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年龄和营养限制会增强海洋硅藻中多不饱和醛的产生。

Age and nutrient limitation enhance polyunsaturated aldehyde production in marine diatoms.

作者信息

Ribalet François, Wichard Thomas, Pohnert Georg, Ianora Adrianna, Miralto Antonio, Casotti Raffaella

机构信息

Stazione Zoologica Anton Dohrn di Napoli, Villa Comunale, I80121 Napoli, Italy.

出版信息

Phytochemistry. 2007 Aug;68(15):2059-67. doi: 10.1016/j.phytochem.2007.05.012. Epub 2007 Jun 18.

Abstract

Skeletonema marinoi produces 2,4-heptadienal, 2,4-octadienal, and 2,4,7-octatrienal, the latter only in traces. In nutrient-replete cultures, the production of potentially defensive polyunsaturated aldehydes (PUA) increases from the exponential to the stationary phase of growth from 1.2 fmol cell(-1) (+/-0.4 fmol cell(-1) SD) to 4.2 fmol cell(-1) (+/-1.0 fmol cell(-1) SD), with 2,4-heptadienal as the dominant aldehyde. The plasticity of PUA production with age of the culture supports the hypothesis of a direct link between toxin production and cell physiological state. N- and P-limited cells in stationary phase produced 1.4 and 1.8 fold higher amounts of PUA than control cultures and 10.7 and 4.6 times higher PUAs when compared to their own exponential growth phase, respectively. The increase in PUA production in the nutrient-limited cultures was not paralleled by an increase in the total amount of precursor fatty acids indicating that physiological stress might trigger an enhanced expression or activity of the enzymes responsible for PUA production, i.e. chemical defense increase in aged and nutrient-stressed diatoms. If this holds true during blooms, grazers feeding at the end of a bloom would be more affected than early-bloom grazers.

摘要

海洋伪菱形藻产生2,4 - 庚二烯醛、2,4 - 辛二烯醛和2,4,7 - 辛三烯醛,后者仅微量产生。在营养充足的培养物中,潜在防御性多不饱和醛(PUA)的产量从生长的指数期到稳定期从1.2飞摩尔/细胞(±0.4飞摩尔/细胞标准差)增加到4.2飞摩尔/细胞(±1.0飞摩尔/细胞标准差),其中2,4 - 庚二烯醛是主要醛类。PUA产量随培养时间的可塑性支持了毒素产生与细胞生理状态之间存在直接联系的假设。稳定期的氮和磷限制细胞产生的PUA量分别比对照培养物高1.4倍和1.8倍,与它们自身的指数生长期相比分别高10.7倍和4.6倍。营养限制培养物中PUA产量的增加并没有伴随着前体脂肪酸总量的增加,这表明生理应激可能会触发负责PUA产生的酶的表达或活性增强,即老化和营养胁迫的硅藻中化学防御增强。如果在水华期间确实如此,那么在水华末期摄食的食草动物将比水华早期的食草动物受到更大影响。

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