Loblolly pine (Pinus taeda L.) is one of the most important commercial trees in the U.S. To be successful for commercial use, somatic embryogenesis technology must work with a variety of genetically diverse seeds. Initiation rates of loblolly pine were improved through a combination of modified 1/2 P6 salts, activated carbon at 50-100 mgL$^{-1}$, Cu and Zn added to compensate for adsorption by activated carbon, 1.5% maltose, 2% myo-inositol, (to raise osmotic level partially simulating the ovule environment), 500 mg L$^{-1}$ case amino acids, 450 mg L$^{-1}$ glutamine, 2 mg L$^{-1}$ NAA, 0.45 mg L$^{-1}$ BAP, 0.43 mg L$^{-1}$ kinetin, and 1.6-2 g L$^{-1}$ Gelrite. Across 10 open-pollinated families, initiation rates ranged from 3-33%, avera...
Somatic embryogenesis using apical meristematic tissues of mature trees of conifers has many practic...
Loblolly pine (Pinus taeda L.) has been the focus of genetic improvement for nearly 100 years becaus...
Summary — Somatic embryos can be used for vegetative propagation of genetically superior m...
Loblolly pine (Pinus taeda L.) is one of the most important commercial trees in the U.S. To be succe...
© INRA, EDP Sciences, 2002. The original publication is available at: http://www.edpsciences.org/jo...
"March 2002."Submitted to Annales de Sciences and Wood, Breeding, Biotechnology Conference (WBB), Ju...
Mature zygotic embryos of eight (open-pollinated) families of loblolly pine (Pinus taeda L.) were cu...
Adventitious buds were induced from organogenic callus derived from mature zygotic embryos of three ...
Conifer species are subjected to major time constraints in tree improvement because of their long re...
Using our improved protocols for somatic embryogenesis in Pinus pinaster, transgenic tissues and pla...
Using our improved protocols for somatic embryogenesis in Pinus pinaster, transgenic tissues and pla...
The genus Pinus includes several species that are economically important and planted outside their n...
This study was conducted to determine the optimum period to collect loblolly pine (Pinus taeda L.) c...
Mature zygotic embryos of 24 genotypes of loblolly pine (Pinus taeda L.) were used as explants to es...
Advances in conifer biotechnology offer new opportunities in the field of vegetative propagation and...
Somatic embryogenesis using apical meristematic tissues of mature trees of conifers has many practic...
Loblolly pine (Pinus taeda L.) has been the focus of genetic improvement for nearly 100 years becaus...
Summary — Somatic embryos can be used for vegetative propagation of genetically superior m...
Loblolly pine (Pinus taeda L.) is one of the most important commercial trees in the U.S. To be succe...
© INRA, EDP Sciences, 2002. The original publication is available at: http://www.edpsciences.org/jo...
"March 2002."Submitted to Annales de Sciences and Wood, Breeding, Biotechnology Conference (WBB), Ju...
Mature zygotic embryos of eight (open-pollinated) families of loblolly pine (Pinus taeda L.) were cu...
Adventitious buds were induced from organogenic callus derived from mature zygotic embryos of three ...
Conifer species are subjected to major time constraints in tree improvement because of their long re...
Using our improved protocols for somatic embryogenesis in Pinus pinaster, transgenic tissues and pla...
Using our improved protocols for somatic embryogenesis in Pinus pinaster, transgenic tissues and pla...
The genus Pinus includes several species that are economically important and planted outside their n...
This study was conducted to determine the optimum period to collect loblolly pine (Pinus taeda L.) c...
Mature zygotic embryos of 24 genotypes of loblolly pine (Pinus taeda L.) were used as explants to es...
Advances in conifer biotechnology offer new opportunities in the field of vegetative propagation and...
Somatic embryogenesis using apical meristematic tissues of mature trees of conifers has many practic...
Loblolly pine (Pinus taeda L.) has been the focus of genetic improvement for nearly 100 years becaus...
Summary — Somatic embryos can be used for vegetative propagation of genetically superior m...