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PID在根的向光性中作为负调控因子发挥作用。

PINOID functions in root phototropism as a negative regulator.

作者信息

Haga Ken, Sakai Tatsuya

机构信息

a Department of Human Science and Common Education; Nippon Institute of Technology ; Saitama , Japan.

出版信息

Plant Signal Behav. 2015;10(5):e998545. doi: 10.1080/15592324.2014.998545.

Abstract

The PINOID (PID) family, which belongs to AGCVIII kinases, is known to be involved in the regulation of auxin efflux transporter PIN-formed (PIN) proteins through changes in the phosphorylation status. Recently, we demonstrated that the PID family is necessary for phytochrome-mediated phototropic enhancement in Arabidopsis hypocotyls and that the downregulation of PID expression by red-light pretreatment results in the promotion of the PIN-mediated auxin gradient during phototropic responses. However, whether PID participates in root phototropism in Arabidopsis seedlings has not been well studied. Here, we demonstrated that negative root phototropic responses are enhanced in the pid quadruple mutant and are severely impaired in transgenic plants expressing PID constitutively. The results indicate that the PID family functions in a negative root phototropism as a negative regulator. On the other hand, analysis with PID fused to a yellow fluorescent protein, VENUS, showed that unilateral blue-light irradiation causes a lower accumulation of PID proteins on the shaded side than on the irradiated side. This result suggests that the blue-light-mediated asymmetrical distribution of PID proteins may be one of the critical responses in phototropin-mediated signals during a negative root phototropism. Alternatively, such a transverse gradient of PID proteins may result from gravitropic stimulation produced by phototropic bending.

摘要

属于AGCVIII激酶的类生长素输出载体蛋白激酶(PINOID,PID)家族,已知通过改变磷酸化状态参与生长素输出载体PIN形成蛋白(PIN)的调控。最近,我们证明PID家族对于拟南芥下胚轴中光敏色素介导的向光性增强是必需的,并且红光预处理导致的PID表达下调会促进向光性反应期间PIN介导的生长素梯度。然而,PID是否参与拟南芥幼苗的根向光性尚未得到充分研究。在这里,我们证明在pid四重突变体中负向根向光性反应增强,而在组成型表达PID的转基因植物中严重受损。结果表明,PID家族作为负调节因子在负向根向光性中起作用。另一方面,对与黄色荧光蛋白VENUS融合的PID进行分析表明,单侧蓝光照射导致PID蛋白在遮荫侧的积累低于照射侧。这一结果表明,蓝光介导的PID蛋白不对称分布可能是负向根向光性期间向光素介导信号中的关键反应之一。或者,这种PID蛋白的横向梯度可能是由向光性弯曲产生的重力刺激导致的。

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