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Microcystin Production and Regulation under Nutrient Stress Conditions in Toxic Microcystis Strains

机译:营养应激条件下有毒微囊藻菌株的微囊藻毒素生产与调控

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摘要

Microcystin is a common and well-known cyanobacterial toxin whose intracellular role is still under investigation. Increasing knowledge on microcystin gene expression and regulation can contribute to the understanding of its putative cellular function. In this work, reverse transcription-quantitative PCR (RT-qPCR) was used to investigate the transcriptional response of the mcyD gene to nitrogen (nitrate and ammonium) and phosphorus limitation in two toxic Microcystis strains. The existence of a direct correlation between transcripts of mcyD and ntcA genes was also identified. In previous studies, NtcA (global nitrogen regulator) has been described as a potential component in the control of microcystin biosynthesis. This research showed that stress agents linked to nutrient deprivation could lead to a significant increase of microcystin production in both strains studied. The more toxic strain proved to be more resistant to nutrient limitation. The similar outcomes of mcyD regulation observed for all nutrients suggest that this response can be linked to oxidative stress of cells undergoing adverse growth conditions.
机译:微囊藻毒素是一种常见且众所周知的蓝细菌毒素,其细胞内作用仍在研究中。对微囊藻毒素基因表达和调控的了解不断增加,可能有助于理解其假定的细胞功能。在这项工作中,逆转录定量PCR(RT-qPCR)用于研究mcyD基因对两种有毒微囊藻菌株中氮(硝酸盐和铵)和磷限制的转录反应。还确定了mcyD和ntcA基因的转录本之间存在直接相关性。在以前的研究中,NtcA(全局氮调节剂)已被描述为控制微囊藻毒素生物合成的潜在成分。这项研究表明,与营养剥夺有关的压力因子可能导致所研究的两个菌株中微囊藻毒素的产量显着增加。毒性更大的菌株被证明对营养限制具有更强的抵抗力。对所有营养素观察到的mcyD调节的相似结果表明,这种应答可能与经历不利生长条件的细胞的氧化应激有关。

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