Li Yan-An, Qi Lin-Lin, Sun Jia-Qiang, Liu Hong-Yu, Li Chuan-You
Northeast Agricultural University, College of Horticulture, Harbin 150030, China.
Yi Chuan. 2011 Sep;33(9):1003-10. doi: 10.3724/sp.j.1005.2011.01003.
It has been shown that jasmonate modulates the lateral root development through crosstalk with auxin in Arabidopsis thaliana. Exogenous application of jasmonate stimulates lateral root formation in wild type but inhibits lateral root formation in asa1-1. Our previous work has demonstrated that the lateral root formation defect of asa1-1 is co-related with jasmonte effect on PIN2 protein levels. To further elucidate the molecular mechanisms underlying jasmonate-mediated reduction of plasma membrane (PM)-resident PIN2 abundance, we have conducted a genetic screen to identify suppressors of asa1-1 (soa), which showed lateral root formation in the presence of jasmonate. Here, we described the basic characterization of soa563 and soa856. We showed that both soa563 and soa856 displayed restored lateral root formation in response to exogenous jasmonate. In addition, jasmonate-induced PIN2:GFP reduction was blocked in these two mutants. Our on-going effort to identify genes defined by these mutants promise to shed new light on the understanding of the molecular mechanisms controlling jasmonate-mediated regulation of PIN2 protein trafficking and turnover.
研究表明,茉莉酸通过与拟南芥中的生长素相互作用来调节侧根发育。外源施加茉莉酸可刺激野生型植株的侧根形成,但抑制asa1-1突变体的侧根形成。我们之前的研究表明,asa1-1突变体的侧根形成缺陷与茉莉酸对PIN2蛋白水平的影响相关。为了进一步阐明茉莉酸介导的质膜(PM)定位的PIN2丰度降低的分子机制,我们进行了遗传筛选以鉴定asa1-1(soa)的抑制子,这些抑制子在茉莉酸存在的情况下表现出侧根形成。在此,我们描述了soa563和soa856的基本特征。我们发现,soa563和soa856对外源茉莉酸均表现出恢复的侧根形成。此外,这两个突变体中茉莉酸诱导的PIN2:GFP减少被阻断。我们正在努力鉴定这些突变体所定义的基因,有望为理解控制茉莉酸介导的PIN2蛋白运输和周转调节的分子机制提供新的线索。