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Planta|April 7, 2022
Sweet cherry flesh cells burst in non-random clusters along minor veinsTobias Brinkmann, Felix Kuhnke, Eckhard Grimm, et al.Journal of Agricultural and Food Chemistry|December 12, 2002
Studies on water transport through the sweet cherry fruit surface. 7. Fe3+ and Al3+ reduce conductance for water uptakeMarco Beyer, Stefanie Peschel, Holger Weichert, et al.Planta|November 3, 2020
Decreased deposition and increased swelling of cell walls contribute to increased cracking susceptibility of developing sweet cherry fruitChristine Schumann, Simon Sitzenstock, Lisa Erz, et al.Phytochemistry|March 3, 2007
Composition of the cuticle of developing sweet cherry fruitStefanie Peschel, Rochus Franke, Lukas Schreiber, et al.Planta|November 19, 2018
Russeting partially restores apple skin permeability to water vapourBishnu P Khanal, Godfrey M Ikigu, Moritz KnochePlos One|October 13, 2021
Low cuticle deposition rate in 'Apple' mango increases elastic strain, weakens the cuticle and increases russetThomas O Athoo, Bishnu P Khanal, Moritz KnochePlanta|April 30, 2018
Patterns of microcracking in apple fruit skin reflect those of the cuticular ridges and of the epidermal cell wallsMoritz Knoche, Bishnu P Khanal, Martin Brüggenwirth, et al.Planta|August 5, 2023
Neck shrivel in European plum is caused by cuticular microcracks, resulting from rapid lateral expansion of the neck late in developmentBishnu P Khanal, Anil Bhattarai, Divya Aryal, et al.Planta|August 21, 2014
Evidence for a radial strain gradient in apple fruit cuticlesBishnu Prasad Khanal, Moritz Knoche, Sara Bußler, et al.Plants (Basel, Switzerland)|April 3, 2021
Cutin Synthesis in Developing, Field-Grown Apple Fruit Examined by External Feeding of Labelled PrecursorsYiru Si, Bishnu P Khanal, Leopold Sauheitl, et al.Pageof 15