首页> 外文期刊>Plant, Cell & Environment >Integrative analysis of metabolite and transcript abundance during the short-term response to saline and oxidative stress in the brown alga Ectocarpus siliculosus.
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Integrative analysis of metabolite and transcript abundance during the short-term response to saline and oxidative stress in the brown alga Ectocarpus siliculosus.

机译:褐藻 Ectocarpus siliculosus 对盐分和氧化胁迫的短期响应过程中代谢产物和转录本丰度的综合分析。

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The model brown alga Ectocarpus siliculosus undergoes extensive transcriptomic changes in response to abiotic stress, many of them related to primary metabolism and particularly to amino acid biosynthesis and degradation. In this study we seek to improve our knowledge of the mechanisms underlying the stress tolerance of this alga, in particular with regard to compatible osmolytes, by examining the effects of these changes on metabolite concentrations. We performed extensive metabolic profiling (urea, amino acids, sugars, polyols, organic acids, fatty acids) of Ectocarpus samples subjected to short-term hyposaline, hypersaline and oxidative stress, and integrated the results with previously published transcriptomic data. The most pronounced changes in metabolite concentrations occurred under hypersaline stress: both mannitol and proline were accumulated, but their low final concentrations indicate that, in this stress condition, both compounds are not likely to significantly contribute to osmoregulation at the level of the entire cell. Urea and trehalose were not detected in any of our samples. We also observed a shift in fatty acid composition from n-3 to n-6 fatty acids under high salinities, and demonstrated the salt stress-induced accumulation of small amounts of gamma -aminobutyric acid (GABA). GABA could be synthesized in E. siliculosus through a salt stress-induced putrescine-degradation pathway.
机译:模型棕藻 Ectocarpus siliculosus 响应非生物胁迫经历了广泛的转录组变化,其中许多与初级代谢有关,特别是与氨基酸的生物合成和降解有关。在这项研究中,我们试图通过研究这些变化对代谢物浓度的影响,来提高我们对该藻类的压力耐受性潜在机制的认识,尤其是在相容性渗透压剂方面。我们对遭受短期次生理盐水,高生理盐水和氧化应激的果皮样品进行了广泛的代谢谱分析(尿素,氨基酸,糖,糖,多元醇,有机酸,脂肪酸),并将结果与​​先前发表的结果进行了整合转录组数据。代谢物浓度的最明显变化发生在高盐胁迫下:甘露醇和脯氨酸都被积累,但是它们的低最终浓度表明,在这种胁迫条件下,两种化合物都不可能在整个细胞水平上显着促进渗透压调节。在我们的任何样品中均未检测到尿素和海藻糖。我们还观察到在高盐度下脂肪酸组成从n-3变为n-6脂肪酸,并证明了盐胁迫诱导的少量γ-氨基丁酸(GABA)积累。 GABA可以在E中合成。盐胁迫引起的腐胺降解途径导致了硅藻。

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