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干燥过程中,不同光合共生体、地衣体形态及光谱特性的南极地衣初级光合作用的抑制作用

Inhibition of Primary Photosynthesis in Desiccating Antarctic Lichens Differing in Their Photobionts, Thallus Morphology, and Spectral Properties.

作者信息

Barták Miloš, Hájek Josef, Orekhova Alla, Villagra Johana, Marín Catalina, Palfner Götz, Casanova-Katny Angélica

机构信息

Department of Experimental Biology, Faculty of Science, Masaryk University, Kamenice 5, Building A13/119, 625 00 Brno, Czech Republic.

Laboratory of Plant Ecophysiology, Faculty of Natural Resources, Campus Luis Rivas del Canto, Catholic University of Temuco, Rudecindo Ortega #03694, 4780000 Temuco, Chile.

出版信息

Microorganisms. 2021 Apr 13;9(4):818. doi: 10.3390/microorganisms9040818.

Abstract

Five macrolichens of different thallus morphology from Antarctica (King George Island) were used for this ecophysiological study. The effect of thallus desiccation on primary photosynthetic processes was examined. We investigated the lichens' responses to the relative water content (RWC) in their thalli during the transition from a wet (RWC of 100%) to a dry state (RWC of 0%). The slow Kautsky kinetics of chlorophyll fluorescence (ChlF) that was recorded during controlled dehydration (RWC decreased from 100 to 0%) and supplemented with a quenching analysis revealed a polyphasic species-specific response of variable fluorescence. The changes in ChlF at a steady state (Fs), potential and effective quantum yields of photosystem II (F/F, Φ), and nonphotochemical quenching (NPQ) reflected a desiccation-induced inhibition of the photosynthetic processes. The dehydration-dependent fall in F/F and Φ was species-specific, starting at an RWC range of 22-32%. The critical RWC for Φ was below 5%. The changes indicated the involvement of protective mechanisms in the chloroplastic apparatus of lichen photobionts at RWCs of below 20%. In both the wet and dry states, the spectral reflectance curves (SRC) (wavelength 400-800 nm) and indices (NDVI, PRI) of the studied lichen species were measured. Black showed no difference in the SRCs between wet and dry state. Other lichens showed a higher reflectance in the dry state compared to the wet state. The lichen morphology and anatomy data, together with the ChlF and spectral reflectance data, are discussed in relation to its potential for ecophysiological studies in Antarctic lichens.

摘要

本生态生理研究使用了来自南极洲(乔治王岛)的五种不同叶状体形态的大型地衣。研究了叶状体干燥对初级光合过程的影响。我们调查了地衣在从湿润状态(相对含水量为100%)转变为干燥状态(相对含水量为0%)过程中,其叶状体对相对含水量(RWC)的响应。在控制脱水过程中(相对含水量从100%降至0%)记录的叶绿素荧光(ChlF)的缓慢考茨基动力学,并辅以猝灭分析,揭示了可变荧光的多相物种特异性响应。稳态下ChlF的变化(Fs)、光系统II的潜在和有效量子产率(F/F,Φ)以及非光化学猝灭(NPQ)反映了干燥诱导的光合过程抑制。F/F和Φ随脱水的下降具有物种特异性,起始于相对含水量22 - 32%的范围。Φ的临界相对含水量低于5%。这些变化表明,在相对含水量低于20%时,保护机制参与了地衣光共生体叶绿体装置的作用。在湿润和干燥状态下,均测量了所研究地衣物种的光谱反射率曲线(SRC)(波长400 - 800 nm)和指数(归一化植被指数,光化学反射指数)。黑色地衣在湿润和干燥状态下的光谱反射率曲线没有差异。其他地衣在干燥状态下的反射率高于湿润状态。结合叶绿素荧光和光谱反射率数据,讨论了地衣形态和解剖数据在南极地衣生态生理研究中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fcc/8070113/fa8d45a1e202/microorganisms-09-00818-g001.jpg

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