Seminal roots of maize are pivotal for early seedling establishment. The maize mutant rootless concerning crown and seminal roots (rtcs) is defective in seminal root initiation during embryogenesis. In this study, the transcriptomes of wild-type and rtcs embryos were analyzed by RNA-Seq based on histological results at three stages of seminal root primordia formation. Hierarchical clustering highlighted that samples of each genotype grouped together along development. Determination of their gene activity status revealed hundreds of genes specifically transcribed in wild-type or rtcs embryos, while K-mean clustering revealed changes in gene expression dynamics between wild-type and rtcs during embryo development. Pairwise comparisons of rtcs...
The maize (Zea mays L.) Aux/IAA protein RUM1 (ROOTLESS WITH UNDETECTABLE MERISTEMS 1) controls semin...
Gene expression changes associated with embryogenic callus formation and with somatic embryo maturat...
To investigate the molecular basis of root development and function, I helped isolate several cDNA c...
Seminal roots of maize are pivotal for early seedling establishment. The maize mutant rootless conce...
Maize develops a complex root system composed of embryonic and post-embryonic roots. Spatio-temporal...
The maize (Zea mays) shoot apical meristem (SAM) arises early in embryogenesis and functions during ...
The formation of a zygote via the fusion of an egg and sperm cell and its subsequent asymmetric divi...
The monogenic recessive maize (Zea mays) mutant rootless with undetectable meristems 1 (rum1) is def...
The root system is fundamental for plant development, is crucial for overall plant growth and is rec...
open8siNome progetto: Water4CropsThe genetic dissection of root architecture and functions allows fo...
Root hairs are tubular extensions of epidermis cells. Transcriptome profiling demonstrated that the ...
The root system is fundamental for plant development, is crucial for overall plant growth and is rec...
All above‐ground plant organs are derived from shoot apical meristems (SAMs). Global analyses of gen...
The complex architecture and plasticity of the maize root system is controlled by a plethora of gene...
Embryogenic tissue culture systems are utilized in propagation and genetic engineering of crop plant...
The maize (Zea mays L.) Aux/IAA protein RUM1 (ROOTLESS WITH UNDETECTABLE MERISTEMS 1) controls semin...
Gene expression changes associated with embryogenic callus formation and with somatic embryo maturat...
To investigate the molecular basis of root development and function, I helped isolate several cDNA c...
Seminal roots of maize are pivotal for early seedling establishment. The maize mutant rootless conce...
Maize develops a complex root system composed of embryonic and post-embryonic roots. Spatio-temporal...
The maize (Zea mays) shoot apical meristem (SAM) arises early in embryogenesis and functions during ...
The formation of a zygote via the fusion of an egg and sperm cell and its subsequent asymmetric divi...
The monogenic recessive maize (Zea mays) mutant rootless with undetectable meristems 1 (rum1) is def...
The root system is fundamental for plant development, is crucial for overall plant growth and is rec...
open8siNome progetto: Water4CropsThe genetic dissection of root architecture and functions allows fo...
Root hairs are tubular extensions of epidermis cells. Transcriptome profiling demonstrated that the ...
The root system is fundamental for plant development, is crucial for overall plant growth and is rec...
All above‐ground plant organs are derived from shoot apical meristems (SAMs). Global analyses of gen...
The complex architecture and plasticity of the maize root system is controlled by a plethora of gene...
Embryogenic tissue culture systems are utilized in propagation and genetic engineering of crop plant...
The maize (Zea mays L.) Aux/IAA protein RUM1 (ROOTLESS WITH UNDETECTABLE MERISTEMS 1) controls semin...
Gene expression changes associated with embryogenic callus formation and with somatic embryo maturat...
To investigate the molecular basis of root development and function, I helped isolate several cDNA c...