Arbuscular mycorrhizal fungi alter thymol derivative contents of Inula ensifolia L.

被引:54
作者
Zubek, Szymon [1 ]
Stojakowska, Anna [2 ]
Anielska, Teresa [3 ]
Turnau, Katarzyna [3 ]
机构
[1] Jagiellonian Univ, Mycol Unit, Inst Bot, PL-31512 Krakow, Poland
[2] Polish Acad Sci, Inst Pharmacol, Dept Phytochem, PL-31343 Krakow, Poland
[3] Jagiellonian Univ, Inst Environm Sci, PL-30387 Krakow, Poland
关键词
Arbuscular mycorrhiza; AMF species specificity; JIP test; Narrow-leaved inula; Photosynthetic performance index; Thymol derivatives; CHLOROPHYLL-A FLUORESCENCE; PLANTS; ROOTS; ACCUMULATION; INOCULATION; PERFORMANCE; DEPENDENCY; QUALITY;
D O I
10.1007/s00572-010-0306-6
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Individuals of Inula ensifolia L. (Asteraceae), a valuable xerothermic plant species with potential therapeutic value, were inoculated under laboratory conditions with different strains of arbuscular mycorrhizal fungi (AMF): (1) Glomus intraradices UNIJAG PL-Bot, (2) G. intraradices UNIJAG PL-Kap, (3) Glomus clarum UNIJAG PL13-2, and (4) AMF crude inoculum from natural stands of I. ensifolia. We found AMF species specificity in the stimulation of thymol derivative production in the roots of I. ensifolia. There was an increase in thymol derivative contents in roots after G. clarum inoculation and at the same time the decreased production of these metabolites in the G. intraradices treatments. Moreover, no correlation between the extent of AMF colonization and the effects of the fungal symbionts on the plant was observed. A multilevel analysis of chlorophyll a fluorescence transients (JIP test) permitted an evaluation of plant vitality, expressed in photosynthetic performance index, influenced by the applied AMF strains, which was found to be in good agreement with the results concerning thymol derivative production. The mechanisms by which AMF trigger changes in phytochemical concentration in plant tissues and their consequences for practice are discussed.
引用
收藏
页码:497 / 504
页数:8
相关论文
共 44 条
[1]   Occurrence of arbuscular mycorrhiza in Castanospermum australe A.!Cunn. & C.!Fraser and effects on growth and production of castanospermine [J].
Abu-Zeyad, R ;
Khan, AG ;
Khoo, C .
MYCORRHIZA, 1999, 9 (02) :111-117
[2]   Arbuscular mycorrhizal fungus-promoted accumulation of two new triterpenoids in cucumber roots [J].
Akiyama, K ;
Hayashi, H .
BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2002, 66 (04) :762-769
[3]  
Biró B, 2006, SOIL BIOL, V7, P265
[4]   Effects of three AM fungi on growth, distribution of glandular hairs, and essential oil production in Ocimum basilicum L. var. Genovese [J].
Copetta, Andrea ;
Lingua, Guido ;
Berta, Graziella .
MYCORRHIZA, 2006, 16 (07) :485-494
[5]  
Dzwonko Z, 2008, ACTA SOC BOT POL, V77, P67, DOI 10.5586/asbp.2008.010
[6]  
Feldmann F., 2009, Crop plant resistance to biotic and abiotic factors: current potential and future demands. Proceedings of the 3rd International Symposium on Plant Protection and Plant Health in Europe, Julius Kuhn-Institut, Berlin-Dahlem, Germany, 14-16 May 2009, P507
[7]  
Feldmann F., 2008, Mycorrhiza works: Proceedings of the International Symposium "Mycorrhiza for Plant Vitality" and the Joint Meeting for Working Groups 1-4 of COST Action 870, Hannover, Germany, 3-5 October, 2007, P25
[8]   Stimulation of carotenoid metabolism in arbuscular mycorrhizal roots [J].
Fester, T ;
Schmidt, D ;
Lohse, S ;
Walter, MH ;
Giuliano, G ;
Bramley, PM ;
Fraser, PD ;
Hause, B ;
Strack, D .
PLANTA, 2002, 216 (01) :148-154
[9]   Accumulation of secondary compounds in barley and wheat roots in response to inoculation with an arbuscular mycorrhizal fungus and co-inoculation with rhizosphere bacteria [J].
Fester, T ;
Maier, W ;
Strack, D .
MYCORRHIZA, 1999, 8 (05) :241-246
[10]   Mycorrhizal dependency of some endemic and endangered Hawaiian plant species [J].
Gemma, JN ;
Koske, RE ;
Habte, M .
AMERICAN JOURNAL OF BOTANY, 2002, 89 (02) :337-345