Chien J C, Sussex I M
Department of Plant Biology, University of California, Berkeley 94720, USA.
Plant Physiol. 1996 Aug;111(4):1321-8. doi: 10.1104/pp.111.4.1321.
In wild-type (WT) Columbia and Landsberg erecta ecotypes of Arabidopsis thaliana (L.) Heynh., trichomes are present on the adaxial surfaces of all rosette leaves but are absent from the abaxial surfaces of the first-formed leaves. We have determined that both long-day (LD) photoperiod and gibberellin (GA) stimulate trichome formation. WT plants grown in LD conditions produce the first abaxial trichome on earlier leaves than plants grown in short-day (SD) conditions. Photoperiod sensitivity of abaxial trichome formation on WT plants develops gradually over time, reaching the maximum sensitivity about 24 d after germination. Application of gibberellic acid to WT plants growing in SD conditions accelerates the onset of abaxial trichomes. Conversely, application of 20 to 80 mg L-1 paclobutrazol, a GA biosynthesis inhibitor, to wild-type plants suppresses trichome initiation on the abaxial epidermis. The GA-deficient mutants ga1-5 and ga4-1 and the GA-insensitive mutant gai-1 exhibit delayed onset of abaxial trichomes when grown in LD conditions. The null mutant ga1-3 produces completely glabrous leaves when grown in SD conditions. Application of gibberellic acid to glabrous ga1-3 plants consistently induces earlier formation of trichomes on the adaxial epidermis than on the abaxial epidermis, demonstrating a difference between the adaxial and abaxial surfaces in their response to GA with regard to trichome formation.
在野生型(WT)拟南芥(Arabidopsis thaliana (L.) Heynh.)的哥伦比亚生态型和兰茨贝格直立生态型中,莲座叶的近轴表面均有毛状体,但最早形成的叶片的远轴表面没有毛状体。我们已经确定,长日照(LD)光周期和赤霉素(GA)都能刺激毛状体的形成。与在短日照(SD)条件下生长的植株相比,在长日照条件下生长的野生型植株在更早的叶片上产生第一批远轴毛状体。野生型植株远轴毛状体形成的光周期敏感性随时间逐渐发展,在萌发后约24天达到最大敏感性。对在短日照条件下生长的野生型植株施用赤霉酸可加速远轴毛状体的出现。相反,对野生型植株施用20至80毫克/升的多效唑(一种GA生物合成抑制剂)可抑制远轴表皮上毛状体的起始。GA缺陷型突变体ga1-5和ga4-1以及GA不敏感型突变体gai-1在长日照条件下生长时,远轴毛状体的出现延迟。无效突变体ga1-3在短日照条件下生长时产生完全无毛的叶片。对无毛的ga1-3植株施用赤霉酸,始终诱导近轴表皮上的毛状体比远轴表皮上的毛状体更早形成,这表明近轴表面和远轴表面在对GA的毛状体形成反应方面存在差异。