Chromosomal similarities between Nephilidae and Tetragnathidae indicate unique evolutionary traits among Araneoidea

D. Araujo, E. Paula-Neto, A. Brescovit, D. Cella, M. C. Schneider
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引用次数: 4

Abstract

Abstract Nephilid systematics has been subject to several changes in the last years, and the use of non-classical characters could be useful for evolutionary considerations. In this study, we analyzed the mitotic chromosomes of two nephilid spiders, Nephila clavipes and Nephila sexpunctata, using standard staining, silver nitrate impregnation and C-banding techniques, aiming to discuss the chromosomal similarities of Nephilidae and Tetragnathidae, and chromosome evolution within Nephila and Nephilingis. The basic karyotype characteristics observed in these two species (2n♂ = 22 + X1X20 and monoarmed chromosomes) were similar to those registered for most araneoid families, i.e., Araneidae, Linyphiidae, Nephilidae, Nesticidae and Tetragnathidae. However, the occurrence of both prominent secondary constrictions and nucleolar organizer regions (NORs) is a shared characteristic between Nephilidae and Tetragnathidae, considering that these regions were not observed in any other Araneoidea species cytogenetically examined. Furthermore, in the present study we showed that within Nephila and Nephilingis species, change in the number and location of NORs as well as in the quantity and distribution of constitutive heterochromatin were the main events responsible for chromosome evolution, and that these differences can be useful in the cytotaxonomy of this group.
Nephilidae和Tetragnathidae在染色体上的相似性表明了蛛形纲中独特的进化特征
在过去的几年里,Nephilid的分类已经发生了一些变化,使用非经典字符可能对进化的考虑是有用的。本研究采用标准染色、硝酸银浸渍和c带技术对两种Nephila clavipes和Nephila sexpunctata蜘蛛的有丝分裂染色体进行了分析,旨在探讨Nephila和Tetragnathidae的染色体相似性,以及Nephila和Nephilingis的染色体进化。这两个物种的基本核型特征(2n♂= 22 + X1X20,单臂染色体)与大多数蛛科(蛛科、Linyphiidae、Nephilidae、Nesticidae和Tetragnathidae)相似。然而,考虑到这些区域在任何其他蛛形纲物种的细胞遗传学研究中都没有观察到,Nephilidae和Tetragnathidae之间都存在显著的次生缩窄和核仁组织者区(NORs)。此外,在本研究中,我们发现在Nephila和Nephilingis物种中,NORs的数量和位置的变化以及组成异染色质的数量和分布的变化是负责染色体进化的主要事件,这些差异可以用于该类群的细胞分类。
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来源期刊
Italian Journal of Zoology
Italian Journal of Zoology 生物-动物学
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