Institute of Botany, Czech Academy of Sciences, Department of Mycorrhizal Symbioses, Zámek 1, 252 43 Průhonice - Chotobuz, Czech Republic.
Institute of Botany, Czech Academy of Sciences, Department of Mycorrhizal Symbioses, Zámek 1, 252 43 Průhonice - Chotobuz, Czech Republic.
Plant Physiol Biochem. 2017 Nov;120:120-131. doi: 10.1016/j.plaphy.2017.09.016. Epub 2017 Sep 23.
Aim of this study was to investigate main effects and interactions between symbiotic fungi and the cytokinin-like growth regulator thidiazuron (TDZ) in Miscanthus × giganteus. The arbuscular mycorrhiza fungus Rhizophagus intraradices (AMF) and the endophyte Piriformospora indica (PI) were chosen as model symbionts. The fungal inoculants and TDZ had no significant effect on plant growth but modulated phytohormone levels in the leaves. TDZ induced accumulation of salicylic acid in controls, but not in plants inoculated with fungi. Leaf concentrations of abscisic acid (ABA) derivatives, auxin (indole-3-acetic acid) precursors and catabolites and numerous cytokinins were increased by R. intraradices but lowered by P. indica. TDZ raised concentrations of ABA compounds, the non-indole auxin phenylacetic acid, jasmonate and some cytokinins, but decreased cis-zeatin and N-(Δ-isopentenyl)adenine levels. Inoculation with AMF reduced abundance of endogenous clampless endophytes. TDZ application strongly reduced formation of arbuscular mycorrhiza and increased occurrence of clamped mycelia (i.e. basidiomycetous endophytes). Our study provides a thorough outline of the phytohormone homeostasis under the combined influence of beneficial inoculants and a growth regulator, highlighting the necessity to study their interaction in the whole plant-microbial context.
本研究旨在探讨共生真菌与细胞分裂素类似物噻苯隆(TDZ)在芒属植物杂种间相互作用的主要效应。选用丛枝菌根真菌(AMF)根内球囊霉(Rhizophagus intraradices)和内生真菌梨形拟盘多毛孢(Piriformospora indica)作为模式共生体。真菌接种剂和 TDZ 对植物生长没有显著影响,但调节了叶片中的植物激素水平。TDZ 在对照植物中诱导水杨酸的积累,但在接种真菌的植物中没有。ABA 衍生物、生长素(吲哚-3-乙酸)前体和代谢物以及多种细胞分裂素的叶浓度被 R. intraradices 增加,但被 P. indica 降低。TDZ 提高了 ABA 化合物、非吲哚生长素苯乙酸、茉莉酸和一些细胞分裂素的浓度,但降低了顺式玉米素和 N-(Δ-异戊烯基)腺嘌呤的水平。AMF 的接种减少了内生无夹闭菌的丰度。TDZ 的应用强烈减少了丛枝菌根的形成,并增加了夹闭菌丝(即担子菌内生菌)的发生。本研究全面概述了有益接种剂和生长调节剂共同作用下的植物激素稳态,强调了在整个植物-微生物背景下研究它们相互作用的必要性。