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首页> 外文期刊>Journal of Plant Growth Regulation >Growth, Metabolite Profile, Oxidative Status, and Phytohormone Levels in the Green Alga Acutodesmus obliquus Exposed to Exogenous Auxins and Cytokinins
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Growth, Metabolite Profile, Oxidative Status, and Phytohormone Levels in the Green Alga Acutodesmus obliquus Exposed to Exogenous Auxins and Cytokinins

机译:在外源性生长素和细胞内素暴露于外源性植物的生长,代谢物型材,氧化地位和植物激素水平

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摘要

The effects of auxins and cytokinins at the range of concentrations 0.0001-100 mu M on Acutodesmus obliquus (Chlorophyceae) cultures were studied. Microalga exhibited sensitivity to cytokinins in the following order: 0.01 mu M tZ&0.1 mu M Kin&1 mu M DPU, whereas the hierarchy of auxin activity was: 0.01 mu M IAA&0.1 mu M IBA&0.1 mu M PAA. Cytokinins possessed higher stimulating properties on the cell number, whereas auxins increased the size of cells. Differences in the metabolite profiles of the cultures treated with phytohormones were observed. Auxins and cytokinins had a positive effect on the photosynthetic apparatus enhancing the level of chlorophylls, carotenes, and xanthophylls. In comparison with auxins, cytokinins more effectively delayed oxidative damage by increasing the level of non-enzymatic antioxidants (ascorbate, glutathione) and the activity of enzymes scavenging reactive oxidative species (catalase, glutathione reductase, ascorbate peroxidase). On the other hand, auxins stimulated superoxide dismutase activity and provoked hydrogen peroxide generation, which may be involved in cell enlargement. All phytohormones reduced the content of abscisic acid and controlled the level of endogenous auxin and cytokinins suggesting complex interactions. Different dynamics of A. obliquus responses to auxins and cytokinins clearly demonstrated their diverse roles in algal growth and metabolism.
机译:研究了植物素和细胞蛋白在浓度范围内的效果0.0001-100μm,研究了术术斜肌(叶绿素)培养物。 Microalga以下列顺序表现出对细胞蛋白的敏感性:0.01μmtz& 0.1 mu m kin& 1 mu m dpu,而植物蛋白活性的等级是:0.01 mu m iaa& 0.1 mu m iba& gt ; 0.1 mu m paa。细胞分裂素在细胞数上具有更高的刺激性能,而菌丝率增加了细胞的大小。观察到用植物激素治疗的培养物的代谢物谱的差异。植物素和细胞蛋白对增强叶绿素,胡萝卜素和叶黄素水平的光合仪进行积极影响。与毒素相比,Cytokinins通过增加非酶促抗氧化剂(抗坏血酸,谷胱甘肽)和酶清除反应性氧化物质(过氧化氢酶,谷胱甘肽还原酶,抗坏血物过氧化物酶)的酶的活性而更有效地延迟氧化损伤。另一方面,毒素刺激超氧化物歧化酶活性并引发过氧化氢生成,其可参与细胞增大。所有植物激素均降低了脱落酸的含量,并控制了内源性生长素和细胞蛋白的水平,表明复杂相互作用。 A. Obriquus对毒素和细胞蛋白的反应的不同动态明显证明了它们在藻类生长和代谢中的不同作用。

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