Modeling halotropism: a key role for root tip architecture and reflux loop remodeling in redistributing auxin T van den Berg, RA Korver, C Testerink, KHWJ Ten Tusscher Development 143 (18), 3350-3362, 2016 | 87 | 2016 |
A reflux-and-growth mechanism explains oscillatory patterning of lateral root branching sites T van den Berg, K Yalamanchili, H De Gernier, JS Teixeira, T Beeckman, ... Developmental cell 56 (15), 2176-2191. e10, 2021 | 52 | 2021 |
Halotropism requires phospholipase Dζ1‐mediated modulation of cellular polarity of auxin transport carriers RA Korver, T van den Berg, AJ Meyer, CS Galvan‐Ampudia, ... Plant, Cell & Environment 43 (1), 143-158, 2020 | 49 | 2020 |
Lateral root priming synergystically arises from root growth and auxin transport dynamics T van den Berg, KH ten Tusscher Biorxiv, 361709, 2018 | 14 | 2018 |
Complementary roles for auxin and auxin signalling revealed by reverse engineering lateral root stable prebranch site formation J Santos Teixeira, T van den Berg, K Ten Tusscher Development 149 (22), dev200927, 2022 | 13 | 2022 |
Modeling auxin signaling in roots: auxin computations J Rutten, T van den Berg, K Ten Tusscher Cold Spring Harbor perspectives in biology 14 (2), a040089, 2022 | 12 | 2022 |
Auxin information processing; partners and interactions beyond the usual suspects T Van den Berg, KH Ten Tusscher International journal of molecular sciences 18 (12), 2585, 2017 | 12 | 2017 |
Modeling halotropism: A key role for root tip architecture and reflux loop remodeling in redistributing auxin RA Korver, C Testerink Development, 2016 | | 2016 |