Plant Energy Biology, University of Western Australia, Crawley, Western Australia 6009, Australia.
Mol Plant. 2013 Jan;6(1):63-75. doi: 10.1093/mp/sss127. Epub 2012 Nov 9.
Karrikins are butenolide compounds released from burning vegetation that stimulate seed germination and enhance seedling photomorphogenesis. Strigolactones are structurally similar plant hormones that regulate shoot and root development, and promote the germination of parasitic weed seeds. In Arabidopsis, the F-box protein MAX2 is required for responses to karrikins and strigolactones, and the α/β hydrolase KAI2 is necessary for responses to karrikins. Both MAX2 and KAI2 are essential for normal light-dependent seedling development. The bZIP transcription factor HY5 acts downstream of multiple photoreceptors and promotes photomorphogenesis, but its relationship with MAX2 and KAI2 in terms of seedling development and responses to karrikins and strigolactones is poorly defined. Here, we demonstrate that HY5 action is genetically separable from that of MAX2 and KAI2. While hy5 mutants have weak hypocotyl elongation responses to karrikins and the artificial strigolactone GR24, they have normal transcriptional responses, suggesting that HY5 is not involved in perception or action of karrikins or strigolactones. Furthermore, we show that overexpression of KAI2 is sufficient to enhance responses to both karrikins and GR24 in wild-type seedlings, and that KAI2 overexpression partially suppresses the hy5 long hypocotyl phenotype. These results suggest that KAI2 and MAX2 define a regulatory pathway that largely operates independently of HY5 to mediate seedling responses to abiotic signals such as smoke and light.
卡里卡丁是从燃烧的植被中释放出来的丁烯内酯化合物,它能刺激种子萌发并增强幼苗光形态建成。独脚金内酯是结构相似的植物激素,调节茎和根的发育,并促进寄生杂草种子的萌发。在拟南芥中,F-box 蛋白 MAX2 是对卡里卡丁和独脚金内酯反应所必需的,而 α/β 水解酶 KAI2 是对卡里卡丁反应所必需的。MAX2 和 KAI2 对正常的光依赖型幼苗发育都是必不可少的。bZIP 转录因子 HY5 作为多个光受体的下游因子,促进光形态建成,但它在幼苗发育和对卡里卡丁和独脚金内酯的反应方面与 MAX2 和 KAI2 的关系还不清楚。在这里,我们证明 HY5 的作用在遗传上与 MAX2 和 KAI2 的作用是可分离的。虽然 hy5 突变体对卡里卡丁和人工独脚金内酯 GR24 的下胚轴伸长反应较弱,但它们具有正常的转录反应,这表明 HY5 不参与卡里卡丁或独脚金内酯的感知或作用。此外,我们还表明,过量表达 KAI2 足以增强野生型幼苗对卡里卡丁和 GR24 的反应,并且过量表达 KAI2 部分抑制了 hy5 长下胚轴表型。这些结果表明,KAI2 和 MAX2 定义了一个调节途径,该途径在很大程度上独立于 HY5 运作,以介导幼苗对烟雾和光等非生物信号的反应。