Exposed red leaves display adaptive adjustments in chlorophyll and photosystem ratios compatible with the shade imposed by anthocyanin accumulation.

IF 1.6 4区 生物学 Q2 PLANT SCIENCES Photosynthetica Pub Date : 2022-01-13 eCollection Date: 2022-01-01 DOI:10.32615/ps.2021.062
K Zeliou, A Kyzeridou, Y Petropoulou
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Abstract

Foliar anthocyanins shape a peculiar shade in a red leaf's interior leading to uneven energy distribution between the two photosystems. Accordingly, a readjustment of PSII/PSI stoichiometry could restore excitation balance. To test this hypothesis, 77 K fluorescence emission spectra of thylakoids from green and red leaves of seven species with different pigment profiles were compared. The ratio of F686/F736 served as an indication of the PSII/PSI functional ratio. To avoid possible species-dependent differences in the measured parameters, plants showing intra-individual, intra-species, or intra-leaf variation in the expression of the anthocyanic character were used. Red leaves or red leaf areas displayed higher PSII/PSI ratio, irrespectively of species and anthocyanin accumulation pattern. PSII/PSI ratio declined in parallel with anthocyanin decrease. In five species, red leaves displayed also a lower Chl a/b ratio. We conclude that red leaves growing in full sunlight develop adaptive adjustments in their chlorophyll and photosystem ratios, compatible with the shade-acclimation syndrome.

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暴露的红叶表现出叶绿素和光系统比例的适应性调整,与花青素积累施加的阴影相适应。
叶面花青素在红叶内部形成一种特殊的阴影,导致两个光系统之间的能量分布不均匀。因此,重新调整PSII/PSI化学计量可以恢复激发平衡。为了验证这一假设,我们比较了7种植物不同色素谱的绿叶和红叶类囊体的77 K荧光发射光谱。F686/F736的比值作为PSII/PSI功能比值的指标。为了避免测量参数中可能存在的物种依赖性差异,我们使用了在花青素性状表达中表现出个体内、种内或叶片内变异的植物。红叶或红叶区花青素的PSII/PSI比高于不同的品种和花青素积累模式。PSII/PSI比值随花色苷的减少而下降。在5种植物中,红叶的Chl a/b比值也较低。我们得出结论,生长在充足阳光下的红叶在叶绿素和光系统比例方面进行了适应性调整,与遮荫驯化综合征相适应。
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来源期刊
Photosynthetica
Photosynthetica 生物-植物科学
CiteScore
5.60
自引率
7.40%
发文量
55
审稿时长
3.8 months
期刊介绍: Photosynthetica publishes original scientific papers and brief communications, reviews on specialized topics, book reviews and announcements and reports covering wide range of photosynthesis research or research including photosynthetic parameters of both experimental and theoretical nature and dealing with physiology, biophysics, biochemistry, molecular biology on one side and leaf optics, stress physiology and ecology of photosynthesis on the other side. The language of journal is English (British or American). Papers should not be published or under consideration for publication elsewhere.
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