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Burning questions for a warming and changing world : 15 unknowns in plant abiotic stress
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BREEDIT : a multiplex genome editing strategy to improve complex quantitative traits in maize
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Improving crop yield potential: Underlying biological processes and future prospects
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An in situ sequencing approach maps PLASTOCHRON1 at the boundary between indeterminate and determinate cells
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SAMBA controls cell division rate during maize development
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- A2
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Mini-review : transgenerational CRISPR/Cas9 gene editing in plants
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Increasing yield on dry fields : molecular pathways with growing potential
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Modulation of the DA1 pathway in maize shows that translatability of information from Arabidopsis to crops is complex
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Identification of growth regulators using cross-species network analysis in plants
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The translatability of genetic networks from model to crop species : lessons from the past and perspectives for the future
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Modeling reveals posttranscriptional regulation of GA metabolism enzymes in response to drought and cold
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Proximal hyperspectral imaging detects diurnal and drought-induced changes in maize physiology
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- Journal Article
- A2
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An RNA in situ hybridization protocol optimized for monocot tissue
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Drought affects the rate and duration of organ growth but not inter-organ growth coordination
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A forward genetics approach integrating genome-wide association study and expression quantitative trait locus mapping to dissect leaf development in maize (Zea mays)
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The dynamics of maize leaf development : patterned to grow while growing a pattern
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Turgor-time controls grass leaf elongation rate and duration under drought stress
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Root engineering in maize by increasing cytokinin degradation causes enhanced root growth and leaf mineral enrichment
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From lab to field : yield stability and shade avoidance genes are massively differentially expressed in the field
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Comparative transcriptomics enables the identification of functional orthologous genes involved in early leaf growth