新型河口生物修复目标 Gracilaria transtasmanica 对光照限制、空气暴露和各种盐度具有很强的耐受性

IF 2.8 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of Applied Phycology Pub Date : 2024-07-30 DOI:10.1007/s10811-024-03319-6
Bethany G. Ross, Marie Magnusson, Rebecca J. Lawton
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引用次数: 0

摘要

原位大型藻类生物修复有助于防止和减少河口富营养化。然而,河口是一个动态生态系统,其特点是非生物条件起伏不定。因此,河口原位生物修复的目标大型藻类物种必须能够在一系列具有挑战性的非生物条件下保持生产力。本研究旨在评估新型生物修复目标藻类 Gracilaria transtasmanica 对河口环境中出现的环境和极端盐度、空气暴露和光照限制的耐受性。为评估对每种因素的耐受性,分别进行了三次实验,并利用光合功能和生长情况来量化 G. transtasmanica 在每次实验中的耐受范围。特定生长速率(SGR)受到盐度、空气暴露和光照限制的显著影响。Gracilaria transtasmanica 能够在 5 至 35 ppt 的盐度条件下生长,但生长率随着盐度的降低而降低。可以忍受长达 9 小时的空气暴露期,但随着空气暴露期的延长,生长率也随之下降。横须蓠能够在环境光损失达 75% 的情况下保持生长,也能忍受短时间(48 小时)的持续黑暗。光合作用不受盐度、空气暴露或光照限制的影响。这些结果表明,G. transtasmanica 对光照限制、空气暴露和各种盐度都有很强的耐受性。因此,可以在河口的各种生境类型中培育该物种。不过,最佳的栽培生境是潮下渠道和潮间带较低的泥滩,因为在这些地方淡水流入和空气暴露的影响较小。
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The novel estuarine bioremediation target Gracilaria transtasmanica has high tolerance to light limitation, air-exposure and a broad range of salinities

In-situ macroalgal bioremediation could help prevent and reduce estuarine eutrophication. However, estuaries are dynamic ecosystems characterized by fluctuating abiotic conditions. Therefore, target macroalgal species for in-situ estuarine bioremediation must be able to maintain productivity under a range of challenging abiotic conditions. The aim of this study was to assess the tolerance of the novel bioremediation target Gracilaria transtasmanica to ambient and extreme levels of salinity, air-exposure, and light limitation that occur in estuarine environments. Three separate experiments were conducted to assess tolerance to each factor and photosynthetic functioning and growth were used to quantify the tolerance range of G. transtasmanica in each experiment. Specific Growth Rate (SGR) was significantly affected by salinity, air-exposure, and light limitation. Gracilaria transtasmanica was able to grow in salinities of 5 to 35 ppt, but growth rates decreased with decreasing salinity. Air-exposure periods of up to 9 h were tolerated, but growth rates decreased as air-exposure period increased. Gracilaria transtasmanica was able to maintain growth with a loss of up to 75% of ambient light and was also able to tolerate short periods (48 h) of continuous darkness. Photosynthetic function was unaffected by salinity, air-exposure, or light limitation. These results demonstrate the high tolerance of G. transtasmanica to light limitation, air-exposure and a broad range of salinities. Consequently, this species could be cultivated in a range of habitat types within estuaries. However, the optimal habitats for cultivation will be submerged subtidal channels and lower intertidal mudflats where the impacts of freshwater inflows and air-exposure are reduced.

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来源期刊
Journal of Applied Phycology
Journal of Applied Phycology 生物-海洋与淡水生物学
CiteScore
6.80
自引率
9.10%
发文量
212
审稿时长
2.8 months
期刊介绍: The Journal of Applied Phycology publishes work on the rapidly expanding subject of the commercial use of algae. The journal accepts submissions on fundamental research, development of techniques and practical applications in such areas as algal and cyanobacterial biotechnology and genetic engineering, tissues culture, culture collections, commercially useful micro-algae and their products, mariculture, algalization and soil fertility, pollution and fouling, monitoring, toxicity tests, toxic compounds, antibiotics and other biologically active compounds. Each issue of the Journal of Applied Phycology also includes a short section for brief notes and general information on new products, patents and company news.
期刊最新文献
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