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Manganese and iron deficiency in Southern Ocean Phaeocystis antarctica populations revealed through taxon-specific protein indicators

机译:通过分类群特异性蛋白指标揭示南极南极囊藻种群中的锰和铁缺乏

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摘要

Iron and light are recognized as limiting factors controlling Southern Ocean phytoplankton growth. Recent field-based evidence suggests, however, that manganese availability may also play a role. Here we examine the influence of iron and manganese on protein expression and physiology in Phaeocystis antarctica, a key Antarctic primary producer. We provide taxon-specific proteomic evidence to show that in-situ Southern Ocean Phaeocystis populations regularly experience stress due to combined low manganese and iron availability. In culture, combined low iron and manganese induce large-scale changes in the Phaeocystis proteome and result in reorganization of the photosynthetic apparatus. Natural Phaeocystis populations produce protein signatures indicating late-season manganese and iron stress, consistent with concurrently observed stimulation of chlorophyll production upon additions of manganese or iron. These results implicate manganese as an important driver of Southern Ocean productivity and demonstrate the utility of peptide mass spectrometry for identifying drivers of incomplete macronutrient consumption.
机译:铁和光被认为是控制南部海洋浮游植物生长的限制因素。然而,最近的实地证据表明,锰的可用性也可能起一定作用。在这里,我们研究了铁和锰对南极主要产卵囊藻Phaeocystis antarctica中蛋白质表达和生理的影响。我们提供特定于分类群的蛋白质组学证据,以显示原位南部大洋藻类种群由于锰和铁的利用率较低而经常遭受压力。在文化中,低铁和锰的结合会导致囊藻蛋白质组发生大规模变化,并导致光合装置重组。自然的囊藻类种群产生的蛋白质特征表明后期的锰和铁胁迫,与同时观察到的添加锰或铁刺激叶绿素产生的现象一致。这些结果暗示锰是南部海洋生产力的重要驱动力,并证明了肽质谱法可用于确定宏观营养素消耗不完全的驱动力。

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