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首页> 外文期刊>Trees. Structure and Function >Growth, structure, stomatal responses and secondary metabolites of birch seedlings (Betula pendula) under elevated UV-B radiation in the field
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Growth, structure, stomatal responses and secondary metabolites of birch seedlings (Betula pendula) under elevated UV-B radiation in the field

机译:在田间升高的UV-B辐射下桦木幼苗(Betula Ludula)的生长,结构,气孔反应和次生代谢物

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摘要

Three-year-old birch (Beady pendula Roth.) seedlings were exposed, in the field, to supplemental levels of UV-B radiation. Control seedlings were exposed to ambient levels of UV radiation, using arrays of unenergized lamps. A control for UV-A radiation was also included in the experiment. Enhanced UV-B radiation had no significant effects on height growth, and shoot and root biomass of birch seedlings. Leaf expansion rate increased transiently in the middle of the growing period in enhanced UV-B- and UV-A-exposed plants; however, final leaf size and relative growth rate remained unaffected. Leaf thickness and spongy intercellular spaces were increased in UV -B-exposed seedlings along with increased density of glandular trichomes. At the ultrastructural level, enhanced UV-B increased the number of cytoplasmic lipid bodies, and abnormal membrane whorls were found. Both enhanced UV-B and UV-A radiation induced swelling of chloroplast thylakoids. Stomatal density and conductance were significantly increased by elevated UV-B radiation. UV-A radiation increased the length and width of stomata, whereas UV-B radiation had only a marginal effect on stomatal size. UV-A and enhanced UV-B radiation attenuated the appearance of necrotic spots in autumn, probably caused by the fungus Pyrenopeziza betulicola, suggesting a direct harmful effect of UV on pathogens or reduced susceptibility to pathogens in UV-exposed seedlings. Secondary metabolite analysis showed increases in (+)-catechin, quercetin, cinnamic acid derivative, apigenin and pentagalloylglucose in birch leaves under enhanced UV-B radiation. Negative correlations between apigenin, and particularly quercetin concentrations and lipid peroxidation levels indicated an antioxidant role of secondary metabolites in birch leaves exposed to UV-B radiation.
机译:三岁的桦树(Beady Pendula Roth。)幼苗暴露在该领域,以补充UV-B辐射水平。使用未经联能的灯阵列,将控制幼苗暴露于UV辐射的环境水平。实验中还包括对UV-A辐射的对照。增强的UV-B辐射对高度的生长没有显着影响,桦木幼苗的芽和根生物量。叶片膨胀率在增强的UV-B和UV-A-曝光植物中越来越多的时间内瞬时增加;然而,最终的叶子尺寸和相对生长速率仍未受到影响。叶厚度和海绵状间隙在UV -B暴露的幼苗中增加,以及腺体毛细胞的密度增加。在超微结构水平下,增强的UV-B增加了细胞质脂质体的数量,并发现了异常膜螺型。增强型UV-B和UV-A辐射诱导叶绿体囊体的溶胀。通过升高的UV-B辐射显着增加了气孔密度和电导。 UV-A辐射增加了气孔的长度和宽度,而UV-B辐射仅对气孔大小进行边际效果。 UV-A和增强的UV-B辐射减弱了秋季坏死斑点的外观,可能是由真菌Pyrenopeziza Betulicola引起的,这表明紫外线对病原体的直接有害影响或降低对紫外线幼苗的病原体的敏感性。在增强的UV-B辐射下,次级代谢物分析显示(+) - 儿茶素,槲皮素,槲皮素,肉桂酸衍生物,Apigenin和戊基酰乙酰葡萄糖含量增加。 Apigenin之间的负相关,特别是槲皮素浓度和脂质过氧化水平表明次级代谢物在暴露于UV-B辐射的桦树叶中的抗氧化作用。

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