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Bennett, T. A. et al. Plasma membrane-targeted PIN proteins drive shoot development in a moss.
To help understand the differentiation mechanism, shoot development was studied over time in both shoot phases.
Effects of Stock Plant Etiolation, Shading, Banding and Shoot Development on Histology and Cutting Propagation of Carpinus betulus L. Fastigiata.
DeCook, R., Lall, S., Nettleton, D. & Howell, S.H. Genetic regulation of gene expression during shoot development in Arabidopsis.
Prigge, M. J. & Wagner, D. R. The Arabidopsis SERRATE gene encodes a zinc-finger protein required for normal shoot development.
Shoot development was enhanced by 10 μM BAP and 10 μM AgNO3 leading to 100% well developed shoots.
The greater the number of roots produced by a petiole, the greater the likelihood of shoot development on that petiole.
Little is known about quantitative trait loci (QTLs) and their genetic interaction (epistasis) in lateral shoot development.
Identification of gene families that are key in cell wall biosynthesis suggests that the whole-genome duplication event generated more gene duplicates involved in bamboo shoot development.
In tissue culture high auxin and low cytokinin give rise to root development; low auxin and high cytokinin encourage shoot development.
In addition, two florigen genes, FT and TSF, play important roles in linking the floral transition and lateral shoot development to maximize the reproductive success of Arabidopsis plants.
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