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Dorsoventral variations in dark chilling effects on photosynthesis and stomatal function in Paspalum dilatatum leaves

机译:暗冷的背腹变化对Paspalum dilatatum叶片光合作用和气孔功能的影响

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摘要

The effects of dark chilling on the leaf-side-specific regulation of photosynthesis were characterized in the C4 grass Paspalum dilatatum. CO2- and light-response curves for photosynthesis and associated parameters were measured on whole leaves and on each leaf side independently under adaxial and abaxial illumination before and after plants were exposed to dark chilling for one or two consecutive nights. The stomata closed on the adaxial sides of the leaves under abaxial illumination and no CO2 uptake could be detected on this surface. However, high rates of whole leaf photosynthesis were still observed because CO2 assimilation rates were increased on the abaxial sides of the leaves under abaxial illumination. Under adaxial illumination both leaf surfaces contributed to the inhibition of whole leaf photosynthesis observed after one night of chilling. After two nights of chilling photosynthesis remained inhibited on the abaxial side of the leaf but the adaxial side had recovered, an effect related to increased maximal ribulose-1,5-bisphosphate carboxylation rates (Vcmax) and enhanced maximal electron transport rates (Jmax). Under abaxial illumination, whole leaf photosynthesis was decreased only after the second night of chilling. The chilling-dependent inhibition of photosynthesis was located largely on the abaxial side of the leaf and was related to decreased Vcmax and Jmax, but not to the maximal phosphoenolpyruvate carboxylase carboxylation rate (Vpmax). Each side of the leaf therefore exhibits a unique sensitivity to stress and recovery. Side-specific responses to stress are related to differences in the control of enzyme and photosynthetic electron transport activities.
机译:在C4草Paspalum dilatatum中表征了暗冷对光合作用的叶侧特异性调节的影响。在植物暴露于黑暗的寒冷下连续一两夜之前和之后,在正面和背面照明下,分别在整片叶子和每片叶子的侧面测量了光合作用的CO2和光响应曲线及相关参数。在背面照明下,气孔在叶片的近侧闭合,并且在该表面上未检测到CO 2吸收。然而,由于在背面照明下叶片的背面上的CO2同化率增加,因此仍能观察到较高的全叶光合作用速率。在寒冷的一夜后,在正面照明下,两个叶片表面都抑制了整个叶片的光合作用。冷藏两夜后,叶片的背面仍受光合作用的抑制,但叶片的背面已恢复,这与最大核糖-1,5-双磷酸酯羧化率(Vcmax)增加和最大电子传递率(Jmax)增加有关。在背面照明下,仅在寒冷的第二夜后,整个叶片的光合作用降低。光合作用的低温依赖抑制作用主要位于叶片的背面,与降低的Vcmax和Jmax有关,但与最大的磷酸烯醇丙酮酸羧化酶羧化率(Vpmax)没有关系。因此,叶子的每一侧都表现出对压力和恢复的独特敏感性。对应激的侧特异性反应与酶和光合电子转运活性的控制差异有关。

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