The plant hormones strigolactones are synthesized from carotenoids and signal via the alpha/beta 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-KAI2 protein complex might also recognize so far unknown plant-made karrikin-like molecules. Thus, the phenotypes of the max2 mutants are the complex consequence of a loss of both D14-dependent and KAI2-dependent signalling, hence, the reason why some biological roles, attributed to strigolactones based on max2 phenotypes, could never be observed in d14 or in the strigolactone-deficient max3 an...
Strigolactones (SLs) and related butenolides, originally identified as active seed germination stimu...
Although the main players of the strigolactone (SL) signaling pathway have been characterized geneti...
Strigolactone hormones are derived from carotenoids via carlactone, and act through the α/β–hydrolas...
Karrikins are butenolides derived from burnt vegetation that stimulate seed germination and enhance ...
Smoke is an important abiotic cue for plant regeneration in postfire landscapes. Karrikins are a cla...
Two a/ß-fold hydrolases, KARRIKIN INSENSITIVE2 (KAI2) and Arabidopsis thaliana DWARF14 (AtD14), are ...
A set of PpKAI2 - LIKE paralogs that may encode strigolactone receptors in Physcomitrella patens wer...
Abstract Background Strigolactones (SLs) are a class of plant hormones that control many aspects of ...
International audienceIn angiosperms, the a/b hydrolase DWARF14 (D14), along with the F-box protein ...
International audienceAbstract In angiosperms, the α/β hydrolase DWARF14 (D14), along with the F-box...
Karrikins and strigolactones are novel plant growth regulators that contain similar molecular featur...
The HYPOSENSITIVE TO LIGHT/KARRIKIN INSENSITIVE 2 (HTL/KAI2) α/β hydrolases likely play a critical r...
Strigolactones are a recently identified class of hormone that regulate multiple aspects of plant de...
Strigolactones (SLs) are phytohormones that play a central role in regulating shoot branching. SL pe...
Studying evolutionarily primitive organisms with simpler genomes can provide information about the c...
Strigolactones (SLs) and related butenolides, originally identified as active seed germination stimu...
Although the main players of the strigolactone (SL) signaling pathway have been characterized geneti...
Strigolactone hormones are derived from carotenoids via carlactone, and act through the α/β–hydrolas...
Karrikins are butenolides derived from burnt vegetation that stimulate seed germination and enhance ...
Smoke is an important abiotic cue for plant regeneration in postfire landscapes. Karrikins are a cla...
Two a/ß-fold hydrolases, KARRIKIN INSENSITIVE2 (KAI2) and Arabidopsis thaliana DWARF14 (AtD14), are ...
A set of PpKAI2 - LIKE paralogs that may encode strigolactone receptors in Physcomitrella patens wer...
Abstract Background Strigolactones (SLs) are a class of plant hormones that control many aspects of ...
International audienceIn angiosperms, the a/b hydrolase DWARF14 (D14), along with the F-box protein ...
International audienceAbstract In angiosperms, the α/β hydrolase DWARF14 (D14), along with the F-box...
Karrikins and strigolactones are novel plant growth regulators that contain similar molecular featur...
The HYPOSENSITIVE TO LIGHT/KARRIKIN INSENSITIVE 2 (HTL/KAI2) α/β hydrolases likely play a critical r...
Strigolactones are a recently identified class of hormone that regulate multiple aspects of plant de...
Strigolactones (SLs) are phytohormones that play a central role in regulating shoot branching. SL pe...
Studying evolutionarily primitive organisms with simpler genomes can provide information about the c...
Strigolactones (SLs) and related butenolides, originally identified as active seed germination stimu...
Although the main players of the strigolactone (SL) signaling pathway have been characterized geneti...
Strigolactone hormones are derived from carotenoids via carlactone, and act through the α/β–hydrolas...