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首页> 外文期刊>Journal of Plant Growth Regulation >gamma-Aminobutyric Acid Participates in the Adult-Phase Adventitious Rooting Recalcitrance
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gamma-Aminobutyric Acid Participates in the Adult-Phase Adventitious Rooting Recalcitrance

机译:γ-氨基丁酸参与成虫阶段的不定生根顽固性

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摘要

In many tree species especially the rooting-recalcitrant woody perennials, the adventitious root (AR) in the juvenile phase can be easily induced by exogenous auxin, but AR formation becomes recalcitrant in the adult phase. Also, it is reported that the gamma-aminobutyric acid (GABA) inhibits primary root growth in Arabidopsis and the AR formation in poplar (Populus ssp). So far, how GABA affects or is affected by the ontogenetic phase or auxin remains unclear. Here, we used an apple rootstock, Malus xiaojinensis, and tobacco (Nicotiana benthamiana) to investigate this question. We first analyzed the content of GABA, the activity of GABA synthetic enzyme GAD, and the expression of the coding gene MxGADs, respectively, in leafy cuttings of juvenile and adult phase. Next, the effect of exogenous GABA on AR formation was examined in in vitro shoots of M. xiaojinensis and tobacco. Interestingly, significant and consistent increases in GABA concentration, GAD activity, and expression of MxGAD genes in response to exogenous indole butyric acid (IBA) were detected in adult-phase cuttings, but not in juvenile-phase cuttings. Exogenous GABA application inhibited the AR formation by delaying rooting time and reducing root number and the total root length in in vitro shoots of both M. xiaojinensis and tobacco. The expression of MxPIN members increased in response to IBA application, but these changes were restrained by the addition of GABA. These results indicate that both the loss of juvenility and IBA are required to trigger GABA accumulation. GABA may affect the AR formation as a co-actor by inhibiting polar auxin transport. Together, these findings facilitate the understanding of the regulatory network among GABA, juvenility, and auxin signaling on the AR formation.
机译:在许多树种中,尤其是生根顽固的多年生木本植物中,幼年期的不定根(AR)很容易被外源生长素诱导,但在成虫期则变得顽固。此外,据报道,γ-氨基丁酸(GABA)抑制拟南芥的初级根生长和杨树(Populus ssp)的AR形成。到目前为止,GABA如何影响个体发育阶段或生长素或受其影响仍不清楚。在这里,我们使用苹果砧木、Malus xiaojinensis 和烟草 (Nicotiana benthamiana) 来研究这个问题。首先分析了幼期和成期叶插插中GABA的含量、GABA合成酶GAD的活性和编码基因MxGADs的表达情况。其次,在小金针菇和烟草的体外枝条中研究了外源GABA对AR形成的影响。有趣的是,在成期插条中检测到GABA浓度、GAD活性和MxGAD基因表达响应外源吲哚丁酸(IBA)的显著和持续增加,但在幼年期插条中没有检测到。外源GABA施用通过延缓小金针菇和烟草体外枝条的生根时间、减少根数和总根长来抑制AR的形成。随着IBA应用,MxPIN成员的表达增加,但这些变化受到GABA的加入的限制。这些结果表明,触发GABA积累需要少年和IBA的丧失。GABA可能通过抑制极性生长素转运来影响AR的形成。总之,这些发现有助于理解 GABA、幼年和生长素信号传导对 AR 形成的调节网络。

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