首页> 外文期刊>Cytologia : International journal of cytology >Chromosome Diversity of Japanese Taraxacum officinale Weber ex F. H. Wigg. s.l. (Common Dandelion; Asteraceae)
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Chromosome Diversity of Japanese Taraxacum officinale Weber ex F. H. Wigg. s.l. (Common Dandelion; Asteraceae)

机译:日本蒲公英Weber的染色体多样性F.H. Wigg。 s.l. (普通蒲公英;菊科)

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Taraxacwn officinale (common dandelion; Asteraceae) was first noted as an introduced plant in Japan in 1904 (Makino 1904). Currently, this species grows in plains and mountainous habitats throughout Japan, from Hokkaido to Ryukyu. The present study collected 3,941 individuals from 108 sites (on average, 36.5 plants per population) throughout the Japanese archipelago, and examined their somatic chromosome counts. We found that Japanese T. officinale is a polyploid complex (x=8) composed of triploid (3x) (2n=24) and tetraploid (4x) (2n=32) individuals. We also found that 3x T. officinale is distributed throughout Japan, from Hokkaido to Okinawa, whereas 4x tetraploid T. officinale is limited to Honshu, Shikoku and Kyushu. Karyotypes were examined for 37 individuals that were used in the plants examined for their chromosome numbers (Table 2). This yielded a total of eight forms of 3x T. officinale and four forms of 4x T. officinale. Previously, 2n=24+2B chromosomes and 2n=26 chromosomes have been reported for Japanese T. officinale. However, these were considered miscounts due to erroneous recognition of satellite bodies as two B chromosomes or two chromosomes of the two large satellites in some races of 3x T. officinale with large satellites. Taraxacum officinale has hundreds of apomictic microspecies worldwide. Our study reveals that some races in both 3x and 4x T. officinale can be differentiated according to their karyotypes.
机译:蒲公英(普通蒲公英;菊科)于1904年在日本首次被引种(Makino 1904)。目前,该物种生长在从北海道到琉球的整个日本的平原和山区栖息地。本研究从日本群岛的108个地点(平均每人口36.5株植物)中收集了3,941个个体,并检查了它们的体细胞染色体数。我们发现日本三叶草是由三倍体(3x)(2n = 24)和四倍体(4x)(2n = 32)个体组成的多倍体复合物(x = 8)。我们还发现,从北海道到冲绳,日本各地分布着3倍的T. officinale,而本州,四国和九州则有4倍的四倍体T. officinale。检查了用于植物中的37个个体的核型,检查了它们的染色体数(表2)。这产生总共八种形式的3x T.officinale和四种形式的4x T.officinale。以前,日本厚皮草已报道了2n = 24 + 2B条染色体和2n = 26条染色体。但是,由于在一些大型卫星的3x T. officinale种族中,卫星体被错误地识别为两个大卫星的两个B染色体或两个大卫星的两个染色体,因此将其视为错误计数。蒲公英在世界范围内有数百种无融合生殖的小种。我们的研究表明,在3x和4x厚朴中,有些种族可以根据其染色体核型进行区分。

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