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YCF1: A Green TIC: Response to the de Vries et al. Commentary

机译:YCF1:绿色TIC:对de Vries等人的回应。评论

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This response to a recent Commentary article by de Vries et al. highlights critical errors in the annotation and identification of Ycf1 homologs in the sequenced chloroplast genomes. Contrary to what is reported by de Vries et al., the majority of chloroplast genomes sequenced to date appear to have retained a typical Ycf1 sequence (i.e., including the N-terminal 6TM domain and a variable hydrophilic C-terminal domain) as my group previously reported. Our evidence continues to support the model that Ycf1 forms an essential component of a "green TIC" that is largely conserved among the Chlorophyta and land plants. Since the establishment of this green TIC with Tic20 as the core component, some cases of loss of Ycf1 during the evolution of the green lineages might be regarded as modifications or alterations of the complex. Here, I discuss our working model that the presence of an alternative "nonphotosynthetic-type" or "ancestral-type" TIC might explain other (or specific) cases of the lack of Ycf1, not only in early lineages, including Glaucophyta and Rhodophyta, but also in the grasses.
机译:这是对de Vries等人最近发表的评论文章的回应。突出显示了在已测序的叶绿体基因组中Ycf1同源物的注释和鉴定中的关键错误。与de Vries等报道的相反,迄今为止,大多数测序的叶绿体基因组似乎都保留了典型的Ycf1序列(即,包括N端6TM域和可变的亲水性C端域)作为我的研究组。以前的报道。我们的证据继续支持该模型,即Ycf1形成了“绿色TIC”的基本组成部分,而“绿色TIC”在绿藻和陆地植物之间基本上都得到保护。自从以Tic20为核心成分的绿色TIC建立以来,在绿色谱系进化过程中Ycf1丢失的某些情况可能被视为复合物的修饰或改变。在这里,我讨论了我们的工作模型,即存在一个替代的“非光合作用型”或“祖先型” TIC可能解释了Ycf1缺乏的其他(或特定)情况,不仅是在早期谱系中,包括青藻和红藻,而且在草丛中

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