Alien Introgression in Wheat Cytogenetics, Molecular Biology, and Genomics

(Barry) #1

72


Middleton CP, Senerchia N, Stein N, Akhunov ED, Keller B, Wicker T, Kilian B (2014) Sequencing
of chloroplast genomes from wheat, barley, rye and their relatives provides a detailed insight
into the evolution of the Triticeae tribe. PLoS One 9:e85761. doi: 10.1371/journal.pone.0085761
Millet E, Zaccai M (1991) Effects of genotypically- and environmentally-induced differences in
seed protein content on seedling vigor in wheat. J Genet Breed 45:45–50
Millet E, Rong JK, Qualset CO, McGuire PE, Bernard M, Sourdille P, Feldman M (2013) Production
of chromosome-arm substitution lines of wild emmer in common wheat. Euphytica 190:1–17
Mochida K, Kawaura K, Shimosaka E, Kawakami N, Shin-I T, Kohara Y, Yamazaki Y, Ogihara Y
(2006) Tissue expression map of a large number of expressed sequence tags and its application
to in silico screening of stress response genes in common wheat. Mol Genet Genomics
276(3):304–312
Mochizuki A (1957) B chromosomes in Aegilops mutica Boiss. Wheat Inf Serv 5:9–11
Monte JV, McIintyre CL, Gustafson JP (1993) Analysis of phylogenetic relationships in the
Triticeae tribe using RFLPs. Theor Appl Genet 86:649–655
Mori M, Liu Y-G, Tsunewaki K (1995) Wheat phylogeny determined by RFLP analysis of nuclear
DNA. 2. Wild tetraploid wheats. Theor Appl Genet 90:129–134
Morris R, Sears ER (1967) The cytogenetics of wheat and its relatives. In: Quisenberry KS, Reitz
LP (eds.), Wheat and wheat improvement. The American Society of Agronomy, Madison,
USA, pp 19–87
Murai K, Naiyu X, Tsunewaki K (1989) Studies on the origin of crop species by restriction endo-
nuclease analysis of organellar DNA. III. Chloroplast DNA variations and intersprcifi c rela-
tionships in the genus Swcale. Jpn J Genet 64:36–47
Muramatsu M (1963) Dosage effect of the spelta gene q of hexaploid wheat. Genetics 48:469–482
Muramatsu M (1986) The vulgare super gene, Q : its universality in durum wheat and its pheno-
typic effects in tetraploid and hexaploid wheats. Can J Genet Cytol 28:30–41
Muramatsu M (2009) A presumed genetic system determining the number of spikelets per rachis
nodein the tribe Triticeae. Breed Sci 59:617–620
Murat F, Pont C, Salse J (2014) Paleogenomics in Triticeae for translational research. Curr Plant
Biol 1:34–39
Nakamura I, Rai B, Takahashi H, Kato K, Sato Y-I, Komatsuda T (2009) Aegilops section Sitopsis
species contains the introgressive PolA1 gene with a closer relationship to that of Hordeum than
Triticum-Aegilops species. Breed Sci 59:602–610
Nalam VJ, Vales MI, Watson CJW, Kianian SF, Riera-Lizarazu O (2006) Map-based analysis of
genes affecting the brittle rachis character in tetraploid wheat ( Triticum turgidum L.). Theor
Appl Gen 112:373–381
Nishikawa K, Furuta Y (1969) DNA content per nucleus in relation to phylogeny of wheat and its
relatives. Jpn J Genet 44:23–29. doi: 10.1266/jjg.44.23
Ohta S (1991) Phylogenetic relationship of Aegilops mutica Boiss with the diploid species of con-
generic Aegilops-Triticum complex, based on the new method of genome analysis using its
B-chromosomes. Mem Coll Agric Kyoto Univ 137:1–116
Okamoto M (1957) Asynaptic effect of chromosome V. Wheat Inf Serv 5:6
Olmos S, Distelfeld A, Chicaiza O, Schlatter AR, Fahima T, Echenique V, Dubcovsky J (2003)
Precise mapping of a locus affecting grain protein content in durum wheat. Theor Appl Gent
107:1243–1251
Ozkan H, Levy AA, Feldman M (2001) Allopolyploidy—induced rapid genome evolution in the
wheat ( Aegilops-Triticum ) group. Plant Cell 13:1735–1747
Ozkan H, Tuna M, Arumuganathan K (2003) Nonadditive changes in genome size during allopoly-
ploidization in the wheat ( Aegilops-Triticum ) group. J Hered 94:260–264
Peleg Z, Fahima T, Krugman T, Abbo S, Yakir D, Korol AB, Saranga Y (2009) Genomic dissection
of drought resistance in durum wheat x wild emmer wheat recombinant inbreed line popula-
tion. Plant Cell Environ 32:758–779
Peleg Z, Fahima T, Korol AB, Abbo S, Saranga Y (2011) Genetic analysis of wheat domestication
and evolution under domestication. J Exp Bot 62:5051–5061


M. Feldman and A.A. Levy
Free download pdf