AI Article Synopsis

  • A study examined the brown tide alga Aureoumbra lagunensis in southern Texas to understand the molecular mechanisms behind its sustained blooms in nutrient-depleted environments.
  • Researchers compared the alga's proteome and physiological responses across different nutrient conditions using advanced techniques like mass spectrometry.
  • The findings suggest that A. lagunensis adapts to phosphate-limited conditions by utilizing a specific protein, identified as an alkaline phosphatase, to help regenerate phosphate from organic sources, highlighting its role in thriving under nutrient scarcity.

Article Abstract

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.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3298125PMC
http://dx.doi.org/10.1128/AEM.05755-11DOI Listing

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