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BdRCN4, a Brachypodium distachyon TFL1 homologue, is involved in regulation of apical meristem fate.
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New Vision, New Mission, New Plan: The JGI’s Next Five Years
New 5-year strategic plan outlines how the JGI will advance … to advance foundational science, creating opportunities for the global research community. The U.S. Department of … along multiple avenues, including agriculture, climate modeling, novel bioproducts, and environmental …
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Changes in ambient temperature are the prevailing cue in determining Brachypodium distachyon diurnal gene regulation
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PHYTOCHROME C regulation of photoperiodic flowering via PHOTOPERIOD1 is mediated by EARLY FLOWERING 3 in Brachypodium distachyon
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Brachypodium: 20 years as a grass biology model system; the way forward?
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How Filamentous Fungi Sense Food
Tracing gene regulatory networks in the model fungus  Neurospora crassa . The Science A team led by … metabolized in filamentous fungi. The work also suggests a new approach to gene annotation, which then can be explored …
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User Programs
For accepted proposals, sequencing, synthesis, metabolomics and analysis will … of funds.   Proposal Call FICUS CSP Large Scale CSP New Investigator CSP Functional Genomics Status CLOSED …
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Chapter Five The Sphagnum Genome Project A New Model for Ecological and Evolutionary Genomics
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Better Crops With a Pointillist Approach to Plant Genomics
In this episode, we peer into plant cells. Researchers are using measurements from single cells to … And eventually, their findings could help us grow better crops, with less impact on our planet. …
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Natural Prodcast Episode 12: Nadine Ziemert
… … DAN UDWARY: You’re listening to the Department of Energy … Europe. So if there are any kind of dated references to the news, that’s why. But it was a really fun conversation. And … Usually, in a lot of cases, we still have to go through publications to get proteins, and their functions, and all …
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KARRIKIN INSENSITIVE2 regulates leaf development, root system architecture and arbuscular‐mycorrhizal symbiosis in Brachypodium distachyon
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Mutations in the predicted DNA polymerase subunit POLD3 result in more rapid flowering of Brachypodium distachyon
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