首页> 外文期刊>Acta Physiologiae Plantarum >Dehydration-induced changes in spectral reflectance indices and chlorophyll fluorescence of Antarctic lichens with different thallus color, and intrathalline photobiont
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Dehydration-induced changes in spectral reflectance indices and chlorophyll fluorescence of Antarctic lichens with different thallus color, and intrathalline photobiont

机译:脱水诱导的南极地衣叶绿素荧光的脱水反射率和叶绿素荧光的变化,不同的晶粒颜色和嵌入式Photobiont

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摘要

In this study, we investigated responses of the Photochemical Reflectance Index (PRI), and Normalized Difference Vegetation Index (NDVI) to gradual dehydration of several Antarctic lichen species (chlorolichens: Xanthoria elegans, Rhizoplaca melanophthalma, Physconia muscigena, cyanolichen: Leptogium puberulum), and a Nostoc commune colony from fully wet to a dry state. The gradual loss of physiological activity during dehydration was evaluated by chlorophyll fluorescence parameters. The experimental lichen species differed in thallus color, and intrathalline photobiont. In the species that did not exhibit color change with desiccation (X. elegans), NDVI and PRI were more or less constant (mean of 0.25, -0.36, respectively) throughout a wide range of thallus hydration status showing a linear relation to relative water content (RWC). In contrast, the species with apparent species-specific color change during dehydration exhibited a curvilinear relation of NDVI and PRI to RWC. PRI decreased (R. melanophthalma, L. puberulum), increased (N. commune) or showed a polyphasic response (P. muscigena) with desiccation. Except for X. elegans, a curvilinear relation was found between the NDVI response to RWC in all species indicating the potential of combined ground research and remote sensing spectral data analyses in polar regions dominated by lichen flora. The chlorophyll fluorescence data recorded during dehydration (RWC decreased from 100 to 0%) revealed a polyphasic species-specific response of variable fluorescence measured at steady stateF(s), effective quantum yield of photosystem II (phi(PSII)), and non-photochemical quenching (qN). Full hydration caused an inhibition of phi(PSII) in N. commune while other species remained unaffected. The dehydration-dependent fall in phi(PSII) was species-specific, starting at an RWC range of 22-32%. Critical RWC for phi(PSII) was around 5-10%. Desiccation led to a species-specific polyphasic decrease in F-s and an increase in qN indicating the involvement of protective mechanisms in the chloroplastic apparatus of lichen photobionts and N. commune cells. In this study, the spectral reflectance and chlorophyll fluorescence data are discussed in relation to the potential of ecophysiological processes in Antarctic lichens, their resistance to desiccation and survival in Antarctic vegetation oases.
机译:在这项研究中,我们研究了光化学反射率指数(PRI)和归一化差异植被指数(NDVI)对几种南极地衣物种的逐渐脱水的反应(氯化噻菌素:Xantoria elegans,rhizollaca melanophthalma,Physcolia Muscigena,Cyanolichen:Leptogium puberulum),并且从完全潮湿到干燥状态的Nostoc公社殖民地。通过叶绿素荧光参数评估脱水过程中生理活性的逐渐丧失。实验性地衣物种含有晶粒颜色和鞘内光。在没有用干燥(X.egryAns)的颜色变化的物种中,在整个各种妊娠水合状态下,NDVI和PRI分别在整个妊娠水合状态下或分别为0.25,-0.36),显示与相对水的线性关系内容(RWC)。相反,脱水期间具有表观特异性颜色变化的物种表现出NDVI和PRI至RWC的曲线关系。 PRI减少(R. melanophthalma,L.Puberulum),增加(N.unce)或显示出干燥的多洋反应(P. Muscigena)。除了秀丽隐杆线虫,在所有物种中对RWC的NDVI响应之间发现了一种曲线关系,这表明了地质区群主地区主导地位的地面研究和遥感光谱数据分析的潜力。在脱水期间记录的叶绿素荧光数据(RWC从100到0%下降)显示了在稳态型下测量的可变荧光的多相物质特异性响应,有效量子产量II(PHI(PSII))和非光化学淬火(Qn)。全水合使N.公社的PHI(PSII)抑制,而其他物种仍未受到影响。 PHI(PSII)的脱水依赖性秋季是特异性的,起始于22-32%的RWC范围。 PHI(PSII)的关键RWC约为5-10%。干燥导致F-S的特异性多相减少和QN增加,表明保护机制在地衣氯塑料装置和N.和N.Come细胞中的氯塑料装置中的累积。在该研究中,探讨了南极地衣中生态学过程的潜力的光谱反射率和叶绿素荧光数据,它们对南极植被植物中的干燥和存活的抵抗力。

著录项

  • 来源
    《Acta Physiologiae Plantarum》 |2018年第10期|共19页
  • 作者单位

    Masaryk Univ Lab Photosynthet Proc Dept Expt Biol Fac Sci Univ Campus Bohunice Kamenice 5 Brno 62500 Czech Republic;

    Masaryk Univ Lab Photosynthet Proc Dept Expt Biol Fac Sci Univ Campus Bohunice Kamenice 5 Brno 62500 Czech Republic;

    Masaryk Univ Lab Photosynthet Proc Dept Expt Biol Fac Sci Univ Campus Bohunice Kamenice 5 Brno 62500 Czech Republic;

    Masaryk Univ Lab Photosynthet Proc Dept Expt Biol Fac Sci Univ Campus Bohunice Kamenice 5 Brno 62500 Czech Republic;

    Masaryk Univ Dept Bot &

    Zool Fac Sci Univ Campus Bohunice Kamenice 5 Brno 62500 Czech Republic;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Spectral indices; PRI; NDVI; Non-photochemical quenching; James Ross Island;

    机译:光谱索引;PRI;NDVI;非光化学淬火;詹姆斯罗斯岛;

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