12 resultados para Senecioneae


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Ligularia, a highly diversified genus in the eastern Qinghai-Tibet Plateau and adjacent areas, was chosen as a suitable subject in which to study speciation patterns in this 'hot spot' area at the chromosomal level. Chromosome numbers and karyotypes were studied in 23 populations of 14 species, most of which are endemic to this area. The basic number x = 29 was confirmed for all species. Ligularia virgaurea was found to have diploid and triploid cytotypes, 2n = 58 and 87. Other species are only diploid, with 2n = 58. The karyotypes of all populations within any species, and all species spanning most sections and covering most of the morphological range in Ligularia, are very similar to each other, belonging to type 2A according to Stebbin's classification. This karyotype was also found in its close allies, e.g. Cremanthodium, Ligulariopsis, Parasenecio, and Sinacalia. Aneuploid reduction of chromosome number from 2n = 60 to 58 and karyotypic variation was found in Ligularia and its allies. Such a chromosomal pattern with few polyploids infers that variation of karyotype structure at the diploid level seems to be the predominant feature of chromosomal evolution in this group and sympatric speciation via hybridization and polyploidization has played a minor role in its species diversity. (C) 2004 The Linnean Society of London

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Twenty-two populations of seven species of Cremanthodium from high altitude regions of western China were observed karyologically. C. ellisii, C. microglossum, C. brunneo-pilosum, C. stenoglossum, C. discoideum and C. lineare all had the same chromosome number of 2n=58 whereas C. humile had 2n=60. All chromosome numbers of these species are documented here for the first time. The basic number of x=30 is new for this genus. The karyotypes of all species belong to 2A type according to Stebbins' asymmetry classification of karyotypes. Two basic chromosome numbers, x=30 and x=29 in Cremanthodium, correspond exactly to two branching patterns in this genus, sympodial versus monopodial. The systematic and taxonomic statuses of the sympodial species need further study. The karyomorphological data provide no support to the sectional subdivision in Cremanthodium. (C) 2001 The Linnean Society of London.

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ZUSAMMENFASSUNG Die vorgelegte Dissertation enthält zwei Teile. Der erste beinhaltet eine Einführung in die Flora Südostasiens und die Untersuchungsgruppe Asteraceae-Senecioneae Cass. mit den Gattungen Cissampelopsis (DC.) Miq., Gynura Cass. und Crassocephalum Moench (Kapitel 1). Der zweite Teil besteht aus drei Manuskripten, die auf originalen Forschungsergebnissen basieren (Kapitel 2-4). In Kapitel 2 wird eine Revision der asiatischen Gattung Cissampelopsis vorgelegt. Die folgenden zwei Sektionen mit zehn Arten und zwei Varietäten werden anerkannt: sect. Buimalia C. Jeffrey & Y. L. Chen mit C. buimalia (Buch.-Ham. ex D. Don) C. Jeffrey & Y. L. Chen, C. erythrochaeta C. Jeffrey & Y. L. Chen und C. calcadensis (Ramasw.) C. Jeffrey & Y. L. Chen sowie sect. Cissampelopsis mit C. glandulosa C. Jeffrey & Y. L. Chen, C. walkeri (Arn.) C. Jeffrey & Y. L. Chen mit var. walkeri und var. floccosa Vanijajiva & Kadereit (var. nov.), C. corifolia C. Jeffrey & Y. L. Chen, C. volubilis (Bl.) Miq, C. ansteadii (Tadul. & Jacob) C. Jeffrey & Y. L. Chen, C. spelaeicola (Van.) C. Jeffrey & Y. L. Chen und C. corymbosa (Wall. ex DC.) C. Jeffrey & Y. L. Chen. Schlüssel, Artbeschreibungen, Fotographien von Blütenmerkmalen und Verbreitungskarten werden präsentiert. Kapitel 3 beinhaltet die Revision der paläotropischen Gattung Gynura. Vierundvierzig Arten werden anerkannt, darunter die folgenden drei Neubeschreibungen: G. davisii Vanijajiva & Kadereit, G. siamensis Vanijajiva & Kadereit und G. villosus Vanijajiva & Kadereit. Gynura dissecta (F. G. Davies) Vanijajiva & Kadereit, G. annua (F. G. Davies) Vanijajiva & Kadereit und G. aurantiaca (Bl) DC. subsp. parviflora (F. G. Davies) Vanijajiva & Kadereit sind Neukombinationen. Ein Schlüssel, Artbeschreibungen und Verbreitungskarten werden vorgelegt. In Kapitel 4 wird eine Analyse von Crassocephalum in Asien, einer aus Afrika eingeschleppten Gattung, präsentiert. Diese Untersuchung basiert auf umfangreicher Feldarbeit, Herbarstudien, Analysen der Pollen- und Samenfertilität, Chromosomenzählungen sowie ITS- und trnL-F-Sequenzen. Die Studie ergab, dass Crassocephalum in Asien mit zwei Arten und deren Hybrid vertreten ist. Die zwei Arten sind C. crepidioides (Benth.) S. Moore und C. rubens (Juss. ex Jacq.) S. Moore, wobei letztere einen Neufund für Asien darstellt. Der Hybrid aus diesen beiden Arten resultiert aus einer Kreuzung von C. crepidioides (2n=40) als weiblichem und C. rubens (2n=40) als männlichem Elter.

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Se revisa taxonómicamente Senecio sect. Crociseris (Compositae, Senecioneae),una de las cuatro principales secciones del género en el ámbito de Eurasia y el norte de África. Este grupo comprende hierbas rizomatosas, distribuidas principalmente del oeste de Europa y noroeste de África al oeste asiático, y presenta la mayor diversidad en el Mediterráneo septentrional. El nuevo tratamiento taxonómico que se propone reconoce 28 especies y 8 subespecies. Se ha hecho un especial esfuerzo en el análisis de la variabilidad del gr. S. doronicum, cuya sistemática ha sido objeto de controversia durante mucho tiempo. En este grupo se aceptan tres especies: S. doronicum, S.lagascanus, y S. provincialis, la primera con tres subespecies: subsp. doronicum, subsp.longifolius, y subsp. orientalis. Con el objetivo de indagar en las relaciones de las especies dentro de la sección y de ésta con otros grupos de Senecio, se han llevado a cabo análisis filogenéticos basados en secuencias ITS y de cloroplasto. Los resultados sugieren que la sect. Crociseris es un grupo parafilético, ya que incluye las especies secuenciadas de la sect. Doria. Además, complejos patrones de algunas secuencias ITS sugieren eventos de hibridación. Como resultado del estudio taxonómico se proponen las siguientes combinaciones: Senecio doronicum subsp. longifolius(Willk.) J. Calvo, Senecio doronicum subsp. orientalis (Ten.) J. Calvo, Senecio macedonicus subsp. barckhausiaefolius (Boiss. & Heldr.) J. Calvo, y Senecio racemosus subsp. kirghisicus(DC.) J. Calvo. Por otro lado, S. ruthenensis de Francia y S. lusitanicus de Portugal han sido sinonimizados a S. lagascanus, así como S. ovatifolius, S. pisidicus y S. tmoleus de Anatolia a S. kolenatianus, S. olympicus, y S. castagneanus respectivamente, S.bertramii de Líbano a S. cilicius, y S. delbesianus de Siria a S. racemosus subsp. racemosus. Se han lectotipificado setenta y cinco nombres, y neotipificado S. pyrenaicus y S. scopolii. Senecio gerardi Godr., S. doronicum (L.) L. y S. paucifolius S.G. Gmel. se propusieron a conservar. Se incluyen claves de identificación, descripciones detalladas, mapas de distribución e ilustraciones. Nueve táxones han sido ilustrados por primera vez.

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The prevalence of woody species in oceanic islands has attracted the attention of evolutionary biologists for more than a century. We used a phylogeny based on sequences of the internal-transcribed spacer region of nuclear ribosomal DNA to trace the evolution of woodiness in Pericallis (Asteraceae: Senecioneae), a genus endemic to the Macaronesian archipelagos of the Azores, Madeira, and Canaries. Our results show that woodiness in Pericallis originated independently at least twice in these islands, further weakening some previous hypotheses concerning the value of this character for tracing the continental ancestry of island endemics. The same data suggest that the origin of woodiness is correlated with ecological shifts from open to species-rich habitats and that the ancestor of Pericallis was an herbaceous species adapted to marginal habitats of the laurel forest. Our results also support Pericallis as closely related to New World genera of the tribe Senecioneae.

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千里光族是菊科中最大的一个族,约含有120属3400多种,全世界分布。千里光族的族下分类与系统发育一直是菊科研究中的难点。Jeffrey&Chen(1984)和千里光亚族(7属)。自此以后,有关东亚款冬亚族的范畴、亚族内各属的系统位置与亲缘关系就成了千里光族系统学研究中争论的焦点,至今仍未有定论。陈艺(1997)在东亚款冬亚族内发表假橐吾属新属。根据Jeffrey&Chen(1984)的概念,东亚款冬亚族现含13属。东亚款冬亚族目前存在的系统学问题主要有:(1)毛冠菊属是否与款冬亚族内的款冬属及蜂斗菜属近缘;(2)狗舌草亚族所辖3属是否是款冬亚族的自然成员;(3)东亚款冬亚族13属的系统位置及其亲缘关系;(4)东亚款冬亚族的影响范畴。 针对上述问题,本文以发现新的系统学证据为主要目的,较为全面地研究了东亚款冬亚族及其相关类群的外部形态学,首次报道了18属45种植物的花部微观性状,19属64种105个居群的核形态学特征,10属15种植物花粉壁的超薄结构及13属28种植物花粉的外壁纹饰,3种植物的胚胎发育和6种植物的ITS基因序列;并对所获得的证据进行了比较与综合分支分析。根据所获系统学资料,对东亚款冬亚族的上述系统学问题进行了讨论。主要实验结果及结论总结如下。 1. 外部形态 较为全面地观察与分析了东亚款冬亚族及其相关类群外部形态性状及其演化趋势,指出根状茎分枝方式、幼叶出土性状、花部茎基部叶是否宿存、叶柄是否纤维状宿存、花序托空心或实心、花药基部结构等不被以前作者重视或忽视的形态学性状可能具有重要的系统学价值。外部形态上,毛冠菊属与千里光族内的千里光属与款冬属等类群没有亲缘关系,而与紫菀族存在一定的渊源;狗舌草亚族则介于千里光亚族和款冬亚族之间;东亚款冬亚族13属可依据外部形态划分为6个属群。 2. 花部微观性状 东亚款冬亚族及其相关类群的花部微观性状主要包括:花药顶端不育组织、花药药室内壁、花药基部、花药领、花柱分枝顶端、花柱毛被、花柱分枝内表面构型、果柄细胞列数等。花部微观性状研究表明:毛冠菊属似乎应作为紫菀族中的一个孤立属;狗舌草亚族在某些衍征上与千里光亚族接近,而它的原始性状则类似于款冬亚族;根据花部微观性状对东亚款冬亚族的13个属划分出的自然属群与形态性状分析所得结果基本一致。 3. 核形态学 毛冠菊属的染色体基数为x=9,与紫菀族相同:而与千里光族和旋覆花族的染色体x=10存在显著的区别。狗舌草亚族中新发现2n=24、60、72三个染色体数目,亚族内染色体基数之间的演化关系不清楚,利用染色体基数来探讨狗舌草亚族所辖属的系统位置和属间关系仍还比较困难。东亚款冬亚族的染色体基数主要有x=30、29、28、27、26;款冬亚族中普遍存在的染色体基数x=30可能有3种来源;核型可分为2A、3A、2B三大类型,虽然三种类型之间的染色体基数(x=30)有可能是不同起源的,但从整个千里光族来看,3A、2B应是较进化的类型。根据核形态学特征,东亚款冬亚族可分为款冬型、蟹甲草型和大吴风草型三类。在蟹甲草型染色体进化支上,存在染色体的非整倍性下降趋势。东亚款冬亚族存在的种内多倍性可能与不同的生境有关。 4. 花粉学 通过对东亚款冬亚族及其相关类群的花粉壁超微结构与扫描电镜观察,发现花粉壁超微结构存在“千里光型”和“向日葵型”两种类型。扫描电镜下,花粉外壁均为刺状纹饰,但在刺的长短、刺部是否膨大、刺基膨大上的纹饰以及刺基之间的纹饰等方面存在差别。毛冠菊属的花粉性状组合支持将其置于紫菀族中。狗舌草亚族的花粉性状与款冬亚族的有些属相似。款冬亚族各属的花粉生状组合所划分的属群与形态学、核形态学等方面的研究结果较为一致。 5. 胚胎学 款冬、掌裂橐吾和珠毛蟹甲草共同拥有药壁发育双子叶型;绒毡层发育属“The Comos bipinnatus”型;成熟花粉为3细胞型;单珠被,薄珠心,倒生胚珠;具发育相似的珠被绒毡层:胚橐发育4孢子型等胚胎学特征,但它们在胚囊发育方式、反足细胞数目、发殖物候上还存在区别。三属代表植物的胚胎学研究支持将它们作为同一亚族的成员。 6. 分子数据 利用本研究测得的华千里光属4种、狗舌草属1种和大吴风草属的ITS-1和ITS-2基因序列,结合从Genbank中得出的千里光族5属8种植物得ITS序列,用PAUP软件进行分析。研究结果表明,染色体基数、花粉超微结构、叶型和叶脉等性状在ITS分支图上存在趋同进化;华千里光属和狗舌草属不是单系群。并讨论了一些分类群的亲缘关系。 7. 分支分析 选择东亚款冬亚族和狗舌草亚族各属的代表种作为终端代表类群进行分支分析;分支分析表明染色体基数、与头状花序有关的性状、叶型及叶脉等性状存在较多的平行与逆转进化,而根状茎分枝类型、花部微观性状以及花粉性状则表现出较大的一致性。根据分支结果,作者认为应建立包括狗舌草亚族在内的广义东亚款冬亚族。 8. 系统学 毛冠菊属的性状组合支持将其置于紫菀族,排除在千里光族之外。广义东亚款冬亚族可分为7个属群:蟹甲草属群(包括蟹甲草属,华蟹甲草属,小蟹甲草属,兔儿伞属,蟹甲木属)、毛柱菊属群(毛柱菊属)、橐吾属群(包括橐吾属,垂头菊属,假橐吾属)、狗舌草属群(狗舌草属,华千里光属,羽叶千里光属)、多榔菊属群(多榔菊属)、大吴风草属群(大吴风草属)、款冬属群(款冬属,蜂斗菜属)。总结与讨论了各属群的系统位置、亲缘关系与存在的分类学问题。描述了华千里光属1新种。

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Milula, a monotypic genus endemic to the Qinghai-Tibetan Plateau, was found to be nested deeply within Allium by the molecular phylogeny despite the aberrant morphology. It remains unknown what had contributed to the rapid evolution of morphology and origin of this exceptional species. In contrast to a previous report of its karyotypes with 2n = 16 = 8M+8SM (2SAT), similar to most species of Allium, a rather different karyotype, 2n = 20 = 4M +10SM+6T (2SAT), was found in examined 31 individuals from 6 populations of M. spicata distributed in the central Tibet. Karyotypes of 7 Allium species occurring in the Qinghai-Tibetan Plateau were further reported. The basic number x = 8 was confirmed for all of them and their karyotypes consist mainly of metacentric and submetacentric chromosomes with rare subterminal and terminal chromosomes. The karyotype of M. spicata is distinctly different from that of most Allium species occurring in the plateau through a complete comparison of all available species in this region and adjacent areas. However, the same chromosome number and similar karyotypic structure were found in A. fasciculatum of Sect. Bromatorrhiza, indicating a possible close relationship between them. But this similarity is contradictory to the preliminary molecular phylogenetic analysis that Milula was closely related to A. cyathophorum of Sect. Bromatorrhiza with x=8, but the other species with x=10 and 11 in this section were clearly placed in the other clade. We therefore suggested that the paralleling evolution from x=8 to x=9, 10 and 11 with increasing asymmetry of karyotype possibly due to the chromosomal Robertsonian translocation might occur separately in the two recognized phylogenetic lineages of Allium. In addition to aneuploidy and following change of the chromosomal structures, the habitat isolation due to the recent uplift of the Qinghai-Tibetan Plateau and the Quaternary climatic oscillation, plays a greater role in origin of Milula and other endemic species (genera) with aberrant morphology from their progenitors.

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The Ligularia-Cremanthodium-Parasenecio (L-C-P) complex of the Tussilagininae (Asteraceae: Senecioneae) contains more than 200 species that are endemic to the Qinghai-Tibetan Plateau in eastern Asia. These species are morphologically distinct; however, their relationships appear complex. A phylogenetic analysis of members of the complex and selected taxa, of the tribe Senecioneae was conducted using chloroplast (ndhF and trnL-F) and nuclear (ITS) sequences. Phylogenetic trees were constructed from individual and combined datasets of the three different sequences. All analyses suggested that Doronicum, a genus that has been included in the Tussilagininae, should be excluded from this subtribe and placed at the base of the tribe Senecioneae. In addition, the Tussilagininae should be broadly circumscribed to include the Tephroseridinae. Within the expanded Tussilagininae containing all 13 genera occurring in eastern Asia, Tussilago and NSPetasites diverged early as a separate lineage, while the remaining I I genera comprise an expanded L-C-P complex clade. We suggest that the L-C-P clade, which is largely unresolved, most likely originated as a consequence of an explosive radiation. The few monophyletic subclades identified in the L-C-P clade with robust support further suggest that some genera of Tussilagininae from eastern Asia require generic re-circumscriptions given the occurrence of subclades containing species of the same genus in different parts of the phylogentic tree due to homoplasy of important morphological characters used to delimit them. Molecular-clock analyses suggest that the explosive radiation of the L-C-P complex occurred mostly within the last 20 million years, which falls well within the period of recent major uplifts of the Qinghai-Tibetan Plateau between the early Miocene to the Pleistocene. It is proposed that significant increases in geological and ecological diversity that accompanied such uplifting, most likely promoted rapid and continuous allopatric speciation in small and isolated populations, and allowed fixation or acquisition of similar morphological characters within unrelated lineages. This phenomenon, possibly combined with interspecific diploid hybridization because of secondary sympatry during relatively stable stages between different uplifts, could be a major cause of high species diversity in the Qinghai-Tibetan Plateau and adjacent areas of eastern Asia. (c) 2005 Elsevier Inc. All rights reserved.

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Chloroplast DNA restriction-site variation was surveyed among 40 accessions representing all 11 species of giant senecios (Dendrosenecio, Asteraceae) at all but one known location, plus three outgroup species. Remarkably little variation (only 9 variable sites out of roughly 1000 sites examined) was found among the 40 giant senecio accessions, yet as a group they differ significantly (at 18 sites) from Cineraria deltoidea, the closest known relative. This pattern indicates that the giant senecios underwent a recent dramatic radiation in eastern Africa and evolved from a relatively isolated lineage within the Senecioneae. Biogeographic interpretation of the molecular phylogeny suggests that the giant senecios originated high on Mt. Kilimanjaro, with subsequent dispersion to the Aberdares, Mt. Kenya, and the Cherangani Hills, followed by dispersion westward to the Ruwenzori Mountains, and then south to the Virunga Mountains, Mt. Kahuzi, and Mt. Muhi, but with dispersion back to Mt. Elgon. Geographic radiation was an important antecedent to the diversification in eastern Africa, which primarily involved repeated altitudinal radiation, both up and down the mountains, leading to morphological parallelism in both directions. In general, the plants on a given mountain are more closely related to each other than they are to plants on other mountains, and plants on nearby mountains are more closely related to each other than they are to plants on more distant mountains. The individual steps of the geographic radiation have occurred at various altitudes, some clearly the result of intermountain dispersal. The molecular evidence suggests that two species are extant ancestors to other species on the same or nearby mountains.