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利用转录组研究对模式生物巴尔通体 Rhodopirellula baltica SH 1(T)进行生命周期分析。

Life cycle analysis of the model organism Rhodopirellula baltica SH 1(T) by transcriptome studies.

机构信息

Max Planck Institute for Marine Microbiology, Microbial Genomics Group, Celsiusstr. 1, 28359 Bremen, Germany.

出版信息

Microb Biotechnol. 2010 Sep;3(5):583-94. doi: 10.1111/j.1751-7915.2010.00183.x. Epub 2010 Jun 7.

DOI:10.1111/j.1751-7915.2010.00183.x
PMID:21255355
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3815771/
Abstract

The marine organism Rhodopirellula baltica is a representative of the globally distributed phylum Planctomycetes whose members exhibit an intriguing lifestyle and cell morphology. The analysis of R. baltica's genome has revealed many biotechnologically promising features including a set of unique sulfatases and C1-metabolism genes. Salt resistance and the potential for adhesion in the adult phase of the cell cycle were observed during cultivation. To promote the understanding of this model organism and to specify the functions of potentially useful genes, gene expression throughout a growth curve was monitored using a whole genome microarray approach. Transcriptional profiling suggests that a large number of hypothetical proteins are active within the cell cycle and in the formation of the different cell morphologies. Numerous genes with potential biotechnological applications were found to be differentially regulated, revealing further characteristics of their functions and regulation mechanisms. More specifically, the experiments shed light on the expression patterns of genes belonging to the organism's general stress response, those involved in the reorganization of its genome and those effecting morphological changes. These transcriptomic results contribute to a better understanding of thus far unknown molecular elements of cell biology. Further, they pave the way for the biotechnological exploitation of R. baltica's distinctive metabolic features as a step towards sourcing the phylum Planctomycetes at large.

摘要

海洋生物波罗的海拟杆菌是分布广泛的浮霉状菌门的代表,其成员表现出有趣的生活方式和细胞形态。对 R. baltica 基因组的分析揭示了许多有生物技术前景的特征,包括一套独特的硫酸盐酶和 C1 代谢基因。在培养过程中观察到了盐抗性和细胞周期成年期的潜在粘附能力。为了促进对这个模式生物的理解,并明确潜在有用基因的功能,我们使用全基因组微阵列方法监测了整个生长曲线的基因表达。转录谱分析表明,在细胞周期和不同细胞形态的形成过程中,大量的假设蛋白是活跃的。发现许多具有潜在生物技术应用的基因被差异调控,揭示了它们功能和调控机制的进一步特征。更具体地说,这些实验揭示了属于生物体一般应激反应、参与基因组重排和影响形态变化的基因的表达模式。这些转录组结果有助于更好地理解迄今为止未知的细胞生物学分子元素。此外,它们为利用 R. baltica 独特的代谢特征进行生物技术开发铺平了道路,这是朝着大规模获取浮霉状菌门的目标迈出的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d331/3815771/2f65082a5e7a/mbt0003-0583-f3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d331/3815771/f5131019a895/mbt0003-0583-f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d331/3815771/9269c6672379/mbt0003-0583-f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d331/3815771/2f65082a5e7a/mbt0003-0583-f3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d331/3815771/f5131019a895/mbt0003-0583-f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d331/3815771/9269c6672379/mbt0003-0583-f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d331/3815771/2f65082a5e7a/mbt0003-0583-f3.jpg

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本文引用的文献

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