Rahman A, Amakawa T, Goto N, Tsurumi S
Graduate School of Science and Technology, Kobe University, Nada-ku, Kobe, 657-8501 Japan.
Plant Cell Physiol. 2001 Mar;42(3):301-7. doi: 10.1093/pcp/pce035.
The requirement of auxin for the ethylene-mediated growth response in the root of Arabidopsis thaliana seedlings was investigated using two ethylene-resistant mutants, aux1-7 and eir1-1, whose roots have been shown to have a defect in the auxin influx and efflux carriers, respectively. A 50% inhibition of growth (I(50)) was achieved with 0.84 microl liter(-1) ethylene in wild-type roots, but 71.3 microl liter( -1) ethylene was required to induce I(50) in eir1-1 roots. In aux1-7 roots, I(50) was not obtained even at 1,000 microl liter(-1) ethylene. By contrast, in the presence of 10 nM 1-naphthaleneacetic acid (NAA), the concentrations of ethylene required to induce I(50) in eir1-1 and aux1-7 roots were greatly reduced nearly to the level required in wild-type roots. Since the action of NAA to restore the ethylene response in aux1-7 roots was not replaced by IAA, an increase in the intracellular level of auxin is likely to be the cause for the restoration of ethylene response. NAA at 10 nM did not inhibit root growth when applied solely, but it was the optimum concentration to recover the ethylene response in the mutant roots. These results suggest that auxin is a positive regulator for ethylene-induced inhibition in root elongation.
利用两个乙烯抗性突变体aux1 - 7和eir1 - 1,研究了拟南芥幼苗根中生长素对乙烯介导的生长反应的需求,这两个突变体的根分别在生长素流入和流出载体方面存在缺陷。野生型根中,0.84微升/升(-1)的乙烯可实现50%的生长抑制(I(50)),但eir1 - 1根中诱导I(50)需要71.3微升/升(-1)的乙烯。在aux1 - 7根中,即使在1000微升/升(-1)的乙烯浓度下也未获得I(50)。相比之下,在存在10 nM 1 - 萘乙酸(NAA)的情况下,eir1 - 1和aux1 - 7根中诱导I(50)所需的乙烯浓度大大降低,几乎降至野生型根所需的水平。由于NAA恢复aux1 - 7根中乙烯反应的作用不能被IAA替代,生长素细胞内水平的增加可能是乙烯反应恢复的原因。单独施用10 nM的NAA时不抑制根生长,但它是恢复突变体根中乙烯反应的最佳浓度。这些结果表明,生长素是乙烯诱导根伸长抑制的正调节因子。