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衣藻线粒体DNA缺失突变体中,缺乏细胞色素b、NADH脱氢酶亚基4以及NADH脱氢酶亚基5的3'端时,暗呼吸的改变和光合营养生长的降低。

Alteration of dark respiration and reduction of phototrophic growth in a mitochondrial DNA deletion mutant of Chlamydomonas lacking cob, nd4, and the 3' end of nd5.

作者信息

Duby F, Matagne R F

机构信息

Genetics of Microorganisms, Department of Plant Biology, B22, University of Liège, B4000 Liège, Belgium.

出版信息

Plant Cell. 1999 Jan;11(1):115-25. doi: 10.1105/tpc.11.1.115.

Abstract

We describe here a new type of mitochondrial mutation (dum24; for dark uniparental minus inheritance) of the unicellular photosynthetic alga Chlamydomonas reinhardtii. The mutant fails to grow under heterotrophic conditions and displays reduced growth under both photoautotrophic and mixotrophic conditions. In reciprocal crosses between mutant and wild-type cells, the meiotic progeny only inherit the phenotype of the mating-type minus parent, indicating that the dum24 mutation exclusively affects the mitochondrial genome. Digestion with various restriction enzymes followed by DNA gel blot hybridizations with specific probes demonstrated that dum24 cells contain four types of altered mitochondrial genomes: deleted monomers lacking cob, nd4, and the 3' end of the nd5 gene; deleted monomers deprived of cob, nd4, nd5, and the 5' end of the cox1 coding sequence; and two types of dimers produced by end-to-end fusions between monomers similarly or differently deleted. Due to these mitochondrial DNA alterations, complex I activity, the cytochrome pathway of respiration, and presumably, the three phosphorylation sites associated with these enzyme activities are lacking in the mutant. The low respiratory rate of the dum24 cells results from the activities of rotenone-resistant NADH dehydrogenase, complex II, and alternative oxidase, with none of these enzymes being coupled to ATP production. To our knowledge, this type of mitochondrial mutation has never been described for photosynthetic organisms or more generally for obligate aerobes.

摘要

我们在此描述了单细胞光合藻类莱茵衣藻的一种新型线粒体突变(dum24;暗单亲负遗传)。该突变体在异养条件下无法生长,在光自养和混合营养条件下生长均受到抑制。在突变体细胞与野生型细胞的正反交中,减数分裂后代仅继承负交配型亲本的表型,这表明dum24突变仅影响线粒体基因组。用各种限制性内切酶消化,然后用特异性探针进行DNA凝胶印迹杂交,结果表明dum24细胞含有四种类型的改变的线粒体基因组:缺失cob、nd4和nd5基因3'端的缺失单体;缺失cob、nd4、nd5和cox1编码序列5'端的缺失单体;以及由相似或不同缺失的单体之间的端对端融合产生的两种类型的二聚体。由于这些线粒体DNA改变,突变体中缺乏复合体I活性、呼吸的细胞色素途径以及可能与这些酶活性相关的三个磷酸化位点。dum24细胞的低呼吸速率是由抗鱼藤酮的NADH脱氢酶、复合体II和交替氧化酶的活性导致的,这些酶均未与ATP产生偶联。据我们所知,这种类型的线粒体突变在光合生物或更广泛的专性需氧生物中从未被描述过。

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