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红蝽科(异翅亚目:红蝽科)棉红蝽属盖林·梅内维尔1831年的减数分裂研究。一、1878年伯格所描述的白带棉红蝽中的新XY染色体系统,异翅亚目中一种新的性染色体决定系统 。

Meiotic studies in Dysdercus Guérin Meneville 1831 (Heteroptera: Pyrrhocoridae). I. Neo-XY in Dysdercus albofasciatus Berg 1878, a new sex chromosome determining system in Heteroptera.

作者信息

Bressa M J, Papeschi A G, Mola L M, Larramendy M L

机构信息

Laboratorio de Citogenética y Cátedra de Citología, Facultad de Ciencias Naturales, Universidad Nacional de La Plata, Argentina.

出版信息

Chromosome Res. 1999;7(7):503-8. doi: 10.1023/a:1009262210338.

DOI:10.1023/a:1009262210338
PMID:10598565
Abstract

The genus Dysdercus Guérin Méneville 1831 represents the only taxon within the family Pyrrhocoridae in the New World. Based on morphological features, it has been suggested that American species derived from immigrants from the Old World, most probably from the Ethiopian Region. So far, 10 species from Dysdercus, including six species from the Old World and four species from the Neotropical Region have been cytogenetically analyzed. As is characteristic of Heteroptera, they possess holokinetic chromosomes and a prereductional type of meiosis. While the X1X20 sex chromosome system has been reported in all cytologically analyzed species of Dysdercus from the Old World, the system X0 has been found in all but one species from the New World, regardless of the number of autosomes in the complement. In the present study the male meiosis of D. albofasciatus Berg 1878 was studied in specimens from four different populations from Argentina. The diploid chromosome number was found to be 2n = 10 + neo-XY. The neo-X shows at each subterminal region a positively heteropycnotic and DAPI-bright segment which corresponds to the ancestral X-chromosome. The origin of this neo-XY system involved, most probably, a subterminal insertion of the ancestral X chromosome in an autosome, followed by a large inversion, which included part of the original X chromosome.

摘要

红蝽属(Dysdercus Guérin Méneville,1831)是新世界红蝽科内唯一的分类单元。基于形态特征,有人提出美洲物种源自旧世界的移民,很可能来自埃塞俄比亚地区。到目前为止,已对红蝽属的10个物种进行了细胞遗传学分析,其中包括6个旧世界物种和4个新热带地区物种。作为半翅目的特征,它们拥有全动型染色体和减数分裂前减数类型。虽然在所有经细胞学分析的旧世界红蝽属物种中都报道了X1X20性染色体系统,但在除一个物种外的所有新世界物种中都发现了X0系统,而不考虑染色体组中常染色体的数量。在本研究中,对来自阿根廷四个不同种群的标本研究了1878年贝格描述的白纹红蝽(D. albofasciatus)的雄性减数分裂。发现其二倍体染色体数为2n = 10 + neo - XY。neo - X在每个亚末端区域都显示出一个正异固缩且DAPI染色明亮的片段,它对应于祖先的X染色体。这个neo - XY系统的起源很可能涉及祖先X染色体在一条常染色体中的亚末端插入,随后发生了一次大的倒位,其中包括部分原始X染色体。

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本文引用的文献

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Achiasmatic male meiosis in two species of Saldula (Saldidae, Hemiptera).两种蚤蝇(蚤蝇科,半翅目)中的无交叉雄性减数分裂
Hereditas. 1983;99(1):131-4. doi: 10.1111/j.1601-5223.1983.tb00737.x.
加勒比阔胸犀金龟(鞘翅目:金龟科)的细胞遗传学特征:物种扩散前性染色体与常染色体融合及二倍体数目减少的证据
J Genet. 2009 Aug;88(2):177-82. doi: 10.1007/s12041-009-0025-y.
4
The evolution of a neo-XY1Y2 sex chromosome system by autosome-sex chromosome fusion in Dundocoris nodulicarinus Jacobs (Heteroptera: Aradidae: Carventinae).通过常染色体-性染色体融合在结节邓氏猎蝽(Dundocoris nodulicarinus Jacobs,半翅目:蛛缘蝽科:卡氏蛛缘蝽亚科)中形成新的XY1Y2性染色体系统的进化过程。
Chromosome Res. 2004;12(2):175-91. doi: 10.1023/b:chro.0000013155.99614.57.