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PIN FORMED 2 Modulates the Transport of Arsenite in Arabidopsis thaliana
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作者 Mohammad Arif Ashraf Kana Umetsu +16 位作者 Olena Ponomarenko Michiko Saito Mohammad Aslam Olga Antipova Natalia Dolgova cheyenne d.kiani Susan Nehzati Keitaro Tanoi Katsuyuki Minegishi Kotaro Nagatsu Takehiro Kamiya Toru Fujiwara Christian Luschnig Karen Tanino Ingrid Pickering Graham N.George Abidur Rahman 《Plant Communications》 2020年第3期42-56,共15页
Arsenic contamination is a major environmental issue,as it may lead to serious health hazard.The reduced trivalent formof inorganic arsenic,arsenite,is in generalmore toxic to plants comparedwith the fully oxidized pe... Arsenic contamination is a major environmental issue,as it may lead to serious health hazard.The reduced trivalent formof inorganic arsenic,arsenite,is in generalmore toxic to plants comparedwith the fully oxidized pentavalent arsenate.Theuptakeof arsenite inplants hasbeenshown tobemediatedthrough a large subfamily of plant aquaglyceroporins,nodulin 26-like intrinsic proteins(NIPs).However,the efflux mechanisms,as well as themechanismof arsenite-induced root growth inhibition,remain poorly understood.Usingmolecular physiology,synchrotron imaging,and root transport assay approaches,we show that the cellular transport of trivalent arsenicals inArabidopsis thalianais stronglymodulatedbyPINFORMED2(PIN2)auxin efflux transporter.Root transport assay using radioactive arsenite,X-ray fluorescence imaging(XFI)coupled with X-ray absorption spectroscopy(XAS),and inductively coupled plasma mass spectrometry analysis revealed that pin2 plants accumulate higher concentrations of arsenite in roots comparedwith the wild-type.At the cellular level,arsenite specifically targets intracellular sorting of PIN2 and thereby alters the cellular auxin homeostasis.Consistently,loss of PIN2 function results in arsenite hypersensitivity in roots.XFI coupled with XAS further revealed that loss of PIN2 function results in specific accumulation of arsenical species,but not the other metals such as iron,zinc,or calcium in the root tip.Collectively,these results suggest that PIN2 likely functions as an arsenite efflux transporter for the distribution of arsenical species in planta. 展开更多
关键词 AUXIN ARSENITE PIN2 TRAFFICKING TRANSPORT
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