Favero David S, Le Kimberly Ngan, Neff Michael M
Molecular Plant Sciences Graduate Program, Washington State University, Pullman, WA, 99164, USA.
Department of Crop and Soil Sciences, Washington State University, Pullman, WA, 99164, USA.
Plant J. 2017 Mar;89(6):1133-1145. doi: 10.1111/tpj.13451. Epub 2017 Feb 17.
Interactions between signaling pathways help guide plant development. In this study, we found that brassinosteroid (BR) signaling converges with SUPPRESSOR OF PHYTOCHROME B4-#3 (SOB3) to influence both the transcription of genes involved in cell elongation and hypocotyl growth. Specifically, SOB3 mutant hypocotyl phenotypes, which are readily apparent when the seedlings are grown in dim white light, were attenuated by treatment with either brassinolide (BL) or the BR biosynthesis inhibitor brassinazole (BRZ). Hypocotyls of SOB3 mutant seedlings grown in white light with a higher fluence rate also exhibited altered sensitivities to BL, further suggesting a connection to BR signaling. However, the impact of BL treatment on SOB3 mutants grown in moderate-intensity white light was reduced when polar auxin transport was inhibited. BL treatment enhanced transcript accumulation for all six members of the SMALL AUXIN UP RNA19 (SAUR19) subfamily, which promote cell expansion, are repressed by SOB3 and light, and are induced by auxin. Conversely, BRZ inhibited the expression of SAUR19 and its homologs. Expression of these SAURs was also enhanced in lines expressing a constitutively active form of the BR signaling component BZR1, further indicating that the transcription of SAUR19 subfamily members are influenced by this hormone signaling pathway. Taken together, these results indicate that SOB3 and BR signaling converge to influence the transcription of hypocotyl growth-promoting SAUR19 subfamily members.
信号通路之间的相互作用有助于引导植物发育。在本研究中,我们发现油菜素内酯(BR)信号通路与光敏色素B4-#3的抑制因子(SOB3)汇聚,从而影响参与细胞伸长和下胚轴生长的基因转录。具体而言,当幼苗在弱白光下生长时很容易出现的SOB3突变体下胚轴表型,通过用油菜素内酯(BL)或BR生物合成抑制剂油菜素唑(BRZ)处理而减弱。在较高光通量率的白光下生长的SOB3突变体幼苗的下胚轴对BL也表现出改变的敏感性,进一步表明与BR信号通路有关联。然而,当生长素极性运输受到抑制时,BL处理对在中等强度白光下生长的SOB3突变体的影响减弱。BL处理增强了促进细胞扩张的小生长素上调RNA19(SAUR19)亚家族所有六个成员的转录积累,这些成员被SOB3和光抑制,并被生长素诱导。相反,BRZ抑制了SAUR19及其同源物的表达。在表达BR信号组分BZR1组成型活性形式的株系中,这些SAURs的表达也增强了,进一步表明SAUR19亚家族成员的转录受该激素信号通路影响。综上所述,这些结果表明SOB3和BR信号通路汇聚以影响促进下胚轴生长的SAUR19亚家族成员的转录。