Polysiphonia morrowii Harvey'nin Biyokimyasal ve Fizyolojik Özellikleri Üzerinde Etkili Bir Parametre: Tuzluluk Stresi

Mihriban Özen, Gamze Yildiz, Şükran Dere
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Abstract

In recent years, rising temperatures due to global climate change can constitute a decrease in salinity in the oceans by causing the ice to melt early and freeze late in its annual cycle and increased precipitation. On the other hand, high temperatures can increase the salinity of seawater locally by enhancing evaporation. It is expected that the changes in salinity of sea water would affect communities of seaweeds. In this study, Polysiphonia morrowii Harvey samples were collected from Altıntaş station in the Gulf of Gemlik in April 2013, and cultured in mediums with four different salt concentrations (10‰, 23‰, 33‰, 42‰). The changes of this species in the amounts of total protein, total phenol, phycocyanin (PC), phycoerythrin (PE), chlorophyll-a (Chl a), water-soluble antioxidant, oil-soluble antioxidant, total solid organic matter and the activity of the carbonic anhydrase were determined. The study clearly showed that studied biochemical and physiological properties of the species were affected by salinity changes. It is also detected that P. morrowii is a tolerant species that can adapt to changing salinity conditions with various defense strategies.
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对 Polysiphonia morrowii Harvey 生化和生理特征的有效参数盐度胁迫
近年来,全球气候变化导致气温升高,使冰在其年周期中早融晚冻,降水量增加,从而导致海洋盐度下降。另一方面,高温也会加剧海水蒸发,使局部海水盐度升高。预计海水盐度的变化会影响海藻群落。本研究于 2013 年 4 月在盖姆利克湾的 Altıntaş 站采集了 Polysiphonia morrowii Harvey 样本,并在四种不同盐浓度(10‰、23‰、33‰、42‰)的培养基中进行培养。测定了该物种在总蛋白、总酚、藻蓝蛋白(PC)、藻红蛋白(PE)、叶绿素-a(Chl a)、水溶性抗氧化剂、油溶性抗氧化剂、固体有机物总量和碳酸酐酶活性方面的变化。研究清楚地表明,所研究的物种生化和生理特性受到盐度变化的影响。研究还发现,莫罗鱼是一种耐盐物种,能通过各种防御策略适应盐度条件的变化。
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