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Photosynthesis and Chlorophyll Fluorescence Characteristics in Relationship to Changes in Pigment and Element Composition of Leaves of Platanus occidentalis L. during Autumnal Leaf Senescence 1

机译:秋季叶片衰老过程中的桔梗叶片光合作用和叶绿素荧光特性与色素和元素组成变化的关系1

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摘要

The loss of chlorophyll and total leaf nitrogen during autumnal senescence of leaves from the deciduous tree Platanus occidentalis L. was accompanied by a marked decline in the photosynthetic capacity of O2 evolution on a leaf area basis. When expressed on a chlorophyll basis, however, the capacity for light-and CO2-saturated O2 evolution did not decline, but rather increased as leaf chlorophyll content decreased. The photon yield of O2 evolution in white light (400-700 nanometers) declined markedly with decreases in leaf chlorophyll content below 150 milligrams of chlorophyll per square meter on both an incident and an absorbed basis, due largely to the absorption of light by nonphotosynthetic pigments which were not degraded as rapidly as the chlorophylls. Photon yields measured in, and corrected for the absorptance of, red light (630-700 nanometers) exhibited little change with the loss of chlorophyll. Furthermore, PSII photochemical efficiency, as determined from chlorophyll fluorescence, remained high, and the chlorophyll a/b ratio exhibited no decline except in leaves with extremely low chlorophyll contents. These data indicate that the efficiency for photochemical energy conversion of the remaining functional components was maintained at a high level during the natural course of autumnal senescence, and are consistent with previous studies which have characterized leaf senescence as being a controlled process. The loss of chlorophyll during senescence was also accompanied by a decline in fluorescence emanating from PSI, whereas there was little change in PSII fluorescence (measured at 77 Kelvin), presumably due to decreased reabsorption of PSII fluorescence by chlorophyll. Nitrogen was the only element examined to exhibit a decline with senescence on a dry weight basis. However, on a leaf area basis, all elements (C, Ca, K, Mg, N, P, S) declined in senescent leaves, although the contents of sulfur and calcium, which are not easily retranslocated, decreased to the smallest extent.
机译:落叶树Platanus occidentalis L.的叶片在秋天衰老过程中叶绿素和总叶氮的损失伴随着以叶面积为基础的O2释放的光合能力显着下降。但是,当以叶绿素为基础表达时,光和CO2饱和O2释放的能力并未下降,而是随着叶绿素含量的降低而增加。在入射和吸收的基础上,白光(400-700纳米)中氧气逸出的光子产量显着下降,且叶片的叶绿素含量低于每平方米150毫克叶绿素,这主要是由于非光合色素对光的吸收它们的降解速度不如叶绿素。在红光(630-700纳米)中测量并校正吸收率的光子产量随叶绿素的损失几乎没有变化。此外,由叶绿素荧光确定的PSII光化学效率仍然很高,除叶绿素含量极低的叶片外,叶绿素a / b的比值没有下降。这些数据表明,在秋季衰老的自然过程中,其余功能成分的光化学能转化效率保持在较高水平,并且与先前以叶片衰老为受控过程的研究一致。衰老过程中叶绿素的损失还伴随着PSI发出的荧光下降,而PSII荧光几乎没有变化(以77开尔文测量),可能是由于叶绿素对PSII荧光的重吸收减少。以干重计,氮是唯一被检测出随衰老而下降的元素。但是,以叶面积为基准,衰老叶片中的所有元素(C,Ca,K,Mg,N,P,S)均下降,尽管不易重新分配的硫和钙的含量下降到最小程度。

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