A hypervariable intron of the STAYGREEN locus provides excellent discrimination among Pisum fulvum accessions and reveals evidence for a relatively recent hybridization event with Pisum sativum [PDF]
An analysis of 82 non-synonymous Pisum fulvum accessions for sequence variation in a fragment of the STAYGREEN (SGR) locus revealed 57 alleles, most of which differed in indel structure. Eight additional P.
Matt Lavin
exaly +7 more sources
A High-Density Integrated DArTseq SNP-Based Genetic Map of Pisum fulvum and Identification of QTLs Controlling Rust Resistance [PDF]
Pisum fulvum, a wild relative of pea is an important source of allelic diversity to improve the genetic resistance of cultivated species against fungal diseases of economic importance like the pea rust caused by Uromyces pisi.
Eleonora Barilli +2 more
exaly +11 more sources
Mapping QTLs for Super-Earliness and Agro-Morphological Traits in RILs Population Derived from Interspecific Crosses between Pisum sativum × P. fulvum [PDF]
Earliness in crop plants has a vital role in prevention of heat-induced drought stress and in combating global warming, which is predicted to exacerbate in the near future.
Hatice Sari +5 more
doaj +6 more sources
De novo super-early progeny in interspecific crosses Pisum sativum L. × P. fulvum Sibth. et Sm [PDF]
Earliness in crop plants has a crucial role in avoiding the stress of drought and heat, which are the most important challenging stressors in crop production and are predicted to increase in the near future due to global warming. Furthermore, it provides
Hatice Sari +3 more
doaj +6 more sources
Aphid Resistance in Pisum Affects the Feeding Behavior of Pea-Adapted and Non-Pea-Adapted Biotypes of Acyrthosiphon pisum Differently [PDF]
Resistant genotypes of crops have emerged as an alternative and sustainable solution to pesticide use against pest insects. The resistance depends on the genetic diversity of the host plant and the pest species and can cause an alteration of the insect ...
Mauricio González González +4 more
doaj +3 more sources
Lectin from Pisum fulvum Seeds as in vitro Anticancer and Apoptotic Gene Regulator
The lectins are non-immune origin carbohydrate-binding proteins. Plant s lectins are distributed in many species of medicinal plants, family Fabaceae.
Delia Mirela Tit +2 more
exaly +3 more sources
La secuencia 18/25S rDNA de la soja y la TTTAGGG de A. thaliana fueron utilizadas como sondas con el objetivo de analizar la organización de los genomas de Pisum sativum, P. fulvum y las líneas F4 (P. sativum X P.
Alfredo Bola\u00F1os-Herrera +2 more
doaj +8 more sources
Among the grain legumes, dry pea (Pisum sativum subsp. sativum) ranks first in production in Europe and second in the world (FAOSTAT data, 2005). Pea powdery mildew, caused by Erysiphe pisi, is an air-borne disease with a worldwide distribution, being ...
Diego Rubiales +2 more
exaly +4 more sources
Domestication of Pea (Pisum sativum L.): The Case of the Abyssinian Pea
Phylogenetic relationships of the Abyssinian pea (Pisum sativum ssp. abyssinicum) to other subspecies and species in the genus were investigated to test between different hypotheses regarding its origin and domestication. An extensive sample of the Pisum
Norman Weeden, Weeden Norman F
exaly +4 more sources
Drought Response and Genetic Diversity in Pisum fulvum, a Wild Relative of Domesticated Pea [PDF]
Productivity of grain crops in semi-arid environments is often affected by drought, which is likely to increase due to predicted climate changes. Wild pea (Pisum fulvum Sibth. & Smith, Pf) accessions sampled across its ecological amplitude in Israel (350–
Erez Naim-Feil +9 more
semanticscholar +7 more sources

