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Michael Knoblauch grad student 2016 WSU
 (Structural and Functional Aspects of Protophloem Sieve Element Unloading in the Root Tips of Arabidopsis thaliana)
Alan M Jones post-doc 2017-2019 UNC Chapel Hill
 (now at Harvard University)
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Tunc-Ozdemir M, Liao KL, Ross-Elliott TJ, et al. (2018) Long-distance communication in Arabidopsis involving a self-activating G protein. Plant Direct. 2: e00037
Cao-Pham AH, Urano D, Ross-Elliott TJ, et al. (2018) Nudge-nudge, WNK-WNK (kinases), say no more? The New Phytologist
Mullendore DL, Ross-Elliott T, Liu Y, et al. (2018) Non-dispersive phloem-protein bodies (NPBs) of consist of a SEOR protein and do not respond to cell wounding and Ca. Peerj. 6: e4665
Knoblauch M, Peters WS, Bell K, et al. (2018) Sieve-element differentiation and phloem sap contamination. Current Opinion in Plant Biology. 43: 43-49
Ross-Elliott TJ, Jensen KH, Haaning KS, et al. (2017) Phloem unloading in Arabidopsis roots is convective and regulated by the phloem-pole pericycle. Elife. 6
Froelich DR, Mullendore DL, Jensen KH, et al. (2011) Phloem ultrastructure and pressure flow: Sieve-element-occlusion-related agglomerations do not affect translocation Plant Cell. 23: 4428-4445
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