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Diagnostic fingerprints ISSR/SSR for tropical leguminous species Stylosanthes capitata and Stylosanthes macrocephala Scientia Agricola
Alzate-Marin,Ana Lilia; Costa-Silva,Carolina; Rivas,Priscila Marlys Sá; Bonifacio-Anacleto,Fernando; Santos,Leticia Gobett; Moraes Filho,Rômulo Maciel de; Martinez,Carlos Alberto.
ABSTRACT: Stylosanthes capitata Vogel and Stylosanthes macrocephala M.B.Ferreira & Sousa Costa are two forage leguminous species of agronomic importance for animal husbandry in tropical environments. The physical mixture of both species (80 % S. capitata and 20 % S. macrocephala) comprises the commercial cultivar “Estilosantes Campo Grande”. However, proximity of fields for seed production may contaminate seed lots, compromising seeds quality. The combined use of dominant and co-dominant molecular markers is an appropriate strategy to certificate genetic purity and perform diversity studies of cultivars. In this research, a set of ISSR (Inter-Simple Sequence Repeat polymorphic DNA) and SSR (Simple Sequence Repeat polymorphic DNA) molecular...
Tipo: Info:eu-repo/semantics/article Palavras-chave: Genetic purity; Genetic diversity; Seed production.
Ano: 2020 URL: http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0103-90162020000301101
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In Silico Characterization of Meloidogyne Genus Nematode Cellulose Binding Proteins BABT
Menezes,Alana Manoela Fraga; Cavalcanti Junior,Edilton de Albuquerque; Martins,Luiza Suely Semen; Moraes Filho,Rômulo Maciel de.
Abstract Root-knot nematodes are a group of endoparasites species that induce the formation of giant cells in the hosts, by which they guarantee their feeding and development. Meloidogyne species infect over 2000 plant species, and are highly destructive, causing damage to many crops around the world. M. enterolobii is considered the most aggressive species in tropical regions, such as Africa and South America. Phytonematodes are able to penetrate and migrate within plant tissues, establishing a sophisticated interaction with their hosts through parasitism factors, which include a series of cell wall degradation enzymes and plant cell modification. Among the parasitism factors documented in the M. enterolobii species, cellulose binding protein (CBP), a...
Tipo: Info:eu-repo/semantics/article Palavras-chave: Bioinformatics; Phytonematodes; Parasitism Factors; Cell wall degrading enzymes; Homology modeling; Protein function prediction.
Ano: 2019 URL: http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-89132019000100201
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