Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Paul W, Hattersley"'
Autor:
Matt Stata, Roxana Khoshravesh, Joanne Castelli, Terry D. Macfarlane, Paul W. Hattersley, Florian A. Busch, Tammy L. Sage, Nicole Dakin, Martha Ludwig, Montserrat Saladié, Rowan F. Sage
Publikováno v:
Plant Physiology. 182:566-583
The Australian grass subtribe Neurachninae contains closely related species that use C3, C4, and C2 photosynthesis. To gain insight into the evolution of C4 photosynthesis in grasses, we examined leaf gas exchange, anatomy and ultrastructure, and tis
Autor:
Colin P. Osborne, Brad S. Ripley, Marjorie R. Lundgren, Richard C. Leegood, Christine M. Long, Pascal-Antoine Christin, Emmanuel Gonzalez Escobar, Guillaume Besnard, Roger P. Ellis, Paul W. Hattersley
Publikováno v:
Plant, Cell & Environment. 39:1874-1885
C4 photosynthesis is a complex trait resulting from a series of anatomical and biochemical modifications to the ancestral C3 pathway. It is thought to evolve in a stepwise manner, creating intermediates with different combinations of C4 -like compone
Autor:
Paul W. Hattersley, Terry D. Macfarlane, Pascal-Antoine Christin, Erika J. Edwards, Harmony Clayton, Rowan F. Sage, Martha Ludwig, Robert T. Furbank, Mark J. Wallace
Publikováno v:
Journal of Experimental Botany
The Neurachninae is the only grass lineage known to contain C(3), C(4), and C(3)-C(4) intermediate species, and as such has been suggested as a model system for studies of photosynthetic pathway evolution in the Poaceae; however, a lack of a robust p
Autor:
Marjorie R, Lundgren, Pascal-Antoine, Christin, Emmanuel Gonzalez, Escobar, Brad S, Ripley, Guillaume, Besnard, Christine M, Long, Paul W, Hattersley, Roger P, Ellis, Richard C, Leegood, Colin P, Osborne
Publikováno v:
Plant, cellenvironment. 39(9)
C4 photosynthesis is a complex trait resulting from a series of anatomical and biochemical modifications to the ancestral C3 pathway. It is thought to evolve in a stepwise manner, creating intermediates with different combinations of C4 -like compone
Publikováno v:
Annals of Botany. 73:241-255
Quantitative anatomical characteristics, including cross-sectional areas (volumes) of all tissues and perimeters (surface areas) of chlorenchymatous tissues, were measured in transverse sections of leaf blades of 125 species of grasses (Poaceae). The
Publikováno v:
American Journal of Botany. 72:284-302
Publikováno v:
American Journal of Botany. 73:1431-1442
The two C4 Panicum species examined differ in C4 acid decarboxylation type and in developmental origin of bundle sheaths in major veins of their leaf blades. In Panicum effusum R.Br. (NAD-malic enzyme type) both mesophyll (PCA) and chlorenchymatous b
Autor:
Paul W. Hattersley, Yeoh Hock-Hin
Publikováno v:
Phytochemistry. 24:2277-2279
Statistical analysis of K m (CO 2 ) values of ribulose-1,5-bisphosphate (RuBP) carboxylase from 35 C 4 grass species shows that the mean value for PEP-carboxykinase (PCK) type C 4 species (41.4±s.e. 2.2 μM CO 2 ) is significantly different from tha