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Growth- and nutrient-dependent gene expression in the toxigenic marine dinoflagellate Alexandrium minutum

机译:产毒和营养依赖性基因在产毒海洋甲藻亚历山大藻中的表达

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摘要

The toxigenic marine dinoflagellate Alexandrium minutum forms toxic blooms causing paralytic shellfish poisoning (PSP), primarily in coastal waters, throughout the world. We examined effects on physiology and gene expression patterns associated with growth and nutrient starvation in a toxic strain of A. minutum. Bloom-relevant factors, including growth rate, intracellular toxin content, allelochemical activity and nutrient status were investigated in A. minutum cultures grown under different environmental regimes. Allelochemical activity of A. minutum cultures, quantified with a cryptomonad Rhodomonas bioassay, increased with age but was independent of nutrient status.ududThe phenotypic data were integrated and compared with gene expression in cell samples taken at selected points along the growth curve. We observed 489 genes consistently differentially expressed between exponentially growing and growth-limited cultures. The expression pattern of stationary-phase cultures was characterized by conspicuous down-regulation of translation-associated genes, up-regulation of sequences involved in intracellular signalling and some indications of increased activity of selfish genetic elements such as transposons. Treatment-specific patterns included five genes regulated in parallel in all nutrient-limited cultures. The conspicuous decrease in photosynthetic performance identified in N-starved cultures was paralleled by down-regulation of chloroplast-associated genes.ududThe particular gene expression patterns we identified as specifically linked with exponential growth, cessation of growth or nutrient limitation may be suitable biomarkers for indicating the beginning of growth limitation in field- or mesocosm studies.
机译:有毒的海洋鞭毛藻亚历山大藻形成有毒的水华,引起麻痹性贝类中毒(PSP),主要在全世界沿海地区。我们检查了对A. minutum有毒菌株的生长和营养缺乏相关的生理和基因表达模式的影响。在不同环境下生长的min菜培养物中,研究了与开花相关的因素,包括生长速率,细胞内毒素含量,化感活性和营养状况。用隐孢子虫红假单胞菌生物测定法定量的土壤曲霉培养物的化感化学活性随年龄增加而增加,但与营养状况无关。我们观察到489个基因在指数增长和增长受限的文化之间持续差异表达。固定相培养物的表达模式的特征在于翻译相关基因的显着下调,参与细胞内信号转导的序列的上调以及自私遗传元件(如转座子)活性增强的某些迹象。治疗特有的模式包括在所有营养受限的培养物中平行调节的五个基因。 N饥饿培养物中鉴定到的光合性能显着下降与叶绿体相关基因的下调平行。 ud ud我们鉴定为与指数生长,停止生长或营养限制特别相关的特定基因表达模式可能是合适的在田间或中观研究中用于指示生长限制开始的生物标志物。

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