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山毛榉(欧洲水青冈)树木的木质部汁液成分:硫化合物轴向分布的季节性变化

Xylem sap composition of beech (Fagus sylvatica L.) trees: seasonal changes in the axial distribution of sulfur compounds.

作者信息

Rennenberg H, Schupp R, Glavac V, Jochheim H

机构信息

Fraunhofer Institut für Atmosphärische Umweltforschung (IFU), Kreuzeckbahnstrasse 19, D-82467 Garmisch-Partenkirchen, Germany.

出版信息

Tree Physiol. 1994 May;14(5):541-8. doi: 10.1093/treephys/14.5.541.

Abstract

During different phases of the annual growth cycle, xylem sap was collected from trunk segments of adult beech (Fagus sylvatica L.) trees by the water displacement technique. Irrespective of the height of the trunk, both sulfate and reduced sulfur compounds were detected in the xylem sap throughout the year. Sulfate was the predominant sulfur compound in all samples analyzed. Its concentration in the xylem sap varied between 10 and 350 micro mol l(-1), with highest concentrations in April, shortly before bud break. In contrast to other tree species, cysteine and not glutathione was the predominant thiol transported in the xylem sap of beech trees. The cysteine concentration ranged between 0.1 and 1 micro mol l(-1). As observed for sulfate, maximum cysteine concentrations were found in April. Apparently, both sulfate and cysteine transport contribute to the sulfur supply of the developing leaves. Seasonal changes in the axial distribution of cysteine and sulfate differed, indicating differences in the source-sink relations of these sulfur compounds. High, but uniform, xylem sap sulfate concentrations in April may originate from balanced sulfate uptake by the roots, whereas high cysteine concentrations in April, increasing with increasing height of the trunk, may originate in part from protein breakdown in the trunk. Reversal of the axial distribution of xylem sap cysteine in late summer-early fall to higher concentrations in the lower part of the trunk than in the upper part of the trunk suggests that the upper part of the trunk becomes a sink for cysteine as a result of the synthesis of storage proteins at this time of the year.

摘要

在一年生生长周期的不同阶段,通过排水法从成年山毛榉(欧洲山毛榉)树的树干段采集木质部汁液。无论树干高度如何,全年在木质部汁液中均检测到硫酸盐和还原态硫化合物。在所分析的所有样品中,硫酸盐是主要的硫化合物。其在木质部汁液中的浓度在10至350微摩尔/升之间变化,在四月芽萌动前不久浓度最高。与其他树种不同,在山毛榉树的木质部汁液中运输的主要硫醇是半胱氨酸而非谷胱甘肽。半胱氨酸浓度在0.1至1微摩尔/升之间。如同对硫酸盐的观察结果一样,半胱氨酸浓度在四月达到最高。显然,硫酸盐和半胱氨酸的运输都有助于发育中的叶片的硫供应。半胱氨酸和硫酸盐轴向分布的季节性变化不同,表明这些硫化合物的源 - 库关系存在差异。四月木质部汁液中硫酸盐浓度高但均匀,可能源于根系对硫酸盐的平衡吸收,而四月半胱氨酸浓度高且随树干高度增加而增加,可能部分源于树干中的蛋白质分解。夏末秋初木质部汁液半胱氨酸轴向分布逆转,树干下部浓度高于上部,这表明由于每年此时储存蛋白的合成,树干上部成为半胱氨酸的库。

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