Mucciarelli Marco, Scannerini Silvano, Bertea Cinzia, Maffei Massimo
Department of Veterinary Morphophysiology, University of Turin, Via Leonardo da Vinci 44-10095 Grugliasco (To), Italy.
Department of Plant Biology, University of Turin, Viale P.A. Mattioli 25-10125 Torino, Italy.
New Phytol. 2003 Jun;158(3):579-591. doi: 10.1046/j.1469-8137.2003.00762.x.
• Here peppermint growth and terpene production of in vitro generated plants (Mentha piperita) in response to inoculation with a leaf fungal endophyte were characterized. • Peppermint plants were studied by means of morphometric, biochemical and image analysis, employing both in vitro and in pot cultures. Leaf essential oils were analysed by gascromatography-mass spectrometry. • The endophyte induced profound effects on the growth of peppermint, which responded with taller plants bearing more expanded leaves. The observed increase of leaf dry matter over leaf area suggested a real improvement of peppermint metabolic and photosynthetic apparatus. Root architecture was of the herring-bone type, showing greater dry biomass percentage over the total. A sustained lowering of (+)-menthofuran and an increase of (+)-menthol percentage concentrations were found in plants from both in vitro and pot cultures. • The study represents the first report on specialized endophytic fungi in peppermint green tissues and highlights some of the principal morphological and biochemical aspects of this mutualism. Effects exerted on plant growth and essential oil production in peppermint suggest further biotechnological applications.
• 本研究对体外培养的薄荷(Mentha piperita)植株接种叶部真菌内生菌后薄荷的生长及萜类化合物生成情况进行了表征。
• 采用形态测量、生化及图像分析方法,对体外培养及盆栽的薄荷植株进行了研究。通过气相色谱 - 质谱联用仪分析叶精油。
• 内生菌对薄荷生长产生了深远影响,接种后的薄荷植株更高,叶片展开度更大。叶干物质与叶面积之比增加,表明薄荷的代谢和光合器官确实得到了改善。根系结构呈人字形,根干生物量占总生物量的比例更高。体外培养和盆栽的植株中均发现(+)- 薄荷呋喃含量持续降低,(+)- 薄荷醇含量百分比增加。
• 该研究是关于薄荷绿色组织中特殊内生真菌的首次报道,突出了这种共生关系的一些主要形态学和生化方面。内生菌对薄荷生长和精油生产的影响表明其具有进一步的生物技术应用潜力。