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委内瑞拉刺鼠属(啮齿目,棘鼠科)的基因组组成。I. 基因组大小、C-异染色质和重复DNA的原位杂交模式

Genome composition in Venezuelan spiny-rats of the genus Proechimys(Rodentia, Echimyidae). I. Genome size, C-heterochromatin and repetitive DNAs in situ hybridization patterns.

作者信息

Garagna S, Pérez-Zapata A, Zuccotti M, Mascheretti S, Marziliano N, Redi C A, Aguilera M, Capanna E

机构信息

Dipartimento di Biologia Animale e Centro di Studio per l'Istochimica del CNR, Università di Pavia, Italy.

出版信息

Cytogenet Cell Genet. 1997;78(1):36-43. doi: 10.1159/000134622.

Abstract

The genome sizes of the Venezuelan spiny-rats Proechimys guairae guairae (2n = 48) and P. trinitatis (2n = 62) were evaluated and proved to be 12.5 +/- 0.5 pg and 12.6 +/- 0.3 pg respectively, the highest so far recorded among mammals; also the C-heterochromatin (32.7%, Coefficient of Variation [CV] 3.8 and 35.8%, CV 4.4) and GC (44.2%, CV 2.7 and 43.6%, CV 2.9) contents are very high. Highly repetitive (rep) DNAs were isolated from restriction enzyme digested genomic DNAs of both species. The intra- and inter-specific chromosomal allocations of these rep DNAs were analyzed by direct and cross-hybridizations. Results show that the two genomes harbour several rep DNA families which show both species-specificity and interspecific relatedness in their in situ hybridization patterns. The rep DNA families show an equilocal distribution at both the pericentromeric areas of all chromosomes and in the whole arms of two pairs of the uniarmed group, suggesting co-evolution of the rep DNAs. P. g. guairae BamHI digested DNA, when cloned and sequenced, proved to consist of a long "composite" unit (1,239 bp) containing two copies of each of 75-bp and 110-bp internal subrepeats. Karyotype restructuring between P. g. guairae and P. trinitatis, mainly due to Robertsonian changes, was accompanied by slight intra- and intergenomic movements of the putative satellite DNA families within stable genome sizes and C-heterochromatin contents. We discuss the findings obtained in Proechimys in the light of those regarding the kangaroo rat, the pocket gopher and the house mouse; they support the idea that karyotype restructuring could be the expression of molecular driven events of rep DNA amplification and homogenisation through non-homologous chromosomes.

摘要

对委内瑞拉刺鼠(Proechimys guairae guairae,2n = 48)和特立尼达刺鼠(P. trinitatis,2n = 62)的基因组大小进行了评估,结果证明分别为12.5±0.5皮克和12.6±0.3皮克,是迄今为止哺乳动物中记录到的最高值;其C-异染色质含量(分别为32.7%,变异系数[CV]为3.8;以及35.8%,CV为4.4)和GC含量(分别为44.2%,CV为2.7;以及43.6%,CV为2.9)也非常高。从这两个物种经限制性内切酶消化的基因组DNA中分离出高度重复(rep)DNA。通过直接杂交和交叉杂交分析了这些rep DNA在种内和种间染色体上的分布情况。结果表明,这两个基因组含有几个rep DNA家族,它们在原位杂交模式中既表现出物种特异性又表现出种间相关性。这些rep DNA家族在所有染色体的着丝粒周围区域以及一对双臂组的两条染色体的整条臂上均呈现等位点分布,表明rep DNA发生了共同进化。对P. g. guairae经BamHI消化的DNA进行克隆和测序后发现,其由一个长的“复合”单元(1239 bp)组成,该单元包含75 bp和110 bp内部亚重复序列的各两个拷贝。P. g. guairae和P. trinitatis之间的核型重组主要是由于罗伯逊易位,在基因组大小和C-异染色质含量稳定的情况下,伴随着假定卫星DNA家族在基因组内和基因组间的轻微移动。我们根据在更格卢鼠、囊鼠和家鼠方面的研究结果来讨论在刺鼠属中获得的这些发现;它们支持这样一种观点,即核型重组可能是rep DNA通过非同源染色体进行扩增和同质化的分子驱动事件的表现。

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