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尽管缺少完整的线粒体全酶复合物 I,在槲寄生中仍转录氧化磷酸化复合物 II-V 的基因和复合物 I 的两个多功能亚基。

Genes from oxidative phosphorylation complexes II-V and two dual-function subunits of complex I are transcribed in Viscum album despite absence of the entire mitochondrial holo-complex I.

机构信息

Department of Ecology, Environment and Plant Sciences, Stockholm University, SE-106 91 Stockholm, Sweden.

Biostatistics and Bioinformatics Division, Yenepoya Research Center, Yenepoya University, Mangaluru 575018, Karnataka, India.

出版信息

Mitochondrion. 2022 Jan;62:1-12. doi: 10.1016/j.mito.2021.10.006. Epub 2021 Nov 2.

Abstract

Mistletoes (Viscum) and close relatives are unique among flowering plants in having a drastically altered electron transport chain. Lack of complex I genes has previously been reported for the mitochondrial genome, and here we report an almost complete absence of nuclear-encoded complex I genes in the transcriptome of Viscum album. Compared to Arabidopsis with approximately 40 nuclear complex I genes, we recover only transcripts of two dual-function genes: gamma carbonic anhydrase and L-galactono-1,4-lactone dehydrogenase. The complement of genes belonging to complexes II-V of the oxidative phosphorylation pathway appears to be in accordance with other vascular plants. Additionally, transcripts encoding alternative NAD(P)H dehydrogenases and alternative oxidase were found. Despite sequence divergence, structural modeling suggests that the encoded proteins are structurally conserved. Complex I loss is a special feature in Viscum species and relatives, as all other parasitic flowering plants investigated to date seem to have a complete OXPHOS system. Hence, Viscum offers a unique system for specifically investigating molecular consequences of complex I absence, such as the role of complex I subunits involved in secondary functions.

摘要

槲寄生(Viscum)及其近亲在具有剧烈改变的电子传递链方面在开花植物中独一无二。先前已经报道过线粒体基因组中缺乏复合物 I 基因,而在这里,我们报告了在 Viscum album 的转录组中几乎完全缺乏核编码的复合物 I 基因。与大约有 40 个核复合物 I 基因的拟南芥相比,我们仅恢复了两种多功能基因的转录本:γ碳酸酐酶和 L-半乳糖酸-1,4-内酯脱氢酶。氧化磷酸化途径的复合物 II-V 的基因组成似乎与其他维管植物一致。此外,还发现了编码替代 NAD(P)H 脱氢酶和替代氧化酶的转录本。尽管存在序列差异,但结构建模表明编码的蛋白质在结构上是保守的。复合物 I 的缺失是 Viscum 物种及其近亲的一个特殊特征,因为迄今为止研究过的所有其他寄生开花植物似乎都具有完整的 OXPHOS 系统。因此,Viscum 提供了一个独特的系统,可专门研究复合物 I 缺失的分子后果,例如涉及次要功能的复合物 I 亚基的作用。

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