Suppr超能文献

对用于修复受长期石油泄漏影响场地土壤的疏花莎草进行的脂肪酸谱分析表明,这是一种C18:3植物物种。

The Fatty Acid Profile Analysis of Cyperus laxus Used for Phytoremediation of Soils from Aged Oil Spill-Impacted Sites Revealed That This Is a C18:3 Plant Species.

作者信息

Rivera Casado Noemí Araceli, Montes Horcasitas María del Carmen, Rodríguez Vázquez Refugio, Esparza García Fernando José, Pérez Vargas Josefina, Ariza Castolo Armando, Ferrera-Cerrato Ronald, Gómez Guzmán Octavio, Calva Calva Graciano

机构信息

Biotechnology and Bioengineering, CINVESTAV-IPN, Mexico D. F, México.

Biochemical Engineering, Postgraduate Division, TESE, Ecatepec Estado de México, México.

出版信息

PLoS One. 2015 Oct 16;10(10):e0140103. doi: 10.1371/journal.pone.0140103. eCollection 2015.

Abstract

The effect of recalcitrant hydrocarbons on the fatty acid profile from leaf, basal corm, and roots of Cyperus laxus plants cultivated in greenhouse phytoremediation systems of soils from aged oil spill-impacted sites containing from 16 to 340 g/Kg total hydrocarbons (THC) was assessed to investigate if this is a C18:3 species and if the hydrocarbon removal during the phytoremediation process has a relationship with the fatty acid profile of this plant. The fatty acid profile was specific to each vegetative organ and was strongly affected by the hydrocarbons level in the impacted sites. Leaf extracts of plants from uncontaminated soil produced palmitic acid (C16), octadecanoic acid (C18:0), unsaturated oleic acids (C18:1-C18:3), and unsaturated eichosanoic (C20:2-C20:3) acids with a noticeable absence of the unsaturated hexadecatrienoic acid (C16:3); this finding demonstrates, for the first time, that C. laxus is a C18:3 plant. In plants from the phytoremediation systems, the total fatty acid contents in the leaf and the corm were negatively affected by the hydrocarbons presence; however, the effect was positive in root. Interestingly, under contaminated conditions, unusual fatty acids such as odd numbered carbons (C15, C17, C21, and C23) and uncommon unsaturated chains (C20:3n6 and C20:4) were produced together with a remarkable quantity of C22:2 and C24:0 chains in the corm and the leaf. These results demonstrate that weathered hydrocarbons may drastically affect the lipidic composition of C. laxus at the fatty acid level, suggesting that this species adjusts the cover lipid composition in its vegetative organs, mainly in roots, in response to the weathered hydrocarbon presence and uptake during the phytoremediation process.

摘要

评估了顽固性碳氢化合物对生长在温室植物修复系统中的疏松莎草植物叶片、基部球茎和根系脂肪酸谱的影响,这些系统用于修复受老化石油泄漏影响的土壤,土壤中总碳氢化合物(THC)含量为16至340克/千克,以调查该植物是否为C18:3物种,以及植物修复过程中的碳氢化合物去除是否与该植物的脂肪酸谱有关。脂肪酸谱因每个营养器官而异,并受到受影响场地中碳氢化合物水平的强烈影响。来自未受污染土壤的植物叶片提取物产生了棕榈酸(C16)、十八烷酸(C18:0)、不饱和油酸(C18:1 - C18:3)和不饱和二十碳二烯酸(C20:2 - C20:3),明显不存在不饱和十六碳三烯酸(C16:3);这一发现首次证明疏松莎草是一种C18:3植物。在植物修复系统中的植物中,叶片和球茎中的总脂肪酸含量受到碳氢化合物存在的负面影响;然而,对根系的影响是积极的。有趣的是,在受污染条件下,球茎和叶片中会产生不寻常的脂肪酸,如奇数碳(C15、C17、C21和C23)和不常见的不饱和链(C20:3n6和C20:4),同时还会产生大量的C22:2和C24:0链。这些结果表明,风化的碳氢化合物可能在脂肪酸水平上极大地影响疏松莎草的脂质组成,这表明该物种在植物修复过程中,会根据风化碳氢化合物的存在和吸收情况,调整其营养器官(主要是根系)中的覆盖脂质组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42e8/4608714/893e928fb8f4/pone.0140103.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验