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首页> 外文期刊>Photosynthesis Research >Characterization of acclimation of Hordeum vulgare to high irradiation based on different responses of photosynthetic activity and pigment composition
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Characterization of acclimation of Hordeum vulgare to high irradiation based on different responses of photosynthetic activity and pigment composition

机译:基于光合活性和色素组成的不同响应,表征大麦对高辐射的适应

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The ability of spring barley (Hordeum vulgare cv. Akcent) to adjust the composition and function of the photosynthetic apparatus to growth irradiances of 25–1200 μmol m−2 s−1 was studied by gas exchange and chlorophyll a fluorescence measurements and high-performance liquid chromatography. The increased growth irradiance stimulated light- and CO2-saturated rates of CO2 assimilation expressed on a leaf area basis up to 730 μmol m−2 s−1 (HL730), whereas at an irradiance of 1200 μmol m−2 s−1 (EHL1200) both rates decreased significantly. Further, the acclimation to EHL1200 was associated with an extremely high chlorophyll a/b ratio (3.97), a more than doubled xanthophyll cycle pool (VAZ) and a six-fold higher de-epoxidation state of the xanthophyll cycle pigments as compared to barley grown under 25 μmol m−2 s−1 (LL25). EHL1200 plants also exhibited a long-term inhibition of Photosystem II (PS II) photochemical efficiency (F v/F m). Photosynthetic capacity, chlorophyll a/b and VAZ revealed a linear trend of dependence on PS II excitation pressure in a certain range of growth irradiances (100–730 μmol m−2 s−1). The deviation from linearity of these relationships for EHL1200 barley is discussed. In addition, the role of increased VAZ and/or accumulation of zeaxanthin and antheraxanthin in acclimation of barley to high irradiance is studied with respect to regulation of non-radiative dissipation and/or photochemical efficiency within PS II.
机译:通过气体交换和交换研究了大麦对大麦辐射光调节25-1200μmolm-2 s-1 的能力和调节光合装置组成和功能的能力。叶绿素a荧光测量和高效液相色谱。生长辐照度的增加刺激了以叶面积为基础的高达730μmolm-2 s-1 (HL730)的光和CO2 饱和同化速率。 ,而在1200μmolm-2 s-1 (EHL1200)的辐照度下,两种比率均显着降低。此外,与大麦相比,EHL1200的适应性与极高的叶绿素a / b比(3.97),超过两倍的叶黄素循环池(VAZ)和高出六倍的叶绿素循环色素脱环状态有关。在25μmolm-2 s-1 (LL25)下生长。 EHL1200植物还表现出对光系统II(PS II)光化学效率(F v / F m )的长期抑制。在一定的生长辐照度范围内(100-730μmolm-2 s-1 ),光合作用能力,叶绿素a / b和VAZ表现出线性依赖PS II激发压力的趋势。讨论了EHL1200大麦这些关系的线性偏差。此外,就调节PS II内的非辐射耗散和/或光化学效率进行了研究,研究了增加VAZ和/或玉米黄质和花药黄质的积累在大麦适应高辐照度方面的作用。

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