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浅析安达曼海红海藻 Tricleocarpa fragilis 的生理学、生物化学和生态学意义。

Insights into the physiology, biochemistry and ecological significance of the red seaweed Tricleocarpa fragilis in the Andaman Sea.

机构信息

Bihar Agricultural University, Sabour, Bihar, 813210, India.

Pondicherry University, Port Blair Campus, Brookshabad, 744101, India.

出版信息

BMC Plant Biol. 2024 Aug 10;24(1):765. doi: 10.1186/s12870-024-05452-3.

Abstract

The present study focused on the physiological and biochemical aspects of Tricleocarpa fragilis, red seaweed belonging to the phylum Rhodophyta, along the South Andaman coast, with particular attention given to its symbiotic relationships with associated flora and fauna. The physicochemical parameters of the seawater at the sampling station, such as its temperature, pH, and salinity, were meticulously analyzed to determine the optimal harvesting period for T. fragilis. Seaweeds attach to rocks, dead corals, and shells in shallow areas exposed to moderate wave action because of its habitat preferences. Temporal variations in biomass production were estimated, revealing the highest peak in March, which was correlated with optimal seawater conditions, including a temperature of 34 ± 1.1 °C, a pH of 8 ± 0.1, and a salinity of 32 ± 0.8 psu. GC‒MS analysis revealed n-hexadecanoic acid as the dominant compound among the 36 peaks, with major bioactive compounds identified as fatty acids, diterpenes, phenolic compounds, and hydrocarbons. This research not only enhances our understanding of ecological dynamics but also provides valuable insights into the intricate biochemical processes of T. fragilis. The established antimicrobial potential and characterization of bioactive compounds from T. fragilis lay a foundation for possible applications in the pharmaceutical industry and other industries.

摘要

本研究聚焦于南安达曼海岸红藻门(Rhodophyta)的多管藻属(Tricleocarpa)的生理和生化方面,特别关注其与相关动植物的共生关系。对采样点海水的理化参数(如温度、pH 值和盐度)进行了细致分析,以确定 T. fragilis 的最佳收获期。由于其栖息地偏好,海藻附着在浅水区暴露于中等波浪作用的岩石、死珊瑚和贝壳上。估计了生物量产量的时间变化,发现 3 月的峰值最高,这与最佳海水条件有关,包括温度为 34 ± 1.1°C、pH 值为 8 ± 0.1 和盐度为 32 ± 0.8 psu。GC-MS 分析显示,在 36 个峰中,十六烷酸是主要化合物,主要的生物活性化合物包括脂肪酸、二萜、酚类化合物和烃类。这项研究不仅增强了我们对生态动态的理解,还为 T. fragilis 的复杂生化过程提供了有价值的见解。从 T. fragilis 中建立的抗菌潜力和生物活性化合物的表征为其在制药行业和其他行业的潜在应用奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cbb/11316327/b5ee93dcaf90/12870_2024_5452_Fig1_HTML.jpg

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