Nagashima Akitomo, Suzuki Genki, Uehara Yukiko, Saji Kensuke, Furukawa Toshiko, Koshiba Tomokazu, Sekimoto Masayo, Fujioka Shozo, Kuroha Takeshi, Kojima Mikiko, Sakakibara Hitoshi, Fujisawa Noriko, Okada Kiyotaka, Sakai Tatsuya
RIKEN Plant Science Center, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama, Kanagawa 230 0045, Japan.
Plant J. 2008 Feb;53(3):516-29. doi: 10.1111/j.1365-313X.2007.03358.x. Epub 2007 Dec 12.
Photoreceptors, phytochromes and cryptochromes regulate hypocotyl growth under specific conditions, by suppressing negative gravitropism, modulating phototropism and inhibiting elongation. Although these effects seem to be partially caused via the regulation of the phytohormone auxin, the molecular mechanisms underlying this process are still poorly understood. In our present study, we demonstrate that the flabby mutation enhances both phytochrome- and cryptochrome-inducible hypocotyl bending in Arabidopsis. The FLABBY gene encodes the ABC-type auxin transporter, PGP19, and its expression is suppressed by the activation of phytochromes and cryptochromes. Our current results therefore indicate that the phytochromes and cryptochromes have at least two effects upon the tropic responses of the hypocotyls in Arabidopsis: the enhancement of hypocotyl bending through the suppression of PGP19, and a PGP19-independent mechanism that induces hypocotyl bending. By the using an auxin polar transport assay and DR5:GUS expression analysis, we further find that the phytochromes inhibit basipetal auxin transport, and induce the asymmetric distribution of auxin in the hypocotyls. These data suggest that the control of auxin transport by phytochromes and cryptochromes is a critical regulatory component of hypocotyl growth in response to light.
光感受器、光敏色素和隐花色素在特定条件下通过抑制负向重力性、调节向光性和抑制伸长来调节下胚轴生长。尽管这些效应似乎部分是通过植物激素生长素的调节引起的,但这一过程背后的分子机制仍知之甚少。在我们目前的研究中,我们证明松弛突变增强了拟南芥中光敏色素和隐花色素诱导的下胚轴弯曲。FLABBY基因编码ABC型生长素转运蛋白PGP19,其表达受到光敏色素和隐花色素激活的抑制。因此,我们目前的结果表明,光敏色素和隐花色素对拟南芥下胚轴的向性反应至少有两种影响:通过抑制PGP19增强下胚轴弯曲,以及一种不依赖PGP19的诱导下胚轴弯曲的机制。通过使用生长素极性运输测定和DR5:GUS表达分析,我们进一步发现光敏色素抑制生长素的向基运输,并诱导生长素在下胚轴中的不对称分布。这些数据表明,光敏色素和隐花色素对生长素运输的控制是下胚轴对光响应生长的关键调节成分。