science
plus
.abes.fr
|
explorer
À propos de :
Molecular Physiology: Engineering crops for hostile environments
Goto
Sponge
NotDistinct
Permalink
An Entity of Type :
bibo:Issue
, within Data Space :
scienceplus.abes.fr
associated with source
document(s)
Type:
work
Issue
New Facet based on Instances of this Class
Attributs
Valeurs
type
work
Issue
Is Part Of
http://hub.abes.fr/oup/periodical/exbotj/2000/volume_51
Title
Molecular Physiology: Engineering crops for hostile environments
has manifestation of work
http://hub.abes.fr/oup/periodical/exbotj/2000/volume_51/issue_342/m/web
http://hub.abes.fr/oup/periodical/exbotj/2000/volume_51/issue_342/m/print
Date Copyrighted
2000
Rights
© Oxford University Press
issue
342
is
Is Part Of
of
The development and application of molecular markers for abiotic stress tolerance in barley
Disturbance in the allocation of carbohydrates to regenerative organs in transgenic Nicotiana tabacum L.
Using stable isotope natural abundances (δ15N and δ13C) to integrate the stress responses of wild barley (Hordeum spontaneum C. Koch.) genotypes
Low temperature-induced changes in the distribution of H2O2 and antioxidants between the bundle sheath and mesophyll cells of maize leaves
Decreased NADH glutamate synthase activity in nodules and flowers of alfalfa (Medicago sativa L.) transformed with an antisense glutamate synthase transgene
Root hydraulic conductance: diurnal aquaporin expression and the effects of nutrient stress
Crop improvement in the 21st century
Genetic engineering of glycinebetaine synthesis in plants: current status and implications for enhancement of stress tolerance
Molecular physiology of zinc transport in the Zn hyperaccumulator Thlaspi caerulescens
Plant responses to sulphur deficiency and the genetic manipulation of sulphate transporters to improve S-utilization efficiency
Isolation and analysis of thermotolerant mutants of wheat
Wild barley: a source of genes for crop improvement in the 21st century?
Molecular strategies for improving waterlogging tolerance in plants
QTL: their place in engineering tolerance of rice to salinity
Regulation of Arabidopsis root development by nitrate availability
Bundle sheath proteins are more sensitive to oxidative damage than those of the mesophyll in maize leaves exposed to paraquat or low temperatures
Alternative Linked Data Documents:
ODE
Content Formats:
RDF
ODATA
Microdata