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Arbuscular mycorrhiza (AM) is known to be a mutually beneficial plant-fungal symbiosis; however, the effect of mycorrhization is heavily dependent on multiple biotic and abiotic factors. Therefore, for the proper employment of such plant-fungal symbiotic systems in agriculture, a detailed underst...

2020-02-09 | MTBLS893 | MetaboLights
Purpose: Identify differentially expressed genes between 5 pea aphid morphs Methods: Collected whole bodies of 30 adult aphids of each of the five pea morphs and three clones (total of 15 samples) 5 pea aphid morphs * 3 genotypes = 15 samples
ORGANISM(S): Acyrthosiphon pisum 
Bioinformatic prediction, deep sequencing of microRNA and expression analysis during phenotypic plasticity in the pea aphid acyrthosiphon pisum We developed high throughput Solexa sequencing and bioinformatic analyses of the genome of the pea aphid Acyrthosiphon pisum in order to identify the first ...
ORGANISM(S): Acyrthosiphon pisum 
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 
Plant growth is the result of cell proliferation in the meristems, which requires a dynamic balance between the formation of new tissue and the maintenance of a set of undifferentiated stem cells. There is much that remains unknown about this vital developmental process. In this study, we have repor...
ORGANISM(S): Pisum sativum 
Aphid adaptation to harsh winter conditions is illustrated by an alternation of their reproductive mode. Aphids detect photoperiod shortening by sensing the length of the night and switch from viviparous parthenogenesis in spring and summer, to oviparous sexual reproduction in autumn. The photoperio...
ORGANISM(S): Acyrthosiphon pisum 
Knowledge about an organism’s cell and tissue-specific transcriptional repertoire is essential for understanding the gene regulatory circuits that control key developmental events. The shoot apical meristem (SAM) is responsible for development of all the above ground parts of plants. Our underst...
ORGANISM(S): Pisum sativum 
Posttranslational lysine acetylation is believed to occur in all taxa and to affect thousands of proteins. In contrast to the hundreds of mitochondrial proteins reported to be lysine-acetylated in non-plant species, only a handful have been reported from the plant taxa previously examined. To invest...
ORGANISM(S): Pisum sativum (Garden pea) 
2014-05-01 | PXD000495 | Pride
Null mutations for genes encoding the major seed storage protein in pea, vicilin, were sought among a fast-neutron mutant population. Combinations of four and five mutations, where individual vicilin loci had been deleted, were generated to address the question of how removal or reduction of a major...
ORGANISM(S): Pisum sativum (Garden pea) 
2025-01-27 | PXD048561 | Pride
Null mutations for genes encoding the major seed storage protein in pea, vicilin, were sought among a fast-neutron mutant population. Combinations of four and five mutations, where individual vicilin loci had been deleted, were generated to address the question of how removal or reduction of a major...
ORGANISM(S): Pisum sativum (Garden pea) 
2025-01-27 | PXD048566 | Pride
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