Biology Reference
In-Depth Information
Wang, S., Wu, K., Yuan, Q., Liu, X., Liu, Z., Lin, X., et al. (2012). Control of grain size,
shape and quality by OsSPL16 in rice. Nature Genetics , 44 , 950-954.
Wareing, P. (1959). Problems of juvenility and flowering in trees. Journal of the Linnean Society
of London, Botany , 56 , 282-289.
Wellmer, F., & Riechmann, J. L. (2010). Gene networks controlling the initiation of flower
development. Trends in Genetics , 26 , 519-527.
Whalen, M. C. (2005). Host defence in a developmental context. Molecular Plant Pathology , 6 ,
347-360.
Wilczek, A. M., Roe, J. L., Knapp, M. C., Cooper, M. D., Lopez-Gallego, C., Martin, L. J.,
et al. (2009). Effects of genetic perturbation on seasonal life history plasticity. Science , 323 ,
930-934.
Wilkie, J. D., Sedgley, M., & Olesen, T. (2008). Regulation of floral initiation in horticul-
tural trees. Journal of Experimental Botany , 59 , 3215-3228.
Wilson, R. N., Heckman, J. W., & Somerville, C. R. (1992). Gibberellin is required for
flowering in Arabidopsis under short days. Plant Physiology , 100 , 403-408.
Wiltshire, R. J. E., Murfet, I. C., & Reid, J. B. (1994). The genetic control of heterochrony:
Evidence from developmental mutants of Pisum sativum L. Journal of Evolutionary Biology ,
7 , 447-465.
Wiltshire, R. J. E., Potts, B. M., & Reid, J. B. (1991). A paedomorphocline in Eucalyptus :
Natural variation in the E. risdoniiā€”E. tenuiramis complex. Australian Journal of Botany ,
39 , 545-566.
Wiltshire, R. J. E., Potts, B. M., & Reid, J. B. (1998). Genetic control of reproductive and
vegetative phase change in the Eucalyptus risdonii - E. tenuiramis complex. Australian Journal
of Botany , 46 , 45-63.
Wiltshire, R. J. E., &Reid, J. B. (1992). The pattern of juvenility within Eucalyptus tenuiramis
Miq. saplings. In Mass production technology for genetically improved fast growing forest tree
species. AFOCEL-IUFRO symposium, Bordeaux (pp. 37-49). Nangis-Paris: Association
Foret Cellulose.
Winn, A. A. (1999). The functional significance and fitness consequences of heterophylly.
International Journal of Plant Sciences , 160 , S113-S121.
Wu, G., Park, M. Y., Conway, S. R., Wang, J. W., Weigel, D., & Poethig, R. S. (2009). The
sequential action of miR156 and miR172 regulates developmental timing in Arabidopsis .
Cell , 138 , 750-759.
Wu, G., & Poethig, R. S. (2006). Temporal regulation of shoot development in Arabidopsis
thaliana by miR156 and its target SPL3 . Development , 133 , 3539-3547.
Xie, K., Shen, J., Hou, X., Yao, J., Li, X., Xiao, J., et al. (2012). Gradual increase of miR156
regulates temporal expression changes of numerous genes during leaf development in
rice. Plant Physiology , 158 , 1382-1394.
Xie, K., Wu, C., & Xiong, L. (2006). Genomic organization, differential expression, and
interaction of SQUAMOSA promoter-binding-like transcription factors and micro-
RNA156 in rice. Plant Physiology , 142 , 280-293.
Xing, S., Salinas, M., Hohmann, S., Berndtgen, R., & Huijser, P. (2010). miR156-targeted
and nontargeted SBP-box transcription factors act in concert to secure male fertility in
Arabidopsis . The Plant Cell , 22 , 3935-3950.
Yamaguchi, A., Wu, M. F., Yang, L., Wu, G., Poethig, R. S., & Wagner, D. (2009). The
microRNA-regulated SBP-Box transcription factor SPL3 is a direct upstream activator
of LEAFY , FRUITFULL , and APETALA1 . Developmental Cell , 17 , 268-278.
Yang, L., Conway, S. R., & Poethig, R. S. (2011). Vegetative phase change is mediated by a
leaf-derived signal
that represses
the transcription of miR156. Development , 138 ,
245-249.
Yang, L., Wu, G., & Poethig, R. S. (2012). Mutations in the GW-repeat protein SUO reveal
a developmental
function for microRNA-mediated translational
repression in
 
 
Search WWH ::




Custom Search