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动态光照条件下荧光非光化学猝灭对硅藻光子平衡的影响(1)

THE IMPACT OF NONPHOTOCHEMICAL QUENCHING OF FLUORESCENCE ON THE PHOTON BALANCE IN DIATOMS UNDER DYNAMIC LIGHT CONDITIONS(1).

作者信息

Su Wanwen, Jakob Torsten, Wilhelm Christian

机构信息

Department of Plant Physiology, Institute of Biology, University of Leipzig, Johannisallee 23, D-04103 Leipzig, Germany.

出版信息

J Phycol. 2012 Apr;48(2):336-46. doi: 10.1111/j.1529-8817.2012.01128.x. Epub 2012 Mar 19.

Abstract

The nonphotochemical quenching (NPQ) of fluorescence is an important photoprotective mechanism in particular under dynamic light conditions. Its photoprotective potential was suggested to be a functional trait of algal diversity. In the present study, the influence of the photoprotective capacity on the growth balance was investigated in two diatoms, which possess different NPQ characteristics. It was hypothesized that under fluctuating light conditions Cyclotella meneghiniana Kütz. would benefit from its large and flexible NPQ potential, whereas the comparably small NPQ capacity in Skeletonema costatum (Grev.) Cleve should exert an unfavorable impact on growth. The results of the study clearly falsify this hypothesis. Although C. meneghiniana possesses a fast NPQ component, this diatom was not able to recover its full NPQ capacity under fluctuating light. On the other hand, the induction of NPQ at relatively low irradiance in S. costatum resulted in rather small differences in the fraction of energy dissipation by the NPQ mechanism in the comparison of both diatoms. Larger differences were found in the metabolic characteristics. Both diatoms differed in their biomass composition, with a higher content of lipids in C. meneghiniana but higher amounts of carbohydrates in S. costatum. Finally, the lower degree of reduction in the biomass compensated for the higher respiration rates in S. costatum and resulted in a higher quantum efficiency of biomass production. An indirect correlation between the photoprotective and the metabolic capacity is discussed.

摘要

荧光的非光化学猝灭(NPQ)是一种重要的光保护机制,特别是在动态光照条件下。其光保护潜力被认为是藻类多样性的一个功能性状。在本研究中,研究了光保护能力对两种具有不同NPQ特征的硅藻生长平衡的影响。据推测,在波动光照条件下,梅尼小环藻(Cyclotella meneghiniana Kütz.)将受益于其较大且灵活的NPQ潜力,而中肋骨条藻(Skeletonema costatum (Grev.) Cleve)相对较小的NPQ能力应会对生长产生不利影响。研究结果清楚地证伪了这一假设。尽管梅尼小环藻具有快速NPQ组分,但这种硅藻在波动光照下无法恢复其全部NPQ能力。另一方面,在相对低辐照度下中肋骨条藻诱导产生的NPQ,导致在比较两种硅藻时,NPQ机制耗散能量的比例差异相当小。在代谢特征方面发现了更大的差异。两种硅藻的生物量组成不同,梅尼小环藻的脂质含量较高,而中肋骨条藻的碳水化合物含量较高。最后,中肋骨条藻生物量较低的减少程度弥补了其较高的呼吸速率,从而导致更高的生物量生产量子效率。文中讨论了光保护能力与代谢能力之间的间接相关性。

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