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草甘膦(农达)作为磷营养物质增强了甲藻等鞭金藻的碳氮积累,并上调了其磷代谢。

Glyphosate (Roundup) as phosphorus nutrient enhances carbon and nitrogen accumulation and up-regulates phosphorus metabolisms in the haptophyte Isochrysis galbana.

机构信息

State Key Laboratory of Marine Environmental Science, Xiamen University, Xiamen, Fujian 361102, China; College of Ocean and Earth Sciences, Xiamen University, Xiamen, Fujian 361102, China.

Department of Marine Sciences, University of Connecticut, Groton, CT, United States of America.

出版信息

Sci Total Environ. 2024 Feb 25;913:169715. doi: 10.1016/j.scitotenv.2023.169715. Epub 2023 Dec 30.

Abstract

Inorganic phosphate limitation for phytoplankton may be intensified with water stratification by global warming, and with the increasing nitrogen: phosphorus (N:P) ratio in coastal zones resulting from continuous anthropogenic N overloading. Under these circumstances, phytoplankton's ability to use dissolved organic phosphorus (DOP) will give species a competitive advantage. In our previous study, we have shown that the haptophyte Isochrysis galbana can use glyphosate (Roundup) as a P nutrient source to support growth, but the mechanism of how remains unexplored. Here, we show that three genes encoding PhnC (IgPhnCs), which exhibit up-regulated expression in glyphosate-grown cultures, are probably responsible for glyphosate uptake, while homologs of PhnK and PhnL (IgPhnK and IgPhnL) probably provide auxiliary support for the intracellular degradation of glyphosate. Meanwhile, we found the use efficiency of glyphosate was low compared with phosphate, probably because glyphosate uptake and hydrolysis cost energy and because glyphosate induces oxidative stress in I. galbana. Meanwhile, genes encoding 5-enolpyruvylshikimate 3-phosphate (EPSP) synthase, the target of the herbicide, were up-regulated in glyphosate cultures. Furthermore, our data showed the up-regulation of P metabolisms (transcription) in glyphosate-grown cultures, which further induced the up-regulation of nitrate/nitrite transport and biosynthesis of some amino acids. Meanwhile, glyphosate-grown cells accumulated more C and N, resulting in remarkably high C:N:P ratio, and this, along with the up-regulated P metabolisms, was under transcriptional and epigenetic regulation. This study sheds lights on the mechanism of glyphosate utilization as a source of P nutrient by I. galbana, and these findings have biogeochemical implications.

摘要

无机磷限制可能会因全球变暖导致的水体分层而加剧,并且由于人为氮持续过量输入导致沿海地区氮磷比不断增加。在这种情况下,浮游植物利用溶解有机磷(DOP)的能力将赋予物种竞争优势。在我们之前的研究中,已经表明甲藻伊谷藻(Isochrysis galbana)可以利用草甘膦(Roundup)作为磷营养源来支持生长,但其中的机制尚不清楚。在这里,我们表明,三个编码 PhnC(IgPhnCs)的基因,其在草甘膦培养物中表达上调,可能负责草甘膦的摄取,而 PhnK 和 PhnL 的同源物(IgPhnK 和 IgPhnL)可能为草甘膦在细胞内的降解提供辅助支持。同时,我们发现草甘膦的利用效率比磷酸盐低,这可能是因为草甘膦的摄取和水解需要消耗能量,而且草甘膦会诱导伊谷藻产生氧化应激。同时,草甘膦的靶标 5-烯醇丙酮酰莽草酸-3-磷酸(EPSP)合酶的编码基因在草甘膦培养物中上调。此外,我们的数据表明草甘膦培养物中的 P 代谢(转录)上调,进一步诱导硝酸盐/亚硝酸盐转运和一些氨基酸的生物合成上调。同时,草甘膦培养物中的细胞积累了更多的 C 和 N,导致 C:N:P 比显著升高,这与 P 代谢的上调一起,受到转录和表观遗传调控。本研究揭示了伊谷藻利用草甘膦作为磷营养源的机制,这些发现具有生物地球化学意义。

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