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Pyridine 24-Dicarboxylic Acid Suppresses Tomato Seedling Growth

机译:吡啶24-二羧酸抑制番茄幼苗的生长

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摘要

Pyridine 2,4-dicarboxylic acid is a structural analog of 2-oxoglutarate and is known to inhibit 2-oxoglutare-dependent dioxygenases. The effect of this inhibitor in tomato seedlings grown in MS media supplied with various concentrations of PDCA was investigated, resulting in shorter roots and hypocotyls in a dose-dependent manner. The partial inhibition of growth in roots was more drastic compared to hypocotyls and was attributed to a decrease in the elongation of root and hypocotyl cells. Concentrations of 100 and 250 μM of PDCA decreased hydroxyproline content in roots while only the 250 μM treatment reduced the hydroxyproline content in shoots. Seedlings treated with 100 μM PDCA exhibited enhanced growth of hypocotyl and cotyledon cells and higher hydroxyproline content resulting in cotyledons with greater surface area. However, no alterations in hypocotyl length were observed. Prolyl 4 hydroxylases (P4Hs) are involved in the O-glycosylation of AGPs and were also highly expressed during seedling growth. Moreover PDCA induced a decrease in the accumulation of HRGPs and particularly in AGPs-bound epitopes in a dose dependent-manner while more drastic reduction were observed in roots compared to shoots. In addition, bulged root epidermal cells were observed at the high concentration of 250 μM which is characteristic of root tissues with glycosylation defects. These results indicate that PDCA induced pleiotropic effects during seedling growth while further studies are required to better investigate the physiological significance of this 2-oxoglutarate analog. This pharmacological approach might be used as a tool to better understand the physiological significance of HRGPs and probably P4Hs in various growth and developmental programs in plants.
机译:吡啶2,4-二羧酸是2-氧代戊二酸的结构类似物,已知可抑制2-氧代戊二酸依赖性双加氧酶。研究了这种抑制剂对在以各种​​浓度PDCA提供的MS培养基中生长的番茄幼苗的作用,从而以剂量依赖的方式导致了更短的根和下胚轴。与下胚轴相比,对根部生长的部分抑制作用更为强烈,这归因于根和下胚轴细胞伸长率的降低。浓度为100和250μM的PDCA会降低根中羟脯氨酸的含量,而只有250μM的处理会降低芽中羟脯氨酸的含量。用100μMPDCA处理的幼苗表现出下胚轴和子叶细胞的生长增强,并且羟脯氨酸含量更高,从而导致子叶具有更大的表面积。但是,未观察到下胚轴长度的变化。脯氨酰4羟化酶(P4Hs)参与AGP的O-糖基化,并且在幼苗生长过程中也高度表达。此外,PDCA诱导HRGPs的积累减少,尤其是与AGPs结合的抗原决定簇以剂量依赖性方式减少,而与芽相比,在根部观察到更大的减少。另外,在250μM的高浓度下观察到膨大的根表皮细胞,这是具有糖基化缺陷的根组织的特征。这些结果表明PDCA诱导幼苗生长过程中的多效性作用,而需要进一步研究以更好地研究这种2-氧戊二酸类似物的生理意义。这种药理学方法可以用作更好地了解HRGP以及植物中各种生长发育计划中P4H的生理意义的工具。

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