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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Effects of combined or single exogenous auxin and/or cytokinin applications on growth and leaf area development in Epipremnum aureum
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Effects of combined or single exogenous auxin and/or cytokinin applications on growth and leaf area development in Epipremnum aureum

机译:组合或单一外源生长素和/或细胞分裂素应用对金黄色葡萄球菌生长和叶面积发育的影响

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We have analysed the effects of combined auxin and cytokinin treatments on whole plant growth and leaf development in Epipremnum aureum and compared both morphological and physiological variables to those obtained with a single hormone application. Rooted cuttings of E. aureum were sprayed with 0, 5, 50, or 100 mg l(-1) indole-3-acetic acid (IAA) 7 d after transplanting. One week later, they were then sprayed with 0, 5, 50, or 100 mg l(-1) benzylaminopurine (BAP). Whole plant growth, leaf development, carbon fixation, and leaf anatomy were recorded for 6 months after these sequential treatments. Following a single application of IAA or BAP, we observed an increase in the accumulation of whole-plant biomass, which reached a plateau at the highest concentration of either plant hormone. The promotion of growth was associated with increased rates of net C-assimilation and net photosynthesis, as well as with increased leaf thickness and the relative proportion of intracellular spaces in the mesophyll layer. The effect on leaves of applying both hormones, in different combinations and concentrations, resembled the results on whole plants obtained by spraying either the auxin or the cytokinin (at 50 or 100 mg l(-1) BAP). Similarities in plant and leaf responses to the auxin and/or the cytokinin suggest that both hormones may act via the same pathway, which agreed with the well-known promotional effect of auxins on the development of new lateral roots, as root apices are the main site of cytokinin biosynthesis. Conversely, our results did not support the occurrence of a significant auxindriven inhibition of cytokinin synthesis in root apices, at least for E. aureum, as reported in other species.
机译:我们分析了生长素和细胞分裂素联合处理对金黄色葡萄球菌整个植物生长和叶片发育的影响,并将形态和生理变量与单次激素施用获得的变量进行了比较。移栽后7 d,将0、5、50或100 mg l(-1)吲哚-3-乙酸(IAA)喷洒根茎的金黄色葡萄球菌。一周后,将其喷洒0、5、50或100 mg l(-1)苄氨基嘌呤(BAP)。在这些连续处理之后的6个月中,记录了整个植物的生长,叶片发育,碳固定和叶片解剖。在单次施用IAA或BAP之后,我们观察到全植物生物量的积累增加,在任何一种植物激素的最高浓度下,该生物量均达到了稳定水平。生长的促进与净碳同化和净光合作用的速率增加,以及叶厚度的增加和叶肉层中细胞内空间的相对比例有关。施用两种激素(以不同的组合和浓度)对叶子的影响类似于通过喷洒生长素或细胞分裂素(50或100 mg l(-1)BAP)获得的整个植物的结果。植物和叶片对植物生长素和/或细胞分裂素的反应相似,这表明两种激素可能通过相同的途径起作用,这与植物生长素对新侧根的发育的众所周知的促进作用相一致,因为根尖是主要的根尖。细胞分裂素生物合成的位点。相反,我们的结果不支持至少在金黄色葡萄球菌中根部顶生植物生长素驱动的细胞分裂素合成抑制作用,正如其他物种所报道的那样。

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