Department of Plant Systems Biology, Technische Universität München, 85354 Freising-Weihenstephan, Germany.
Plant Cell. 2013 May;25(5):1674-88. doi: 10.1105/tpc.113.111484. Epub 2013 May 24.
Phototropic hypocotyl bending in response to blue light excitation is an important adaptive process that helps plants to optimize their exposure to light. In Arabidopsis thaliana, phototropic hypocotyl bending is initiated by the blue light receptors and protein kinases phototropin1 (phot1) and phot2. Phototropic responses also require auxin transport and were shown to be partially compromised in mutants of the PIN-FORMED (PIN) auxin efflux facilitators. We previously described the D6 PROTEIN KINASE (D6PK) subfamily of AGCVIII kinases, which we proposed to directly regulate PIN-mediated auxin transport. Here, we show that phototropic hypocotyl bending is strongly dependent on the activity of D6PKs and the PIN proteins PIN3, PIN4, and PIN7. While early blue light and phot-dependent signaling events are not affected by the loss of D6PKs, we detect a gradual loss of PIN3 phosphorylation in d6pk mutants of increasing complexity that is most severe in the d6pk d6pkl1 d6pkl2 d6pkl3 quadruple mutant. This is accompanied by a reduction of basipetal auxin transport in the hypocotyls of d6pk as well as in pin mutants. Based on our data, we propose that D6PK-dependent PIN regulation promotes auxin transport and that auxin transport in the hypocotyl is a prerequisite for phot1-dependent hypocotyl bending.
蓝光激发下的向光性下胚轴弯曲是一种重要的适应过程,有助于植物优化对光的暴露。在拟南芥中,向光性下胚轴弯曲是由蓝光受体和蛋白激酶 phototropin1 (phot1) 和 phot2 引发的。向光性反应还需要生长素运输,并且在 PIN 形成素(PIN)生长素外排促进剂的突变体中部分受损。我们之前描述了 AGCVIII 激酶的 D6 PROTEIN KINASE (D6PK) 亚家族,我们提出该家族直接调节 PIN 介导的生长素运输。在这里,我们表明向光性下胚轴弯曲强烈依赖于 D6PK 和 PIN 蛋白 PIN3、PIN4 和 PIN7 的活性。虽然早期的蓝光和光依赖性信号事件不受 D6PKs 缺失的影响,但我们在 D6PK 缺失突变体中检测到 PIN3 磷酸化逐渐丧失,在 D6PK D6PKL1 D6PKL2 D6PKL3 四重突变体中最为严重。这伴随着 D6PK 以及 PIN 突变体中生长素向基运输的减少。基于我们的数据,我们提出 D6PK 依赖性 PIN 调节促进生长素运输,并且下胚轴中的生长素运输是 phot1 依赖性下胚轴弯曲的前提。