The influence of total darkness versus a 16/8 photoperiod and of auxins added to the culture medium on the in vitro root formation capacity of Acacia mangium microshoots of juvenile and mature origin was examined. Rooting of the mature clone was significantly increased by exposing the microshoots to auxins (4 and 6 [mu]M IAA or IBA) in darkness, while the promoting effect of darkness combined with 4 [mu]M IAA was more time-restricted for the juvenile-origin microshoots. Overall, the latter rooted in greater proportions than those from the mature source. Maintaining the microshoots of both origins on auxin supplemented medium in darkness resulted in a greater number of adventitious roots formed than under the standard 16/8 lighting condition...
Acacia species, and more especially Acacia mangium, have become major plantation tree species in Sab...
Light and the balance between carbohydrates and auxins play an important role in rooting. The role o...
Poor adventitious root formation is a major obstacle in micropropagation and in conventional propaga...
Acacia mangium microshoots from juvenile and mature genotypes were micropropagated through a regular...
Rooting capacity of microshoots derived from a mature clone of Acacia mangium Willd. and from its ju...
In vitro propagation of the ornamentally interesting species Wikstroemia gemmata is limited by the r...
In vitro propagation of the ornamentally interesting species Wikstroemia gemmata is limited by the r...
In vitro propagation of the ornamentally interesting species Wikstroemia gemmata is limited by the r...
In vitro propagation of the ornamentally interesting species Wikstroemia gemmata is limited by the r...
The influence of rive different macronutrient formulations and various growth regulators on micropro...
tically germinated seedlings. Micropropagation technique for 1-mth-old aseptically germinated Acacia...
This study examines the effects of light emitting diodes (LEDs) on tissue culture proliferation of A...
Acacia mangium and A. mangium × A. auriculiformis hybrids have gained an increasing interest in reaf...
The rooting capacity of microshoots derived from two mature Eucalyptus urophylla X Eucalyptus grandi...
The possibilities of vegetatively propagating Acacia mangium through rooted cuttings were examined, ...
Acacia species, and more especially Acacia mangium, have become major plantation tree species in Sab...
Light and the balance between carbohydrates and auxins play an important role in rooting. The role o...
Poor adventitious root formation is a major obstacle in micropropagation and in conventional propaga...
Acacia mangium microshoots from juvenile and mature genotypes were micropropagated through a regular...
Rooting capacity of microshoots derived from a mature clone of Acacia mangium Willd. and from its ju...
In vitro propagation of the ornamentally interesting species Wikstroemia gemmata is limited by the r...
In vitro propagation of the ornamentally interesting species Wikstroemia gemmata is limited by the r...
In vitro propagation of the ornamentally interesting species Wikstroemia gemmata is limited by the r...
In vitro propagation of the ornamentally interesting species Wikstroemia gemmata is limited by the r...
The influence of rive different macronutrient formulations and various growth regulators on micropro...
tically germinated seedlings. Micropropagation technique for 1-mth-old aseptically germinated Acacia...
This study examines the effects of light emitting diodes (LEDs) on tissue culture proliferation of A...
Acacia mangium and A. mangium × A. auriculiformis hybrids have gained an increasing interest in reaf...
The rooting capacity of microshoots derived from two mature Eucalyptus urophylla X Eucalyptus grandi...
The possibilities of vegetatively propagating Acacia mangium through rooted cuttings were examined, ...
Acacia species, and more especially Acacia mangium, have become major plantation tree species in Sab...
Light and the balance between carbohydrates and auxins play an important role in rooting. The role o...
Poor adventitious root formation is a major obstacle in micropropagation and in conventional propaga...