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首页> 外文期刊>Progress in Oceanography >Bio-optical and physiological patterns in Antarctic seaweeds: A functional trait based approach to characterize vertical zonation
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Bio-optical and physiological patterns in Antarctic seaweeds: A functional trait based approach to characterize vertical zonation

机译:南极海藻的生物光学和生理模式:基于功能性状的表征垂直分区的方法

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摘要

A suite of photosynthetic and bio-optical properties of 29 Antarctic seaweeds from Fildes Bay, King George Island, were studied in order to address the question whether their different functional traits, grouped according to gross morphology, bathymetric distribution, taxonomic category and biogeographic affinity, can explain the observed patterns of vertical distribution and relevant ecosystems services. Based on PCA analysis light requirements for photosynthesis (E-k), thallus absorptance and thickness, photosynthetic efficiency (alpha) and tolerance to stress (UV and temperature) were the traits with the highest predictive value for vertical distribution of the studied Antarctic algae. In this context, the set of bio-optical traits were strongly related with a morphological adaptation to use the available light at different wavelengths at different depths: thick leathery and coarsely branched morphs, mostly red and brown algae, were well equipped to absorb the impoverished light field at deeper locations (lowest E-k values close to 36 mu mot m(-2) s(-1)), while sheet-like algae, especially green algae showed lower absorption at wavelengths that are rapidly attenuated with depth (highest ER values of 260 mu mol m(-2) s(-1)). The studied algae showed high tolerance to stress measured in short-term exposures to UV radiation and enhanced temperature (7 degrees C). The stress tolerance was independent of gross morphology, while greatest differences were found along depth gradient and between algae of different biogeographic affinity. The studied traits were highly interlinked in terms of photosynthetic and bio-optical properties. Our trait based framework defined three major clusters of species: (1) delicate (filamentous and sheet-like) green algae, living mostly in the intertidal zone and with wide geographic distribution; (2) thick leathery Rhodophyta with Antarctic-Subantarctic origin, found mostly at shallow-subtidal locations; and (3) endemic Antarctic brown algae with thick morphology inhabiting the lower subtidal zone. Overall, these results highlight the importance of morpho-functional traits of macroalgae in explaining their distribution across a depth gradient and provide insights into their potential to endure a changing polar environment. This is relevant in Antarctic marine ecology as macroalgae underpin the biogeochemical processes at coastal ecosystems.
机译:研究了来自乔治国王岛菲尔德斯湾的29种南极海藻的一系列光合和生物光学特性,以解决它们的不同功能性状是否按总体形态,等深线分布,分类学类别和生物地理亲和力分组的问题,可以解释观察到的垂直分布模式和相关的生态系统服务。根据PCA分析,对南极藻类的垂直分布,光合作用(E-k),th吸收率和厚度,光合效率(α)和对压力的耐受性(UV和温度)的光需求是预测值最高的特征。在这种情况下,这组生物光学特性与形态适应性密切相关,以利用不同深度,不同波长的可用光:厚革质和粗枝状的形态,主要是红藻和褐藻,能够很好地吸收贫困人口。较深位置处的光场(最低Ek值接近36μmot m(-2)s(-1)),而片状藻类(尤其是绿藻)在随着深度而迅速衰减的波长处显示出较低的吸收率(ER值最高) 260μmol m(-2)s(-1))。所研究的藻类显示出对短期暴露于紫外线辐射和升高的温度(7摄氏度)下测得的应力的高度耐受性。胁迫耐受性与总体形态无关,而沿深度梯度和不同生物地理亲和力的藻类之间发现最大差异。研究的性状在光合作用和生物光学特性方面高度相关。我们基于特征的框架定义了三个主要的物种群:(1)脆弱的(丝状和片状)绿藻,主要生活在潮间带,地理分布广泛; (2)浓厚的革质红藻植物,起源于南极至亚南极,多见于潮下带; (3)特有的南极褐藻,形态浓密,生活在潮下带。总体而言,这些结果突出了大型藻类的形态功能特征在解释其在深度梯度上的分布的重要性,并提供了其在不断变化的极地环境中的潜能的见解。这与南极海洋生态学有关,因为大型藻类支撑着沿海生态系统的生物地球化学过程。

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  • 来源
    《Progress in Oceanography》 |2019年第mayajuna期|17-27|共11页
  • 作者单位

    Univ Austral Chile, Inst Ciencias Marinas & Limnol, Valdivia, Chile|Ctr FONDAP Invest Dinam Ecosistemas Marinos Altas, Campus Isla Teja, Valdivia, Chile;

    Univ Magallanes, Fac Ciencias, Punta Arenas, Chile|Ctr FONDAP Invest Dinam Ecosistemas Marinos Altas, Campus Isla Teja, Valdivia, Chile;

    Univ Austral Chile, Inst Ciencias Marinas & Limnol, Valdivia, Chile|Ctr FONDAP Invest Dinam Ecosistemas Marinos Altas, Campus Isla Teja, Valdivia, Chile;

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