Donald Danforth Plant Science Center, St. Louis, Missouri 63132, USA.
Plant Cell Environ. 2010 Dec;33(12):2180-90. doi: 10.1111/j.1365-3040.2010.02218.x. Epub 2010 Sep 28.
The Arabidopsis FIERY1 (FRY1) locus was originally identified as a negative regulator of stress-responsive gene expression and later shown to be required for suppression of RNA silencing. In this study we discovered that the FRY1 locus also regulates lateral root formation. Compared with the wild type, fry1 mutant seedlings generated significantly fewer lateral roots under normal growth conditions and also exhibited a dramatically reduced sensitivity to auxin in inducing lateral root initiation. Using transgenic plants that overexpress a yeast homolog of FRY1 that possesses only the 3', 5'-bisphosphate nucleotidase activity but not the inositol 1-phosphatase activity, we demonstrated that the lateral root phenotypes in fry1 result from loss of the nucleotidase activity. Furthermore, a T-DNA insertion mutant of another RNA silencing suppressor, XRN4 (but not XRN2 or XRN3), which is an exoribonuclease that is inhibited by the substrate of the FRY1 3', 5'-bisphosphate nucleotidase, exhibits similar lateral root defects. Although fry1 and xrn4 exhibited reduced sensitivity to ethylene, our experiments demonstrated that restoration of ethylene sensitivity in the fry1 mutant is not sufficient to rescue the lateral root phenotypes of fry1. Our results indicate that RNA silencing modulated by FRY1 and XRN4 plays an important role in shaping root architecture.
拟南芥 FIERY1(FRY1)基因座最初被鉴定为应激响应基因表达的负调控因子,后来被证明是抑制 RNA 沉默所必需的。在本研究中,我们发现 FRY1 基因座也调节侧根形成。与野生型相比, fry1 突变体幼苗在正常生长条件下产生的侧根数量明显减少,并且对生长素诱导侧根起始的敏感性也显著降低。使用过表达酵母 FRY1 同源物的转基因植物,该同源物仅具有 3',5'-双磷酸核苷酸酶活性而不具有肌醇 1-磷酸酶活性,我们证明 fry1 中的侧根表型是由于核苷酸酶活性丧失所致。此外,另一种 RNA 沉默抑制剂 XRN4(而不是 XRN2 或 XRN3)的 T-DNA 插入突变体,它是一种外切核酸酶,被 FRY1 3',5'-双磷酸核苷酸酶的底物抑制,表现出类似的侧根缺陷。尽管 fry1 和 xrn4 对乙烯的敏感性降低,但我们的实验表明,在 fry1 突变体中恢复乙烯敏感性不足以挽救 fry1 的侧根表型。我们的结果表明,由 FRY1 和 XRN4 调节的 RNA 沉默在塑造根结构方面起着重要作用。