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首页> 外文期刊>DNA research: an international journal for rapid publication of reports on genes and genomes >Periodic gene expression patterns during the highly synchronized cell nucleus and organelle division cycles in the unicellular red alga Cyanidioschyzon merolae.
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Periodic gene expression patterns during the highly synchronized cell nucleus and organelle division cycles in the unicellular red alga Cyanidioschyzon merolae.

机译:在单细胞红藻Cyanidioschyzon merolae中高度同步的细胞核和细胞器分裂周期中的周期性基因表达模式。

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Previous cell cycle studies have been based on cell-nuclear proliferation only. Eukaryotic cells, however, have double membranes-bound organelles, such as the cell nucleus, mitochondrion, plastids and single-membrane-bound organelles such as ER, the Golgi body, vacuoles (lysosomes) and microbodies. Organelle proliferations, which are very important for cell functions, are poorly understood. To clarify this, we performed a microarray analysis during the cell cycle of Cyanidioschyzon merolae. C. merolae cells contain a minimum set of organelles that divide synchronously. The nuclear, mitochondrial and plastid genomes were completely sequenced. The results showed that, of 158 genes induced during the S or G2-M phase, 93 were known and contained genes related to mitochondrial division, ftsZ1-1, ftsz1-2 and mda1, and plastid division, ftsZ2-1, ftsZ2-2 and cmdnm2. Moreover, three genes, involved in vesicle trafficking between the single-membrane organelles such as vps29 and the Rab family protein, were identified and might be related to partitioning of single-membrane-bound organelles. In other genes, 46 were hypothetical and 19 were hypothetical conserved. The possibility of finding novel organelle division genes from hypothetical and hypothetical conserved genes in the S and G2-M expression groups is discussed.
机译:先前的细胞周期研究仅基于细胞核增殖。但是,真核细胞具有双膜结合的细胞器,例如细胞核,线粒体,质体和单膜结合的细胞器,例如ER,高尔基体,液泡(溶酶体)和微体。对于细胞功能非常重要的细胞器增殖了解甚少。为了澄清这一点,我们在Cyanidioschyzon merolae的细胞周期中进行了微阵列分析。 C. merolae细胞包含最少一组同步分裂的细胞器。核,线粒体和质体基因组已完全测序。结果表明,在S或G2-M期诱导的158个基因中,有93个已知并包含与线粒体分裂ftsZ1-1,ftsz1-2和mda1和质体分裂ftsZ2-1,ftsZ2-2相关的基因。和cmdnm2。此外,鉴定了三个基因,它们参与了诸如vps29和Rab家族蛋白之类的单膜细胞器之间的囊泡运输,并且可能与单膜结合细胞器的分配有关。在其他基因中,有46个是假设的,而19个是假设的保守的。讨论了从S和G2-M表达组中的假设和假设保守基因中发现新的细胞器分裂基因的可能性。

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