Zobrazeno 1 - 10
of 42
pro vyhledávání: '"Anke Reinders"'
Publikováno v:
F1000Research, Vol 9 (2020)
Intimate interactions between photosynthetic and non-photosynthetic organisms require the orchestrated transfer of ions and metabolites between species. We review recent progress in identifying and characterizing the transport proteins involved in fi
Externí odkaz:
https://doaj.org/article/72a6dc3400e6463a8af38d53c061454a
Autor:
Anke Reinders, John Ward
Publikováno v:
Nature Plants.
Publikováno v:
Plant Physiol
Coordinated sharing of nutritional resources is a central feature of symbiotic interactions, and, despite the importance of this topic, many questions remain concerning the identification, activity, and regulation of transporter proteins involved. Re
Publikováno v:
Plant and Cell Physiology. 61:1054-1063
The expression of AtSUC1 is controlled by the promoter and intragenic sequences. AtSUC1 is expressed in roots, pollen and trichomes. However, AtSUC1 promoter-GUS transgenics only show expression in trichomes and pollen. Here, we show that the root ex
Autor:
Ailsa Geddis, Karl Oparka, Marc Vendrell, Anke Reinders, Martin Lee, Kirsten Knox, William J. Tipping, Fabio de Moliner, Doireann Gordon, John M. Ward
Publikováno v:
De Moliner, F, Knox, K, Gordon, D, Lee, M, Tipping, W J, Geddis, A, Reinders, A, Ward, J, Oparka, K & Vendrell, M 2021, ' A Palette of Minimally Tagged Sucrose Analogues for Real-Time Raman Imaging of Intracellular Plant Metabolism ', Angewandte Chemie International Edition . https://doi.org/10.1002/anie.202016802
Angewandte Chemie (International Ed. in English)
Moliner, F, Knox, K, Gordon, D, Lee, M, Tipping, W J, Geddis, A, Reinders, A, Ward, J M, Oparka, K & Vendrell, M 2021, ' A Palette of Minimally Tagged Sucrose Analogues for Real-Time Raman Imaging of Intracellular Plant Metabolism ', Angewandte Chemie International Edition . https://doi.org/10.1002/anie.202016802
Angewandte Chemie International Edition
Angewandte Chemie (International Ed. in English)
Moliner, F, Knox, K, Gordon, D, Lee, M, Tipping, W J, Geddis, A, Reinders, A, Ward, J M, Oparka, K & Vendrell, M 2021, ' A Palette of Minimally Tagged Sucrose Analogues for Real-Time Raman Imaging of Intracellular Plant Metabolism ', Angewandte Chemie International Edition . https://doi.org/10.1002/anie.202016802
Angewandte Chemie International Edition
Sucrose is the main saccharide used for long‐distance transport in plants and plays an essential role in energy metabolism; however, there are no analogues for real‐time imaging in live cells. We have optimised a synthetic approach to prepare suc
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4c902c68932dcc4031e0537b71c4677c
https://hdl.handle.net/20.500.11820/11f99062-c25b-4da7-9f66-ba8afcb2ad27
https://hdl.handle.net/20.500.11820/11f99062-c25b-4da7-9f66-ba8afcb2ad27
Autor:
Paul J. McLaughlin, Kirsten Knox, Fabio de Moliner, Karl Oparka, Anke Reinders, Marc Vendrell, John M. Ward
Publikováno v:
Journal of Experimental Botany
De Moliner, F, Knox, K, Reinders, A, Ward, J, McLaughlin, P, Oparka, K & Vendrell Escobar, M 2018, ' Probing binding specificity of the sucrose transporter AtSUC2 with fluorescent coumarin glucosides ', Journal of Experimental Botany . https://doi.org/10.1093/jxb/ery075
De Moliner, F, Knox, K, Reinders, A, Ward, J, McLaughlin, P, Oparka, K & Vendrell Escobar, M 2018, ' Probing binding specificity of the sucrose transporter AtSUC2 with fluorescent coumarin glucosides ', Journal of Experimental Botany . https://doi.org/10.1093/jxb/ery075
Natural and synthetic fluorescent coumarin glucosides were used as probes to analyze the key structural features that enable recognition and transport by the Arabidopsis sucrose transporter AtSUC2.
The phloem sucrose transporter, AtSUC2, is prom
The phloem sucrose transporter, AtSUC2, is prom
Autor:
Anke Reinders, Stephen A. Brockman, Andrea Paterlini, Karl Oparka, Tim Ross-Elliot, Marc Vendrell, John M. Ward, Erica S. de Leau, Kirsten Knox, Michael Knoblauch
Publikováno v:
Plant Physiology. 167:1211-1220
Using Arabidopsis (Arabidopsis thaliana) seedlings, we identified a range of small fluorescent probes that entered the translocation stream and were unloaded at the root tip. These probes had absorbance/emission maxima ranging from 367/454 to 546/576
Autor:
Anke Reinders
Publikováno v:
Journal of Experimental Botany. 67:2121-2123
Pollen tubes require the activity of carbohydrate uptake transporters to sustain their high growth rate. The work of Rottmann and colleagues in this issue (pages 2387–2399) provides evidence that expression of a hexose transporter in pollen tubes m
Autor:
Akifumi Sugiyama, Efraín De Luna, Hideya Fukuzawa, Yuki Hirakawa, Yoshihiro Yoshitake, Jeremy Schmutz, Minoru Kubo, Sabine Zachgo, Sumio Sugano, Satoshi Naramoto, Isabel Monte, Juan Caballero-Pérez, Takashi Okamoto, Feng Chen, Keita Kinose, Rui Sun, Bruno Catarino, Shin-ichiro Inoue, Tomokazu Kawashima, Yasukazu Nakamura, Masaaki Umeda, Masayuki Tsuzuki, Junko Kyozuka, John L. Bowman, Mitsuru Kakita, Chia-Wei Lu, Eduardo Flores-Sandoval, Takayuki Kohchi, Christian R. Boehm, Kimitsune Ishizaki, D. Magnus Eklund, Shih-Shun Lin, Makoto Shirakawa, Jim Haseloff, Moritz Rövekamp, Hirofumi Nakagami, Anna Lipzen, Yuichiro Watanabe, Kazuhiko Nishitani, Noriyuki Suetsugu, Keisuke Inoue, Marc W. Schmid, Yosuke Kawai, Hirokazu Tomogane, Robert A. Martienssen, Shengqiang Shu, Ryuichi Nishihama, Ulf Lagercrantz, Miya Mizutani, Liam Dolan, Tom Dierschke, Frédéric Berger, Felix Althoff, Kevin M. Davies, Ueli Grossniklaus, Bence Galik, Asao Fujiyama, Sureshkumar Balasubrmanian, Ryusuke Yokoyama, Takashi Ueda, Izumi Yotsui, Toshinori Kinoshita, Misato Ohtani, Eri Koide, Kazufumi Yazaki, Shinichiro Sawa, Jane Grimwood, Diane Bauer, Mario A. Arteaga-Vazquez, Sakiko Ishida, Takahiro Hamada, Roberto Solano, Alexander J. Hetherington, Daniel Grimanelli, Stevie N. Florent, Erika Lindquist, Ryosuke Sano, Kenji Komatsu, Catherine Adam, Asuka Higo, Sarah Kopischke, Hope Hundley, Rebecca A. Mosher, Jerry Jenkins, Naoki Minamino, Hideki Nagasaki, Mizuki Takenaka, Kerrie Barry, Takashi Araki, Nobuyoshi Mochizuki, Anke Reinders, Mihails Delmans, Yuji Kohara, Yoko Ikeda, Daisuke Takezawa, Mansi Chovatia, Ana E. Dorantes-Acosta, Taku Demura, Masaki Okumura, Qidong Jia, Takehiko Kanazawa, Yutaka Suzuki, Megan Kennedy, Jeremy Phillips, Bernardo Pollak, Liam N. Briginshaw, Shohei Yamaoka, Shota Chiyoda, Alexander Spunde, John M. Ward, Masaharu Mizutani, Katsuyuki T. Yamato, Shiori S Aki
Publikováno v:
Cell
Cell, Elsevier, 2017, 171 (2), pp.287-304.e15. ⟨10.1016/j.cell.2017.09.030⟩
Cell, 2017, 171 (2), pp.287-304.e15. ⟨10.1016/j.cell.2017.09.030⟩
Bowman, John L; Kohchi, Takayuki; Yamato, Katsuyuki T; Jenkins, Jerry; Shu, Shengqiang; Ishizaki, Kimitsune; et al.(2017). Insights into Land Plant Evolution Garnered from the Marchantia polymorpha Genome. CELL, 171(2), 287-+. doi: 10.1016/j.cell.2017.09.030. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/7pr066zj
Bowman, J L, Kohchi, T, Yamato, K T, Jenkins, J, Shu, S, Ishizaki, K, Yamaoka, S, Nishihama, R, Nakamura, Y, Berger, F, Adam, C, Aki, S S, Althoff, F, Araki, T, Arteaga-Vazquez, M A, Balasubrmanian, S, Barry, K, Bauer, D, Boehm, C R, Briginshaw, L, Caballero-Perez, J, Catarino, B, Chen, F, Chiyoda, S, Chovatia, M, Davies, K M, Delmans, M, Demura, T, Dierschke, T, Dolan, L, Dorantes-Acosta, A E, Eklund, D M, Florent, S N, Flores-Sandoval, E, Fujiyama, A, Fukuzawa, H, Galik, B, Grimanelli, D, Grimwood, J, Grossniklaus, U, Hamada, T, Haseloff, J, Hetherington, A J, Higo, A, Hirakawa, Y, Hundley, H N, Ikeda, Y, Inoue, K, Inoue, S I, Ishida, S, Jia, Q, Kakita, M, Kanazawa, T, Kawai, Y, Kawashima, T, Kennedy, M, Kinose, K, Kinoshita, T, Kohara, Y, Koide, E, Komatsu, K, Kopischke, S, Kubo, M, Kyozuka, J, Lagercrantz, U, Lin, S S, Lindquist, E, Lipzen, A M, Lu, C W, De Luna, E, Martienssen, R A, Minamino, N, Mizutani, M, Mizutani, M, Mochizuki, N, Monte, I, Mosher, R, Nagasaki, H, Nakagami, H, Naramoto, S, Nishitani, K, Ohtani, M, Okamoto, T, Okumura, M, Phillips, J, Pollak, B, Reinders, A, Rövekamp, M, Sano, R, Sawa, S, Schmid, M W, Shirakawa, M, Solano, R, Spunde, A, Suetsugu, N, Sugano, S, Sugiyama, A, Sun, R, Suzuki, Y, Takenaka, M, Takezawa, D, Tomogane, H, Tsuzuki, M, Ueda, T, Umeda, M, Ward, J M, Watanabe, Y, Yazaki, K, Yokoyama, R, Yoshitake, Y, Yotsui, I, Zachgo, S & Schmutz, J 2017, ' Insights into land plant evolution garnered from the marchantia polymorpha Genome ', Cell, vol. 171, no. 2, pp. 287-304.e15 . https://doi.org/10.1016/j.cell.2017.09.030
Cell, Elsevier, 2017, 171 (2), pp.287-304.e15. ⟨10.1016/j.cell.2017.09.030⟩
Cell, 2017, 171 (2), pp.287-304.e15. ⟨10.1016/j.cell.2017.09.030⟩
Bowman, John L; Kohchi, Takayuki; Yamato, Katsuyuki T; Jenkins, Jerry; Shu, Shengqiang; Ishizaki, Kimitsune; et al.(2017). Insights into Land Plant Evolution Garnered from the Marchantia polymorpha Genome. CELL, 171(2), 287-+. doi: 10.1016/j.cell.2017.09.030. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/7pr066zj
Bowman, J L, Kohchi, T, Yamato, K T, Jenkins, J, Shu, S, Ishizaki, K, Yamaoka, S, Nishihama, R, Nakamura, Y, Berger, F, Adam, C, Aki, S S, Althoff, F, Araki, T, Arteaga-Vazquez, M A, Balasubrmanian, S, Barry, K, Bauer, D, Boehm, C R, Briginshaw, L, Caballero-Perez, J, Catarino, B, Chen, F, Chiyoda, S, Chovatia, M, Davies, K M, Delmans, M, Demura, T, Dierschke, T, Dolan, L, Dorantes-Acosta, A E, Eklund, D M, Florent, S N, Flores-Sandoval, E, Fujiyama, A, Fukuzawa, H, Galik, B, Grimanelli, D, Grimwood, J, Grossniklaus, U, Hamada, T, Haseloff, J, Hetherington, A J, Higo, A, Hirakawa, Y, Hundley, H N, Ikeda, Y, Inoue, K, Inoue, S I, Ishida, S, Jia, Q, Kakita, M, Kanazawa, T, Kawai, Y, Kawashima, T, Kennedy, M, Kinose, K, Kinoshita, T, Kohara, Y, Koide, E, Komatsu, K, Kopischke, S, Kubo, M, Kyozuka, J, Lagercrantz, U, Lin, S S, Lindquist, E, Lipzen, A M, Lu, C W, De Luna, E, Martienssen, R A, Minamino, N, Mizutani, M, Mizutani, M, Mochizuki, N, Monte, I, Mosher, R, Nagasaki, H, Nakagami, H, Naramoto, S, Nishitani, K, Ohtani, M, Okamoto, T, Okumura, M, Phillips, J, Pollak, B, Reinders, A, Rövekamp, M, Sano, R, Sawa, S, Schmid, M W, Shirakawa, M, Solano, R, Spunde, A, Suetsugu, N, Sugano, S, Sugiyama, A, Sun, R, Suzuki, Y, Takenaka, M, Takezawa, D, Tomogane, H, Tsuzuki, M, Ueda, T, Umeda, M, Ward, J M, Watanabe, Y, Yazaki, K, Yokoyama, R, Yoshitake, Y, Yotsui, I, Zachgo, S & Schmutz, J 2017, ' Insights into land plant evolution garnered from the marchantia polymorpha Genome ', Cell, vol. 171, no. 2, pp. 287-304.e15 . https://doi.org/10.1016/j.cell.2017.09.030
The evolution of land flora transformed the terrestrial environment. Land plants evolved from an ancestral charophycean alga from which they inherited developmental, biochemical, and cell biological attributes. Additional biochemical and physiologica
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d7ce6263bba787a170615867a1d6a060
https://www.repository.cam.ac.uk/handle/1810/271816
https://www.repository.cam.ac.uk/handle/1810/271816
Publikováno v:
Plantcell physiology. 59(5)
Plant ammonium transporters in the AMT/MEP/Rh (ammonium transporter/methylammonium and ammonium permease/Rhesus factor) superfamily have only been previously characterized in flowering plants (angiosperms). Plant AMT1s are electrogenic, while plant A