首页> 外文期刊>Planta: An International Journal of Plant Biology >Role of AUX1 in the control of organ identity during in vitro organogenesis and in mediating tissue specific auxin and cytokinin interaction in Arabidopsis
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Role of AUX1 in the control of organ identity during in vitro organogenesis and in mediating tissue specific auxin and cytokinin interaction in Arabidopsis

机译:AUX1在体外器官发生过程中控制器官身份以及介导拟南芥中组织特异性生长素和细胞分裂素相互作用中的作用

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Classic plant tissue culture experiments have shown that exposure of cell culture to a high auxin to cytokinin ratio promotes root formation and a low auxin to cytokinin ratio leads to shoot regeneration. It has been widely accepted that auxin and cytokinin play an antagonistic role in the control of organ identities during organogenesis in vitro. Since the auxin level is highly elevated in the shoot meristem tissues, it is unclear how a low auxin to cytokinin ratio promotes the regeneration of shoots. To identify genes mediating the cytokinin and auxin interaction during organogenesis in vitro, three allelic mutants that display root instead of shoot regeneration in response to a low auxin to cytokinin ratio are identified using a forward genetic approach in Arabidopsis. Molecular characterization shows that the mutations disrupt the AUX1 gene, which has been reported to regulate auxin influx in plants. Meanwhile, we find that cytokinin substantially stimulates auxin accumulation and redistribution in calli and some specific tissues of Arabidopsis seedlings. In the aux1 mutants, the cytokinin regulated auxin accumulation and redistribution is substantially reduced in both calli and specific tissues of young seedlings. Our results suggest that auxin elevation and other changes stimulated by cytokinin, instead of low auxin or exogenous auxin directly applied, is essential for shoot regeneration.
机译:经典的植物组织培养实验表明,将细胞培养物暴露于高的植物生长素与细胞分裂素比率会促进根形成,而低的植物生长素与细胞分裂素比率会导致芽再生。生长素和细胞分裂素在体外器官发生过程中在器官身份控制中起拮抗作用已被广泛接受。由于在茎分生组织中生长素水平高度升高,因此尚不清楚低的生长素与细胞分裂素之比如何促进茎的再生。为了在体外器官发生过程中鉴定介导细胞分裂素和植物生长素相互作用的基因,在拟南芥中使用正向遗传学方法鉴定了三个等位基因突变体,这些突变体表现出根而不是芽苗响应低的植物生长素与细胞分裂素的比率而再生。分子表征表明,该突变破坏了AUX1基因,据报道该基因调节植物中的生长素流入。同时,我们发现细胞分裂素实质上刺激了拟南芥幼苗的愈伤组织和某些特定组织中的生长素积累和再分布。在aux1突变体中,在幼苗的愈伤组织和特定组织中,细胞分裂素调节的生长素积累和再分配都大大减少。我们的结果表明,生长素升高和细胞分裂素刺激的其他变化,而不是低生长素或直接应用外源性生长素,对芽再生至关重要。

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