International audienceTendrils are contact-sensitive, filamentous organs that permit climbing plants to tether to their taller neighbors. Tendrilled legume species are grown as field crops, where the tendrils contribute to the physical support of the crop prior to harvest. The homeotic tendril-less (tl) mutation in garden pea (Pisum sativum), identified almost a century ago, transforms tendrils into leaflets. In this study, we used a systematic marker screen of fast neutron-generated tl deletion mutants to identify Tl as a Class I homeodomain leucine zipper (HDZIP) transcription factor. We confirmed the tendril-less phenotype as loss of function by targeting induced local lesions in genomes (TILLING) in garden pea and by analysis of the ten...
The genomes of several legume species contain two Phantastica-like genes. Previous studies on leaf d...
Properties of a mutant at theLLD (LEAF-LET DEVELOPMENT) locus in pea Pisum sativum L. are reported i...
Angiosperm species exhibit incredible diversity in inflorescence architecture. Legumes comprise the ...
Tendrils are contact-sensitive, filamentous organs that permit climbing plants to tether to their ta...
Tendrils are contact-sensitive, filamentous organs that permit climbing plants to tether to their ta...
After gamma-ray treatment of pea seeds, a mutation tendril-less2 (tl2) was obtained. In heterozygote...
Differences in knotted1-like (knox) gene expression may account for some of the diversity of leaf fo...
Control of organ size and shape by cell proliferation and cell expansion is a fundamental process du...
The wild type compound leaf-blade of Pisum sativum has one to three pairs of simple leaflet pinnae i...
This thesis examines the development of the compound leaf in pea (Pisum sativum L.), focusing on re...
In order to dissect the genetic regulation of leafblade morphogenesis, 16 genotypes of pea, construc...
Pea (Pisum sativum) is one of relatively few genetically amenable plant species with compound leaves...
AbstractBackground: The vegetative phenotype of the pea mutant unifoliata (uni) is a simplification ...
Plants exhibit various kinds of movements that have fascinated scientists and the public for centuri...
Background The vegetative phenotype of the pea mutant unifoliata (uni) is a simplification of the wi...
The genomes of several legume species contain two Phantastica-like genes. Previous studies on leaf d...
Properties of a mutant at theLLD (LEAF-LET DEVELOPMENT) locus in pea Pisum sativum L. are reported i...
Angiosperm species exhibit incredible diversity in inflorescence architecture. Legumes comprise the ...
Tendrils are contact-sensitive, filamentous organs that permit climbing plants to tether to their ta...
Tendrils are contact-sensitive, filamentous organs that permit climbing plants to tether to their ta...
After gamma-ray treatment of pea seeds, a mutation tendril-less2 (tl2) was obtained. In heterozygote...
Differences in knotted1-like (knox) gene expression may account for some of the diversity of leaf fo...
Control of organ size and shape by cell proliferation and cell expansion is a fundamental process du...
The wild type compound leaf-blade of Pisum sativum has one to three pairs of simple leaflet pinnae i...
This thesis examines the development of the compound leaf in pea (Pisum sativum L.), focusing on re...
In order to dissect the genetic regulation of leafblade morphogenesis, 16 genotypes of pea, construc...
Pea (Pisum sativum) is one of relatively few genetically amenable plant species with compound leaves...
AbstractBackground: The vegetative phenotype of the pea mutant unifoliata (uni) is a simplification ...
Plants exhibit various kinds of movements that have fascinated scientists and the public for centuri...
Background The vegetative phenotype of the pea mutant unifoliata (uni) is a simplification of the wi...
The genomes of several legume species contain two Phantastica-like genes. Previous studies on leaf d...
Properties of a mutant at theLLD (LEAF-LET DEVELOPMENT) locus in pea Pisum sativum L. are reported i...
Angiosperm species exhibit incredible diversity in inflorescence architecture. Legumes comprise the ...