首页> 美国卫生研究院文献>International Journal of Molecular Sciences >From Ecology to Biotechnology Study of the Defense Strategies of Algae and Halophytes (from Trapani Saltworks NW Sicily) with a Focus on Antioxidants and Antimicrobial Properties
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From Ecology to Biotechnology Study of the Defense Strategies of Algae and Halophytes (from Trapani Saltworks NW Sicily) with a Focus on Antioxidants and Antimicrobial Properties

机译:从生态学到生物技术研究藻类和盐生植物的防御策略(来自西西里岛西北部的特拉帕尼盐场)重点研究抗氧化剂和抗菌特性

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摘要

This study aimed at the characterization of the antioxidant power of polyphenol extracts (PE) obtained from the algae Cystoseira foeniculacea (CYS) (Phaeophyta) and from the halophyte Halocnemum strobilaceum (HAL), growing in the solar saltworks of western Sicily (Italy), and at the evaluation of their anti-microfouling properties, in order to correlate these activities to defense strategies in extreme environmental conditions. The antioxidant properties were assessed in the PE based on the total antioxidant activity test and the reducing power test; the anti-microfouling properties of the two PE were evaluated by measuring the growth inhibition of marine fish and shellfish pathogen bacteria as well as marine surface fouling bacteria and microalgae exposed to the fractions. Similar polyphenol content (CYS 5.88 ± 0.75 and HAL 6.03 ± 0.25 mg gallic acid equivalents (GAE) g−1 dried weight, DW) and similar reducing power percentage (93.91 ± 4.34 and 90.03 ± 6.19) were recorded for both species, even if they exhibited a different total antioxidant power (measured by the percentage of inhibition of the radical 2,2 diphenyl-1-picrylhydrazyl DPPH), with CYS (79.30) more active than HAL (59.90). Both PE showed anti-microfouling properties, being inhibitors of adhesion and growth of marine fish and shellfish pathogen bacteria (V. aestuarianus, V. carchariae, V. harveyi, P. elyakovii, H. aquamarina) and fouling bacteria (V. natriegens, V. proteolyticus, P. iirgensii, R. litoralis) with minimum inhibitory concentrations comparable to the commercial antifouling products used as a positive control (SEA-NINE™ 211N). Only CYS was a significant inhibitor of the microalgae strains tested, being able to reduce E. gayraliae and C. closterium growth (MIC 10 µg·mL−1) and the adhesion of all three strains tested (E. gayraliae, C. closterium and P. purpureum), suggesting its promise for use as an antifouling (AF) product.
机译:这项研究的目的是表征在西西里岛西部(意大利)的太阳能盐厂中从藻类Cystoseira foeniculacea(CYS)(Phaeophyta)和盐生植物Halocnemum strobilaceum(HAL)获得的多酚提取物(PE)的抗氧化能力,并评估其抗微污垢特性,以便将这些活动与极端环境条件下的防御策略相关联。根据总抗氧化活性测试和还原能力测试评估PE中的抗氧化性能。通过测量海水鱼类和贝类病原菌以及暴露于这些级分的海洋表面污垢细菌和微藻的生长抑制作用,评估了两种PE的抗微垢特性。相似的多酚含量(CYS 5.88±0.75和HAL 6.03±0.25 mg没食子酸当量(GAE)g -1 干重DW)和相似的还原力百分比(93.91±4.34和90.03±6.19)即使它们显示出不同的总抗氧化能力(通过抑制自由基2,2二苯基-1-吡啶并肼基DPPH的百分比来衡量),CYS(79.30)的活性也比HAL(59.90)高。两种PE均显示出抗微污垢特性,它们是海洋鱼类和贝类病原菌(V. aestuarianus,V。carchariae,V。harveyi,P。elyakovii,H。amarina)和结垢细菌(V. natriegens, V. proteolyticus,P. iirgensii,R. litoralis)的最低抑菌浓度与用作阳性对照的商业防污产品(SEA-NINE™211N)相当。只有CYS是测试的微藻菌株的重要抑制剂,能够降低盖拉肠球菌和梭状芽胞杆菌的生长(MIC 10 µg·mL -1 )以及所有三种菌株的粘附力(E Gayraliae,C。closterium和P. purpureum),表明其有望用作防污(AF)产品。

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