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首页> 外文期刊>Botanical Journal of the Linnean Society >South African fireweed Senecio madagascariensis (Asteraceae) in Argentina: relevance of chromosome studies to its systematics.
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South African fireweed Senecio madagascariensis (Asteraceae) in Argentina: relevance of chromosome studies to its systematics.

机译:阿根廷的南非杂草 Senecio madagascariensis (菊科):染色体研究与其系统研究的相关性。

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摘要

The systematic identity of Senecio madagascariensis is ratified against the opinion that it is conspecific with Senecio inaequidens. Both species are native to South Africa and have been merged in the 'Senecio inaequidens complex', a group of entities difficult to distinguish from each other. Senecio madagascariensis is widespread in South America and Australia, where it is an invasive weed. Mitotic and meiotic studies were conducted on Argentinian material; chromosome counts solved the chromosome number controversy, validating 2n=20. The karyotype was symmetrical, composed of ten pairs of metacentric chromosomes varying from 1.62 to 2.38 micro m in length. The most frequent number of satellited chromosomes was three, but their position was difficult to assign. Meiosis was regular, with a configuration of ten predominantly open bivalents. Univalents and quadrivalents were rarely observed. High frequencies of secondary associations of bivalents, chromosome asynchrony and bivalent grouping were documented, reinforcing the hypothesis that x=5 is the basic chromosome number. Pollen stainability ranged from 94 to 99%. The relevance of chromosomal studies in the circumscription of S. madagascariensis is discussed. Hybridization and polyploidy, as principal evolutionary forces in this genus, explain the systematic difficulties.
机译:批准了马达加斯加千里光的系统身份,而不是认为它与 senecio inaequidens 是同种的。这两个物种都原产于南非,并已合并到“ Senecio inaequidens 复合体”中,这是一组难以区分的实体。 马达加斯加千里光(senecio madagascariensis)在南美和澳大利亚很普遍,是一种入侵性杂草。对阿根廷物质进行了有丝分裂和减数分裂研究。染色体计数解决了染色体数目争议,验证2 n = 20。核型是对称的,由十对变心染色体组成,长度从1.62到2.38微米不等。卫星染色体最频繁的数目是三,但它们的位置很难分配。减数分裂是规则的,具有十种主要开放的二价构型。很少观察到单价和四价。记录了高价的二价二级关联,染色体异步性和二价分组,强化了 x = 5是基本染色体数的假设。花粉的可染性范围为94%至99%。染色体研究与 S的限制相关。讨论了马达加斯加(Madagascariensis)。杂交和多倍体作为该属的主要进化力,解释了系统的困难。

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