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东北山梅花和‘金叶’欧洲山梅花叶绿素含量及光合特性对弱光的适应性变化

Adaptive changes in chlorophyll content and photosynthetic features to low light in Physocarpus amurensis Maxim and Physocarpus opulifolius "Diabolo".

作者信息

Zhang Huihui, Zhong Haixiu, Wang Jifeng, Sui Xin, Xu Nan

机构信息

College of Resources and Environment, Northeast Agricultural University , Haerbin, Heilongjiang Province , China.

Natural Resources and Ecology Institute, Heilongjiang Academy of Sciences, Ecology , Haerbin, Heilongjiang Province , China.

出版信息

PeerJ. 2016 Jun 23;4:e2125. doi: 10.7717/peerj.2125. eCollection 2016.

Abstract

The present study aims to investigate the differences in leaf pigment content and the photosynthetic characteristics under natural and low light intensities between the Chinese native Physocarpus amurensis Maxim and the imported Physocarpus opulifolius "Diabolo" from North America. We aim to discuss the responses and the adaptive mechanism of these two cultivars of Physocarpus to a low light environment. The results show that the specific leaf area (SLA) and the chlorophyll content were significantly increased in the leaves of both Physocarpus cultivars in response to a low light intensity, and the SLA and chlorophyll content were higher in the leaves of low light-treated P. opulifolius "Diabolo" compared with the leaves of low light-treated P. amurensis Maxim. Moreover, the content of anthocyanin was markedly reduced in the leaves of P. opulifolius "Diabolo" under low light intensity, which allowed for a greater capacity of photon capture under the low light condition. Under natural light, the photosynthetic carbon assimilation capacity was greater in the leaves of P. amurensis Maxim compared with the leaves of P. opulifolius "Diabolo" that were rich with anthocyanin. However, in response to low light, AQY, P max, LCP and LSP decreased to a lesser extent in the leaves of P. opulifolius "Diabolo" compared with the leaves of P. amurensis Maxim. These results suggest that P. opulifolius "Diabolo" exhibits a greater ability in adaption to low light, and it is probably related to the relatively higher chlorophyll content and the smaller SLA in the leaves of P. opulifolius "Diabolo." In addition, the low light intensity resulted in a reduced photochemical activity of photosystem (PS) II in the leaves of both Physocarpus, as evidenced by increased values of the relative variable fluorescence at point J and point I on the OJIP curve. This result suggests that the electron acceptor in PS II was the major responsive site to the low light stress in the leaves of both Physocarpus cultivars, and that the low light intensity significantly inhibited electron transfer on the acceptor side of PS II and reduced the activity of the oxygen-evolving complex (OEC) in the leaves of both Physocarpus cultivars. The PS II function in P. opulifolius "Diabolo" was higher than that in P. amurensis Maxim in response to low light. Under low light, the composition of photosynthetic pigments was altered in the leaves of P. opulifolius "Diabolo" in order to maintain a relatively high activity of primary photochemical reactions, and this is the basis of the greater photosynthetic carbon assimilation capacity and one of the main reasons for the better shade-tolerance in P. opulifolius "Diabolo."

摘要

本研究旨在探究中国本土的东北山梅花(Physocarpus amurensis Maxim)与从北美引进的‘金叶风箱果’(Physocarpus opulifolius “Diabolo”)在自然光照和弱光强度下叶片色素含量及光合特性的差异。我们旨在探讨这两个山梅花品种对弱光环境的响应及适应机制。结果表明,两个山梅花品种的叶片在弱光强度下比叶面积(SLA)和叶绿素含量均显著增加,且弱光处理的‘金叶风箱果’叶片的SLA和叶绿素含量高于弱光处理的东北山梅花叶片。此外,弱光强度下‘金叶风箱果’叶片花青素含量显著降低,这使其在弱光条件下具有更强的光子捕获能力。在自然光照下,东北山梅花叶片的光合碳同化能力高于富含花青素的‘金叶风箱果’叶片。然而,在弱光条件下,‘金叶风箱果’叶片的表观量子效率(AQY)、最大净光合速率(P max)、光补偿点(LCP)和光饱和点(LSP)下降幅度小于东北山梅花叶片。这些结果表明,‘金叶风箱果’对弱光的适应能力更强,这可能与其叶片中相对较高的叶绿素含量和较小的比叶面积有关。此外,弱光强度导致两个山梅花品种叶片光系统(PS)II的光化学活性降低,这可从OJIP曲线上J点和I点相对可变荧光值的增加得到证明。这一结果表明,PS II中的电子受体是两个山梅花品种叶片对弱光胁迫的主要响应位点,弱光强度显著抑制了PS II受体侧的电子传递,并降低了两个山梅花品种叶片中放氧复合体(OEC)的活性。在弱光条件下,‘金叶风箱果’叶片PS II的功能高于东北山梅花。在弱光条件下,‘金叶风箱果’叶片光合色素的组成发生改变,以维持初级光化学反应的相对较高活性,这是其具有较高光合碳同化能力的基础,也是‘金叶风箱果’耐荫性较好的主要原因之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f18/4924129/e27687bceb97/peerj-04-2125-g001.jpg

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