[1]

Cosgrove DJ. 2024. Structure and growth of plant cell walls. Nature Reviews Molecular Cell Biology 25:340−358

doi: 10.1038/s41580-023-00691-y
[2]

Coen E, Cosgrove DJ. 2023. The mechanics of plant morphogenesis. Science 379:eade8055

doi: 10.1126/science.ade8055
[3]

Caffall KH, Mohnen D. 2009. The structure, function, and biosynthesis of plant cell wall pectic polysaccharides. Carbohydrate Research 344:1879−1900

doi: 10.1016/j.carres.2009.05.021
[4]

Du J, Anderson CT, Xiao C. 2022. Dynamics of pectic homogalacturonan in cellular morphogenesis and adhesion, wall integrity sensing and plant development. Nature Plants 8:332−340

doi: 10.1038/s41477-022-01120-2
[5]

Micheli F. 2001. Pectin methylesterases: cell wall enzymes with important roles in plant physiology. Trends in Plant Science 6:414−419

doi: 10.1016/S1360-1385(01)02045-3
[6]

Anderson CT, Pelloux J. 2025. The dynamics, degradation, and afterlives of pectins: influences on cell wall assembly and structure, plant development and physiology, agronomy, and biotechnology. Annual Review of Plant Biology 76:85−113

doi: 10.1146/annurev-arplant-083023-034055
[7]

Safran J, Tabi W, Ung V, Lemaire A, Habrylo O, et al. 2023. Plant polygalacturonase structures specify enzyme dynamics and processivities to fine-tune cell wall pectins. The Plant Cell 35:3073−3091

doi: 10.1093/plcell/koad134
[8]

Cameron C, Geitmann A. 2018. Cell mechanics of pollen tube growth. Current Opinion in Genetics & Development 51:11−17

doi: 10.1016/j.gde.2018.03.008
[9]

Chen W, Jia PF, Yang WC, Li HJ. 2020. Plasma membrane H+-ATPases-mediated cytosolic proton gradient regulates pollen tube growth. Journal of Integrative Plant Biology 62:1817−1822

doi: 10.1111/jipb.12981
[10]

Chebli Y, Kaneda M, Zerzour R, Geitmann A. 2012. The cell wall of the Arabidopsis pollen tube—spatial distribution, recycling, and network formation of polysaccharides. Plant Physiology 160:1940−1955

doi: 10.1104/pp.112.199729
[11]

Xu Y, Jiang J, Huang S. 2024. Arabidopsis actin-depolymerizing factor10 depolymerizes apical actin filaments to facilitate pollen tube turning in response to female attractant. Seed Biology 3:e015

doi: 10.48130/seedbio-0024-0014
[12]

Palin R, Geitmann A. 2012. The role of pectin in plant morphogenesis. Biosystems 109:397−402

doi: 10.1016/j.biosystems.2012.04.006
[13]

Peaucelle A, Louvet R, Johansen JN, Höfte H, Laufs P, et al. 2008. Arabidopsis phyllotaxis is controlled by the methyl-esterification status of cell-wall pectins. Current Biology 18:1943−1948

doi: 10.1016/j.cub.2008.10.065
[14]

Peaucelle A, Braybrook SA, Le Guillou L, Bron E, Kuhlemeier C, et al. 2011. Pectin-induced changes in cell wall mechanics underlie organ initiation in Arabidopsis. Current Biology 21:1720−1726

doi: 10.1016/j.cub.2011.08.057
[15]

Wachsman G, Zhang J, Moreno-Risueno MA, Anderson CT, Benfey PN. 2020. Cell wall remodeling and vesicle trafficking mediate the root clock in Arabidopsis. Science 370:819−823

doi: 10.1126/science.abb7250
[16]

Peaucelle A, Wightman R, Höfte H. 2015. The control of growth symmetry breaking in the Arabidopsis hypocotyl. Current Biology 25:1746−1752

doi: 10.1016/j.cub.2015.05.022
[17]

Zhu X, Chen X, Liu Y, Zhu Y, Gao G, et al. 2025. Cell wall patterning regulates plant stem cell dynamics. Science 390:1064−1070

doi: 10.1126/science.ady4102
[18]

Ito M, Iwase M, Kodama H, Lavisse P, Komamine A, et al. 1998. A novel cis-acting element in promoters of plant B-type cyclin genes activates M phase-specific transcription. The Plant Cell 10:331−341

doi: 10.1016/s1369-5266(98)80101-5
[19]

Yang W, Cortijo S, Korsbo N, Roszak P, Schiessl K, et al. 2021. Molecular mechanism of cytokinin-activated cell division in Arabidopsis. Science 371:1350−1355

doi: 10.1126/science.abe2305
[20]

Wu Z, Zhu D, Lin X, Miao J, Gu L, et al. 2016. RNA binding proteins RZ-1B and RZ-1C play critical roles in regulating pre-mRNA splicing and gene expression during development in Arabidopsis. The Plant Cell 28:55−73

doi: 10.1105/tpc.15.00949