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During seed growth, sugar and nitrogen compounds confer regulatory control on storage activities. Thus, seed storage production could be regulated by the supply of nutrients. In order to improve nitrogen flux into the embryo, transgenic pea lines were created where ADP-glucose pyrophosphorylase (AGP...
ORGANISM(S): Pisum sativum 
This experiment aims to define the transcriptome of pea cultivars, and find differences between cultivars and between epigenetic wild-type and \"rogue\" plants.
ORGANISM(S): Pisum sativum 
Plants of the resistant Pisum sativum subsp. syriacum accession P665 and the susceptible pea cultivar Messire were inoculated with M. pinodes.The experiment was conducted in three replicates. 16, 24 and 48 hours after inoculation RNA was isolated from leaves of infected plants and transcribed into c...
ORGANISM(S): Pisum sativum 
Rhizobium leguminosarum bv viciae strain 3841 was inoculated onto pea (Pisum sativum) seeds and nodules were harvested at 28 d. The gene expression was compared to free-living bacteria grown on succinate ammonia AMS medium.
ORGANISM(S): Rhizobium leguminosarum 
Seeds of Pisum sativum L. cv Alaska Early (purchased from the ‘Abundant Life Seed Foundation’, Port Townsend, USA) were equilibrated for approximately 5 weeks in tightly sealed boxes over 300 g-1 non-saturated LiCl (Hay et al. 2008), producing 60% relative humidity, in a temperature-controlled r...
ORGANISM(S): Pisum sativum 
In this study the effect of Rhizobium leguminosarum bv. viceae (Rlv) on seed proteome through shotgun proteomics analyses of healthy versus pathogen (Didymella pinodes) infected Pisum sativum plants was investigated.
ORGANISM(S): Pisum sativum (Garden pea) 
2017-12-06 | PXD006617 | Pride
The lower needs for chemical fertilisers make the Pisum Sativum well suited for sustainable agricultural systems. During the past decades, yield losses were mainly due to pathogenic infestation, with Ascochyta blight as the most severe disease. In this fungal disease complex Didymella pinodes, as th...
ORGANISM(S): Pisum sativum (Garden pea) 
2017-01-16 | PXD005700 | Pride
This experiment aims to define the transcriptome of pea cultivars, and find differences between cultivars and between epigenetic wild-type and \"rogue\" plants.
ORGANISM(S): Pisum sativum 
The lower needs for chemical fertilisers make the Pisum Sativum well suited for sustainable agricultural systems. During the past decades, yield losses were mainly due to pathogenic infestation, with Ascochyta blight as the most severe disease. In this fungal disease complex Didymella pinodes, as th...
ORGANISM(S): Pisum sativum (Garden pea) 
2017-01-16 | PXD005701 | Pride
We studied potentially amyloidogenic proteins (e.g. protein forming polymers and complexes that are resistant to treatment with ionic detergents) in root nodules formed by two lines of garden pea (P. sativum L.): Sprint-2 (Fix+ phenotype) and Sprint-2Fix- (sym31) (Fix- phenotype) inoculated with the...
ORGANISM(S): Pisum sativum (Garden pea) Rhizobium leguminosarum bv. viciae 
2022-10-25 | PXD035724 | Pride
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