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Mistletoes are obligate stem hemiparasites that operate at low leaf water potentials and sustain high transpiration while relying on host xylem water supply, raising questions about how their hydraulic safety is achieved and constrained.<\/jats:p>\n                      <\/jats:list-item>\n                      <jats:list-item>\n                        <jats:p>Here, we employed xylem vulnerability curves, vessel and pit anatomy, water\u2010use indicators, and phylogenetically informed models to examine embolism resistance across 41 mistletoe\u2013host species pairs in tropical China.<\/jats:p>\n                      <\/jats:list-item>\n                      <jats:list-item>\n                        <jats:p>\n                          Mistletoes exhibited greater resistance to drought\u2010induced xylem embolism (more negative\n                          <jats:italic>P<\/jats:italic>\n                          <jats:sub>50<\/jats:sub>\n                          , the water potentials at 50% loss of hydraulic conductivity) but lower hydraulic efficiency than their hosts. Embolism resistance in hosts was associated with vessel and pit traits, whereas these relationships were weaker in mistletoes and became evident mainly after accounting for species\u2010level variation. Notably, host\n                          <jats:italic>P<\/jats:italic>\n                          <jats:sub>50<\/jats:sub>\n                          exerted a dominant direct effect on mistletoe\n                          <jats:italic>P<\/jats:italic>\n                          <jats:sub>50<\/jats:sub>\n                          , whereas mistletoe anatomical traits played a secondary role.\n                        <\/jats:p>\n                      <\/jats:list-item>\n                      <jats:list-item>\n                        <jats:p>These results indicate that mistletoes operate within a shared mistletoe\u2013host hydraulic continuum in which host traits constrain parasite hydraulic safety. By sustaining high transpiration near host\u2010defined limits, mistletoes may amplify host water stress and forest hydraulic vulnerability.<\/jats:p>\n                      <\/jats:list-item>\n                    <\/jats:list>\n                  <\/jats:p>","DOI":"10.1111\/nph.71412","type":"journal-article","created":{"date-parts":[[2026,7,9]],"date-time":"2026-07-09T18:04:27Z","timestamp":1783620267000},"page":"3238-3255","update-policy":"https:\/\/doi.org\/10.1002\/crossmark_policy","source":"Crossref","is-referenced-by-count":0,"title":["Host hydraulics constrain mistletoe resistance to drought\u2010induced embolism"],"prefix":"10.1111","volume":"251","author":[{"ORCID":"https:\/\/orcid.org\/0009-0007-3083-1576","authenticated-orcid":false,"given":"Xian\u2010Yan","family":"Huang","sequence":"first","affiliation":[{"name":"Yunnan Key Laboratory of Forest Ecosystem Stability and Global Change Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences  Mengla Yunnan 666303 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