首页> 外文期刊>Frontiers in Plant Science >The Biphasic Root Growth Response to Abscisic Acid in Arabidopsis Involves Interaction with Ethylene and Auxin Signalling Pathways
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The Biphasic Root Growth Response to Abscisic Acid in Arabidopsis Involves Interaction with Ethylene and Auxin Signalling Pathways

机译:拟南芥对脱落酸的双相根生长反应涉及乙烯和生长素信号通路的相互作用。

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Exogenous abscisic acid (ABA) is known to either stimulate or inhibit root growth, depending on its concentration. In this study, the roles of ethylene and auxin in this biphasic effect of ABA on root elongation were investigated using chemical inhibitors and mutants. Inhibitors of ethylene perception and biosynthesis and an auxin influx inhibitor were all found to block the inhibitory effect of high ABA concentrations, but not the stimulatory effect of low ABA concentrations. In addition, three ethylene-insensitive mutants ( etr1-1 , ein2-1 , and ein3-1 ), two auxin influx mutants ( aux1-7 , aux1-T ) and an auxin-insensitive mutant ( iaa7/axr2-1 ) were all insensitive to the inhibitory effect of high ABA concentrations. In the case of the stimulatory effect of low ABA concentrations, it was blocked by two different auxin efflux inhibitors and was less pronounced in an auxin efflux mutant ( pin2/eir1-1 ) and in the iaa7/axr2-1 auxin-insensitive mutant. Thus it appears that the stimulatory effect seen at low ABA concentrations is via an ethylene-independent pathway requiring auxin signalling and auxin efflux through PIN2/EIR1, while the inhibitory effect at high ABA concentrations is via an ethylene-dependent pathway requiring auxin signalling and auxin influx through AUX1.
机译:已知外源脱落酸(ABA)会刺激或抑制根部生长,具体取决于其浓度。在这项研究中,使用化学抑制剂和突变体研究了乙烯和植物生长素在ABA对根伸长的双相作用中的作用。发现乙烯感知和生物合成抑制剂和生长素流入抑制剂均能阻止高ABA浓度的抑制作用,但不能阻止低ABA浓度的刺激作用。另外,还存在三个乙烯不敏感突变体(etr1-1,ein2-1和ein3-1),两个生长素流入突变体(aux1-7,aux1-T)和一个生长素不敏感突变体(iaa7 / axr2-1)。所有这些都对高ABA浓度的抑制作用不敏感。在低ABA浓度的刺激作用下,它被两种不同的生长素外排抑制剂抑制,在生长素外排突变体(pin2 / eir1-1)和iaa7 / axr2-1生长素不敏感突变体中不那么明显。因此,似乎在低ABA浓度下看到的刺激作用是通过乙烯依赖性途径,要求植物生长素信号传导和生长素通过PIN2 / EIR1流出,而在高ABA浓度下,抑制作用是通过乙烯依赖性途径,需要植物生长素信号传导和生长素。通过AUX1流入。

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