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期刊名:Quantitative plant biology

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ISSN:N/A

e-ISSN:2632-8828

IF/分区:2.5/Q2

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共收录本刊相关文章索引129
Clinical Trial Case Reports Meta-Analysis RCT Review Systematic Review
Classical Article Case Reports Clinical Study Clinical Trial Clinical Trial Protocol Comment Comparative Study Editorial Guideline Letter Meta-Analysis Multicenter Study Observational Study Randomized Controlled Trial Review Systematic Review
Léa Rambaud-Lavigne,Marie Monniaux,Zi-Liang Hu et al. Léa Rambaud-Lavigne et al.
Petal number is highly canalised in the four-petalled flowers of Arabidopsis. This trait is decanalised in the closely related species Cardamine hirsuta, such that petal number varies from zero to four between individual flowers and in resp...
Amy Watson,Vincent Segura,Yoann Bourhis et al. Amy Watson et al.
Near-infrared spectra (NIRS) from plant tissues can be used to predict traits owing to their relationship to internal biochemical states, shaped by both environmental and genetic components. Here, we tested the use of NIRS as predictors of ...
Mitsuo Shintani,Hidemasa Bono Mitsuo Shintani
Environmental stresses, such as drought and salt, adversely affect plant growth and crop productivity. While many studies have focused on established components of stress signaling pathways, research on unknown elements remains limited. In ...
Lucas Busta,Alan R Oyler Lucas Busta
Transformer-based large language models are receiving considerable attention because of their ability to analyse scientific literature. Small language models (SLMs), however, also have potential in this area as they have smaller compute foo...
Kaltra Xhelilaj,Anja Thoe Fuglsang,Julien Gronnier et al. Kaltra Xhelilaj et al.
Hydrogen, a deceptively simple element, plays crucial roles in regulating life on Earth. The concentration of hydrogen ions (H+) determines the pH of biological systems and dictates virtually all biochemical processes. The pH modulates the ...
Ben Noordijk,Marcel Reinders,Aalt D J van Dijk et al. Ben Noordijk et al.
Plants respond to stresses like drought and heat through complex gene regulatory networks (GRNs). To improve resilience, understanding these is crucial, but large-scale GRNs (>100 genes) are difficult to model using ordinary differential eq...
Silou Chen,Hugo J de Boer,Kirsten Ten Tusscher Silou Chen
Plants exhibit diverse morphological, anatomical and physiological responses to hypoxia stress from soil waterlogging, yet coordination between these responses is not fully understood. Here, we present a mechanistic model to simulate how ro...
Kaiyue Hong,Yun Zhou,Han Han Kaiyue Hong
Recent advancements in data science and artificial intelligence have significantly transformed plant sciences, particularly through the integration of image recognition and deep learning technologies. These innovations have profoundly impac...
Sofía Correa,Mathieu Thomas,Justine Lepagneul et al. Sofía Correa et al.
Expanding crop diversity is essential to address the imminent challenges of agriculture. This is especially true for organic farming, which relies on locally adapted species and varieties. Recently, participatory research approaches have em...
Wiktoria Wodniok Wiktoria Wodniok
Organ morphogenesis is a complex process and numerous factors must be considered while choosing a method for its quantitative investigation. Few methods facilitate in vivo imaging. These are sequential replica methods combined with scanning...