The Long-Distance Transport of Jasmonates in Salt-Treated Pea Plants and Involvement of Lipid Transfer Proteins in the Process.

Bibliographic Details
Title: The Long-Distance Transport of Jasmonates in Salt-Treated Pea Plants and Involvement of Lipid Transfer Proteins in the Process.
Authors: Vafina, Gulnara1 (AUTHOR) vafinagh@mail.ru, Akhiyarova, Guzel1 (AUTHOR) akhiyarova@rambler.ru, Korobova, Alla1 (AUTHOR) muksin@mail.ru, Finkina, Ekaterina I.2 (AUTHOR) finkina@mail.ru, Veselov, Dmitry1 (AUTHOR) veselov@anrb.ru, Ovchinnikova, Tatiana V.2 (AUTHOR) ovch@ibch.ru, Kudoyarova, Guzel1 (AUTHOR) guzel@anrb.ru
Source: International Journal of Molecular Sciences. Jul2024, Vol. 25 Issue 13, p7486. 13p.
Subject Terms: *LIPID transfer protein, *PLANT transpiration, *PLANT lipids, *PLANT adaptation, *SAP (Plant), *JASMONIC acid
Abstract: The adaption of plants to stressful environments depends on long-distance responses in plant organs, which themselves are remote from sites of perception of external stimuli. Jasmonic acid (JA) and its derivatives are known to be involved in plants' adaptation to salinity. However, to our knowledge, the transport of JAs from roots to shoots has not been studied in relation to the responses of shoots to root salt treatment. We detected a salt-induced increase in the content of JAs in the roots, xylem sap, and leaves of pea plants related to changes in transpiration. Similarities between the localization of JA and lipid transfer proteins (LTPs) around vascular tissues were detected with immunohistochemistry, while immunoblotting revealed the presence of LTPs in the xylem sap of pea plants and its increase with salinity. Furthermore, we compared the effects of exogenous MeJA and salt treatment on the accumulation of JAs in leaves and their impact on transpiration. Our results indicate that salt-induced changes in JA concentrations in roots and xylem sap are the source of accumulation of these hormones in leaves leading to associated changes in transpiration. Furthermore, they suggest the possible involvement of LTPs in the loading/unloading of JAs into/from the xylem and its xylem transport. [ABSTRACT FROM AUTHOR]
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ISSN:16616596
DOI:10.3390/ijms25137486
Published in:International Journal of Molecular Sciences
Language:English