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Representing true plant genomes: haplotype-resolved hybrid pepper genome with trio-binning
Emily E. Delorean, Ramey C. Youngblood, Sheron A. Simpson, Ashley N. Schoonmaker, Brian E. Scheffler, William B. Rutter and Amanda M. Hulse-Kemp Frontiers in Plant Science 14 (2023) https://doi.org/10.3389/fpls.2023.1184112
Effectiveness of quantitative resistance conferred by the genetic background of pepper in the control of root‐knot nematodes and influence onto durability of Me1‐ and Me3‐resistant genes in greenhouse conditions
Fulgencio Sánchez‐Solana, Caridad Ros, María del Mar Guerrero, Victoriano Martínez, Carmen María Lacasa, Ana Hernández, Alain Palloix and Alfredo Lacasa Plant Breeding 136(5) 759 (2017) https://doi.org/10.1111/pbr.12517
New pepper accessions proved to be suitable as a genetic resource for use in breeding nematode-resistant rootstocks
Nematode quantitative resistance conferred by the pepper genetic background presents additive effects and is stable against different isolates of Meloidogyne incognita
Plant Genetic Background Increasing the Efficiency and Durability of Major Resistance Genes to Root-knot Nematodes Can Be Resolved into a Few Resistance QTLs
Development of a SNP-based CAPS assay for the Me1 gene conferring resistance to root knot nematode in pepper
Ali Tevfik Uncu, Ibrahim Celik, Zubeyir Devran, Ercan Ozkaynak, Anne Frary, Amy Frary and Sami Doganlar Euphytica 206(2) 393 (2015) https://doi.org/10.1007/s10681-015-1489-x
Host genetic resistance to root-knot nematodes, Meloidogyne
spp., in Solanaceae: from genes to the field
Arnaud Barbary, Caroline Djian-Caporalino, Alain Palloix and Philippe Castagnone-Sereno Pest Management Science 71(12) 1591 (2015) https://doi.org/10.1002/ps.4091
The plant genetic background affects the efficiency of the pepper major nematode resistance genes Me1 and Me3
Development of virulence to Meloidogyne incognita on resistant pepper rootstocks
C. Ros Ibáñez, Lee Robertson, Maria del Carmen Martinez-Lluch, Ana Cano-García and Alfredo Lacasa-Plasencia Spanish Journal of Agricultural Research 12(1) 225 (2014) https://doi.org/10.5424/sjar/2014121-4340
Resistance of pepper germplasm to Meloidogyne incognita
C. Gisbert, C. Trujillo‐Moya, P. Sánchez‐Torres, A. Sifres, E. Sánchez‐Castro and F. Nuez Annals of Applied Biology 162(1) 110 (2013) https://doi.org/10.1111/aab.12006
The root‐knot nematode resistance N‐gene co‐localizes in the Me‐genes cluster on the pepper (Capsicum annuum L.) P9 chromosome
Ariane Fazari, Alain Palloix, Lihao Wang, Ming Yan Hua, Anne‐Marie Sage‐Palloix, Bao Xi Zhang and Caroline Djian‐Caporalino Plant Breeding 131(5) 665 (2012) https://doi.org/10.1111/j.1439-0523.2012.01994.x
The reproductive potential of the root-knot nematode Meloidogyne incognita is affected by selection for virulence against major resistance genes from tomato and pepper
Comparison between the N and Me3 genes conferring resistance to the root-knot nematode (Meloidogyne incognita) in genetically different pepper lines (Capsicum annuum)
The pepper resistance genes Me1 and Me3 induce differential penetration rates and temporal sequences of root cell ultrastructural changes upon nematode infection
Selection forMeloidogyne incognita virulence against resistance genes from tomato and pepper and specificity of the virulence/resistance determinants
P. Castagnone-Sereno, M. Bongiovanni, A. Palloix and A. Dalmasso European Journal of Plant Pathology 102(6) 585 (1996) https://doi.org/10.1007/BF01877026
Differential expression of root‐knot nematode resistance genes in tomato and pepper: evidence with Meloidogyne incognita virulent and avirulent near‐isogenic lineages
Chromosome Engineering in Plants - Genetics, Breeding, Evolution, Part B
BARBARA PICKERSGILL Developments in Plant Genetics and Breeding, Chromosome Engineering in Plants - Genetics, Breeding, Evolution, Part B 2 139 (1991) https://doi.org/10.1016/B978-0-444-88260-8.50013-6