Thyssen C, Hermes M, Sültemeyer D
Fachbereich Biologie der Universität Kaiserslautern, Postfach 3049, 67653, Kaiserslautern, Germany.
Planta. 2003 May;217(1):102-12. doi: 10.1007/s00425-002-0961-8. Epub 2003 Jan 28.
In order to identify new genes involved in the carbon-concentrating mechanism of Chlamydomonas reinhardtii (Dangeard), high-CO2-requiring mutants were isolated by insertional mutagenesis after transformation of strain CC1618 with a plasmid carrying Arg7 as a selectable marker gene. Six mutants were classified by their growth behaviour under ambient CO2, the affinity of the CO2-concentrating mechanism for inorganic carbon and the expression of known low-CO2-inducible proteins. The mass-spectrometric measurement of carbonic anhydrase activity and CO2/HCO3- transport revealed that four of the mutants are unable to induce a high-affinity carbon-concentrating mechanism. The expression of various carbonic anhydrases and chloroplast inner envelope polypeptides was examined with Western Blots. While three high-CO2-requiring mutants showed abnormal expression patterns, one matched the wild type. With Southern blots the total number and structure of the insertion events were determined to select possible candidates for plasmid recovery. Abnormal structures of thylakoid lamellae traversing the pyrenoid were detected by electron microscopy in some of the high-CO2-requiring mutants. Our characterisations of the insertionally generated mutants revealed phenotypes that have not been published before and therefore might be useful tools to obtain new insights on the molecular background of the CO2-concentrating mechanism and its regulation.
为了鉴定莱茵衣藻(Dangeard)碳浓缩机制中涉及的新基因,在用携带Arg7作为选择标记基因的质粒转化CC1618菌株后,通过插入诱变分离出高二氧化碳需求突变体。根据突变体在环境二氧化碳条件下的生长行为、二氧化碳浓缩机制对无机碳的亲和力以及已知的低二氧化碳诱导蛋白的表达,对六个突变体进行了分类。碳酸酐酶活性和二氧化碳/碳酸氢根转运的质谱测量表明,其中四个突变体无法诱导高亲和力的碳浓缩机制。用蛋白质免疫印迹法检测了各种碳酸酐酶和叶绿体内膜多肽的表达。虽然三个高二氧化碳需求突变体表现出异常的表达模式,但有一个与野生型匹配。用Southern印迹法确定插入事件的总数和结构,以选择可能用于回收质粒的候选基因。在一些高二氧化碳需求突变体中,通过电子显微镜检测到穿过类囊体的类囊体片层结构异常。我们对插入产生的突变体的表征揭示了以前未发表的表型,因此可能是获得关于二氧化碳浓缩机制及其调控的分子背景新见解的有用工具。