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Characterization of novel genes induced by sexual adhesion and gamete fusion and of their transcriptional regulation in Chlamydomonas reinhardtii

机译:在莱茵衣藻中性粘附和配子融合诱导的新基因的表征及其转录调控

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When mating type plus and minus gametes of Chlamydomonas are mixed, they agglutinate with each other via their flagella, fuse, then initiate the zygote formation program which includes synthesis of the zygote cell wall, fusion of nuclei and chloroplasts, and the digestion of chloroplast DNA from the minus parent. The mRNAs from gamete and zygote cells was isolated and hybridized to cDNA-macroarray filters both to identify new genes expressed during the mating reaction and the early zygote formation process and to analyze the gene expression programs that underlie these sexual processes. Twenty-one novel genes were identified in this screen, designated as EZY (early zygote expressed) genes. The EZY genes included genes encoding proteins whose function is unknown, and genes encoding proteins that appear to be involved in processes such as cell wall synthesis, gene expression, intracellular trafficking or secretion, and vesicular transport in zygotic cells. All of the EZY genes were strongly induced within 1 h during the mating process, including early zygote formation. The transcriptional characteristics of EZY genes were analyzed by using the fusion-defective mutant fus mt+. Among the EZY genes, 12 genes were not activated in fusion-defective conditions, suggesting that cell fusion is required for their expression. The remaining nine that were transcribed in fusion-defective fus matings were also inducible by cell wall removal in either vegetative or gametic cells, indicating that these genes were induced only indirectly by the cAMP signaling pathway initiated by flagellar agglutination as a result of mating-induced cell wall loss.
机译:当交配衣藻的正负型配子和负配子混合时,它们通过鞭毛彼此凝集,融合,然后启动合子形成程序,该程序包括合子细胞壁的合成,核与叶绿体的融合以及叶绿体DNA的消化。来自负父母。分离来自配子和合子细胞的mRNA,并将其与cDNA宏阵列过滤器杂交,以鉴定在交配反应和早期合子形成过程中表达的新基因,并分析构成这些性过程的基因表达程序。在该筛选中鉴定出21个新基因,称为EZY(早期受精卵表达)基因。 EZY基因包括编码功能未知的蛋白质的基因,以及编码似乎参与诸如细胞壁合成,基因表达,细胞内运输或分泌以及合子细胞内囊泡运输等过程的蛋白质的基因。在交配过程中,包括早期合子形成,所有EZY基因均在1小时内被强烈诱导。利用融合缺陷型突变体fus mt + 分析了EZY基因的转录特征。在EZY基因中,有12个基因在融合缺陷条件下未激活,这表明它们的表达需要细胞融合。在营养或配子细胞中去除细胞壁也可诱导融合缺陷融合交配中转录的其余9个,表明这些基因仅由交配诱导的鞭毛凝集起始的cAMP信号传导途径间接诱导。细胞壁损失。

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