Results 11 to 20 of about 9,135 (223)
Genes involved in the synthesis and signaling pathway of strigolactone, a shoot branching inhibitor
Branching is an important step in higher plant development, which not only determines the configuration of the plant directly, but also affects its adaptability to the environment. The interactions between hormones, genes, environmental and other factors
L. Gong, Y. -J. Yang, J. Zhou
doaj +2 more sources
Strigolactone regulates shoot development through a core signalling pathway [PDF]
Strigolactones are a recently identified class of hormone that regulate multiple aspects of plant development. The DWARF14 (D14) α/β fold protein has been identified as a strigolactone receptor, which can act through the SCFMAX2 ubiquitin ligase, but the
Tom Bennett +5 more
doaj +4 more sources
Strigolactone Signaling and Evolution
Strigolactones are a structurally diverse class of plant hormones that control many aspects of shoot and root growth. Strigolactones are also exuded by plants into the rhizosphere, where they promote symbiotic interactions with arbuscular mycorrhizal fungi and germination of root parasitic plants in the Orobanchaceae family.
Waters, MT +3 more
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The role of strigolactone in alleviating salinity stress in chili pepper
Salinity stress can significantly delay plant growth. It can disrupt water and nutrient uptake, reducing crop yields and poor plant health. The use of strigolactone can be an effective technique to overcome this issue. Strigolactone enhances plant growth
Subhan Danish +7 more
doaj +2 more sources
Chromium (Cr) stress significantly hinders crop production by disrupting nutrient uptake, impairing plant growth, and contaminating soil, posing a substantial threat to agricultural sustainability.
Uzma Younis +4 more
doaj +2 more sources
Genotype By Environment Interaction in Shoot Branching [PDF]
Plant development is highly plastic, allowing plants to adapt to constant changes in environmental conditions. An excellent example of developmental plasticity is shoot branching.
George, Gilu
core +6 more sources
SiDT1 Defines Plant Architecture Reminiscent of Green Revolution in Foxtail Millet. [PDF]
SiDT1 encodes a GA3‐oxidase that creates a semi‐dwarf, lodging‐resistant architecture reminiscent of the rice Green Revolution. The resulting ideotype performs well under dense planting and provides a valuable genetic resource for high‐yield, mechanized foxtail millet production. ABSTRACT Foxtail millet (Setaria italica) is a drought‐tolerant C4 cereal
Lv J +13 more
europepmc +2 more sources
Gene Editing of Nicotiana benthamiana Architecture for Space-Efficient Production of Recombinant Proteins in Closed Environments. [PDF]
ABSTRACT Indoor vertical farming (VF) offers practical advantages for the cultivation of plant protein bio‐factories including plant uniformity, product consistency, water/nutrient recycling and production cycles on a year‐round basis. Much progress has been achieved toward the development of innovative systems for artificial lighting, automated ...
Giroux B +5 more
europepmc +2 more sources
Structural and functional characterisation of a reconstructed ancestral strigolactone receptor. [PDF]
Significance Statement Ancestral sequence reconstruction of the strigolactone receptor DWARF14 (D14) reveals that its substrate specificity and signalling mechanism have remained largely conserved in seed plants. Ancestral D14 exhibits improved recombinant yields, thermostability and catalytic activity relative to D14 from Arabidopsis thaliana ...
Tuckey AJ +6 more
europepmc +2 more sources
Perception and Signaling of Strigolactones [PDF]
Strigolactones (SLs), a recently discovered class of phytohormones, are important regulators of plant growth and development. While the biosynthetic pathway of these molecules is well documented, until recently there was not much known about the molecular mechanisms underlying SL perception and signal transduction in plants.
Marek Marzec, Marek Marzec
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