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Plant Physiology|May 23, 2014
The optimal lateral root branching density for maize depends on nitrogen and phosphorus availabilityJohannes Auke Postma, Annette Dathe, Jonathan Paul LynchPlant Physiology|June 2, 2011
Root cortical aerenchyma enhances the growth of maize on soils with suboptimal availability of nitrogen, phosphorus, and potassiumJohannes Auke Postma, Jonathan Paul LynchPlant Physiology|February 21, 2015
Phene synergism between root hair length and basal root growth angle for phosphorus acquisitionMagalhaes Amade Miguel, Johannes Auke Postma, Jonathan Paul LynchFrontiers in Plant Science|February 22, 2024
More N fertilizer, more maize, and less alfalfa: maize benefits from its higher N uptake per unit root lengthZeqiang Shao, Congcong Zheng, Johannes Auke Postma, et al.Frontiers in Plant Science|April 3, 2023
Plant root plasticity during drought and recovery: What do we know and where to go?Congcong Zheng, Helena Bochmann, Zhaogang Liu, et al.Proceedings of the National Academy of Sciences of the United States of America|June 16, 2026
Bacterial metabolism rather than necromass dominates input to soil organic carbonAnnette Dathe, Laurel Lynch, Dominic Woolf, et al.Environmental Science & Technology|September 15, 2009
Enhanced mixing and plume containment in porous media under time-dependent oscillatory flowPengfei Zhang, Stephanie L Devries, Annette Dathe, et al.Plant Physiology|April 8, 2014
Low crown root number enhances nitrogen acquisition from low-nitrogen soils in maizePatompong Saengwilai, Xiaoli Tian, Jonathan Paul LynchEnvironmental Science & Technology|October 6, 2005
Distribution of colloid particles onto interfaces in partially saturated sandYuniati Zevi, Annette Dathe, John F McCarthy, et al.Environmental Science and Pollution Research International|November 16, 2013
Functional models for colloid retention in porous media at the triple lineAnnette Dathe, Yuniati Zevi, Brian K Richards, et al.Pageof 2