Efforts to understand the phenotypic transition that gave rise to maize from teosinte have mainly focused on the analysis of aerial organs, with little insights into possible domestication traits affecting the root system. Archeological excavations in San Marcos cave (Tehuacan, Mexico) yielded two well-preserved 5,300 to 4,970 calibrated y B.P. specimens (SM3 and SM11) corresponding to root stalks composed of at least five nodes with multiple nodal roots and, in case, a complete embryonic root system. To characterize in detail their architecture and anatomy, we used laser ablation tomography to reconstruct a three-dimensional segment of their nodal roots and a scutellar node, revealing exquisite preservation of the inner tissue and cell org...
Key Words Zea, teosinte branched1 (tb1,) teosinte glume architecture1 (tga1), development, domestica...
The genetic dissection of root architecture and functions allows for a more effective and informed d...
BackgroundThere was ancient human selection on the wild progenitor of modern maize, Balsas teosinte,...
The complex evolutionary history of maize (Zea mays L. ssp. mays) has been clarified with genomic-le...
The evolution of maize (Zea mays L.) is highly controversial given the discrepancies related to the ...
© 2003 American Association for the Advancement of Science. All Rights Reserved.Maize was domesticat...
The natural history of maize began nine thousand years ago when Mexican farmers started to collect t...
The last two decades have seen important advances in our knowledge of maize domestication, thanks in...
There exists extraordinary morphological and genetic diversity among the maize landraces that have b...
The natural history of maize began nine thousand years ago when Mexican farmers started to collect t...
The evolution of maize (Zea mays L.) is highly controversial given the discrepancies related to the ...
AbstractThe gene teosinte branched 1 controls major differences in architecture between cultivated m...
The genetic dissection of root architecture and functions allows for a more effective and informed d...
<div><p>(A) Maize cob from the Ocampo Caves in Mexico dated to 3,890 years before the present. aDNA ...
AbstractMassive morphological changes occurred during the domestication of maize from wild teosinte....
Key Words Zea, teosinte branched1 (tb1,) teosinte glume architecture1 (tga1), development, domestica...
The genetic dissection of root architecture and functions allows for a more effective and informed d...
BackgroundThere was ancient human selection on the wild progenitor of modern maize, Balsas teosinte,...
The complex evolutionary history of maize (Zea mays L. ssp. mays) has been clarified with genomic-le...
The evolution of maize (Zea mays L.) is highly controversial given the discrepancies related to the ...
© 2003 American Association for the Advancement of Science. All Rights Reserved.Maize was domesticat...
The natural history of maize began nine thousand years ago when Mexican farmers started to collect t...
The last two decades have seen important advances in our knowledge of maize domestication, thanks in...
There exists extraordinary morphological and genetic diversity among the maize landraces that have b...
The natural history of maize began nine thousand years ago when Mexican farmers started to collect t...
The evolution of maize (Zea mays L.) is highly controversial given the discrepancies related to the ...
AbstractThe gene teosinte branched 1 controls major differences in architecture between cultivated m...
The genetic dissection of root architecture and functions allows for a more effective and informed d...
<div><p>(A) Maize cob from the Ocampo Caves in Mexico dated to 3,890 years before the present. aDNA ...
AbstractMassive morphological changes occurred during the domestication of maize from wild teosinte....
Key Words Zea, teosinte branched1 (tb1,) teosinte glume architecture1 (tga1), development, domestica...
The genetic dissection of root architecture and functions allows for a more effective and informed d...
BackgroundThere was ancient human selection on the wild progenitor of modern maize, Balsas teosinte,...