Trichome-specific and developmentally regulated biosynthesis of nepetalactones in leaves of cultivated Nepeta rtanjensis plants

被引:19
作者
Anicic, Neda [1 ]
Matekalo, Dragana [1 ]
Skoric, Marijana [1 ]
Pecinar, Ilinka [2 ]
Brkusanin, Milos [3 ]
Zivkovic, Jasmina Nestorovic [1 ]
Dmitrovic, Slavica [1 ]
Stevanovic, Zora Dajic [2 ]
Schulz, Hartwig [4 ]
Misic, Danijela [1 ]
机构
[1] Univ Belgrade, Inst Biol Res Sinisa Stankovic, Bulevar Despota Stefana 142, Belgrade 11060, Serbia
[2] Univ Belgrade, Fac Agr, Nemanjina 6, Belgrade 11000, Serbia
[3] Univ Belgrade, Fac Biol, Studentski Trg 16, Belgrade 11060, Serbia
[4] Julius Kuhn Inst, Inst Ecol Chem Plant Anal & Stored Prod Protect, Konigin Luise Str 19, D-14195 Berlin, Germany
关键词
Nepeta rtanjensis; Cultivation; Iridoid synthase; Nepetalactone; Dehydronepetalactone; Glandular trichomes; PELTATE GLANDULAR TRICHOMES; ESSENTIAL OIL; ANTIMICROBIAL ACTIVITY; RAMAN-SPECTROSCOPY; LAMIACEAE; RACEMOSA; EXTRACTS; LEAF; OXIDOREDUCTASE; CONSTITUENTS;
D O I
10.1016/j.indcrop.2018.03.019
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Nepetalactones are accumulated as the main secondary metabolites in the majority of Nepeta species; however, their biosynthetic pathway remains to a great extent unknown, as well as their relationship to the overall physiology of these plants. Nepetalactones most certainly arise through general iridoid biosynthetic pathway leading to nepetalactol, a common precursor of all plant-derived iridoids that is formed in a reaction catalysed by iridoid synthase (IS, EC 1.3.1.99). In this paper, we aimed to localize the sites of nepetalactone biosynthesis and accumulation by comparatively analysing the nepetalactones content and the expression of putative iridoid synthase (NrIS) in leaves of Nepeta rtanjensis Diklic & Milojevic, a trans,cis-nepetalactone and dehydronepetalactone rich species. Another aim was to give an insight into the developmental regulation of nepetalactone biosynthesis in leaves of cultivated N. rtanjensis plants. Knowledge on the spatial-, and developmental regulation of nepetalactone metabolism could greatly benefit potential growers by enabling them to adequately plan and manage plant cultivation, harvesting, and handling and thus increase yield of bioactive compounds. The expression profile of putative NrIS1 is highly correlated with trans,cis-nepetalactone and dehydronepetalactone content/ratio in leaves of different developmental stages. The results strongly indicate that developmental regulation of nepetalactone biosynthesis in leaves resides largely at the level of gene expression, and suggest an important role of NrISI. Young leaves exhibited the most intensive nepetalactone biosynthesis and accumulation, but also its conversion to dehydronepetalactone. Thus, the pattern of NL accumulation in leaves can be explained by both the rate of its biosynthesis and metabolic degradation. The gene expression patterns of NrIS1 and NrIS2 transcripts in trichomes and abraded leaves revealed trichomes as the main site of their activity. UHPLC/qqqMS profiling of nepetalactones in trichomes and abraded leaves, complemented with Raman spectroscopy and dichloromethane dipping experiment, supported glandular trichome-specific localization of nepetalactone biosynthesis and accumulation.
引用
收藏
页码:347 / 358
页数:12
相关论文
共 82 条
[21]   The aphid sex pheromone cyclopentanoids: Synthesis in the elucidation of structure and biosynthetic pathways [J].
Dawson, GW ;
Pickett, JA ;
Smiley, DWM .
BIOORGANIC & MEDICINAL CHEMISTRY, 1996, 4 (03) :351-361
[22]  
Dmitrovic S., 2015, ACTA PHYSIOL PLANT, V37, P1
[23]  
Duke M.V., 2014, INT J PLANT SCI, V155, P365
[24]   Chemical Constituents and Biological Activities of Nepeta Species [J].
Formisano, Carmen ;
Rigano, Daniela ;
Senatore, Felice .
CHEMISTRY & BIODIVERSITY, 2011, 8 (10) :1783-1818
[25]   BIOCHEMICAL AND HISTOCHEMICAL-LOCALIZATION OF MONOTERPENE BIOSYNTHESIS IN THE GLANDULAR TRICHOMES OF SPEARMINT (MENTHA-SPICATA) [J].
GERSHENZON, J ;
MAFFEI, M ;
CROTEAU, R .
PLANT PHYSIOLOGY, 1989, 89 (04) :1351-1357
[26]   An alternative route to cyclic terpenes by reductive cyclization in iridoid biosynthesis [J].
Geu-Flores, Fernando ;
Sherden, Nathaniel H. ;
Courdavault, Vincent ;
Burlat, Vincent ;
Glenn, Weslee S. ;
Wu, Cen ;
Nims, Ezekiel ;
Cui, Yuehua ;
O'Connor, Sarah E. .
NATURE, 2012, 492 (7427) :138-+
[27]   The potential of Raman microscopy and Raman imaging in plant research [J].
Gierlinger, Notburga ;
Schwanninger, Manfred .
SPECTROSCOPY-AN INTERNATIONAL JOURNAL, 2007, 21 (02) :69-89
[28]  
Gklnls G., 2003, Z NATURFORSCH C, V58, P681
[29]   APHID DETERRENCE BY GLUCOSE ESTERS IN GLANDULAR TRICHOME EXUDATE OF THE WILD TOMATO, LYCOPERSICON-PENNELLII [J].
GOFFREDA, JC ;
MUTSCHLER, MA ;
AVE, DA ;
TINGEY, WM ;
STEFFENS, JC .
JOURNAL OF CHEMICAL ECOLOGY, 1989, 15 (07) :2135-2147
[30]   Antifungal activity of Nepeta rtanjensis essential oil [J].
Gribic, Milica Ljaljevic ;
Stupar, Milos ;
Vukojevic, Jelena ;
Sokovic, Marina ;
Misic, Danijela ;
Grubisic, Dragoljub ;
Ristic, Mihailo .
JOURNAL OF THE SERBIAN CHEMICAL SOCIETY, 2008, 73 (10) :961-965