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链形绿藻 Klebsormidium 耐旱性的转录组学揭示了一种类似陆地植物的防御反应。

Transcriptomics of desiccation tolerance in the streptophyte green alga Klebsormidium reveal a land plant-like defense reaction.

作者信息

Holzinger Andreas, Kaplan Franziska, Blaas Kathrin, Zechmann Bernd, Komsic-Buchmann Karin, Becker Burkhard

机构信息

University of Innsbruck, Functional Plant Biology, Innsbruck, Austria.

Baylor University, Center for Microscopy and Imaging, Waco, Texas, United States of America.

出版信息

PLoS One. 2014 Oct 23;9(10):e110630. doi: 10.1371/journal.pone.0110630. eCollection 2014.

Abstract

BACKGROUND

Water loss has significant effects on physiological performance and survival rates of algae. However, despite the prominent presence of aeroterrestrial algae in terrestrial habitats, hardly anything is known about the molecular events that allow aeroterrestrial algae to survive harsh environmental conditions. We analyzed the transcriptome and physiology of a strain of the alpine aeroterrestrial alga Klebsormidium crenulatum under control and strong desiccation-stress conditions.

PRINCIPAL FINDINGS

For comparison we first established a reference transcriptome. The high-coverage reference transcriptome includes about 24,183 sequences (1.5 million reads, 636 million bases). The reference transcriptome encodes for all major pathways (energy, carbohydrates, lipids, amino acids, sugars), nearly all deduced pathways are complete or missing only a few transcripts. Upon strong desiccation, more than 7000 transcripts showed changes in their expression levels. Most of the highest up-regulated transcripts do not show similarity to known viridiplant proteins, suggesting the existence of some genus- or species-specific responses to desiccation. In addition, we observed the up-regulation of many transcripts involved in desiccation tolerance in plants (e.g. proteins similar to those that are abundant in late embryogenesis (LEA), or proteins involved in early response to desiccation ERD), and enzymes involved in the biosynthesis of the raffinose family of oligosaccharides (RFO) known to act as osmolytes). Major physiological shifts are the up-regulation of transcripts for photosynthesis, energy production, and reactive oxygen species (ROS) metabolism, which is supported by elevated cellular glutathione content as revealed by immunoelectron microscopy as well as an increase in total antiradical power. However, the effective quantum yield of Photosystem II and CO2 fixation decreased sharply under the applied desiccation stress. In contrast, transcripts for cell integrative functions such as cell division, DNA replication, cofactor biosynthesis, and amino acid biosynthesis were down-regulated.

SIGNIFICANCE

This is the first study investigating the desiccation transcriptome of a streptophyte green alga. Our results indicate that the cellular response is similar to embryophytes, suggesting that embryophytes inherited a basic cellular desiccation tolerance from their streptophyte predecessors.

摘要

背景

水分流失对藻类的生理性能和存活率有显著影响。然而,尽管气生藻类在陆地生境中广泛存在,但对于使气生藻类能够在恶劣环境条件下生存的分子事件却知之甚少。我们分析了一株高山气生藻类小新月菱形藻(Klebsormidium crenulatum)在对照和强烈干燥胁迫条件下的转录组和生理状况。

主要发现

为了进行比较,我们首先建立了一个参考转录组。高覆盖度的参考转录组包含约24,183个序列(150万条 reads,6.36亿个碱基)。该参考转录组编码了所有主要途径(能量、碳水化合物、脂质、氨基酸、糖类),几乎所有推导的途径都是完整的,或者仅缺少少数转录本。在强烈干燥胁迫下,超过7000个转录本的表达水平发生了变化。大多数上调幅度最大的转录本与已知的绿色植物蛋白没有相似性,这表明存在一些对干燥的属或种特异性反应。此外,我们观察到许多参与植物耐旱性的转录本上调(例如与胚胎后期发育(LEA)中丰富的蛋白相似的蛋白,或参与对干燥早期反应的ERD蛋白),以及参与棉子糖家族寡糖(RFO)生物合成的酶,已知RFO可作为渗透剂。主要的生理变化是光合作用、能量产生和活性氧(ROS)代谢相关转录本的上调,免疫电子显微镜显示细胞内谷胱甘肽含量升高以及总抗自由基能力增加支持了这一点。然而,在施加的干燥胁迫下,光系统II的有效量子产率和二氧化碳固定急剧下降。相比之下,细胞整合功能相关的转录本,如细胞分裂、DNA复制、辅因子生物合成和氨基酸生物合成相关的转录本则下调。

意义

这是第一项研究链形绿藻干燥转录组的研究。我们的结果表明细胞反应与胚胎相似,这表明胚胎植物从其链形藻类祖先那里继承了基本的细胞耐旱性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7bf/4207709/5999e1c4821b/pone.0110630.g001.jpg

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