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海胆(Lytechinus pictus)中一个新的串联重复早期组蛋白基因家族:串联阵列内协同进化的证据

A new family of tandem repetitive early histone genes in the sea urchin Lytechinus pictus: evidence for concerted evolution within tandem arrays.

作者信息

Holt C A, Childs G

出版信息

Nucleic Acids Res. 1984 Aug 24;12(16):6455-71. doi: 10.1093/nar/12.16.6455.

Abstract

We have isolated and characterized a third nonallelic tandemly arrayed histone cluster (LpE) from the sea urchin Lytechinus pictus. Although this tandem array is not intermingled with the other two early histone gene families also found in the L. pictus genome, the order and polarity of the five histone coding sequences in this family are the same as every other well characterized sea urchin early histone gene family. Heteroduplex analysis and restriction endonuclease mapping experiments indicate that the LpE family is more closely related to the B-C than the A-D family of early histone genes. Examination of several individual sperm DNA samples has revealed considerable polymorphism in each of the three tandem repeat families. Within an individual, however, each family is remarkably homogeneous. Thus, our results indicate that rapid fixation of variants acts to homogenize the members of a single tandem array at a considerably faster rate within a family than between families. However, at least some exchange of sequences between families is evident based on the conservation of many restriction endonuclease recognition sites and from analysis of a a cosmid clone in which the A-D and E tandem repeats are found adjacent to one another. These differences in the rate of fixation of variants within and between these families are likely to be responsible for the maintenance of diversity between the different families.

摘要

我们从海胆 Lytechinus pictus 中分离并鉴定了第三个非等位基因串联排列的组蛋白簇(LpE)。尽管这个串联阵列没有与在 L. pictus 基因组中发现的其他两个早期组蛋白基因家族混合,但该家族中五个组蛋白编码序列的顺序和极性与其他每个特征明确的海胆早期组蛋白基因家族相同。异源双链分析和限制性内切酶图谱实验表明,LpE 家族与早期组蛋白基因的 B - C 家族比 A - D 家族关系更密切。对几个个体精子 DNA 样本的检测揭示了三个串联重复家族中每个家族都存在相当大的多态性。然而,在一个个体内,每个家族都非常均匀。因此,我们的结果表明,变体的快速固定作用使得单个串联阵列的成员在家族内部比家族之间以更快的速度同质化。然而,基于许多限制性内切酶识别位点的保守性以及对一个粘粒克隆的分析(在该克隆中发现 A - D 和 E 串联重复相邻),家族之间至少存在一些序列交换是明显的。这些家族内部和之间变体固定速率的差异可能是维持不同家族之间多样性的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/215f/320089/3a3d98cc4ef7/nar00334-0108-a.jpg

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