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首页> 外文期刊>Plant Physiology and Biochemistry >Molecular cloning and characterization of the genes encoding an auxin efflux carrier and the auxin influx carriers associated with the adventitious root formation in mango (Mangifera indica L.) cotyledon segments
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Molecular cloning and characterization of the genes encoding an auxin efflux carrier and the auxin influx carriers associated with the adventitious root formation in mango (Mangifera indica L.) cotyledon segments

机译:与芒果子叶节中不定根形成相关的生长素外排载体和生长素流入载体编码基因的分子克隆和表征

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Polar auxin transport (PAT) plays an important role in the adventitious root formation of mango cotyledon segments, but the molecular mechanism remains unclear. In this study, we cloned a gene encoding an auxin efflux carrier (designated as MiPIN1), and we cloned four genes encoding auxin influx carriers (designated as MiAUX1, MiAUX2, MiAUX3 and MiAUX4). The results of a phylogenetic tree analysis indicated that MiPIN1 and the MiAUXs belong to plant PIN and AUXs/LAXs groups. Quantitative real-time PCR indicated that the expression of MiPIN1 and the MiAUXs was lowest at 0 days but sharply increased on and after day 4. During the root formation in the mango cotyledon segments, the MiPIN1 expression in the distal cut surface (DCS) was always higher than the expression in the proximal cut surface (PCS) whereas the expression of the MiAUXs in the PCS was usually higher than in the DCS. This expression pattern might be result in the PAT from the DCS to the PCS, which is essential for the adventitious root formation in the PCS. Our previous study indicated that a pre-treatment of embryos with indole-3-butyric acid (IBA) significantly promoted adventitious rooting in PCS whereas a pre-treatment with 2,3,5-triiodobenzoic acid (TIBA) completely inhibited this rooting. In this study, however, IBA and TIBA pre-treatments slightly changed the expression of MiPIN1. In contrast, while the MiAUX3 and MiAUX4 expression levels were significantly up-regulated by the IBA pre-treatment, the expression levels were down-regulated by the TIBA pre-treatment. These findings imply that MiAUX3 and MiAUX4 are more sensitive to the IBA and TIBA treatments and that they might play important roles during adventitious root formation in mango cotyledon segments.
机译:极地生长素运输(PAT)在芒果子叶节的不定根形成中起重要作用,但分子机制仍不清楚。在这项研究中,我们克隆了一个编码植物生长素外流载体的基因(称为MiPIN1),并克隆了四个编码植物生长素外流载体的基因(称为MiAUX1,MiAUX2,MiAUX3和MiAUX4)。系统发育树分析的结果表明,MiPIN1和MiAUX属于植物PIN和AUX / LAXs组。实时定量PCR表明,MiPIN1和MiAUX的表达在0天最低,但在第4天及之后急剧增加。在芒果子叶节的根形成过程中,远端切面(DCS)中的MiPIN1表达为总是高于近端切面(PCS)中的表达,而MiAUX在PCS中的表达通常高于DCS。这种表达模式可能导致DCS到PCS之间的PAT,这对于PCS中不定根的形成至关重要。我们先前的研究表明,用吲哚-3-丁酸(IBA)预处理胚胎可显着促进PCS中的不定根,而用2,3,5-三碘苯甲酸(TIBA)预处理则完全抑制了这种生根。但是,在这项研究中,IBA和TIBA预处理稍微改变了MiPIN1的表达。相反,尽管通过IBA预处理显着上调了MiAUX3和MiAUX4的表达水平,但通过TIBA预处理却下调了表达水平。这些发现表明,MiAUX3和MiAUX4对IBA和TIBA处理更敏感,并且在芒果子叶节的不定根形成过程中可能起重要作用。

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