A Low Ratio of Red/Far-Red in the Light Spectrum Accelerates Senescence in Nest Leaves of Platycerium Bifurcatum

IF 0.5 4区 生物学 Q4 PLANT SCIENCES Acta Biologica Cracoviensia Series Botanica Pub Date : 2017-12-20 DOI:10.1515/ABCSB-2017-0011
J. Oliwa, A. Kornaś, A. Skoczowski
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引用次数: 8

Abstract

The fern Platycerium bifurcatum is a valuable component of the flora of tropical forests, where degradation of local ecosystems and changes in lighting conditions occur due to the increasing anthropogenic pressure. In ferns, phytochrome mechanism responsible for the response to changes in the value of R/FR differs from the mechanism observed in spermatophytes. This study analyzed the course of ontogenesis of nest leaves in P. bifurcatum at two values of the R/FR ratio, corresponding to shadow conditions (low R/FR) and intense insolation (high R/FR). The work used only non-destructive research analysis, such as measurements of reflectance of radiation from the leaves, their blue-green and red fluorescence, and the chlorophyll a fluorescence kinetics. This allowed tracing the development and aging processes in the same leaves. Nest leaves are characterized by short, intense growth and rapid senescence. The study identified four stages of development of the studied leaves related to morphological and anatomical structure and changing photochemical efficiency of PSII. Under the high R/FR ratio, the rate of ontogenesis of the leaf lamina was much slower than under the low R/FR value. As shown, the rapid aging of the leaves was correlated with faster decline of the chlorophyll content. It was shown that leaf senescence was accompanied by accumulation of polyphenols, anthocyanins and carotenoids on the basis of reflectance and fluorescence measurements in the blue-green range.
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光谱中较低的红/远红比例加速分叉Platycerium Nest Leaves的衰老
在热带森林中,由于人为压力的增加,当地生态系统的退化和光照条件的变化会发生,蕨类植物双叉Platycerium bifurcatum是热带森林植物区系的重要组成部分。在蕨类植物中,光敏色素对R/FR值变化的响应机制与在精子植物中观察到的机制不同。本研究分析了两种不同R/FR值条件下,暗影条件下(低R/FR)和强日照条件下(高R/FR)下双头杨巢叶的个体发生过程。这项工作只使用了非破坏性的研究分析,例如测量叶片的辐射反射率,它们的蓝绿色和红色荧光,以及叶绿素a荧光动力学。这样就可以追踪同一片叶子的发育和衰老过程。巢叶的特点是短,强生长和迅速衰老。研究确定了与PSII形态解剖结构和光化学效率变化有关的4个发育阶段。在高R/FR条件下,叶片的个体发生速率明显慢于低R/FR条件下。结果表明,叶片老化越快,叶绿素含量下降越快。蓝绿色范围内的反射率和荧光测量表明,叶片衰老伴随着多酚、花青素和类胡萝卜素的积累。
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来源期刊
CiteScore
3.00
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: ACTA BIOLOGICA CRACOVIENSIA Series Botanica is an English-language journal founded in 1958, devoted to plant anatomy and morphology, cytology, genetics, embryology, tissue culture, physiology, biochemistry, biosystematics, molecular phylogenetics and phylogeography, as well as phytochemistry. It is published twice a year.
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