Aubert G, Lansdorp P M. 2008. Telomeres and aging. Physiological Reviews, 88, 557–579.Azzalin C M, Nersadze S G, Giulotto E. 2001. Human intrachromosomal telomeric-like repeats, sequence organization and mechanisms of origin. Chromosoma, 110, 75–82.Bertioli D J, Cannon S B, Froenicke L, Huang G D, Farmer A D, Cannon E K S, Liu X, Gao D Y, Clevenger J, Dash S, Ren L H, Moretzsohn M C, Shirasawa K, Huang W, Vidigal B, Abernathy B, Chu Y, Niederhuth C E, Umale P, Araújo A C G et al. 2016. The genome sequences of Arachis duranensis and Arachis ipaensis, the diploid ancestors of cultivated peanut. Nature Genetics, 48, 438–446.Blackburn E H. 1991. Structure and function of telomeres. Nature, 350, 569–573.Bolzan A D. 2012. Chromosomal aberrations involving telomeres and interstitial telomeric sequences. Mutagenesis, 27, 1–15.Burr B, Burr F A, Matz E C, Romero-Severson J. 1992. Pinning down loose ends, mapping telomeres and factors affecting their length. The Plant Cell, 4, 953–960.Custódio A R, Seijo G, Valls J F M. 2013. Characterization of Brazilian accessions of wild Arachis species of section Arachis (Fabaceae) using heterochromatin detection and fluorescence in situ hybridization (FISH). Genetics and Molecular Biology, 36, 364–370.Du P, Liu H, Li L L, Qin L, Zhang Z X, Huang B Y, Dong W Z, Tanf F S, Qi Z J, Zhang X Y. 2015. Chromosome analysis of peanut (Arachis hypogaea L.) based on sequential GISH-FISH. Scientia Agricultura Sinica, 48, 1854–1863. (in Chinese)Fajkus J, Sýkorová E, Leitch A R. 2005. Telomeres in evolution and evolution of telomeres. Chromosome Research, 13, 469–479.Fernández A, Krapovickas A. 1994. Cromosomas Y evolución en Arachis (Leguminosae). Bonplandia, 8, 187–220. (in Spanish)Friend S A, Quandt D, Tallury S P, Stalker H T, Hilu K W. 2010. Species, genomes, and section relationships in the genus Arachis (Fabaceae), a molecular phylogeny. Plant Systematics and Evolution, 290, 185–199.Gortner G, Nenno M, Weising K, Zink D, Nagl W, Kahl G. 1998. Chromosomal localization and distribution of simple sequence repeats and the Arabidopsis-type telomere sequence in the genome of Cicer arietinum L. Chromosome Research, 6, 97–104.He L, Liu J, Torres G A, Zhang H Q, Jiang J M, Xie C H. 2013. Interstitial telomeric repeats are enriched in the centromeres of chromosomes in Solanum species. Chromosome Research, 21, 5–13.Holbrook C C, Stalker H T. 2003. Peanut breeding and genetic resources. Plant Breeding Reviews, 22, 297–356.Ijdo J W, Wells R A, Baldini A, Reeders S T. 1991. Improved telomere detection using a telomere repeat probe (TTAGGG)n generated by PCR. Nucleic Acids Research, 19, 4780–4780.Koppolu R, Upadhyaya H D, Dwivedi S L, Hoisington D A, Varshney R K. 2010. Genetic relationships among seven sections of genus Arachis studied by using SSR markers. BMC Plant Biology, 10, 15–27.Krapovickas A, Gregory W. 1994. Taxonomia del genero Arachis (Leguminosae). Bonplandia, 8, 1–187. (in Spanish)Levan A, Fredga K, Sandberg A A. 1964. Nomenclature for centromeric position on chromosomes. Hereditas, 52, 201–220.Lin K W, Yan J. 2008. Endings in the middle, current knowledge of interstitial telomeric sequences. Mutation Research, 658, 95–110.Mallikarjuna N. 2005. Production of hybrids between Arachis hypogaea and A. chiquitana (section Procumbentes). Peanut Science, 32, 148–152.Manevski A, Bertoni G, Bardet C, Tremousaygue D, Lescure B. 2000. In synergy with various cis-acting elements, plant insterstitial telomere motifs regulate gene expression in Arabidopsis root meristems. FEBS Letters, 483, 43–46.Mattos T L, Coelho A, Schneider C, Telles D O, Menin M, Gross M. 2014. Karyotypic diversity in seven Amazonian anurans in the genus Hypsiboas (family Hylidae). BMC Genetics, 15, 43.Meyne J, Hirai H, Imai H T. 1995. FISH analysis of the telomere sequences of bulldog ants (Myrmecia: Formicidae). Chromosoma, 104, 14–18.Moretzsohn M C, Gouvea E G, Inglis P W, Leal-Bertioli S C M, Valls J F M, Bertioli D J. 2013. A study of the relationships of cultivated peanut (Arachis hypogaea L.) and its most closely related wild species using intron sequences and microsatellite markers. Annals of Botany, 111, 113–126.Nergadze S G, Rocchi M, Azzalin C M, Mondello C, Giulotto E. 2004. Insertion of telomeric repeats at intrachromosomal break sites during primate evolution. Genome Research, 14, 1704–1710.Nielen S, Fonseca F C, Bertioli S L, Guimarães P, Seijo G, Town C, Arrial R, Bertioli D. 2010. FIDEL-a retrovirus-like retrotransposon and its distinct evolutionary histories in the A and B genome components of cultivated peanut. Chromosome Research, 18, 227–246.Okazaki S, Tsuchida K, Maekawa H, Ishikawa H, Fujiwara H. 1993. Identification of a pentanucleotide telomeric sequence, (TTAGG)n, in the silkworm Bombyx mori and in other insects. Molecular and Cellular Biology, 13, 1424–1432.Park V M, Gustashaw K M, Wathen T M. 1992. The presence of interstitial telomeric sequences in constitutional chromosome abnormalities. American Journal of Human Genetics, 50, 914–923.Presting G G, Frary A, Pillen K, Tanksley S D, Presting G G. 1996. Telomere-homologous sequences occur near the centromeres of many tomato chromosomes. Genetics and Molecular Research, 251, 526–531.Regad F, Lebas M, Lescure B. 1994. Interstitial telomeric repeats within the Arabidopsis thaliana genome. Journal of Molecular Biology, 239, 163–169.Robledo G, Lavia G I, Seijo J G. 2009. Species relations among wild Arachis species with the A genome as revealed by FISH mapping of rDNA loci and heterochromatin detection. Theoretical and Applied Genetics, 118, 1295–1307.Robledo G, Seijo G. 2010. Species relationships among the wild B genome of Arachis species (section Arachis) based on FISH mapping of rDNA loci and heterochromatin detection, a new proposal for genome arrangement. Theoretical and Applied Genetics, 121, 1033–1046.Scacchetti P C, Utsunomia R, Pansonato-Alves J C, Costa-Silva G J, Oliveira C, Foresti F. 2015. Extensive spreading of interstitial telomeric sites on the chromosomes of Characidium (Teleostei, Characiformes). Genetica, 143, 263–270.Seijo J G, Lavia G I, Fernández A, Krapovickas A, Ducasse D, Moscone E A. 2004. Physical mapping of 5S and 18S–25S rRNA genes by FISH as evidences that A. duranensis and A. ipaensis are the wild diploid species involved in the origin of A. hypogaea (Leguminosae). American Journal of Botany, 91, 1294–1303.Sepsi A, Molnár I, Szalay D, Molnár-Láng M. 2008. Characterization of a leaf rust-resistant wheat-Thinopyrum ponticum partial amphiploid BE–1, using sequential multicolor GISH and FISH. Theoretical and Applied Genetics, 116, 825–834.She C W, Zhang L H, Jang X H. 2012. Karyotype analysis of Arachis hypogaea L. using fluorescence banding and fluorescence in situ hybridization with rDNA probes. Acta Agronomica Sinica, 38, 754–775. (in Chinese)Silvestri M C, Ortiz A M, Lavia G I. 2014. rDNA loci and heterochromatin positions support a distinct genome type for ‘x = 9 species’ of section Arachis (Arachis, Leguminosae). Plant Systematics and Evolution, 301, 555–562.Tallury S P, Hilu K W, Milla S R, Friend S A, Alsaghir M, Stalker H T, Quandt D. 2005. Genomic af?nities in Arachis section Arachis (Fabaceae), molecular and cytogenetic evidence. Theoretical and Applied Genetics, 111, 1229–1237.Tek A L, Jiang J. 2004. The centromeric regions of potato chromosomes contain megabase-sized tandem arrays of telomere-similar sequence. Chromosoma, 113, 77–83.Tremousaygue D, Manevski A, Bardet C, Leseure N, Leseure B. 1999. Plant interstitial telomere motifs participate in the control of gene expression in root meristems. The Plant Journal, 20, 553–561.Valls J F M, Simpson C E. 2005. New species of Arachis (Leguminosae) from Brazil, Paraguay and Bolivia. Bonplandia, 14, 35–64. (in Spanish)Wang C T, Huang Y, Yang X D, Jiang Y, ZhangJ C, Chen D X, Min P, Yu S L. 2002. Isolation of DNA from peanut: Comparison between modified CTAB and high salt, low pH methods. Journal of Peanut Science, 31, 20–23. (in Chinese)Zhang L N. 2013. Karyotyping and comparative genomic studies of peanut and its wild relatives. Ph D thesis, The Chinese University of Hong Kong, Hong Kong. pp. 60-62. |