Barker Richard, Fernandez Garcia Maria Nieves, Powers Stephen J, Vaughan Simon, Bennett Malcolm J, Phillips Andrew L, Thomas Stephen G, Hedden Peter
Rothamsted Research, Harpenden, Hertfordshire,, AL5 2JQ, UK.
Plant & Crop Sciences, School of Biosciences, University of Nottingham, Sutton Bonington,, LE12 5RD, UK.
New Phytol. 2021 Feb;229(3):1521-1534. doi: 10.1111/nph.16967. Epub 2020 Oct 29.
Root elongation depends on the action of the gibberellin (GA) growth hormones, which promote cell production in the root meristem and cell expansion in the elongation zone. Sites of GA biosynthesis in the roots of 7-d-old Arabidopsis thaliana seedlings were investigated using tissue-specific GA inactivation in wild-type (Col-0) or rescue of GA-deficient dwarf mutants. Tissue-specific GA depletion was achieved by ectopic expression of the GA-inactivating enzyme AtGA2ox2, which is specific for C -GAs, and AtGA2ox7, which acts on C -GA precursors. In addition, tissue-specific rescue of ga20ox triple and ga3ox double mutants was shown. Furthermore, GUS reporter lines for major GA20ox, GA3ox and GA2ox genes were used to observe their expression domains in the root. The effects of expressing these constructs on the lengths of the root apical meristem and cortical cells in the elongation zone confirmed that roots are autonomous for GA biosynthesis, which occurs in multiple tissues, with the endodermis a major site of synthesis. The results are consistent with the early stages of GA biosynthesis within the root occurring in the meristematic region and indicate that the penultimate step of GA biosynthesis, GA 20-oxidation, is required in both the meristem and elongation zone.
根的伸长依赖于赤霉素(GA)生长激素的作用,赤霉素可促进根分生组织中的细胞产生以及伸长区中的细胞扩张。利用野生型(Col-0)中组织特异性的GA失活或GA缺陷型矮化突变体的拯救,研究了7日龄拟南芥幼苗根中GA生物合成的位点。通过异位表达对C-赤霉素具有特异性的GA失活酶AtGA2ox2和作用于C-赤霉素前体的AtGA2ox7,实现了组织特异性的GA消耗。此外,还展示了对ga20ox三突变体和ga3ox双突变体的组织特异性拯救。此外,利用主要GA20ox、GA3ox和GA2ox基因的GUS报告株系观察它们在根中的表达域。表达这些构建体对根顶端分生组织长度和伸长区皮层细胞长度的影响证实,根在GA生物合成方面具有自主性,GA生物合成发生在多个组织中,内皮层是主要的合成位点。这些结果与根中GA生物合成的早期阶段发生在分生组织区域一致,并表明GA生物合成的倒数第二步,即GA 20-氧化,在分生组织和伸长区均是必需的。