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首页> 外文期刊>BMC Plant Biology >Grape berry ripening delay induced by a pre-véraison NAA treatment is paralleled by a shift in the expression pattern of auxin- and ethylene-related genes
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Grape berry ripening delay induced by a pre-véraison NAA treatment is paralleled by a shift in the expression pattern of auxin- and ethylene-related genes

机译:预先验证NAA处理引起的葡萄浆果成熟延迟与生长素相关基因和乙烯相关基因的表达模式转变平行

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Background Auxins act as repressors of ripening inception in grape (véraison), while ethylene and abscisic acid (ABA) play a positive role as inducers of the syndrome. Despite the increasing amount of information made available on this topic, the complex network of interactions among these hormones remains elusive. In order to shed light on these aspects, a holistic approach was adopted to evaluate, at the transcriptomic level, the crosstalk between hormones in grape berries, whose ripening progression was delayed by applying naphtalenacetic acid (NAA) one week before véraison. Results The NAA treatment caused significant changes in the transcription rate of about 1,500 genes, indicating that auxin delayed grape berry ripening also at the transcriptional level, along with the recovery of a steady state of its intracellular concentration. Hormone indices analysis carried out with the HORMONOMETER tool suggests that biologically active concentrations of auxins were achieved throughout a homeostatic recovery. This occurred within 7 days after the treatment, during which the physiological response was mainly unspecific and due to a likely pharmacological effect of NAA. This hypothesis is strongly supported by the up-regulation of genes involved in auxin conjugation (GH3-like) and action (IAA4- and IAA31-like). A strong antagonistic effect between auxin and ethylene was also observed, along with a substantial ‘synergism’ between auxins and ABA, although to a lesser extent. Conclusions This study suggests that, in presence of altered levels of auxins, the crosstalk between hormones involves diverse mechanisms, acting at both the hormone response and biosynthesis levels, creating a complex response network.
机译:背景生长素在葡萄中起抑制成熟作用的作用(Véraison),而乙烯和脱落酸(ABA)在该综合征的诱导中起积极作用。尽管有关此主题的信息越来越多,但这些激素之间复杂的相互作用网络仍然难以捉摸。为了阐明这些方面,采用了一种整体方法在转录组水平上评估葡萄浆果中激素之间的串扰,该葡萄的成熟进程通过在确认前一周使用萘乙酸(NAA)来延迟。结果NAA处理导致大约1500个基因的转录速率发生了显着变化,这表明生长素在转录水平上也延迟了葡萄浆果的成熟,并使其细胞内浓度恢复了稳定状态。用HORMONOMETER工具进行的激素指数分析表明,在整个体内平衡恢复过程中,都达到了植物生长素的生物活性浓度。这种情况发生在治疗后7天内,在此期间生理反应主要是非特异性的,这是由于NAA可能具有药理作用。生长激素结合(GH3样)和作用(IAA4和IAA31样)相关基因的上调强烈支持这一假设。还观察到了生长素和乙烯之间的强烈拮抗作用,以及生长素和ABA之间的明显“协同作用”,尽管程度较小。结论该研究表明,在生长素水平改变的情况下,激素之间的串扰涉及多种机制,在激素反应和生物合成水平上起作用,从而建立了复杂的反应网络。

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