首页> 外文期刊>Applied and Environmental Microbiology >Characterization of the Proteomic Profiles of the Brown Tide Alga Aureoumbra lagunensis under Phosphate- and Nitrogen-Limiting Conditions and of Its Phosphate Limitation-Specific Protein with Alkaline Phosphatase Activity
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Characterization of the Proteomic Profiles of the Brown Tide Alga Aureoumbra lagunensis under Phosphate- and Nitrogen-Limiting Conditions and of Its Phosphate Limitation-Specific Protein with Alkaline Phosphatase Activity

机译:限制磷和氮的条件下褐潮藻金黄色农杆菌的蛋白质组学特征及其具有碱性磷酸酶活性的磷酸限制特定蛋白的表征

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The persistent bloom of the brown tide alga Aureoumbra lagunensis has been reported in coastal embayments along southern Texas, but the molecular mechanisms that sustain such algal bloom are unknown. We compared the proteome and physiological parameters of A. lagunensis grown in phosphate (P)-depleted, P- and nitrogen (N)-depleted, and nutrient-replete cultures. For the proteomic analysis, samples from three conditions were subjected to two-dimensional electrophoresis and tandem mass spectrometry analysis. Because of the paucity of genomic resources in this species, a de novo cross-species protein search was used to identify the differentially expressed proteins, which revealed their involvement in several key biological processes, such as chlorophyll synthesis, antioxidative protection, and protein degradation, suggesting that A. lagunensis may adopt intracellular nutrient compensation, extracellular organic nutrient regeneration, and damage protection to thrive in P-depleted environments. A highly abundant P limitation-specific protein, tentatively identified as a putative alkaline phosphatase, was further characterized by enzyme activity assay on nondenaturing gel and confocal microscopy, which confirmed that this protein has alkaline phosphatase activity, is a cytoplasmic protein, and is closely associated with the cell membrane. The abundance, location, and functional expression of this alkaline phosphatase all indicate the importance of organic P utilization for A. lagunensis under P limitation and the possible role of this alkaline phosphatase in regenerating phosphate from extra- or intracellular organic phosphorus.
机译:据报道,得克萨斯州南部沿海沿岸有潮汐藻褐藻持续生长,但维持这种藻华的分子机制尚不清楚。我们比较了生长在磷酸盐(P)贫乏,P和氮(N)贫乏和营养丰富的培养物中的A. lagunensis的蛋白质组和生理参数。对于蛋白质组学分析,对来自三种条件的样品进行了二维电泳和串联质谱分析。由于该物种的基因组资源匮乏,因此使用从头进行跨物种蛋白质搜索来鉴定差异表达的蛋白质,从而揭示了它们参与了几个关键的生物学过程,例如叶绿素合成,抗氧化保护和蛋白质降解,提示在磷贫化的环境中,紫花农杆菌可能采用细胞内养分补偿,细胞外有机养分再生和对protection壮的保护作用。通过在非变性凝胶和共聚焦显微镜上进行酶活性测定,进一步鉴定了一种高度丰富的P限制性特异性蛋白,该蛋白初步被认为是假定的碱性磷酸酶,证实该蛋白具有碱性磷酸酶活性,是一种胞质蛋白,并且紧密相关与细胞膜。该碱性磷酸酶的丰度,位置和功能表达均表明在磷限制下有机磷利用对于紫菜的重要性以及该碱性磷酸酶在从细胞外或细胞内有机磷再生磷酸盐中的可能作用。

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