首页> 外文期刊>Acta Agrobotanica >Dehydrocostus lactone, a naturally occurring polar auxin transport inhibitor, inhibits epicotyl growth by interacting with auxin in etiolated Pisum sativum seedlings
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Dehydrocostus lactone, a naturally occurring polar auxin transport inhibitor, inhibits epicotyl growth by interacting with auxin in etiolated Pisum sativum seedlings

机译:天然存在的极性植物生长素转运抑制剂脱氢肋骨内酯通过与黄化豌豆幼苗中的植物生长素相互作用来抑制上胚轴生长

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We have isolated germacranolide-type sesquiterpene lactones with an α-methylene-γ-lactone moiety, dehydrocostus lactone (DHCL), costunolide, santamarine, and a novel compound denoted artabolide [3-hydroxy-4,6,7(H)-germacra-1(10),11(13)-dien-6,12-olide] from oriental medicinal Asteraceae plants as novel naturally occurring inhibitors of polar auxin transport detected by the radish hypocotyl bioassay. To investigate the mode of action of natural sesquiterpene lactones on the inhibition of polar auxin transport as well as its relation to the growth of seedlings, the function of DHCL on growth and auxin dynamics in etiolated pea seedlings was studied intensively. DHCL reduced polar auxin transport in a dose-dependent manner together with the inhibition of the accumulation of mRNA of PsAUX1 and PsPIN1 genes encoding influx and efflux carrier proteins of auxin, respectively. DHCL applied to the apical hook region as a lanolin paste substantially inhibited elongation growth in the subapical region of epicotyls in intact etiolated pea seedlings, coupled with a significant reduction of endogenous levels of indole-3-acetic acid (IAA). DHCL also revealed the inhibition of IAA-induced cell elongation in etiolated pea epicotyl segments by affecting IAA-induced changes in the mechanical properties of cell walls. These facts suggest that germacranolide-type sesquiterpene lactones with an α-methylene-γ-lactone moiety affect the expression of PsAUX1 and PsPINs genes, and then inhibit polar auxin transport and reduce endogenous levels of IAA necessary for stem growth in etiolated pea seedlings. These compounds are also suggested to show the inhibitory effects on auxin action in pea stem growth.
机译:我们已分离出具有α-亚甲基-γ-内酯部分的胚芽戊内酯型倍半萜内酯,脱氢肋骨内酯(DHCL),木香内酯,三mar烯,以及一种名为artabolide [3-hydroxy-4,6,7(H)-germacra的新型化合物-1(10),11(13)-dien-6,12-olide]来自东方药用菊科植物,是通过萝卜下胚轴生物测定法检测到的新型自然生长的极性生长素转运抑制剂。为了研究天然倍半萜烯内酯对极性植物生长素运输的抑制作用及其与幼苗生长的关系,深入研究了DHCL对黄化豌豆幼苗生长和植物生长素动力学的影响。 DHCL以剂量依赖的方式减少了极性植物生长素的运输,同时抑制了分别编码植物生长素流入和流出载体蛋白的PsAUX1和PsPIN1基因的mRNA积累。 DHCL以羊毛脂糊剂的形式应用于根尖钩区域,基本上抑制了完整的黄化豌豆幼苗中表皮基部的亚尖区域的伸长生长,并显着降低了内源性吲哚-3-乙酸(IAA)含量。 DHCL还揭示了通过影响IAA诱导的细胞壁机械性能变化,抑制了IAA诱导的黄化豌豆上胚轴节段中的细胞伸长。这些事实表明,具有α-亚甲基-γ-内酯部分的胚芽烷内酯型倍半萜内酯会影响PsAUX1和PsPINs基因的表达,进而抑制植物生长素的极性运输并降低内源水平的IAA,这对于黄化豌豆幼苗的茎生长是必需的。还建议这些化合物在豌豆茎生长中显示对生长素作用的抑制作用。

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