从春季情况看比格海峡东部溶解有机物的来源特征

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-05-01 DOI:10.1016/j.jmarsys.2023.103863
Andrea Malits , Chiara Monforte , Clara Iachetti , Marina Gerea , Maité Latorre
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引用次数: 7

摘要

通过对溶解有机物(DOM)的光学和荧光性质进行分析,以研究其在2019年春季南部比格海峡东部断面上的分布、来源和转化与微生物丰度、叶绿素和物理化学梯度的关系。此外,在三个潮汐周期中,在被麦金莱海峡隔开的两个固定站(F1、F2)中跟踪了DOM的演变,麦金莱海峡是受更强大陆影响的水团(内部区域)和变化较小的亚南极水域(外部区域)之间的水文边界。蛋白质和类腐殖化合物的荧光信号分别用作不稳定物质和不稳定物质的代表,而纳米、微微和病毒浮游动物种群、叶绿素a(Chl-a)和溶解有机碳(DOC)的浓度用作生物活性的代表。此外,一些光谱指标,如微生物产生的DOM指标(BIX)、新鲜度指数(FIX)、分子量指标、斜率比(SR)和发色DOM指标(CDOM),被用来追踪DOM的质量和来源。Chl-a浓度在采样区通常较低(<;1μg L−1),但在活动结束时增加,尤其是在F1访问期间,伴随着微微真核生物和蛋白质样荧光团的浓度,证明了水华事件的开始。蛋白质样荧光团在不列颠哥伦比亚省内部的透光带达到峰值,而陆地来源的类腐殖物质在整个水柱中均匀分布,并向外部和大西洋水域显示出递减的梯度。此外,内部扇区的特征在于更高量的CDOM、高分子量材料和更难降解的DOM。内部底层水中本地类腐殖物质的积累,以及在有色有机物质之前FIX和BIX值的提高,表明由陆地DOM源提供燃料的微生物碳泵在这些水中有效发挥作用。
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Source characterization of dissolved organic matter in the eastern Beagle Channel from a spring situation

Dissolved organic matter (DOM) was analyzed by its optical and fluorescent properties in order to study its distribution, source and transformation in relation to microbial abundances, chlorophyll and physicochemical gradients along a transect in the eastern Beagle Channel (BC) during austral spring 2019. Moreover, DOM evolution was followed during three tidal cycles in two fixed stations (F1, F2) separated by the Mackinlay Strait, a hydrographic frontier between water masses under stronger continental influence (inner sector) and that of less modified Sub-Antarctic waters (outer sector). The fluorescence signals of protein- and humic-like compounds were used as a proxy for labile and non-labile material, respectively, while the concentration of nano-, pico- and virioplankton populations, chlorophyll-a (Chl-a) and dissolved organic carbon (DOC) were used as a proxy for biological activity. Moreover, several spectroscopic indices, such as the indicator of microbially produced DOM (BIX), the Freshness index (FIX), an indicator of molecular weight, the Slope Ratio (SR) and an indicator of chromophoric DOM (CDOM), were used to trace the quality and origin of DOM. Chl-a concentration was generally low in the sampling area (< 1 μg L−1) but increased towards the end of the campaign and especially during the visit of F1 along with the concentration of picoeukaryotes and the protein-like fluorophores evidencing the onset of a bloom event. Protein-like fluorophores peaked in the euphotic zone of the inner sector of the BC while humic-like material of terrestrial origin was homogeneously distributed throughout the water column and showed a decreasing gradient towards the outer sector and Atlantic waters. Furthermore, the inner sector was characterized by higher amounts of CDOM, high molecular weight material and more recalcitrant DOM. Accumulation of autochthonous humic-like material in bottom waters of the inner sector along with enhanced values of FIX and BIX preceded by colored organic material suggest an efficient functioning of the microbial carbon pump fueled by terrestrial DOM sources in these waters.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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