School of Oceanography, Center for Environmental Genomics, University of Washington, Seattle, WA 98105, USA.
Environ Microbiol. 2013 Jul;15(7):2129-43. doi: 10.1111/1462-2920.12129. Epub 2013 May 6.
Phosphorus (P) availability drives niche differentiation in the most abundant phytoplankter in the oceans, the marine cyanobacterium Prochlorococcus. We compared the molecular response of Prochlorococcus strain MED4 to P starvation in batch culture to P-limited growth in chemostat culture. We also identified an outer membrane porin, PMM0709, which may allow transport of organic phosphorous compounds, rather than phosphate as previously suggested. The expression of three P uptake genes, pstS, the high-affinity phosphate-binding component of the phosphate transporter, phoA, an alkaline phosphatase, and porin PMM0709, were strongly upregulated (between 10- and 700-fold) under both P starvation and limitation. pstS exhibits high basal expression under P-replete conditions and is likely necessary for P uptake regardless of P availability. A P-stress regulatory gene, ptrA, was upregulated in response to both P starvation and limitation although a second regulatory gene, phoB, was not. Elevated expression levels (> 10-fold) of phoR, a P-sensing histidine kinase, were only observed under conditions of P limitation. We suggest Prochlorococcus in P-limited systems are physiologically distinct from cells subjected to abrupt P depletion. Detection of expression of both pstS and phoR in field populations will enable discernment of the present P status of Prochlorococcus in the oligotrophic oceans.
磷(P)供应驱动海洋中最丰富的浮游植物——海洋蓝藻原绿球藻的生态位分化。我们比较了海洋蓝藻原绿球藻 MED4 菌株在批式培养中对 P 饥饿的分子响应与在恒化器培养中 P 限制生长的分子响应。我们还鉴定了一种外膜孔蛋白 PMM0709,它可能允许有机磷化合物而不是磷酸盐的运输,而不是以前所建议的那样。三个 P 摄取基因 pstS、磷酸盐转运体的高亲和力磷酸盐结合成分 phoA、碱性磷酸酶和孔蛋白 PMM0709 的表达在 P 饥饿和限制下均强烈上调(10 到 700 倍之间)。pstS 在 P 充足条件下表现出高基础表达,并且无论 P 是否可用,都可能是 P 摄取所必需的。P 应激调节基因 ptrA 对 P 饥饿和限制均有上调,但第二个调节基因 phoB 没有。尽管在 P 限制条件下观察到 P 感应组氨酸激酶 phoR 的表达水平升高(>10 倍),但在 P 饥饿条件下并未观察到。我们认为,在 P 限制系统中的原绿球藻在生理上与突然耗尽 P 的细胞不同。在野外种群中检测到 pstS 和 phoR 的表达将能够辨别贫营养海洋中原绿球藻的当前 P 状态。