Results 191 to 200 of about 4,804 (235)
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Adventitious root formation in crops—Potato as an example

Physiologia Plantarum, 2020
AbstractThe root system of potato is made up of adventitious roots (AR) that form at the base of a sprout once it emerges from the mother tuber. By definition, AR originate from dormant preformed meristems, or from cells neighboring vascular tissues in stems or leaves.
Mukul Joshi, Idit Ginzberg
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Sugar-induced adventitious roots in Arabidopsis seedlings

Journal of Plant Research, 2003
The effects of sugars on root growth and on development of adventitious roots were analyzed in Arabidopsis thaliana. Seeds were sown on agar plates containing 0.0-5.0% sugars and placed vertically in darkness (DD) or under long day (LD, 16 h:8 h) conditions, so that the seedlings were constantly attached to the agar medium.
Fumio, Takahashi   +4 more
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Inhibition of adventitious root development in apple rootstocks by cytokinin is based on its suppression of adventitious root primordia formation

Physiologia Plantarum, 2018
Cytokinin (CK) inhibits adventitious root (AR) formation in stem cuttings. Little is known, however, about the mechanism underlying the inhibitory effect. In this study, 2 mg l−1 of exogenous 6‐benzyl adenine (6‐BA) was administered to 3 and 7‐day‐old apple rootstocks ‘M.26’ cuttings (3 and 7 days 6‐BA) by transferring them from a rooting medium ...
Jiangping Mao   +5 more
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Adventitious Root Development in Dicotyledons

The plant's root system is comprised of primary, lateral, and adventitious roots (ARs). Lateral roots emerge exclusively from existing roots, whereas ARs originate from stem or leaf-derived cells. The progression of adventitious root development is a natural part of a plant's growth, commonly observed in most monocotyledonous species where they ...
Mishra, Priyanka   +3 more
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MicroRNAs as regulators of adventitious root development

Journal of Plant Biochemistry and Biotechnology, 2014
MicroRNAs (miRNAs) are post-transcriptional regulators of growth and development in both plants and animals. In plants, the root system plays the essential role of anchoring plants to the soil and allowing the uptake of nutrients and water. Adventitious rooting is an essential step in the vegetative propagation of economically important horticultural ...
Gleeson, Madeleine   +3 more
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Adventitious Roots

2014
The root system of a plant is composed of the primary, lateral and adventitious roots (ARs). Lateral roots always develop from roots, whereas ARs form from stem or leaf‐derived cells. AR formation is part of the normal development of the plant and occurs naturally, like in most monocotyledonous for which they constitute the main root system or in many ...
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Adventitious Shoots on Saltcedar Roots

Botanical Gazette, 1966
Saltcedar (Tamarix pentandra Pall.) roots, characterized by polyarch primary xylem, produced adventitious shoots that originated endogenously near the vascular cambium. Root cuttings, buried vertically and horizontally on a mist-bed, produced adventitious shoots at rates of 21% and 8 ...
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Adventitious rooting in chestnut: an anatomical investigation

Scientia Horticulturae, 1994
Abstract The effects of girdling and etiolation on the anatomical structure and adventitious rooting of hybrid chestnut ( Castanea sativa × Castanea crenata ) cultivar ‘Marigoule’ shoots are reported and discussed. The treatments were: (1) shoot girdling (2–3 cm above stool-insertion point); (2) etiolation (covering stoolbed with soil); (3 ...
BIRICOLTI, STEFANO   +3 more
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Stimulation of adventitious rooting of Taxus species by thiamine

Plant Cell Reports, 1995
Results obtained from using root inducing compounds on Taxus species cuttings suggested that rooting could be significantly enhanced by the presence of thiamine. This observation was verified using a root inducing solution containing a set concentration of IBA (0.2%), NAA (0.1%), and supplemented with various concentrations of thiamine.
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Biology of Adventitious Root Formation

1994
Special Lecture: The Origin, Diversity, and Biology of Shoot-Borne Roots P.W. Barlow. The Commercial Importance of Adventitious Rooting: Commercial Application of Adventitious Rooting to Forestry G.A. Ritchie. Infrastructure for Research: Model Systems for Studying Adventitious Root Formation S.G. Ernst.
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