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从头测序极端耐盐黑酵母霍氏酵母揭示的全基因组复制和金属阳离子转运蛋白的富集。

Whole genome duplication and enrichment of metal cation transporters revealed by de novo genome sequencing of extremely halotolerant black yeast Hortaea werneckii.

机构信息

Institute of Biochemistry, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia ; Centre of Excellence for Integrated Approaches in Chemistry and Biology of Proteins (CIPKeBiP), Ljubljana, Slovenia.

出版信息

PLoS One. 2013 Aug 15;8(8):e71328. doi: 10.1371/journal.pone.0071328. eCollection 2013.

Abstract

Hortaea werneckii, ascomycetous yeast from the order Capnodiales, shows an exceptional adaptability to osmotically stressful conditions. To investigate this unusual phenotype we obtained a draft genomic sequence of a H. werneckii strain isolated from hypersaline water of solar saltern. Two of its most striking characteristics that may be associated with a halotolerant lifestyle are the large genetic redundancy and the expansion of genes encoding metal cation transporters. Although no sexual state of H. werneckii has yet been described, a mating locus with characteristics of heterothallic fungi was found. The total assembly size of the genome is 51.6 Mb, larger than most phylogenetically related fungi, coding for almost twice the usual number of predicted genes (23333). The genome appears to have experienced a relatively recent whole genome duplication, and contains two highly identical gene copies of almost every protein. This is consistent with some previous studies that reported increases in genomic DNA content triggered by exposure to salt stress. In hypersaline conditions transmembrane ion transport is of utmost importance. The analysis of predicted metal cation transporters showed that most types of transporters experienced several gene duplications at various points during their evolution. Consequently they are present in much higher numbers than expected. The resulting diversity of transporters presents interesting biotechnological opportunities for improvement of halotolerance of salt-sensitive species. The involvement of plasma P-type H⁺ ATPases in adaptation to different concentrations of salt was indicated by their salt dependent transcription. This was not the case with vacuolar H⁺ ATPases, which were transcribed constitutively. The availability of this genomic sequence is expected to promote the research of H. werneckii. Studying its extreme halotolerance will not only contribute to our understanding of life in hypersaline environments, but should also identify targets for improving the salt- and osmotolerance of economically important plants and microorganisms.

摘要

盐沼嗜盐碱红酵母(Hortaea werneckii),属于 Capnodiales 目内的子囊菌酵母,具有极强的耐渗透压胁迫能力。为了研究这一不寻常的表型,我们获得了一株来自盐湖高盐度水的 H. werneckii 菌株的基因组草图。该菌株有两个最显著的特征,可能与耐盐生活方式有关,即遗传冗余较大和编码金属阳离子转运蛋白的基因扩张。虽然尚未描述 H. werneckii 的有性状态,但发现了一个具有异型交配真菌特征的交配位点。基因组的总组装大小为 51.6 Mb,大于大多数系统发育上相关的真菌,编码的预测基因数量几乎是通常数量的两倍(23333 个)。基因组似乎经历了相对较近的全基因组复制,并且几乎每个蛋白质都包含两个高度相同的基因拷贝。这与一些先前的研究结果一致,这些研究报告称,暴露于盐胁迫会引发基因组 DNA 含量的增加。在高盐条件下,跨膜离子转运至关重要。对预测金属阳离子转运蛋白的分析表明,大多数类型的转运蛋白在进化过程中的不同点经历了多次基因复制。因此,它们的数量远远超过预期。由此产生的转运蛋白多样性为提高盐敏感物种的耐盐性提供了有趣的生物技术机会。由于盐依赖性转录,表明质膜 P 型 H⁺ATP 酶参与了对不同盐浓度的适应。液泡 H⁺ATP 酶则不是这种情况,其转录是组成型的。该基因组序列的可用性有望促进对 H. werneckii 的研究。研究其极端耐盐性不仅有助于我们理解高盐环境中的生命,还应该确定提高经济上重要的植物和微生物的耐盐性和耐渗性的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9abc/3744574/9c3edf0ed04d/pone.0071328.g001.jpg

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