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本文引用的文献

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Short RNA half-lives in the slow-growing marine cyanobacterium Prochlorococcus.在生长缓慢的海洋蓝藻聚球藻中,短 RNA 的半衰期较短。
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MicrobesOnline: an integrated portal for comparative and functional genomics.微生物在线:一个用于比较和功能基因组学的综合门户。
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Seed-based INTARNA prediction combined with GFP-reporter system identifies mRNA targets of the small RNA Yfr1.基于种子的 INTARNA 预测结合 GFP 报告系统鉴定了小 RNA Yfr1 的 mRNA 靶标。
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Stress responses in Prochlorococcus MIT9313 vs. SS120 involve differential expression of genes encoding proteases ClpP, FtsH and Lon.聚球藻 MIT9313 与 SS120 的应激反应涉及到编码蛋白酶 ClpP、FtsH 和 Lon 的基因的差异表达。
Res Microbiol. 2009 Oct;160(8):567-75. doi: 10.1016/j.resmic.2009.08.009. Epub 2009 Sep 2.
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Metatranscriptomics reveals unique microbial small RNAs in the ocean's water column.宏转录组学揭示了海洋水柱中独特的微生物小RNA。
Nature. 2009 May 14;459(7244):266-9. doi: 10.1038/nature08055.
8
The role of siderophores in iron acquisition by photosynthetic marine microorganisms.铁载体在光合海洋微生物获取铁元素过程中的作用。
Biometals. 2009 Aug;22(4):659-69. doi: 10.1007/s10534-009-9235-2. Epub 2009 Apr 3.
9
The challenge of regulation in a minimal photoautotroph: non-coding RNAs in Prochlorococcus.极小光合自养生物中的调控挑战:原绿球藻中的非编码RNA
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10
The Bacillus subtilis iron-sparing response is mediated by a Fur-regulated small RNA and three small, basic proteins.枯草芽孢杆菌的铁节约反应由一个受Fur调控的小RNA和三种小的碱性蛋白介导。
Proc Natl Acad Sci U S A. 2008 Aug 19;105(33):11927-32. doi: 10.1073/pnas.0711752105. Epub 2008 Aug 12.

高光照和低光照适应的聚球藻菌株对铁供应变化的转录组反应。

Transcriptome response of high- and low-light-adapted Prochlorococcus strains to changing iron availability.

机构信息

MIT Department of Civil and Environmental Engineering, Cambridge, MA02139, USA.

出版信息

ISME J. 2011 Oct;5(10):1580-94. doi: 10.1038/ismej.2011.49. Epub 2011 May 12.

DOI:10.1038/ismej.2011.49
PMID:21562599
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3176520/
Abstract

Prochlorococcus contributes significantly to ocean primary productivity. The link between primary productivity and iron in specific ocean regions is well established and iron limitation of Prochlorococcus cell division rates in these regions has been shown. However, the extent of ecotypic variation in iron metabolism among Prochlorococcus and the molecular basis for differences is not understood. Here, we examine the growth and transcriptional response of Prochlorococcus strains, MED4 and MIT9313, to changing iron concentrations. During steady state, MIT9313 sustains growth at an order-of-magnitude lower iron concentration than MED4. To explore this difference, we measured the whole-genome transcriptional response of each strain to abrupt iron starvation and rescue. Only four of the 1159 orthologs of MED4 and MIT9313 were differentially expressed in response to iron in both strains. However, in each strain, the expression of over a hundred additional genes changed, many of which are in labile genomic regions, suggesting a role for lateral gene transfer in establishing diversity of iron metabolism among Prochlorococcus. Furthermore, we found that MED4 lacks three genes near the iron-deficiency-induced gene (idiA) that are present and induced by iron stress in MIT9313. These genes are interesting targets for studying the adaptation of natural Prochlorococcus assemblages to local iron conditions as they show more diversity than other genomic regions in environmental metagenomic databases.

摘要

聚球藻对海洋初级生产力有重要贡献。在特定海洋区域,初级生产力与铁之间的联系已得到充分证实,并且已经证明这些区域的聚球藻细胞分裂速率受到铁的限制。然而,聚球藻中铁代谢的生态型变异程度以及导致这种差异的分子基础尚不清楚。在这里,我们研究了海洋中聚球藻 MED4 和 MIT9313 两种菌株在不同铁浓度下的生长和转录响应。在稳定状态下,MIT9313 在比 MED4 低一个数量级的铁浓度下维持生长。为了探究这种差异,我们测量了每种菌株在突然缺铁和铁恢复时的全基因组转录响应。只有 MED4 和 MIT9313 的 1159 个直系同源物中的 4 个在两种菌株中对铁的响应存在差异表达。然而,在每种菌株中,超过一百个额外的基因的表达发生了变化,其中许多基因位于不稳定的基因组区域,这表明水平基因转移在建立聚球藻中铁代谢多样性方面发挥了作用。此外,我们发现 MED4 缺乏三个靠近缺铁诱导基因(idiA)的基因,而这些基因在 MIT9313 中是存在的,并受到铁胁迫的诱导。这些基因是研究自然聚球藻种群适应局部铁条件的有趣目标,因为它们在环境宏基因组数据库中比其他基因组区域表现出更多的多样性。