Results 181 to 190 of about 9,135 (223)
Structural plasticity of D3–D14 ubiquitin ligase in strigolactone signalling [PDF]
The strigolactones, a class of plant hormones, regulate many aspects of plant physiology. In the inhibition of shoot branching, the α/β hydrolase D14-which metabolizes strigolactone-interacts with the F-box protein D3 to ubiquitinate and degrade the ...
Fabrizio Ticchiarelli +2 more
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Annual Review of Phytopathology, 2010
Strigolactones (SLs) were originally isolated from plant root exudates as germination stimulants for root parasitic plants of the family Orobanchaceae, including witchweeds (Striga spp.), broomrapes (Orobanche and Phelipanche spp.), and Alectra spp., and so were regarded as detrimental to the producing plants.
Xiaonan, Xie +2 more
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Strigolactones (SLs) were originally isolated from plant root exudates as germination stimulants for root parasitic plants of the family Orobanchaceae, including witchweeds (Striga spp.), broomrapes (Orobanche and Phelipanche spp.), and Alectra spp., and so were regarded as detrimental to the producing plants.
Xiaonan, Xie +2 more
openaire +2 more sources
Catabolism of strigolactones by a carboxylesterase
Nature Plants, 2021Strigolactones (SLs) are carotenoid-derived plant hormones that control shoot branching and communications between host plants and symbiotic fungi or root parasitic plants. Extensive studies have identified the key components participating in SL biosynthesis and signalling, whereas the catabolism or deactivation of endogenous SLs in planta remains ...
Enjun Xu +6 more
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Trends in Plant Science, 2013
The strigolactones are rhizosphere signaling molecules as well as a new class of plant hormones with a still increasing number of biological functions being uncovered. Here, we review a recent major breakthrough in our understanding of strigolactone biosynthesis, which has revealed the unexpected simplicity of the originally postulated complex pathway.
Ruyter, C.P. +3 more
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The strigolactones are rhizosphere signaling molecules as well as a new class of plant hormones with a still increasing number of biological functions being uncovered. Here, we review a recent major breakthrough in our understanding of strigolactone biosynthesis, which has revealed the unexpected simplicity of the originally postulated complex pathway.
Ruyter, C.P. +3 more
openaire +3 more sources
2021
This volume presents the most useful laboratory protocols in strigolactones(SL) research. Chapters guide readers through wet-lab paths, issues around stability, protocols to evaluate SL activity, effects towards soil inhabitants such as parasitic plants, mycorrhizal and non-mycorrhizal fungi, nodulating bacteria, and protocols to assess effects on ...
Cristina Prandi, Francesca Cardinale
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This volume presents the most useful laboratory protocols in strigolactones(SL) research. Chapters guide readers through wet-lab paths, issues around stability, protocols to evaluate SL activity, effects towards soil inhabitants such as parasitic plants, mycorrhizal and non-mycorrhizal fungi, nodulating bacteria, and protocols to assess effects on ...
Cristina Prandi, Francesca Cardinale
openaire +1 more source
StrigoQuant: A genetically encoded biosensor for quantifying strigolactone activity and specificity
Strigolactones are key regulators of plant development and interaction with symbiotic fungi; however, quantitative tools for strigolactone signaling analysis are lacking.
Kun-Peng Jia +2 more
exaly +2 more sources
Triazole Ureas Covalently Bind to Strigolactone Receptor and Antagonize Strigolactone Responses [PDF]
Strigolactones, a class of plant hormones with multiple functions, mediate plant-plant and plant-microorganism communications in the rhizosphere. In this study, we developed potent strigolactone antagonists, which covalently bind to the strigolactone receptor D14, by preparing an array of triazole urea compounds.
Masaru Tanokura +2 more
exaly +3 more sources
Quantification of Strigolactones
2019Strigolactones (SLs) are a family of natural products produced by the plants as shoot branching factors and responsible for the induction of hyphal branching in arbuscular mycorrhizal (AM) fungi. They have been also used by parasitic plant seeds as stimulators of their germination as a strategy to ensure the presence of a host in the environment.
Carlos, Rial +4 more
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Avoiding conflict with strigolactones
Science Signaling, 2022Plants detect and respond to neighbors with root-produced hormones.
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Strigolactones, karrikins and beyond
Plant, Cell & Environment, 2017AbstractThe plant hormones strigolactones are synthesized from carotenoids and signal via the α/β hydrolase DWARF 14 (D14) and the F‐box protein MORE AXILLARY GROWTH 2 (MAX2). Karrikins, molecules produced upon fire, share MAX2 for signalling, but depend on the D14 paralog KARRIKIN INSENSITIVE 2 (KAI2) for perception with strong evidence that the MAX2 ...
Carolien De Cuyper +5 more
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