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局部弱光诱导玉米幼苗相邻照光叶片光合作用的提高。

Local weak light induces the improvement of photosynthesis in adjacent illuminated leaves in maize seedlings.

机构信息

Key Laboratory of Plant Resources, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.

College of Agriculture, Shihezi University / Key Laboratory of Oasis Ecology Agriculture of Xinjiang Production and Construction Corps, Shihezi, 832003, China.

出版信息

Physiol Plant. 2021 Jan;171(1):125-136. doi: 10.1111/ppl.13220. Epub 2020 Nov 2.

Abstract

To copy with highly heterogeneous light environment, plants can regulate photosynthesis locally and systemically, thus, maximizing the photosynthesis of individual plants. Therefore, we speculated that local weak light may induce the improvement of photosynthesis in adjacent illuminated leaves in plants. In order to test this hypothesis, maize seedlings were partially shaded, and gas exchange, chlorophyll a fluorescence and biochemical analysis were carefully assessed. It was shown that local shading exacerbated the declines in the photosynthetic rates, chlorophyll contents, electron transport and carbon assimilation-related enzyme activities in shaded leaves as plants growth progressed. While, the decreases of these parameters in adjacent illuminated leaves of shaded plants were considerably alleviated compared to the corresponding leaves of control plants. Obviously, the photosynthesis in adjacent illuminated leaves in shaded plants was improved by local shading, and the improvement in adjacent lower leaves was larger than that in adjacent upper ones. As growth progressed, local shading induced higher abscisic acid contents in shaded leaves, but it alleviated the increase in the abscisic acid contents in adjacent leaves in shaded plants. Moreover, the difference in sugar content between shaded leaves and adjacent illuminated ones was gradually increased. Consequently, local weak light suppressed the photosynthesis in shaded leaves, while it markedly improved the photosynthesis of adjacent illuminated ones. Sugar gradient between shaded leaves and adjacent illuminated ones might play a key role in photosynthetic regulation of adjacent illuminated leaves.

摘要

为了应对高度异质性的光环境,植物可以在局部和系统水平上调节光合作用,从而最大限度地提高单个植物的光合作用。因此,我们推测局部弱光可能会诱导植物相邻受光叶片光合作用的改善。为了验证这一假说,对玉米幼苗进行部分遮光处理,并仔细评估了气体交换、叶绿素 a 荧光和生化分析。结果表明,随着植物生长的进行,局部遮光加剧了受光叶片光合作用、叶绿素含量、电子传递和碳同化相关酶活性的下降。而与对照植株相比,遮光植株相邻受光叶片的这些参数下降幅度明显减轻。显然,局部遮光改善了遮光植株相邻受光叶片的光合作用,且改善程度以下部叶片大于上部叶片。随着生长的进行,局部遮光诱导受光叶片中脱落酸含量升高,但减轻了遮光植株中相邻叶片中脱落酸含量的增加。此外,遮光叶片与相邻受光叶片之间的糖含量差异逐渐增大。因此,局部弱光抑制了受光叶片的光合作用,而显著改善了相邻受光叶片的光合作用。遮光叶片与相邻受光叶片之间的糖梯度可能在相邻受光叶片的光合作用调节中起关键作用。

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