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Endogenous PttHb1 and PttTrHb, and heterologous Vitreoscilla vhb haemoglobin gene expression in hybrid aspen roots with ectomycorrhizal interaction

机译:内源性PttHb1和PttTrHb以及异种玻璃体vhb血红蛋白基因在具有根除作用的杂种白杨根中的表达

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摘要

Present knowledge on plant non-symbiotic class-1 (Hb1) and truncated (TrHb) haemoglobin genes is almost entirely based on herbaceous species while the corresponding tree haemoglobin genes are not well known. The function of these genes has recently been linked with endosymbioses between plants and microbes. In this work, the coding sequences of hybrid aspen (Populus tremula×tremuloides) PttHb1 and PttTrHb were characterized, indicating that the key residues of haem and ligand binding of both genes were conserved in the deduced amino acid sequences. The expression of PttHb1 and PttTrHb was examined in parallel with that of the heterologous Vitreoscilla haemoglobin gene (vhb) during ectomycorrhiza/ectomycorrhizal (ECM) interaction. Both ECM fungi studied, Leccinum populinum and Xerocomus subtomentosus, enhanced root formation and subsequent growth of roots of all hybrid aspen lines, but only L. populinum was able to form mycorrhizas. Real-time PCR results show that the dual culture with the ECM fungus, with or without emergence of symbiotic structures, increased the expression of both PttHb1 and PttTrHb in the roots of non-transgenic hybrid aspens. PttHb1 and PttTrHb had expression peaks 5 h and 2 d after inoculation, respectively, pointing to different functions for these genes during interaction with root growth-improving fungi. In contrast, ECM fungi were not able to enhance the expression of hybrid aspen endogenous haemoglobin genes in the VHb lines, which may be a consequence of the compensating action of heterologous haemoglobin
机译:目前关于植物非共生1类(Hb1)和截短(TrHb)血红蛋白基因的知识几乎完全基于草本物种,而相应的树木血红蛋白基因则不是很清楚。这些基因的功能最近与植物和微生物之间的内共生酶有关。本文对白杨(Populus tremula×tremuloides)PttHb1和PttTrHb杂种的编码序列进行了表征,表明在推导的氨基酸序列中血红素的关键残基和两个基因的配体结合均是保守的。在皮下硬化/皮下硬化(ECM)相互作用期间,与异源玻璃体血红蛋白基因(vhb)平行检测了PttHb1和PttTrHb的表达。两种ECM真菌都研究了Leccinum populinum和Xerocomus subtomentosus,它们增强了所有杂种白杨系的根形成和随后的根生长,但是只有L. populinum能够形成菌根。实时PCR结果显示,与ECM真菌的双重培养,无论是否存在共生结构,均可增加非转基因杂种白杨根中PttHb1和PttTrHb的表达。接种后,PttHb1和PttTrHb的表达峰分别为5 h和2 d,这表明这些基因与根生长真菌相互作用时的功能不同。相反,ECM真菌不能增强杂种白杨内源性血红蛋白基因在VHb系中的表达,这可能是异源血红蛋白的补偿作用的结果。

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