Kong Lisheng, Abrams Suzanne R, Owen Stacey J, Van Niejenhuis Annette, Von Aderkas Patrick
Centre for Forest Biology, Department of Biology, University of Victoria, 3800 Finnerty Road, Victoria, BC V8W 3N5, Canada.
Tree Physiol. 2009 Feb;29(2):183-90. doi: 10.1093/treephys/tpn009. Epub 2008 Dec 3.
Changes in concentrations of several endogenous phytohormones and metabolites were analyzed in the long shoots of nine genotypes of coastal Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco var. menziesii) at five developmental stages: (1) closed buds, (2) flushing buds, (3) rapidly elongating shoots, (4) growing shoots and (5) near full-length shoots during one growing season. When averaged across genotypes, indole-3-acetic acid (IAA) concentration was high at stages 1 and 3. The only pattern that correlated with cone productivity was the one that was unique to IAA, in which high concentrations at stages 3 and 4 were found in all genotypes with high female cone productivity. Concentrations of isopentenyl adenosine (iPA) decreased and zeatin riboside (ZR) concentrations increased as the buds initiated and differentiated; ZR was 30 and 28 ng g(-1) dry weight (DW) at stages 1 and 4, respectively, before increasing to 166 ng g(-1) DW at stage 5. Isopentenyl adenosine peaked at 92 ng g(-1) DW at stage 2 and declined to low concentrations at stages 4 and 5. Zeatin-O-glucoside was 30 ng g(-1) DW at stage 1, declined at stages 2 and 3 and increased at stages 4 and 5. High abscisic acid (ABA) concentrations were positively correlated with rapid shoot elongation (stages 1 and 2), but as growth slowed and terminated, ABA concentrations decreased. Abscisic acid was 7 microg g(-1) DW at stage 1, increased to 13 microg g(-1) DW at stage 2 and then declined. The glucosyl ester (GE) of ABA decreased rapidly in early summer, and increased inversely with an increase in ABA. Between stages 1 and 2, ABA-GE decreased from 10 to 0.2 microg g(-1) DW and then increased. Of the ABA catabolites studied, 7'-hydroxy-ABA was about 2 microg g(-1) DW at stage 1, declined at stages 2 and 3 and increased at stages 4 and 5; phaseic acid concentrations were low at all stages, whereas dihydrophaseic acid was detected only at stages 4 and 5.
在一个生长季节中,对9种海岸花旗松(Pseudotsuga menziesii (Mirb.) Franco var. menziesii)基因型的长枝在5个发育阶段的几种内源植物激素和代谢物浓度变化进行了分析:(1) 闭合芽,(2) 萌动芽,(3) 快速伸长的枝条,(4) 生长中的枝条,(5) 接近全长的枝条。当对各基因型进行平均时,吲哚 - 3 - 乙酸(IAA)浓度在阶段1和阶段3较高。与球果产量相关的唯一模式是IAA特有的模式,即在所有具有高雌球果产量的基因型中,阶段3和阶段4的浓度较高。随着芽的启动和分化,异戊烯基腺苷(iPA)浓度降低,玉米素核苷(ZR)浓度升高;ZR在阶段1和阶段4分别为30和28 ng g(-1) 干重(DW),然后在阶段5增加到166 ng g(-1) DW。异戊烯基腺苷在阶段2达到峰值92 ng g(-1) DW,并在阶段4和阶段5降至低浓度。玉米素 - O - 葡萄糖苷在阶段1为30 ng g(-1) DW,在阶段2和阶段3下降,在阶段4和阶段5增加。高脱落酸(ABA)浓度与枝条快速伸长(阶段1和阶段2)呈正相关,但随着生长减缓并终止,ABA浓度降低。脱落酸在阶段1为7 μg g(-1) DW,在阶段2增加到13 μg g(-1) DW,然后下降。ABA的葡萄糖酯(GE)在初夏迅速下降,并与ABA的增加呈反比。在阶段1和阶段2之间,ABA - GE从10降至0.2 μg g(-1) DW,然后增加。在所研究的ABA分解代谢物中,7'-羟基 - ABA在阶段1约为2 μg g(-1) DW,在阶段2和阶段3下降,在阶段4和阶段5增加;在所有阶段,脱落酸浓度都很低,而二氢脱落酸仅在阶段4和阶段5检测到。