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  • Quantitative Plant Biology: 2022, vol: 3, issue:
  • 1)- Leah Ginsberg, Robin McDonald, Qinchen Lin, Rodinde Hendrickx, Giada Spigolon, Guruswami Ravichandran, Chiara Daraio, Eleftheria Roumeli. Cell wall and cytoskeletal contributions in single cell biomechanics of . Quantitative plant biology. 2022, 3: e1
    Cited : 1
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  • 2)- Thomas Nägele. Metabolic regulation of subcellular sucrose cleavage inferred from quantitative analysis of metabolic functions. Quantitative plant biology. 2022, 3: e10
    Cited : 3
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  • 3)- Marketa Samalova, Evelina Gahurova, Jan Hejatko. Expansin-mediated developmental and adaptive responses: A matter of cell wall biomechanics? Quantitative plant biology. 2022, 3: e11
    Cited : 18
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  • 4)- Hojae Yi, Yintong Chen, Charles T Anderson. Turgor pressure change in stomatal guard cells arises from interactions between water influx and mechanical responses of their cell walls. Quantitative plant biology. 2022, 3: e12
    Cited : 6
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  • 5)- Xiaofeng Yin, Hirokazu Tsukaya. Fibonacci spirals may not need the Golden Angle. Quantitative plant biology. 2022, 3: e13
    Cited : 1
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  • 6)- Ivan Kashkan, Ksenia Timofeyenko, Kamil Růžička. How alternative splicing changes the properties of plant proteins. Quantitative plant biology. 2022, 3: e14
    Cited : 8
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  • 7)- Shunji Shimadzu, Tomoyuki Furuya, Yasuko Ozawa, Hiroo Fukuda, Yuki Kondo. Spatio-temporal imaging of cell fate dynamics in single plant cells using luminescence microscope. Quantitative plant biology. 2022, 3: e15
    Cited : 3
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  • 8)- Sophie de Vries, Jan de Vries. Evolutionary genomic insights into cyanobacterial symbioses in plants. Quantitative plant biology. 2022, 3: e16
    Cited : 15
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  • 9)- Karine Bonneval. Translators to weave with the non-humans. Quantitative plant biology. 2022, 3: e17
    Cited : 1
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  • 10)- Konstantinos Giannakis, Joanna M Chustecki, Iain G Johnston. Exchange on dynamic encounter networks allows plant mitochondria to collect complete sets of mitochondrial DNA products despite their incomplete genomes. Quantitative plant biology. 2022, 3: e18
    Cited : 9
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  • 11)- Patrick Hüther, Jörg Hagmann, Adam Nunn, Ioanna Kakoulidou, Rahul Pisupati, David Langenberger, Detlef Weigel, Frank Johannes, Sebastian J Schultheiss, Claude Becker. MethylScore, a pipeline for accurate and context-aware identification of differentially methylated regions from population-scale plant whole-genome bisulfite sequencing data. Quantitative plant biology. 2022, 3: e19
    Cited : 10
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  • 12)- Asal Atakhani, Léa Bogdziewiez, Stéphane Verger. Characterising the mechanics of cell-cell adhesion in plants. Quantitative plant biology. 2022, 3: e2
    Cited : 9
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  • 13)- Aurore Receveur, Lucie Poulet, Benjamin Dalmas, Barbara Gonçalves, Antoine Vernay. Citizen science: How to extend reciprocal benefits from the project community to the broader socio-ecological system. Quantitative plant biology. 2022, 3: e20
    Cited : 5
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  • 14)- Maxwell R McReynolds, Linkan Dash, Christian Montes, Melissa A Draves, Michelle G Lang, Justin W Walley, Dior R Kelley. Temporal and spatial auxin responsive networks in maize primary roots. Quantitative plant biology. 2022, 3: e21
    Cited : 6
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  • 15)- Daniel H Chitwood, Joey Mullins. A predicted developmental and evolutionary morphospace for grapevine leaves. Quantitative plant biology. 2022, 3: e22
    Cited : 6
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  • 16)- Chandran Nithin, Sunandan Mukherjee, Jolly Basak, Ranjit Prasad Bahadur. NCodR: A multi-class support vector machine classification to distinguish non-coding RNAs in Viridiplantae. Quantitative plant biology. 2022, 3: e23
    Cited : 2
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  • 17)- Jazmin Argüello, Jean-Louis Weber, Ioan Negrutiu. Ecosystem natural capital accounting: The landscape approach at a territorial watershed scale. Quantitative plant biology. 2022, 3: e24
    Cited : 3
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  • 18)- Xiao Wu, An Yan, Xing Liu, Shaoling Zhang, Yun Zhou. Quantitative live-imaging reveals the dynamics of apical cells during gametophyte development in ferns. Quantitative plant biology. 2022, 3: e25
    Cited : 3
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  • 19)- Hiromitsu Tabeta, Yasuhiro Higashi, Yozo Okazaki, Kiminori Toyooka, Mayumi Wakazaki, Mayuko Sato, Kazuki Saito, Masami Y Hirai, Ali Ferjani. Skotomorphogenesis exploits threonine to promote hypocotyl elongation. Quantitative plant biology. 2022, 3: e26
    Cited : 7
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  • 20)- Laura van Schijndel, Basten L Snoek, Kirsten Ten Tusscher. Embodiment in distributed information processing: "Solid" plants versus "liquid" ant colonies. Quantitative plant biology. 2022, 3: e27
    Cited : 5
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  • 21)- Chi Kuan, Shao-Li Yang, Chin-Min Kimmy Ho. Using quantitative methods to understand leaf epidermal development. Quantitative plant biology. 2022, 3: e28
    Cited : 5
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  • 22)- Aravind Karanam, Wouter-Jan Rappel. Boolean modelling in plant biology. Quantitative plant biology. 2022, 3: e29
    Cited : 1
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  • 23)- Yu-Ming Hsu, Matthieu Falque, Olivier C Martin. Quantitative modelling of fine-scale variations in the crossover landscape. Quantitative plant biology. 2022, 3: e3
    Cited : 3
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  • 24)- Ikuma Kaneshiro, Masako Igarashi, Tetsuya Higashiyama, Yoko Mizuta. Target pollen isolation using automated infrared laser-mediated cell disruption. Quantitative plant biology. 2022, 3: e30
    Cited : 0
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  • 25)- Natasha Bilkey, Huiyong Li, Nikolay Borodinov, Anton V Ievlev, Olga S Ovchinnikova, Ram Dixit, Marcus Foston. Correlated mechanochemical maps of primary cell walls using atomic force microscope infrared spectroscopy. Quantitative plant biology. 2022, 3: e31
    Cited : 0
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  • 26)- Alexis Lebecq, Aurélie Fangain, Alice Boussaroque, Marie-Cécile Caillaud. Dynamic apico-basal enrichment of the F-actin during cytokinesis in Arabidopsis cells embedded in their tissues. Quantitative plant biology. 2022, 3: e4
    Cited : 5
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  • 27)- Boas Pucker, Iker Irisarri, Jan de Vries, Bo Xu. Plant genome sequence assembly in the era of long reads: Progress, challenges and future directions. Quantitative plant biology. 2022, 3: e5
    Cited : 54
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  • 28)- Tiago D G Nunes, Magdalena W Slawinska, Heike Lindner, Michael T Raissig. Quantitative effects of environmental variation on stomatal anatomy and gas exchange in a grass model. Quantitative plant biology. 2022, 3: e6
    Cited : 12
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  • 29)- Oleksandr Zhdanov, Michael R Blatt, Hossein Zare-Behtash, Angela Busse. Unidirectional versus bidirectional brushing: Simulating wind influence on . Quantitative plant biology. 2022, 3: e7
    Cited : 3
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  • 30)- Masayoshi Nakamura, Noriyoshi Yagi, Takashi Hashimoto. Finding a right place to cut: How katanin is targeted to cellular severing sites. Quantitative plant biology. 2022, 3: e8
    Cited : 3
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  • 31)- Nelson B C Serre, Matyáš Fendrych. ACORBA: Automated workflow to measure root tip angle dynamics. Quantitative plant biology. 2022, 3: e9
    Cited : 8
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