Ocean Sciences Department, University of California, 1156 High Street, Santa Cruz, California, 95064, USA.
Second Genome, 341 Allerton Avenue, South San Francisco, California, 94080, USA.
J Phycol. 2019 Aug;55(4):752-761. doi: 10.1111/jpy.12863. Epub 2019 May 16.
The marine diazotroph Crocosphaera watsonii provides fixed carbon (C) and nitrogen (N) to open-ocean regimes, where nutrient deficiency controls productivity. The growth of Crocosphaera can be limited by low phosphorus (P) concentrations in these oligotrophic environments. Biomarkers such as the high-affinity ABC transporter phosphate-binding gene, pstS, are commonly used to monitor when such organisms are under P stress; however, transcriptional regulation of these markers is often complex and not well-understood. In this study, we interrogated changes in pstS transcript levels in C. watsonii cells under P starvation, and in response to added dissolved inorganic phosphorus (DIP), dissolved organic phosphorus (DOP), and changing light levels. We observed elevated relative pstS transcript levels in C. watsonii WH8501 at DIP concentrations below 60 and above 20 nmol · L . Transcript levels were suppressed by both inorganic and bioavailable organic phosphorus; however, the P stress response was more sensitive to DIP than DOP sources. Increasing light intensity resulted in increased relative pstS transcript abundances independently of low external P, and seemed to exacerbate the physiological effects of P stress. The variable response to different P compounds and rapid and transient influence of high light on pstS transcript abundances suggests that pstS is an indicator of internal P status in Crocosphaera.
海洋固氮生物 Crocosphaera watsonii 为开阔海域提供固定碳(C)和氮(N),而这些海域的生产力受到营养物质缺乏的限制。在这些贫营养环境中,Crocosphaera 的生长可能会受到低磷(P)浓度的限制。高亲和力 ABC 转运体磷酸盐结合基因 pstS 等生物标志物通常用于监测这些生物体何时处于 P 胁迫下;然而,这些标记物的转录调控通常很复杂,尚未得到很好的理解。在这项研究中,我们研究了 P 饥饿和添加溶解无机磷(DIP)、溶解有机磷(DOP)以及光照变化对 C. watsonii 细胞中 pstS 转录本水平的影响。我们观察到,在 DIP 浓度低于 60 和高于 20 nmol·L -1 时,C. watsonii WH8501 的相对 pstS 转录本水平升高。无机磷和生物可利用有机磷都抑制了转录水平;然而,P 胁迫反应对 DIP 的敏感性比对 DOP 源的敏感性更高。增加光照强度会导致相对 pstS 转录本丰度增加,而与低外部 P 无关,并且似乎加剧了 P 胁迫的生理效应。对不同 P 化合物的可变反应以及高光对 pstS 转录本丰度的快速和瞬态影响表明,pstS 是 Crocosphaera 内部 P 状态的指示剂。