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Protein association of β-N-methylamino-L-alanine in Triticum aestivum via irrigation.

作者信息

Contardo-Jara Valeska, Schwanemann Torsten, Esterhuizen-Londt Maranda, Pflugmacher Stephan

机构信息

a Chair of Ecological Impact Research and Ecotoxicology, Institute of Biotechnology , Technische Universität Berlin , Berlin , Germany.

b Joint Laboratory of Applied Ecotoxicology , Korea Institute of Science and Technology Europe (KIST) , Saarbrücken , Germany.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2018 Apr;35(4):731-739. doi: 10.1080/19440049.2018.1427283. Epub 2018 Jan 25.

DOI:10.1080/19440049.2018.1427283
PMID:29324084
Abstract

Bioaccumulation of several cyanotoxins has been observed in numerous food webs. More recently, the neurotoxic, non-proteinogenic amino acid β-N-methylamino-L-alanine (BMAA) was shown to biomagnify in marine food webs. It was thus necessary to assess whether a human exposure risk via a terrestrial food source could exist. As shown for other cyanotoxins, spray irrigation of crop plants with cyanobacterial bloom-contaminated surface water poses the risk of toxin transfer into edible plant parts. Therefore, in the present study, we evaluated a possible transfer of BMAA via spray irrigation into the seeds of one of the world's most widely cultivated crop plants, Triticum aestivum. Wheat plants were irrigated with water containing 10 µg L BMAA until they reached maturity and seed-bearing stage (205 days). Several morphological characteristics, such as germination rate, number of roots per seedling, length of primary root and cotyledon, and diameter of the stems were evaluated to assess the effects of chronic exposure. After 205 days, BMAA bioaccumulation was quantified in roots, shoots, and mature seeds of T. aestivum. No adverse morphology effects were observed and no free intracellular BMAA was detected in any of the exposed plants. However, in mature seeds, protein-associated BMAA was detected at 217 ± 150 ng g FW; significantly more than in roots and shoots. This result demonstrates the unexpected bioaccumulation of a hydrophilic compound and highlights the demand to specify in addition to limit values for drinking water, tolerable daily intake rates for the cyanobacterial-neurotoxin BMAA.

摘要

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