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Influence of temperature, mixing, and addition of microcystin-LR on microcystin gene expression in Microcystis aeruginosa

机译:温度,混合和添加微囊藻毒素-LR对铜绿微囊藻微囊藻毒素基因表达的影响

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摘要

Abstract Cyanobacteria, such as the toxin producer Microcystis aeruginosa , are predicted to be favored by global warming both directly, through elevated water temperatures, and indirectly, through factors such as prolonged stratification of waterbodies. M. aeruginosa is able to produce the hepatotoxin microcystin, which causes great concern in freshwater management worldwide. However, little is known about the expression of microcystin synthesis genes in response to climate change-related factors. In this study, a new RT-qPCR assay employing four reference genes ( GAPDH , gltA, rpoC1, and rpoD ) was developed to assess the expression of two target genes (the microcystin synthesis genes mcyB and mcyD ). This assay was used to investigate changes in mcyB and mcyD expression in response to selected environmental factors associated with global warming. A 10???°C rise in temperature significantly increased mcyB expression, but not mcyD expression. Neither mixing nor the addition of microcystin-LR (10 ????g L ?¢????1 or 60 ????g L ?¢????1 ) significantly altered mcyB and mcyD expression. The expression levels of mcyB and mcyD were correlated but not identical.
机译:摘要蓝细菌,例如毒素产生者铜绿微囊藻,预计将直接通过升高的水温而受到全球变暖的青睐,并通过诸如水体的长期分层等间接地受到青睐。铜绿假单胞菌能够产生肝毒素微囊藻毒素,这引起了全世界淡水管理的极大关注。然而,关于响应于气候变化相关因素的微囊藻毒素合成基因的表达知之甚少。在这项研究中,开发了一种新的RT-qPCR测定法,该测定法使用四个参考基因(GAPDH,gltA,rpoC1和rpoD)来评估两个靶基因(微囊藻毒素合成基因mcyB和mcyD)的表达。该测定用于调查响应于与全球变暖相关的选定环境因素的mcyB和mcyD表达的变化。温度升高10℃会显着增加mcyB表达,但不会增加mcyD表达。混合或添加微囊藻毒素-LR(10μgL L≥1或60μgL L≥1)均不会显着改变mcyB和mcyD的表达。 mcyB和mcyD的表达水平相关但不相同。

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