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Assessment of tree-associated atypical myopathy risk factors in Acer pseudoplatanus (sycamore) seeds and leaves.

作者信息

González-Medina Sonia, Hyde Carolyn, Chang Yu-Mei, Piercy Richard J

机构信息

Comparative Neuromuscular Diseases Laboratory, Department of Clinical Science and Services, The Royal Veterinary College, London, UK.

Bio-Analysis Centre, London, UK.

出版信息

Equine Vet J. 2025 Nov;57(6):1656-1665. doi: 10.1111/evj.14475. Epub 2025 Jan 25.

DOI:10.1111/evj.14475
PMID:39865342
Abstract

BACKGROUND

Sycamore tree-derived hypoglycin A (HGA) toxin causes atypical myopathy (AM), an acute, equine pasture-associated rhabdomyolysis but incidence fluctuates.

OBJECTIVES

Investigate whether tree or environmental factors influence HGA concentration in sycamore material and are associated with AM relative risk.

STUDY DESIGN

Retrospective and experimental prospective study.

METHODS

UK sycamore population, seed production and AM incidence data were obtained. HGA concentration was measured in seeds from trees from 10 different central UK locations. The effect of tar spot infection, seed maturity, tree trunk girth, location (urban/countryside), AM cases within 130 m, soil type, facing direction of seeds on the tree and year on seed HGA concentration was examined. HGA concentration was compared in whole and homogenated seeds stored in different ways.

RESULTS

HGA concentration in sycamore seeds was not associated with tree tar spot infection, location, trunk girth, seed weight or branch-facing direction but HGA concentration in sycamore seeds varied significantly and in parallel year on year in the same trees. Trees in the same vicinity tended to have similar HGA concentrations in their seeds when compared with those from farther afield. Seed production estimates were positively correlated with regional AM case incidence (τb = 0.3; p = 0.007). HGA sycamore seed concentration remained stable as seeds matured, but HGA declined in leaves as they wilted in autumn. Warmer and wet storage resulted in higher HGA concentrations in seed homogenates but not in whole seeds. HGA was detected in water containing sycamore seeds for 48 h.

MAIN LIMITATIONS

Lack of accurate weather data; sampling restricted to central England.

CONCLUSIONS

Tree factors that were investigated did not affect HGA concentration in sycamore seeds but HGA concentrations varied year on year. AM incidence is related to seed production; conditions that mimic browsing and ingestion increased seed HGA concentration. HGA toxicity could occur from contaminated water sources.

摘要

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