遗传背景对黑腹果蝇突触复合体分解时间的影响

IF 2.5 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Chromosoma Pub Date : 2020-12-01 Epub Date: 2020-10-17 DOI:10.1007/s00412-020-00742-9
Emily R Wesley, R Scott Hawley, Katherine Kretovich Billmyre
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引用次数: 0

摘要

在不同遗传背景下进行的实验偶尔会出现实验重现性失效的情况。这在果蝇中是一个严重的问题,因为果蝇没有标准对照种群。在这里,我们通过展示减数分裂的一个重要事件--突触复合体(SC)的分解--的时间在不同的遗传背景下是不同的,来说明控制遗传背景的重要性。我们评估了三个不同对照种群的SC分解情况,发现其中一个对照种群(y w; svspa-pol)的SC分解时间早于俄勒冈-R和w1118种群。我们用编码 SC 关键结构成分的 c(3)G 基因发生了无效突变的杂合子蝇进一步检测了这三种对照种群中 SC 的分解情况。在不同的对照背景下,c(3)G杂合子苍蝇的SC分解时间不同,这证明了该突变的敏感效应。这些观察结果表明,在某些背景中,SC的维持与c(3)G的剂量有关。最后,染色体的分离并没有受到中期SC过早分解的影响,这与之前的发现一致,即染色体的分离并不依赖于中期的全长SC。因此,遗传背景是果蝇减数分裂过程中SC行为的一个重要考虑因素。
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Genetic background impacts the timing of synaptonemal complex breakdown in Drosophila melanogaster.

Experiments performed in different genetic backgrounds occasionally exhibit failure in experimental reproducibility. This is a serious issue in Drosophila where there are no standard control stocks. Here, we illustrate the importance of controlling genetic background by showing that the timing of a major meiotic event, the breakdown of the synaptonemal complex (SC), varies in different genetic backgrounds. We assessed SC breakdown in three different control stocks and found that in one control stock, y w; svspa-pol, the SC broke down earlier than in Oregon-R and w1118 stocks. We further examined SC breakdown in these three control backgrounds with flies heterozygous for a null mutation in c(3)G, which encodes a key structural component of the SC. Flies heterozygous for c(3)G displayed differences in the timing of SC breakdown in different control backgrounds, providing evidence of a sensitizing effect of this mutation. These observations suggest that SC maintenance is associated with the dosage of c(3)G in some backgrounds. Lastly, chromosome segregation was not affected by premature SC breakdown in mid-prophase, consistent with previous findings that chromosome segregation is not dependent on full-length SC in mid-prophase. Thus, genetic background is an important variable to consider with respect to SC behavior during Drosophila meiosis.

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来源期刊
Chromosoma
Chromosoma 生物-生化与分子生物学
CiteScore
3.30
自引率
6.20%
发文量
17
审稿时长
1 months
期刊介绍: Chromosoma publishes research and review articles on the functional organization of the eukaryotic cell nucleus, with a particular emphasis on the structure and dynamics of chromatin and chromosomes; the expression and replication of genomes; genome organization and evolution; the segregation of genomes during meiosis and mitosis; the function and dynamics of subnuclear compartments; the nuclear envelope and nucleocytoplasmic interactions, and more. The scope of Chromosoma encompasses genetic, biophysical, molecular and cell biological studies. Average time from receipt of contributions to first decision: 22 days Publishes research and review articles on the functional organization of the eukaryotic cell nucleus Topics include structure and dynamics of chromatin and chromosomes; the expression and replication of genomes; genome organization and evolution; the segregation of genomes during meiosis and mitosis and more Encompasses genetic, biophysical, molecular and cell biological studies.
期刊最新文献
The passing of the last oracle: Adelaide Carpenter and Drosophila meiosis. Multifaceted role of CTCF in X-chromosome inactivation. Novel centromeric repetitive DNA elements reveal karyotype dynamics in polyploid sainfoin (Onobrychis viciifolia) CTCF is essential for proper mitotic spindle structure and anaphase segregation. Vertebrate centromere architecture: from chromatin threads to functional structures.
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