Results 191 to 200 of about 12,990 (213)
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Setaria viridis P. Beauv.

2018
Setaria viridis (L.) P. Beauv. Artbeschreibung: 20-60 cm hoch, aufrecht oder aufsteigend. Blätter 5-15 mm breit, rau. Blütenstand eine dichte, zylindrische, grüne Ährenrispe, unten unterbrochen oder nicht, ohne die Borsten 3-10 cm lang und 0,5-1 cm dick, die Hauptachse oben mit 0,5-1 mm langen Haaren. Ährchen 2-2,5 mm lang, mindestens 5 mm überragt von
Konrad Lauber   +2 more
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Transposon Tagging in Setaria viridis

2016
Transposon tagging populations are important resources for characterizing gene function in model plant systems. In Setaria viridis, a transposon tagging population utilizing the miniature Ping (mPing) element was generated by introducing a construct containing mPing and the transposase Ping into accession A10.1.
Kazuhiro Kikuchi   +2 more
openaire   +1 more source

Forward Genetics in Setaria viridis

2016
Forward genetics is a powerful approach to identify mutations and genes underlying traits of interest. Typically, screens begin with chemical mutagenesis of seed or pollen to generate a collection of novel alleles. Dominant or semidominant mutants can be identified in screens of M1 plants and recessive mutants identified in screens of M2 families ...
Hui Jiang, Pu Huang, Thomas P. Brutnell
openaire   +1 more source

The lignin toolbox of the model grass Setaria viridis

Plant Molecular Biology, 2019
The core set of biosynthetic genes potentially involved in developmental lignification was identified in the model C4 grass Setaria viridis. Lignin has been recognized as a major recalcitrant factor negatively affecting the processing of plant biomass into bioproducts.
Sávio Siqueira Ferreira   +5 more
openaire   +2 more sources

Setaria viridis P. Beauv.

2007
Published as part of Jarvis, Charlie, 2007, Chapter 7: Linnaean Plant Names and their Types (part P), pp. 718-782 in Order out of Chaos. Linnaean Plant Types and their Types, London :Linnaean Society of London in association with the Natural History Museum on page 722, DOI: 10.5281/zenodo ...
openaire   +1 more source

Setaria viridis (L.) P. Beauv.

2013
Digitale Pflanzenbilder: Sammlung Dietmar ...
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Physiological and molecular responses of Setaria viridis to osmotic stress

Plant Physiology and Biochemistry, 2020
Drought-tolerant species, such as Setaria viridis, a C4 model plant, make physiological and biochemical adjustments water limitation and recover from the stress upon its release. We investigated S. viridis (A10.1 accession) responses to continuing osmotic stress.
David da Cunha, Valença   +7 more
openaire   +2 more sources

Antioxidant and Antimicrobial Phenolic Compounds from Setaria viridis

Chemistry of Natural Compounds, 2014
A chemical study of the 80% aqueous acetone extract of aerial parts of Setaria viridis led to the isolation of three new naphthol rhamnosides, 8-O-α-L-rhamnosyl-β-sorigenin (1), 6-hydroxy-8-O-α-L-rhamnosyl-β-sorigenin (2), and 6-methoxy-8-O-α-L-rhamnosyl-β-sorigenin (3), together with nine (4–12) known compounds.
Lu Fan   +3 more
openaire   +1 more source

Agrobacterium tumefaciens-Mediated Transformation of Setaria viridis

2016
Gene transfer methodology, often referred to as transformation, is an important component of a model system research platform. Availability of transformation methods markedly expand the application of a model. We chose to develop an Agrobacterium tumefaciens-mediated gene transfer method for Setaria viridis A10.1.
Joyce Van Eck   +3 more
openaire   +1 more source

Two New Varieties of Setaria viridis

Weed Science, 1971
Two new varieties of foxtails, Setaria viridis var. robusta alba Schreiber and Setaria viridis var. robusta-purpurea Schreiber are described. As their names imply, they differ from each other only in the color of their bristles but differ from Setaria viridis (L.) Beauv. and Setaria viridis var. major (Gaud.) Posp.
Marvin M. Schreiber, Lawrence R. Oliver
openaire   +1 more source

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