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Oogenesis and the Chromosomes of the Parthenogenic Root-knot NematodeMeloidogyne incognita

机译:单性生殖根结线虫的卵子发生和染色体南方根结线虫

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摘要

220 populations of Meloidogyne incognita and related forms from 46 countries reproduced by mitotic parthenogenesis (apomixis). Determination of somatic chromosome numbers from oogonia and oocytes revealed the existence of a predominant, possibly triploid race A with 3n = 40 to 46 and a rare, diploid race B with 2n = 32 to 36 chromosomes. There is no correlation between cytological races and the four recognized host races of this species. The characteristic behavior of prophase I chromosomes of maturing oocytes, which results in a prolonged prophase stage, is a unifying feature of all forms of M. incognita and supports monophyletic evolution, distinct from that of other Meloidogyne species. Extensive chromosomal polymorphism detected among populations can be helpful in elucidating the cytological pathway of evolution of the species.
机译:来自46个国家的220个南方根结线虫和相关形式的种群通过有丝分裂的孤雌生殖(apomixis)复制。确定来自卵原细胞和卵母细胞的体细胞染色体数目表明存在一个主要的可能三倍体种族A,其nn为40至46,以及一个罕见的二倍体种族B,其nn为32至36至36。细胞学种族与该物种的四个公认的宿主种族之间没有相关性。成熟卵母细胞的前期I染色体的特征行为导致延长的前期阶段,是所有形式的隐枝隐孢子虫的统一特征,并支持单系进化,这与其他Meloidogyne物种不同。在种群中检测到的广泛的染色体多态性可有助于阐明物种进化的细胞学途径。

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