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Here, we have analyzed the theoretical basis of their dynamic properties by bringing the K homeostat out of steady state (i) by an electrical stimulus, (ii) by an external imbalance in the K\n                    <jats:sup>+<\/jats:sup>\n                    or H\n                    <jats:sup>+<\/jats:sup>\n                    gradient or (iii) by a readjustment of transporter activities. The reactions to such changes can be divided into (i) a short-term response (tens of milliseconds), where the membrane voltage changed along with the concentrations of ions that are not very abundant in the cytosol (H\n                    <jats:sup>+<\/jats:sup>\n                    and Ca\n                    <jats:sup>2+<\/jats:sup>\n                    ), and (ii) a long-term response (minutes and longer) caused by the slow changes in K\n                    <jats:sup>+<\/jats:sup>\n                    concentrations. The mechanistic insights into its dynamics are not limited to the K homeostat but can be generalized, providing a new perspective on electrical, chemical, hydraulic, pH and Ca\n                    <jats:sup>2+<\/jats:sup>\n                    signaling in plants. The results presented here also provide a theoretical background for optogenetic experiments in plants.\n                  <\/jats:p>","DOI":"10.1017\/qpb.2025.6","type":"journal-article","created":{"date-parts":[[2025,3,21]],"date-time":"2025-03-21T07:20:16Z","timestamp":1742541616000},"source":"Crossref","is-referenced-by-count":7,"title":["Dynamics of homeostats: the basis of electrical, chemical, hydraulic, pH and calcium signaling in plants"],"prefix":"10.1017","volume":"6","author":[{"given":"Leslie","family":"Contador-\u00c1lvarez","sequence":"first","affiliation":[]},{"given":"Tamara","family":"Rojas-Rocco","sequence":"additional","affiliation":[]},{"given":"Tal\u00eda","family":"Rodr\u00edguez-G\u00f3mez","sequence":"additional","affiliation":[]},{"ORCID":"https:\/\/orcid.org\/0000-0002-9852-427X","authenticated-orcid":false,"given":"Mar\u00eda 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