the existence of filogenetics affinities between them and other Perciformes. The animals were collected in the beaches of the Redinha, Ponta Negra and Búzios (Coast of Rio Grande do Norte) and in Saint Peter and Saint Paul Archipelago. Later on they were submitted to the cytogenetics technical that consist of mitotic estimulation, obtaining of mitotics chromosomes, proceeded by techniques of conventional coloration (Giemsa) and chromosomic bands (Ag-RONs and C band). Diploid number and fundamental number equal to 48 were observed in most of the species: Menticirrhus americanus, Ophioscion punctatissimus, Pareques acuminatus (Sciaenidae); Chloroscombrus chrysurus (Carangidae); Echeneis sp. 2 (Echeneidae); Archosargus probatocephalus (Sparidae) and Orthopristis ruber (Haemulidae). Trachinotus goodei (NF=52) (Carangidae) and Echeneis sp. 1 (Echeneidae) (NF=54) presented variation in NF, staying constant a diploid number equal to 48. RONs was situated in pericentromeric position in whole the scianids, and in the species Echeneis sp. 2 (22° pair), O. ruber and A. probatocephalus (1° pair), coinciding with great heterocromatics blocks in M. americanus (1° pair), P. acuminatus (2° pairl) and O. ruber (1° pair). RONs was also located in the telomeric area of the short arm of the 5° and 11° acrocentrics pairs in T. goodei, 4° and 19° pairs of C. chrysurus, 1° pair (sm) of Echeneis sp. 1. The C band detected centromeric blocks in most of the chromosomes of the species of Sciaenidae, Carangidae and Echeneidae, with great blocks in A. probatocephalus (4° pair). Heterocromatic blocks in telomeric areas in submetacentrics of Echeneis sp. 1, and pericentromerics in M. americanus (1° and 8° pairs), O. punctatissimus (1° pair) and P. acuminatus (2° pair) were also observed. It is noticed a marked conservatism cromossomic in the species of the family Scianidae and Haemulidae in what says respect to the number of acrocentrics chromosomes and the location of RONs. Even so it is outstanding the presence of heterocromatinization events during the karyotypic evolution of this family. Already in the families Sparidae and Carangidae, the obtained results reaffirm examples of small variations structural resultants of inversion and translocation Robertsonian, as important mechanisms of diversification karyotipical, as well as a pattern numerical evolutionary conserved, also observed in representatives of Echeneidae of Atlantic in relation to Pacific. The presence of RONs multiple, observed in the species T. goodei and C. chrysurus seems to represent a character derived in the family Carangidae. The results for the species O. ruber and A. probatocephalus suggest the presence of possible geographical or climatic barriers among populations of NE of Brazil in relationship the one of the SE
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Achiridae is an important family of the order Pleuronectiformes widely distributed in North, Central, and South America with freshwater and marine species. In the present study cytogenetic analyses comprising conventional and molecular techniques were carried out in seven species of this family. The following diploid numbers (2n) and fundamental numbers (FN) were obtained: Achirus declivis 2n = 34, FN = 52; Achirus lineatus 2n = 40, FN = 66; Catathyridium jenynsi 2n = 40 and FN = 50; Gymnachirus nudus 2n = 36 and FN = 50; Hypoclinemus mentalis 2n = 38 and FN = 54; Trinectes paulistanus 2n = 42 and FN = 52; and Trinectes sp. 2n = 38 and FN = 54. All species presented a single nucleolar organizer region (NOR) bearing chromosome pair and C-band positive segments mainly distributed at the pericentromeric position. The wide variation observed in chromosome number and FN suggests the occurrence of larger chromosome rearrangements in the family Achiridae if compared with other families of the same order.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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The chromosomes of hylids Hypsiboas albopunctatus, H. raniceps, and H. crepitans from Brazil were analyzed with standard and differential staining techniques. The former species presented 2n = 22 and 2n = 23 karyotypes, the odd diploid number is due to the presence of an extra element interpreted as B chromosome. Although morphologically very similar to the small-sized chromosomes of the A complement, the B was promptly recognized, even under standard staining, on the basis of some characteristics that are usually attributed to this particular class of chromosomes. The two other species have 2n = 24, which is the chromosome number usually found in the species of Hypsiboas karyotyped so far. This means that 2n = 22 is a deviant diploid number, resulted from a structural rearrangement, altering the chromosome number of 2n = 24 to 2n = 22. Based on new chromosome data, some possibilities were evaluated for the origin of B chromosome in Hypsiboas albopunctatus, as well as the karyotypic evolution in the genus, leading to the reduction in the diploid number of 2n = 24 to 2n = 22.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The chromosome study of five species of the family Elateridae, belonging to the subfamilies Agrypninae and Elaterinae, and the analysis of the cytogenetic data previously recorded for this family permitted the establishment of the main strategies of karyotypic differentiation that has occurred in the elaterids. In Agrypninae, the three species studied (Conoderus fuscofasciatus, Conoderus rufidens, and Conoderus sp.) showed the male karyotype 2n = 16 + X0. This karyotypic uniformity detected in these Conoderus species has also been shared with other species of the same genus, differing considerably from chromosomal heterogeneity verified in the subfamily Agrypninae. The use of the C-banding technique in C. fuscofasciatus and Conoderus sp. revealed constitutive heterochromatin in the pericentromeric region of the majority of the chromosomes. In C. fuscofasciatus, additional constitutive heterochromatin were also observed in the long arm terminal region of almost all chromosomes. Among the representatives of Elaterinae, the karyotype 2n = 18 + Xy(p) of Pomachilius sp.2 was similar to that verified in the majority of the Coleoptera species, contrasting with the chromosomal formula 2n = 18 + X0 detected in Cardiorhinus rufilateris, which is most common in the species of Elaterinae. In the majority of the elaterids, the chromosomal differentiation has frequently been driven by reduction of the diploid number; but, among the four cytogenetically examined subfamilies, there are some differences in relation to the trends of karyotypic evolution. (C) 2006 Elsevier Ltd. All rights reserved.