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原位监测海洋微拟球藻培养物中的叶绿素 a 荧光,以评估氮饥饿过程中的光化学变化和脂质积累的开始。

In situ monitoring of chlorophyll a fluorescence in Nannochloropsis oceanica cultures to assess photochemical changes and the onset of lipid accumulation during nitrogen deprivation.

机构信息

LEPABE-Laboratory for Process Engineering, Environment, Biotechnology and Energy, Faculty of Engineering of the University of Porto, Porto, Portugal.

CNR-IBE-Consiglio Nazionale delle Ricerche-Istituto per la BioEconomia, Florence, Italy.

出版信息

Biotechnol Bioeng. 2021 Nov;118(11):4375-4388. doi: 10.1002/bit.27906. Epub 2021 Aug 6.

Abstract

In situ chlorophyll a fluorescence measurements were applied to monitor changes in the photochemical variables of Nannochloropsis oceanica cultures under nitrogen-deplete and nitrogen-replete (control) conditions. In addition, growth, lipid, fatty acid, and pigment contents were also followed. In the control culture, growth was promoted along with pigment content, electron transport rate (ETR), and polyunsaturated fatty acids, while total lipid content and fatty acid saturation level diminished. Under nitrogen-deplete conditions, the culture showed a higher de-epoxidation state of the xanthophyll cycle pigments. Fast transients revealed a poor processing efficiency for electron transfer beyond Q , which was in line with the low ETR due to nitrogen depletion. Lipid content and the de-epoxidation state were the first biochemical variables triggered by the change in nutrient status, which coincided with a 20% drop in the in situ effective quantum yield of PSII (ΔF'/F '), and a raise in the V measurements. A good correlation was found between the changes in ΔF'/F ' and lipid content (r = -0.96, p < 0.01). The results confirm the reliability and applicability of in situ fluorescence measurements to monitor lipid induction in N. oceanica.

摘要

原位叶绿素荧光测量被应用于监测在氮缺乏和氮充足(对照)条件下海洋微拟球藻培养物的光化学变量的变化。此外,还跟踪了生长、脂质、脂肪酸和色素含量的变化。在对照培养中,随着色素含量、电子传递速率(ETR)和多不饱和脂肪酸的增加,生长得到促进,而总脂质含量和脂肪酸饱和度降低。在氮缺乏条件下,培养物显示出较高的叶黄素循环色素去环氧化状态。快速瞬变表明,由于氮缺乏,电子传递在 Q 之后的处理效率很差,这与低 ETR 是一致的。脂质含量和去环氧化状态是受营养状况变化触发的第一批生化变量,这与原位 PSII 有效量子产率(ΔF'/F ')下降 20%以及 V 测量值升高相吻合。ΔF'/F '的变化与脂质含量之间存在良好的相关性(r = -0.96,p < 0.01)。结果证实了原位荧光测量在监测海洋微拟球藻中脂质诱导方面的可靠性和适用性。

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