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Hydrolyzable tannins are incorporated into the endocarp during sclerification of the water caltrop Trapa natans

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PLANT PHYSIOLOGY
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OXFORD UNIV PRESS INC
DOI: 10.1093/plphys/kiad408

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The water caltrop develops unique woody fruits with unusually large seeds among aquatic plants. Hydrolyzable tannins flood the endocarp tissue during fruit development and lignin is integrated into the cell walls during maturation. The presence of ester linkages in the mature tissue suggests that gallotannins and their derivatives are cross-linked to other wall components, leading to unique cell-wall properties.
The water caltrop (Trapa natans) develops unique woody fruits with unusually large seeds among aquatic plants. During fruit development, the inner fruit wall (endocarp) sclerifies and forms a protective layer for the seed. Endocarp sclerification also occurs in many land plants with large seeds; however, in T. natans, the processes of fruit formation, endocarp hardening, and seed storage take place entirely underwater. To identify potential chemical and structural adaptations for the aquatic environment, we investigated the cell-wall composition in the endocarp at a young developmental stage, as well as at fruit maturity. Our work shows that hydrolyzable tannins-specifically gallotannins-flood the endocarp tissue during secondary wall formation and are integrated into cell walls along with lignin during maturation. Within the secondary walls of mature tissue, we identified unusually strong spectroscopic features of ester linkages, suggesting that the gallotannins and their derivatives are cross-linked to other wall components via ester bonds, leading to unique cell-wall properties. The synthesis of large amounts of water-soluble, defensive aromatic metabolites during secondary wall formation might be a fast way to defend seeds within the insufficiently lignified endocarp of T. natans. Underwater fruit development and endocarp sclerification in Trapa natans involve hydrolyzable tannins in addition to lignin during cell-wall formation.

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