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首页> 外文期刊>Marine ecology progress series >Phytoplankton taxa, irradiance and nutrient availability determine the seasonal cycle of DMSP in temperate shelf seas
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Phytoplankton taxa, irradiance and nutrient availability determine the seasonal cycle of DMSP in temperate shelf seas

机译:浮游植物的分类单位,辐照度和养分利用率决定了温带陆架海DMSP的季节周期

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The influences of physico-chemical and biological variables on the concentrations of dimethyl sulphide (DMS) and its precursor β-dimethylsulphoniopropionate (DMSP) were investigated through an annual cycle in the temperate shelf seas of the western English Channel. Total DMSP to chlorophyll a ratios (DMSPt/chl a) varied seasonally by 40-fold, and DMS and DMSP concentrations became temporally uncoupled, with elevated relative DMS concentrations during spring and midsummer. Taxonomic succession of high DMSP-producing phytoplankton, including Phaeocystis pouchetii, Scrippsiella trochoidea and Prorocentrum minimum, is apparent in the seasonal pattern of DMSPt concentrations. Peridinin and DMSPt concentrations showed similar seasonal trends (p < 0.0001), illustrating the substantial contribution by dinoflagellate taxa to DMSP production. Summertime stratification of the water column coincided with increased mixed layer doses of photosyntheti-cally active radiation (PAR), increased surface ultraviolet-B (UVB) irradiance relative to PAR and a decrease in nitrate and phosphate availability. PAR dose explained 68 % of the variability in DMSP/chl a during the seasonal study; whilst nitrate concentrations were inversely related to DMSP/chl a and explained 64 % of the variability in log-transformed DMSP/chl a. PAR dose explained only 25 % of the variation in DMS concentration, whilst nitrate concentration was inversely related to DMS and explained 49 % of the variation in log-transformed DMS concentration. The highly significant relationship between DMSP/chl a and PAR dose was similar to those observed for the chlorophyll-specific accumulation of the photoprotective xanthophyll compounds diadinoxanthin and diatoxanthin and the chlorophyll-specific concentrations of UV-absorbing mycosporine-like amino acids. These results lend further, indirect evidence for a photoprotective role of DMSP, possibly associated with physiological stress caused by high PAR and UV radiation and intensified by nutrient limitation.
机译:在西英吉利海峡的温带陆架海中,通过一个年度周期研究了理化和生物学变量对二甲基硫醚(DMS)及其前体β-二甲基磺基丙酸酯(DMSP)浓度的影响。 DMSP与叶绿素a的总比率(DMSPt / chl a)随季节变化40倍,并且DMS和DMSP浓度在时间上不相关,并且在春季和仲夏期间相对DMS浓度升高。在DMSPt浓度的季节性模式中,高产DMSP的浮游植物的分类学演替是显而易见的,其中包括袋囊藻(Phaeocystis pouchetii),拟南芥(Scrippsiella trochoidea)和最低原原虫(Prorocentrum)。 peridinin和DMSPt的浓度显示出相似的季节性趋势(p <0.0001),说明地鞭毛类生物分类对DMSP的生产有重要贡献。水柱的夏季分层与光合有效辐射(PAR)的混合层剂量增加,相对于PAR的表面紫外线B(UVB)辐照度增加以及硝酸盐和磷酸盐的利用率降低同时发生。在季节性研究中,PAR剂量解释了DMSP / chla中68%的变异性;而硝酸盐浓度与DMSP / chl a呈负相关,并解释了对数转化的DMSP / chl a的64%变异性。 PAR剂量仅解释了DMS浓度变化的25%,而硝酸盐浓度与DMS呈负相关,并解释了对数转换的DMS浓度变化的49%。 DMSP / chla和PAR剂量之间的高度显着关系类似于对光保护性叶黄素化合物二恶黄质和重黄嘌呤的叶绿素特异性蓄积以及吸收紫外线的霉菌素样氨基酸的叶绿素特异性浓度所观察到的相似性。这些结果为DMSP的光保护作用提供了进一步的间接证据,它可能与高PAR和UV辐射引起的生理压力有关,并由于营养限制而加剧。

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