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PMID: 19899999 Published · ppublish English Journal Article

Toxicity of endophyte-infected tall fescue alkaloids and grass metabolites on Pratylenchus scribneri.

Phytopathology ·Vol. 99 ·No. 12 ·2009-12-00 ·Pages 1336-45

Bacetty AA, Snook ME, Glenn AE, Noe JP, Hill N, Culbreath A, Timper P, Nagabhyru P, Bacon CW

Abstract

ABSTRACT Neotyphodium coenophialum, an endophytic fungus associated with tall fescue grass, enhances host fitness and imparts pest resistance. This symbiotum is implicated in the reduction of stresses, including plant-parasitic nematodes. To substantiate this implication, toxicological effects of root extracts, polyphenolic fraction, ergot, and loline alkaloids from endophyte-infected tall fescue were investigated using Pratylenchus scribneri, a nematode pest of tall fescue. In vitro bioassays and greenhouse studies were used as tests for effects of root fractions and compounds on motility and mortality of this lesion nematode. Greenhouse studies revealed that endophyte-infected tall fescue grasses are essentially nonhosts to P. scribneri, with root populations averaging 3 to 17 nematodes/pot, compared with 4,866 and 8,450 nematodes/pot for noninfected grasses. The in vitro assay indicated that root extracts from infected tall fescues were nematistatic. Polyphenols identified in extracts included chlorogenic acid, 3,5-dicaffeoylquinic acids, caffeic acid, and two unidentified compounds, but these were not correlated with endophyte status, qualitatively or quantitatively. Tests of several ergot alkaloids revealed that ergovaline and alpha-ergocryptine were nematicidal at 5 and 50 microg/ml, respectively, while ergocornine and ergonovine were nematistatic at most concentrations. Loline (N-formylloline), the pyrrolizidine alkaloid tested, was nematicidal (50 to 200 microg/ml). The ecological benefits of the metabolites tested here should assist in defining their role in deterring this nematode species while offering some probable mechanisms of action against plant-parasitic nematodes in general.

MeSH Terms
Alkaloids/chemistry,pharmacology Animals Chromatography, High Pressure Liquid Ergot Alkaloids/chemistry,pharmacology Festuca/chemistry,microbiology,parasitology Flavonoids/chemistry,pharmacology Neotyphodium/growth & development Phenols/chemistry,pharmacology Plant Extracts/chemistry,pharmacology Plant Roots/chemistry,microbiology,parasitology Polyphenols Symbiosis/physiology Tylenchida/drug effects
Chemicals
Alkaloids Ergot Alkaloids Flavonoids Phenols Plant Extracts Polyphenols loline
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Bacetty A A
United States Department of Agriculture-Agricultural Reserach Services (USDA-ARS), Toxicology and Mycotoxin Research Unit, Richard Russell Center, Athens, GA, USA.
Snook M E
Glenn A E
Noe J P
Hill N
Culbreath A
Timper P
Nagabhyru P
Bacon C W
Article Info
Journal
Phytopathology
Abbr.
Phytopathology
ISSN
0031-949X
Published
2009-12-00
Pages
1336-45
Language
English
Region
United States
NLM ID
9427222
Subset
IM
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