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Analysis of Phytohormone profiles during male and female cone initiation and early differentiation in long-shoot buds of Lodgepole pine

机译:红松长枝芽的雄性和雌性锥体萌发和早期分化过程中的植物激素谱分析

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摘要

In lodgepole pine (Pinus contorta Dougl. ex Loud. var. latifolia Engelm), cone initiation and gender differentiation are site-specific in long-shoot buds with female cones in the distal portion and male cones in the proximal portion. By using high performance liquid chromatography-electrospray ionization tandem mass spectrometry (HPLC-ESI-MS/MS) in multiple reaction monitoring (MRM) mode, cytokinins, indole-3-acetic acid (IAA), gibberellins (GAs), abscisic acid (ABA) and their selected metabolites, were investigated in developing long-shoot buds from multiple genotypes. Spatially, higher concentrations of trans-zeatin riboside (t-ZR) and dihydrozeatin (dhZR) existed in the distal parts of long-shoot buds, whereas concentrations of isopentenyl adenosine (iPA), IAA, GA24, ABA, ABA glucose ester (ABA-GE) and phaseic acid (PA) were higher in the proximal parts in all investigated genotypes. In long-shoot buds of genotypes with a history of high female cone yield, concentrations of t-ZR and the ratio of zeatin-type to isopentenyl-type cytokinins were higher in the entire buds, whereas dhZR or IAA was higher either in the distal or in the proximal part respectively. In low female cone yielding genotypes, concentrations of c-ZR, iPA, ABA-GE and PA were higher in both of the parts, whereas ABA was higher mainly in the distal part with higher GA24 in the proximal part. Temporally, concentrations of several hormone-related compounds showed obvious changes in late June and late July, prior to male and female cone bud differentiation. This study reveals that the local hormonal status in a long-shoot bud at specific developmental stages may play an important role in gender determination and cone yield.
机译:在寄宿松(Pinus contorta Dougl。ex Loud。var。latifolia Engelm)中,视锥细胞的始发和性别分化在长芽芽中是特定于位点的,其远端为雌性,近端为雄性。通过在多反应监测(MRM)模式下使用高效液相色谱-电喷雾电离串联质谱(HPLC-ESI-MS / MS),细胞分裂素,吲哚-3-乙酸(IAA),赤霉素(GAs),脱落酸(在从多种基因型发育长芽的过程中,对ABA及其代谢物进行了研究。在空间上,长茎芽的远端存在较高浓度的反式玉米蛋白核苷(t-ZR)和二氢玉米蛋白(dhZR),而异戊烯基腺苷(iPA),IAA,GA24,ABA,ABA葡萄糖酯(ABA)的浓度较高-GE)和相酸(PA)在所有调查的基因型中均在近端较高。在雌性锥果产量高的基因型的长芽芽中,整个芽中t-ZR的浓度和玉米蛋白型与异戊烯基型细胞分裂素的比率较高,而远端的dhZR或IAA较高或分别在近端。在雌性锥果低产基因型中,c-ZR,iPA,ABA-GE和PA的浓度在两个部位均较高,而ABA则主要在远端部位较高,而近端GA24较高。暂时地,几种雌激素相关化合物的浓度在雄性和雌性锥芽分化之前的六月下旬和七月下旬显示出明显的变化。这项研究表明,在特定发育阶段,长茎芽中的局部激素状态可能在性别决定和视锥细胞产量中起重要作用。

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