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耐盐绿藻 Picochlorum sp. 的基因组揭示了其在波动环境条件下茁壮成长的策略。

Genome of the halotolerant green alga Picochlorum sp. reveals strategies for thriving under fluctuating environmental conditions.

机构信息

Department of Biochemistry and Microbiology, Rutgers University, New Brunswick, NJ, 08901, USA.

出版信息

Environ Microbiol. 2015 Feb;17(2):412-26. doi: 10.1111/1462-2920.12541. Epub 2014 Jul 24.

Abstract

An expected outcome of climate change is intensification of the global water cycle, which magnifies surface water fluxes, and consequently alters salinity patterns. It is therefore important to understand the adaptations and limits of microalgae to survive changing salinities. To this end, we sequenced the 13.5 Mbp genome of the halotolerant green alga Picochlorum SENEW3 (SE3) that was isolated from a brackish water pond subject to large seasonal salinity fluctuations. Picochlorum SE3 encodes 7367 genes, making it one of the smallest and most gene dense eukaryotic genomes known. Comparison with the pico-prasinophyte Ostreococcus tauri, a species with a limited range of salt tolerance, reveals the enrichment of transporters putatively involved in the salt stress response in Picochlorum SE3. Analysis of cultures and the protein complement highlight the metabolic flexibility of Picochlorum SE3 that encodes genes involved in urea metabolism, acetate assimilation and fermentation, acetoin production and glucose uptake, many of which form functional gene clusters. Twenty-four cases of horizontal gene transfer from bacterial sources were found in Picochlorum SE3 with these genes involved in stress adaptation including osmolyte production and growth promotion. Our results identify Picochlorum SE3 as a model for understanding microalgal adaptation to stressful, fluctuating environments.

摘要

气候变化的一个预期结果是全球水循环的加剧,这放大了地表水通量,并因此改变了盐度模式。因此,了解微藻适应和耐受变化盐度的能力非常重要。为此,我们对从受季节性盐度波动影响的咸水池塘中分离出来的耐盐绿藻 Picochlorum SENEW3(SE3)进行了测序,其基因组大小为 1350 万碱基对。Picochlorum SE3 编码 7367 个基因,使其成为已知最小和基因密度最高的真核生物基因组之一。与盐度耐受范围有限的微微甲藻 Ostreococcus tauri 进行比较,揭示了 Picochlorum SE3 中可能参与盐胁迫反应的转运蛋白的富集。对培养物和蛋白质组成的分析突出了 Picochlorum SE3 的代谢灵活性,它编码参与尿素代谢、乙酸同化和发酵、乙酰醇生产和葡萄糖摄取的基因,其中许多基因形成功能基因簇。在 Picochlorum SE3 中发现了 24 个来自细菌的水平基因转移案例,这些基因涉及应激适应,包括渗透物的产生和生长促进。我们的研究结果确定 Picochlorum SE3 是理解微藻适应有压力、波动环境的模型。

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