首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Thermotolerance of apple tree leaves probed by chlorophyll a fluorescence and modulated 820 nm reflection during seasonal shift
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Thermotolerance of apple tree leaves probed by chlorophyll a fluorescence and modulated 820 nm reflection during seasonal shift

机译:叶绿素荧光检测苹果树叶片的耐热性,并在季节变化期间调节820 nm反射

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摘要

During the seasonal shift from June to August, air temperatures increase. To explore how apple trees improve their thermotolerance during this shift, we examined the photochemical reaction capacity of apple tree leaves by simultaneous measurement of prompt chlorophyll fluorescence, delayed chlorophyll fluorescence, and modulated 820 nm reflection at varying temperatures. It was found that the reaction centers and antennae of photosystem II (PSII) and photosystem I (PSI), the donor side of PSII, the electron transfer capacity from Q(A) to Q(B), and the reoxidation capacity of plastoquinol were all sensitive to heat stress, particularly in June. As the season shifted, apple tree leaves improved in thermotolerance. Interestingly, the acclimation to seasonal shift enhanced the thermotolerance of PSII and PSI reaction centers more than that of their antennae, and the activity of PSII more than that of PSI. This may be a strategy for plant adaptation to changes in environmental temperatures. In addition, results from prompt and delayed fluorescence, as well as modulated 820 nm reflection corroborate each other. We suggest that the simultaneous measurement of the three independent signals may provide more information on thermal acclimation mechanisms of photochemical reactions in plant leaves. (C) 2015 Elsevier B.V. All rights reserved.
机译:在6月至8月的季节性变化中,气温升高。为了探索苹果树在此转变过程中如何提高其耐热性,我们通过同时测量迅速的叶绿素荧光,延迟的叶绿素荧光和在不同温度下调制的820 nm反射,检查了苹果树叶片的光化学反应能力。发现光系统II(PSII)和光系统I(PSI)的反应中心和触角,PSII的供体侧,从Q(A)到Q(B)的电子转移能力以及质体喹诺醇的再氧化能力分别为所有人都对热压力敏感,尤其是在六月。随着季节的变化,苹果树叶片的耐热性得到改善。有趣的是,对季节变化的适应增强了PSII和PSI反应中心的耐热性,而不是其触角,并且PSII的活性也超过了PSI。这可能是植物适应环境温度变化的策略。此外,荧光的及时和延迟以及调制的820 nm反射的结果相互佐证。我们建议同时测量三个独立的信号可能会提供有关植物叶片中光化学反应的热驯化机制的更多信息。 (C)2015 Elsevier B.V.保留所有权利。

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