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The xerobranching response represses lateral root formation when roots are not in contact with water
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Cyclic programmed cell death stimulates hormone signaling and root development in Arabidopsis
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Root cap-derived auxin pre-patterns the longitudinal axis of the Arabidopsis root
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The emerging role of reactive oxygen species signaling during lateral root development
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A new role for glutathione in the regulation of root architecture linked to strigolactones
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Auxin reflux between the endodermis and pericycle promotes lateral root initiation
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A novel sensor to map auxin response and distribution at high spatio-temporal resolution
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Repression of early lateral root initiation events by transient water deficit in barley and maize
(2012) PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES. 367(1595). p.1534-1541 -
In silico analyses of pericycle cell populations reinforce their relation with associated vasculature in Arabidopsis
(2012) PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES. 367(1595). p.1479-1488 -
Plant developmental biologists meet on stairways in Matera