Sort   by:  
 Page size 
Secondary metabolites are frequently involved in mechanisms of the plant tolerance to environmental stresses. Determining metabolic biomarkers for drought tolerance may be a useful implementation in increasing and stabilizing crop plant productivity. The most accurate and fast tool for this purpose ...
2014-11-20 | MTBLS52 | MetaboLights
Gene expression in plastids of higher plants is dependent on two different transcription machineries, a plastid-encoded bacterial-type RNA polymerase (PEP) and a nuclear-encoded phage-type RNA polymerase (NEP), which recognize distinct types of promoters. The division of labor between PEP and NEP du...
ORGANISM(S): Hordeum vulgare 
Time course: Interaction of Blumeria graminis f. sp. hordei with Hordeum vulgare, Ingrid BC7 mlo5 (leaf epidermis)
ORGANISM(S): Hordeum vulgare 
This experiment showed the microarray expression of a barley recessive mutant (G132) and its wild type (Hordeum vulgare cv. Graphic) under high CO2 concentration. The homozygous mutation has a strong pleiotropic nature affecting many aspects of plant. In order to identify target genes of this mutati...
ORGANISM(S): Hordeum vulgare 
Shoot tissue from 17 day old barley plants was used for expression analysis. Targets from three biological replicates of each were generated and the expression profiles were determined using Affymetrix Barley1 Genechip arrays. Comparisons between the control and stressed samples at three time poin...
ORGANISM(S): Hordeum vulgare 
Caryopses of barley (Hordeum vulgare), like all other cereal seeds, are complex sink organs optimized for storage starch accumulation and embryo development. Their development from early stages after pollination to late stages of seed ripening has been studied in great detail. However, information o...
ORGANISM(S): Hordeum vulgare 
Gene expression was investigated in response to nitrogen fertilizer in developing grains of field grown barley (Hordeum vulgare L. cv. Barke) at four different time points: 10, 15, 18 and 25 days after pollination (DAP).
ORGANISM(S): Hordeum vulgare 
Time course: Interaction of Puccinia hordei with Hordeum vulgare, Ingrid (leaf) and Puccinia triticana with Hordeum vulgare, Ingrid (leaf)
ORGANISM(S): Hordeum vulgare 
Time course: Interaction of Magnaporthe isolate TH6772 (of the host plant rice) with Hordeum vulgare, Ingrid (leaf epidermis) and Magnaporthe isolate CD180 (of Pennisetum) with Hordeum vulgare, Ingrid (leaf epidermis)
ORGANISM(S): Hordeum vulgare 
Time course: Interaction of Blumeria graminis f. sp. hordei with Hordeum vulgare, Ingrid (leaf) and Blumeria graminis f. sp. tritici with Hordeum vulgare, Ingrid (leaf)
ORGANISM(S): Hordeum vulgare 
Sort   by:  
 Page size