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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Metabolic changes associated to the unblocking of adventitious root formation in aged, rooting-recalcitrant cuttings of Eucalyptus gunnii Hook. f. (Myrtaceae)
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Metabolic changes associated to the unblocking of adventitious root formation in aged, rooting-recalcitrant cuttings of Eucalyptus gunnii Hook. f. (Myrtaceae)

机译:桉树甘油钩钩的吞咽顽固切屑脱胀,无各种根部形成相关的代谢变化。 F。 (myrtaceae)

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In many tree species, the ability to produce adventitious roots is limited by specific changes related to the physiology of reproduction and ageing. In spite of its ecological significance, little is known about the physiological mechanisms determining the irreversibility of these non-rooting states in some species. In this study, we performed natural and hormone-induced rooting of stem cuttings from mature individuals of rooting-recalcitrant Eucalyptus gunnii in order to characterize the poorly known metabolic changes associated to the formation of adventitious roots in a rooting-recalcitrant tree species. Stem cuttings, either with or without an apical meristem, were put in a rooting greenhouse after having been treated with two different synthetic auxins, indole-3-butyric acid and 1-naphthaleneacetic acid. During the rooting processes changes in the secondary metabolism of the cutting stem tissue were observed and analyzed through different chromatographic techniques. Rooting of cuttings in E. gunnii proved to be hastened by the accumulation in tissues of methyl gallate. Its natural metabolization and disappearance during the long period of cutting stay in the rooting benches restored the adventive rooting ability. In the same period, a concomitant accumulation in cutting tissues of quercetin-like flavonoids was observed. Rooting was enhanced by the addition of indole-3-butyric acid and 1-naphthaleneacetic acid, although rooting of cuttings with apical meristem was not influenced by hormonal treatments. Seasonal conditions had no effect on the percentage of rooted cuttings, although rooting took 1 month longer in the autumn/winter trial. In general, auxinic treatments did not affect the production of cutting new leaves but did favor the initial differentiation of new root tissue. Rooting was blocked by the presence in the tissues of the inhibitor methyl gallate, the degradation of which allowed the rooting processes to take place. Metabolization and disappearance
机译:在许多树种中,产生不定根的能力受与生殖和老化的生理学相关的具体变化的限制。尽管其生态意义,但对某些物种中这些非生根态的不可逆转性众所周知的众所周知。在这项研究中,我们进行了自然和激素诱导的生根醋酸州桉树成熟个体的茎切屑的生根,以表征与生根顽皮的树种中的不定根形成相关的众所周知的代谢变化。用两种不同的合成毒素,吲哚-3-丁酸和1-萘酸酸处理后,在生根温室中置于生根温室中的茎切割。在生根过程中,通过不同的色谱技术观察并分析切割茎组织的次级代谢的变化。 E. Gunnii中的切屑的根本被证明通过甲状腺组织中的积累来加速。它在切割长凳长期削减的自然代谢和失踪恢复了外来的生根能力。在同一时期,观察到在槲皮素样黄酮类化合物中切割组织中的伴随积累。通过加入吲哚-3-丁酸和1-萘酸酸而增强了生根,尽管具有顶端分类的切屑根植于荷尔蒙治疗。季节性条件对根源切割的百分比没有影响,尽管秋季/冬季试验中的生根花了1个月。通常,养猪治疗不影响切割新叶的产生,但是已经有利于新根组织的初始分化。通过在抑制剂甲基甲酸甲酯的组织中存在而被生根阻断,其降解允许进行生根过程。代谢和失踪

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