首页> 外文期刊>Journal of Applied Phycology >Phycobiliproteins, nitrogenous compounds and fatty acid contents in field-collected and cultured gametophytes of Porphyra dioica, a red sea vegetable
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Phycobiliproteins, nitrogenous compounds and fatty acid contents in field-collected and cultured gametophytes of Porphyra dioica, a red sea vegetable

机译:植物收集和培养的卟啉植物,红海蔬菜的植物和培养的培养培养的植物培养的植物脂肪酸含量

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摘要

The extensive variation in the biochemical composition of algal species is used as a source of potential bioactive compounds for applications in the agri-food industry and in the field of functional foods. Among these species, Porphyra/Pyropia spp. (nori, laver) are red sea vegetables which provide the foundation for a billion-dollar industry. In this study, we determine the growth and biochemical composition of distinct reproductive traits (females vs. males) in Porphyra dioica. In order to characterize and enhance through cultivation the bioactive profiles and biochemical composition of this sea vegetable, we determined the effects of environmental parameters (light and nutrients) on the growth of different life history traits (females vs. males) in cultured and field samples of P. dioica. In field-collected samples, females contained higher contents of phycoerythrin (9.71 +/- 3.13 mg g(-1) DW), PUFA (omega-3 fatty acids, 12.25 +/- 0.78 mg g(-1) DW; eicosapentaenoic acid, 11.54 +/- 0.92 mg g(-1) DW) and total fatty acids (TFA) (31.58 +/- 2.5 mg g(-1) DW) than males. The total nitrogen (TN) content was similar in both traits in the field, but the protein nitrogen (PN) was higher in males from field collections (42.80 mg g(-1) DW). In culture, males and females responded differently to applied environmental factors, with an increase of some omega-6 fatty acids (e.g. 20:4 n-6 with an increase of 4.98 %TFA, 0.1 mg g(-1) DW) in females and omega-7,9 fatty acids in males (increase of 13.75 %TFA, 0.79 mg g(-1) DW in omega-7 and 1.59 %TFA in omega-9) associated with exposure to adverse conditions (N starvation under low light intensity). We discuss the possibility of using P. dioica as a promising source of functional new food products such as enriched nori in bioactive compounds such as monounsaturated and polyunsaturated fatty acids.
机译:藻类生物化学组成的广泛变化用作农业食品工业和功能性食品领域应用的潜在生物活性化合物的来源。在这些物种中,Porphyra / Pyropia SPP。 (Nori,Laver)是红海蔬菜,为亿美元的行业提供基础。在这项研究中,我们确定卟啉二氧化硅中不同生殖性状的生长和生化组成(女性与雄性)。为了通过培养和增强这种海洋蔬菜的生物活性谱和生化组成,我们确定了环境参数(光和营养素)对培养和田间样本中不同生命历史特征的生长(女性与雄性)的影响对Dioica的。在田间收集的样品中,女性含有更高的植物植物含量(9.71 +/- 3.13mg(-1)dw),pufa(ω-3脂肪酸,12.25 +/- 0.78mg g(-1)dw; eicosapentaeno酸,11.54 +/- 0.92mg g(-1)dw)和总脂肪酸(TFA)(TFA)(31.58 +/- 2.5mg(-1)dw)。在该领域的性状中,总氮(TN)含量相似,但是蛋白质氮(PN)在野外收集(42.80mg(-1)DW)中较高。在培养中,男性和女性对应用环境因素的响应不同,随着一些ω-6脂肪酸(例如20:4 N-6增加了4.98%TFA,0.1mg g(-1)DW)的雌性和ω-7,9牛奶中的脂肪酸(ω-7的ω-7和1.59%TFA中的ω-7和1.59%TFA的脂肪酸增加)与暴露于不利条件相关(低光下的饥饿强度)。我们讨论了使用P. Dioica作为功能性新食品的有希望的可能性,例如富含生物活性化合物,如单一饱和和多不饱和脂肪酸的富含生物活性化合物。

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