Institute of Plant Biochemistry, Cluster of Excellence on Plant Sciences, Heinrich-Heine-University, Universitätsstraße 1, Düsseldorf, Germany.
Planta. 2013 Feb;237(2):637-51. doi: 10.1007/s00425-012-1819-3. Epub 2012 Dec 2.
Glaucophytes represent the first lineage of photosynthetic eukaryotes of primary endosymbiotic origin that diverged after plastid establishment. The muroplast of Cyanophora paradoxa represents a primitive plastid that resembles its cyanobacterial ancestor in pigment composition and the presence of a peptidoglycan wall. To attain insights into the evolutionary history of cyanobiont integration and plastid development, it would thus be highly desirable to obtain knowledge on the composition of the glaucophyte plastid proteome. Here, we provide the first proteomic analysis of the muroplast of C. paradoxa. Mass spectrometric analysis of the muroplast proteome identified 510 proteins with high confidence. The protein repertoire of the muroplast revealed novel paths for reduced carbon flow and export to the cytosol through a sugar phosphate transporter of chlamydial origin. We propose that C. paradoxa possesses a primordial plastid mirroring the situation in the early protoalga.
蓝藻代表了最早的光合真核生物谱系,它们在质体形成后从内共生体中分化出来。Cyanophora paradoxa 的壁质体代表了一种原始的质体,其色素组成和肽聚糖壁与它的蓝细菌祖先相似。为了深入了解共生藻的整合和质体发育的进化历史,因此非常希望获得关于蓝藻质体蛋白组组成的知识。在这里,我们首次对 C. paradoxa 的壁质体进行了蛋白质组学分析。对壁质体蛋白质组的质谱分析高度确信地鉴定出了 510 种蛋白质。壁质体的蛋白质组揭示了通过衣原体起源的糖磷酸转运体向细胞质减少碳流和输出的新途径。我们提出,C. paradoxa 拥有一个原始的质体,反映了早期原藻的情况。