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首页> 外文期刊>Russian Journal of Plant Physiology >Influence of phytohormones on morphology and chlorophyll a fluorescence parameters in embryos of Fucus vesiculosus L. (Phaeophyceae)
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Influence of phytohormones on morphology and chlorophyll a fluorescence parameters in embryos of Fucus vesiculosus L. (Phaeophyceae)

机译:植物激素对墨角藻(Fusus vesiculosus L.)(Phaeophyceae)胚胎形态和叶绿素a荧光参数的影响

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While a variety of plant hormones from brown algae were described, there were few studies that examined the combined effects of these hormones on morphogenesis and photosynthetic physiology in developing fucoid embryos. We evaluated the effects of phytohormones to determine the extent, to which responses were similar to those of terrestrial plants. Kinetin, IAA, ABA, GA(3), and kinetin + IAA were added to seawater at a physiological concentration (1 mg/L), and embryos of Fucus vesiculosus L. were grown for 10 days. Photosynthetic activity of single embryos or embryo cells were characterized using the following fluorescence parameters: minimum fluorescence yield (F (0)), maximum quantum yield (F (v)/F (m)), relative maximum rate of electron transfer to photosystem II under saturation irradiances (rETR(max)), photosynthetic efficiency under non-saturating irradiances (alpha ETR) and saturation irradiance (E (k)). In addition, embryo length and diameter and apical hair length and number were determined. Morphological changes associated with hormone treatments included an increase in the embryo length in the presence of IAA, an increase in the embryo diameter in the presence of IAA, kinetin, and kinetin + IAA, an increase in the maximum hair length and number in the presence of kinetin + IAA, and a decrease in the hair length and number in the presence of ABA. With respect to fluorescence parameters, significant effects of phytohormones included an increase in the F (0) and F (v)/F (m) at kinetin treatment, a synergistic effect of kinetin + IAA on F (v)/F (m), rETR(max), and alpha ETR, a promotion of F (v)/F (m) by GA, and a decrease of the parameters by ABA. These results are consistent with the data on responses of land plants to the same hormones and suggest that brown algae have evolved regulatory mechanisms for morphogenesis and photosynthetic regulation similar to plants.
机译:虽然描述了来自褐藻的多种植物激素,但很少有研究检查这些激素对岩藻样胚发育中形态发生和光合生理的综合影响。我们评估了植物激素的作用,以确定反应的程度与陆生植物的反应相似。将Kinetin,IAA,ABA,GA(3)和Kinetin + IAA以生理浓度(1 mg / L)添加到海水中,并将Fucus vesiculosus L.的胚生长10天。使用以下荧光参数表征单个胚胎或胚胎细胞的光合活性:最小荧光产量(F(0)),最大量子产量(F(v)/ F(m)),电子最大转移至光系统II的相对速率饱和辐照度(rETR(max)),非饱和辐照度(alpha ETR)和饱和辐照度(E(k))下的光合作用效率。另外,确定胚胎的长度和直径以及根尖的长度和数目。与激素治疗有关的形态学变化包括:在存在IAA的情况下胚长增加,在存在IAA,激动素和激动素+ IAA的情况下胚直径增加,在存在的情况下最大毛发长度和数量增加。激动素+ IAA,并在存在ABA的情况下减少了头发的长度和数量。关于荧光参数,植物激素的显着影响包括在激动素处理中F(0)和F(v)/ F(m)的增加,激动素+ IAA对F(v)/ F(m)的协同作用。 ,rETR(max)和alpha ETR,GA促进F(v)/ F(m)和ABA降低参数。这些结果与陆地植物对相同激素的反应数据一致,表明褐藻已经进化出与植物相似的形态发生和光合作用调控机制。

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