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在磷充足条件下碱性磷酸酶 PhoA 在藻类代谢调控中的作用。

Roles of Alkaline Phosphatase PhoA in Algal Metabolic Regulation under Phosphorus-replete Conditions.

机构信息

State Key Laboratory of Marine Environmental Science and College of Ocean and Earth Sciences, Xiamen University, Xiamen, Fujian, China.

Department of Marine Sciences, University of Connecticut, Groton, Connecticut, USA.

出版信息

J Phycol. 2021 Jun;57(3):703-707. doi: 10.1111/jpy.13151. Epub 2021 Apr 16.

Abstract

Alkaline phosphatase (AP) in plants and algae is known to hydrolyze dissolved organophosphate (DOP) in order to obtain phosphorus when the preferred dissolved inorganic phosphorus (DIP) is present in limited supply. By conducting comparative analyses of physiologies and transcriptomes on a mutant of PhoA type AP (mPhoA) and wild type (WT) of the marine diatom Phaeodactylum tricornutum CCAP 1055/1 under P-replete and P-depleted conditions, we document other roles of this gene than DOP scavenging. PhoA mutation created by CRISPR/Cas9 diminished its DOP hydrolase activity but led to significant increases in cellular contents of pigment, carbon, and lipids, photosynthetic rate, growth rate, and the transcriptional levels of their corresponding metabolic pathways. All the results in concert indicate that besides P-nutrient scavenging under DIP deficiency, AP also functions, under the P-replete condition, to constrain pigment biosynthesis, photosynthesis, fatty acid biosynthesis, and cell division. These functions have important implications in maintaining metabolic homeostasis and preventing premature cell division.

摘要

植物和藻类中的碱性磷酸酶(AP)已知能够水解溶解的有机磷(DOP),以在优先的溶解无机磷(DIP)供应有限的情况下获取磷。通过对 PhoA 型 AP(mPhoA)突变体和海洋硅藻三角褐指藻 CCAP 1055/1 的野生型(WT)在磷充足和磷缺乏条件下的生理学和转录组进行比较分析,我们记录了该基因除了 DOP 清除之外的其他作用。CRISPR/Cas9 产生的 PhoA 突变降低了其 DOP 水解酶活性,但导致色素、碳和脂质、光合速率、生长速率以及其相应代谢途径的转录水平的细胞含量显著增加。所有结果表明,除了在 DIP 缺乏下的磷营养清除外,AP 在磷充足的条件下还能限制色素生物合成、光合作用、脂肪酸生物合成和细胞分裂。这些功能对于维持代谢平衡和防止过早细胞分裂具有重要意义。

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