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

机译:南海氏植物缺乏缺乏缺乏南极裔人口,通过分类群特异性蛋白质指标显示

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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:铁和灯被认为是控制南海浮游植物生长的限制因素。然而,最近的基于实地的证据表明,锰可用性也可能发挥作用。在这里,我们研究铁和锰对Phaeocystis南极洲蛋白表达和生理学的影响,是一个关键的南极初级生产商。我们提供特定的分类群蛋白质组学证据,以表明原位南海海洋Phaeocystis人群定期经历压力,因为合并低锰和铁可用性。在培养物中,合并低铁和锰诱导Phaeocystis蛋白质组的大规模变化,并导致光合仪的重组。天然phaeocystis群体产生蛋白质签名,表明季季锰和铁胁迫,与同时观察到锰或铁的叶绿素产生的刺激一致。这些结果涉及锰的重要驾驶员,并证明了肽质谱法鉴定不完全常见营养量消费的驱动程序的效用。

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