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Strigolactones inhibit adventitious root formation [PDF]
Adventitious root formation from a non-root tissue facilitates clonal propagation of elite plant varieties and is therefore central to many plant industries worldwide. However many plant species cannot be propagated in this way posing significant limitations particularly on the forestry and horticulture industries.
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Auxin Metabolism and Adventitious Root Initiation
1994In this chapter I will report on and discuss the role of auxins in adventitious root initiation, particularly the relations between endogenous indole-3-acetic acid (IAA) and the early events of adventitious rooting. The fact that IAA is involved is well established, although much of the data to support this is circumstantial. It will be not possible in
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Commercial Application of Adventitious Rooting to Forestry
1994Zhu Xi’s lyrical and evocative lines were penned over 800 years ago. The cuttings referred to are of the Chinese fir (Cunninghamia lanceolata [Lamb.] Hook.), China’s major timber producing conifer. A scrutiny of ancient Chinese literature led Li (1992a) to conclude that this species has been propagated by cuttings in China for over 1,000 years ...
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ADVENTITIOUS ROOTS ON PANICLES OF RICE
Journal of Heredity, 1942JENKIN W. JONES, MERRITT N. POPE
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Natural Variation in Adventitious Rooting in the Alpine Perennial Arabis alpina
Plants, 2020Maria Albani +2 more
exaly
Effects of diphenylurea derivatives on adventitious rooting
2009Adventitious root formation is a key step in vegetative propagation of plants, one of the most efficient methods to multiply plants in vivo or in vitro. Endogenous auxin (namely indole 3 acetic acid, IAA) has been established as natural inducer of root formation, and its capacity to induce roots when exogenously applied has also been rapidly recognised.
ROLLI, Enrico, RICCI, Ada
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