School of Biology, Faculty of Biological Sciences, University of Leeds, Leeds, LS2 9JT, UK.
Department of Forest Genetics and Plant Physiology, Umeå Plant Science Centre, Swedish University of Agricultural Sciences, SE-901 83, Umeå, Sweden.
New Phytol. 2022 Jul;235(1):126-140. doi: 10.1111/nph.18110. Epub 2022 Apr 9.
Photomorphogenic remodelling of seedling growth is a key developmental transition in the plant life cycle. The α/β-hydrolase signalling protein KARRIKIN-INSENSITIVE2 (KAI2), a close homologue of the strigolactone receptor DWARF14 (D14), is involved in this process, but it is unclear how the effects of KAI2 on development are mediated. Here, using a combination of physiological, pharmacological, genetic and imaging approaches in Arabidopsis thaliana (Heynh.) we show that kai2 phenotypes arise because of a failure to downregulate auxin transport from the seedling shoot apex towards the root system, rather than a failure to respond to light per se. We demonstrate that KAI2 controls the light-induced remodelling of the PIN-mediated auxin transport system in seedlings, promoting a reduction in PIN7 abundance in older tissues, and an increase of PIN1/PIN2 abundance in the root meristem. We show that removing PIN3, PIN4 and PIN7 from kai2 mutants, or pharmacological inhibition of auxin transport and synthesis, is sufficient to suppress most kai2 seedling phenotypes. We conclude that KAI2 regulates seedling morphogenesis by its effects on the auxin transport system. We propose that KAI2 is not required for the light-mediated changes in PIN gene expression but is required for the appropriate changes in PIN protein abundance within cells.
幼苗生长的光形态建成重塑是植物生命周期中的一个关键发育转变。α/β-水解酶信号蛋白 KARRIKIN-INSENSITIVE2(KAI2)是独脚金内酯受体 DWARF14(D14)的紧密同源物,参与了这个过程,但尚不清楚 KAI2 对发育的影响是如何介导的。在这里,我们使用拟南芥(Heynh.)中的生理、药理学、遗传学和成像方法的组合表明,kai2 表型是由于未能从幼苗顶端向下调节生长素向根系的运输,而不是未能对光本身作出反应。我们证明 KAI2 控制了光照诱导的幼苗中 PIN 介导的生长素运输系统的重塑,促进了较老组织中 PIN7 丰度的降低,以及根分生组织中 PIN1/PIN2 丰度的增加。我们表明,从 kai2 突变体中去除 PIN3、PIN4 和 PIN7,或抑制生长素运输和合成的药理学,足以抑制大多数 kai2 幼苗表型。我们得出结论,KAI2 通过其对生长素运输系统的影响来调节幼苗形态发生。我们提出,KAI2 不需要光介导的 PIN 基因表达变化,但需要细胞内 PIN 蛋白丰度的适当变化。