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不同长度的gvpC变体在红浮游颤藻的单丝内转录。

Different gvpC length variants are transcribed within single filaments of the cyanobacterium Planktothrix rubescens.

作者信息

Becker Sven, Hayes Paul K, Walsby Anthony E

机构信息

School of Biological Sciences, University of Bristol, Woodland Road, Bristol BS8 1UG, UK.

出版信息

Microbiology (Reading). 2005 Jan;151(Pt 1):59-67. doi: 10.1099/mic.0.27402-0.

Abstract

Transcripts of the gas vesicle genes gvpA and gvpC were detected in single filaments of the cyanobacterium Planktothrix rubescens using reverse transcription and quantitative real-time PCR. Primers were designed to amplify short sequences within gvpA and three length variants of gvpC. With genomic template DNA, and using Sybr Green to monitor product accumulation, similar amplification efficiencies were observed for each of these genes. The relative copy numbers of gvpC length variants in genomic DNA from five Planktothrix gas vesicle genotypes determined by real-time PCR were similar to those indicated by sequencing the gas vesicle gene clusters. The precipitation of gvp cDNA reverse-transcribed from cellular RNA from single filaments was required before amplification of the gene fragments; without this step it was not possible to detect the accumulation of the expected amplicons by dissociation analysis. Precipitation was also necessary to ensure the generation of product curves that allowed linear regression in an early stage of PCR, a prerequisite for the quantification of low-input cDNA amounts without the need for standard curves. This report shows that different gvpC length variants are transcribed within single Planktothrix filaments, both from laboratory cultures and from natural samples taken from Lake Zurich. This has implications for the efficiency of buoyancy provision by the possible production of gas vesicles of different strengths within individual cyanobacterial filaments. The hypothesis that post-transcriptional regulation may influence the type of protein (GvpC) present in gas vesicles is presented.

摘要

利用逆转录和定量实时PCR技术,在蓝藻红浮游颤藻的单丝中检测到了气体囊泡基因gvpA和gvpC的转录本。设计引物以扩增gvpA内的短序列和gvpC的三个长度变体。以基因组模板DNA为模板,使用Sybr Green监测产物积累,观察到这些基因中的每一个都具有相似的扩增效率。通过实时PCR测定的五种浮游颤藻气体囊泡基因型的基因组DNA中gvpC长度变体的相对拷贝数与通过对气体囊泡基因簇进行测序所表明的拷贝数相似。在扩增基因片段之前,需要对从单丝细胞RNA逆转录得到的gvp cDNA进行沉淀;没有这一步,就无法通过解离分析检测到预期扩增子的积累。沉淀对于确保生成在PCR早期阶段允许线性回归的产物曲线也是必要的,这是在无需标准曲线的情况下对低输入量cDNA进行定量的前提条件。本报告表明,在实验室培养物和从苏黎世湖采集的天然样品的单根红浮游颤藻丝中都转录了不同的gvpC长度变体。这对于单个蓝藻丝内可能产生不同强度的气体囊泡从而提供浮力的效率具有影响。文中提出了转录后调控可能影响气体囊泡中存在的蛋白质(GvpC)类型的假说。

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