The cadmium-hypertolerant fern,Athyrium yokoscense, exhibits two cadmium stress mitigation strategies in the roots and the aerial parts

Author:

Ukai YukoORCID,Taoka Hiroki,Kamada Manaka,Wakui Yuko,Goto Fumiyuki,Kitazaki Kazuyoshi,Abe Tomoko,Hokura Akiko,Yoshihara Toshihiro,Shimada HiroakiORCID

Abstract

AbstractAthyrium yokoscenseis hypertolerant to cadmium (Cd) and can grow normally under a high Cd concentration despite Cd being a highly toxic heavy metal. To mitigate Cd stress in general plant species, Cd is promptly chelated with a thiol compound and is isolated into vacuoles. Generated active oxygen species (ROS) in the cytoplasm are removed by reduced glutathione. However, we found many differences in the countermeasures inA. yokoscense. Thiol compounds accumulated in the stele of the roots, although a long-term Cd exposure induced Cd accumulation in the aerial parts. Synchrotron radiation-based X-ray fluorescence (SR-XRF) analysis indicated that a large amount of Cd was localized in the cell walls of the roots. Overexpression ofAyNramp5a, encoding a representative Fe and Mn transporter ofA. yokoscense, increased both Cd uptake and iron and manganese uptake in rice calli under the Cd exposure conditions. Organic acids were abundantly detected inA. yokoscenseroots. Investigating the chemical forms of the Cd molecules by X-ray absorption fine structure (XAFS) analysis detected many compounds with Cd-oxygen (Cd-O) binding inA. yokoscenseroots, whereas in the aerial parts, the ratio of the compounds with Cd-sulfur (Cd-S) binding was increased. Together, our results imply that the strong Cd tolerance ofA. yokoscenseis an attribute of the following two mechanisms: Cd-O compound formation in the cell wall is a barrier to reduce Cd uptake into aerial parts. Thiol compounds in the region of root stele are involved in detoxication of Cd by formation of Cd-S compounds.Statements and DeclarationsNo potential conflict of interest was reported by the authors.

Publisher

Cold Spring Harbor Laboratory

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