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The Two Nuclei of Giardia Each Have Complete Copies of the Genome and Are Partitioned Equationally at Cytokinesis

机译:贾第鞭毛虫的两个核各具有完整的基因组拷贝,并按细胞分裂法按等式分配

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Giardia lamblia is medically important as a cause of diarrhea and malabsorption throughout the world and is thought to be one of the earliest-branching eukaryotes on a phylogenetic tree. Nevertheless, the mechanisms of inheritance are largely unknown. The trophozoites of Giardia and other diplomonads are interesting in their possession of two nuclei that are identical or similar in several respects. They replicate at nearly the same time, have similar quantities of DNA, and are both transcriptionally active. We used fluorescence in situ hybridization to demonstrate that genes from each of the five chromosomes are found in both nuclei, confirming that each nucleus has at least one complete copy of the genome. This raises a second question. The alleles of a gene in different nuclei are expected to accumulate different mutations, but surprisingly, the degree of heterozygosity in a clone is very low. One possible mechanism for eliminating sequence differences between nuclei is that each daughter cell receives two copies of the same nucleus at cell division. We used trophozoites with a plasmid transfected into a single nucleus to demonstrate that the two nuclei are partitioned equationally at cytokinesis. The mechanism(s) by which homozygosity is maintained will require further investigation.
机译:贾第鞭毛虫(Giardia lamblia)在医学上是引起全世界腹泻和吸收不良的重要原因,被认为是系统发育树上最早分支的真核生物之一。尽管如此,继承的机制在很大程度上还是未知的。贾第虫(Giardia)和其他双足纲动物的滋养体具有两个在几个方面相同或相似的核,因此很有趣。它们几乎同时复制,具有相似数量的DNA,并且都具有转录活性。我们使用荧光原位杂交来证明在两个核中都发现了来自五个染色体中每个染色体的基因,从而确认每个核都具有至少一个完整的基因组拷贝。这就提出了第二个问题。预期不同核中基因的等位基因会积累不同的突变,但令人惊讶的是,克隆中的杂合度非常低。消除细胞核之间的序列差异的一种可能的机制是,每个子细胞在细胞分裂时都接受相同细胞核的两个拷贝。我们将滋养体与转染到单个核中的质粒一起使用,以证明两个核在胞质分裂中均等分配。维持纯合性的机制将需要进一步研究。

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