Stewart A V, Ellison N W. The genus Dactylis, wealth of wild species: Role in plant genome elucidation and improvement [M]. New York: Springer, 2010:32-33
Jogan J. Systematics and chorology of Cocksfoot group (Dactylis glomerata agg.) in Slovenia [D]. Slovenia, University of Llubljana,2002:12-13
[10]
Borrill M. Evolution and genetic resources in Cocksfoot [M]. Welsh: Annual Report Welsh Plant Breed Status,1977:90-209
[11]
Stebbins G L, Zohary D. Cytogenetic and evolutionary studies in the genus Dactylis. I Morphological, distribution and inter relationships of the diploid subspecies [J]. University Of California Publications In Botany,1959,31(1):1-40
[12]
Borrill M. Patterns of morphological variation in diploid and tetraploid Dactylis [J]. Botanical Journal of the Linnean Society,1961,56(4):441-459
[13]
Lumaret R. Cytology, genetics and evolution in the genus Dactylis [J]. Critter Reviews Plant Scientific,1988,7(1):55-91
[14]
Jones K, Carroll CP, Borrill M. A chromosome atlas of the genus Dactylis [J]. Cytologia,1961,26(3):333-343
[15]
Zurawski G, Clegg M T, Brown H D. The nature of nucleotide sequence divergence between barley and maize chloroplast DNA [J]. Genetics,1984,106(4):735-749
[16]
Speranza M, Cristofolini G. The genus Dactylis in Italy.2. The diploid entities [J]. Webbia,1987,41(2):213-224
[17]
Hewitt G M. Post glacial recolonisation of European biota [J]. Botanical Journal of the Linnean Society,1999,68(2):87-112
[18]
Sahuquillo E, Lumaret R. Chloroplast DNA variation in Dactylis glomerata L. taxa endemic to the Macaronesian islands[J]. Molecular Ecology,1999,8(11):1797-1803
[19]
Lumaret R, Barrientos E. Phylogenetic relationships and gene flow between sympatric diploid and tetraploid plants of Dactylis glomerata (Gramineae) [J]. Plant Systematics and Evolution,1990,169(1):81-96
[20]
Lumaret R, Bretagnolle F, Maceira N O. 2n gamete frequency and bilateral polyploidization in Dactylis glomerata [M]//Mariana A, Tavoletti S, eds. Gametes with somatic chromosome number in the evolution and breeding of polyploidy polysomic species: Achievements and perspectives. Perugia, Italy: Forage Plant Breeding Institute,1992:15-21
[21]
Lumaret R, Bowman C M, Dyer T A. Autotetraploidy in Dactylis glomerata L.: Further evidence from studies of chloroplast DNA variation [J]. Theoretical and Applied Genetics,1989,78(3):393-399
[22]
Maceira N O, Jacquard P, Lumaret R. Competition between diploid and derivative autotetraploid Dactylis glomerata L. from Galicia. Implications for the establishment of novel polyploid populations [J]. New Phytologist,1993,124(2):321-328
[23]
Speranza M, Cristofolini G. The genus Dactylis in Italy.1. The tetraploid entities [J]. Cell Biology International,1994,18(5):357-589
[24]
Jones K. Chromosomal status, gene exchange and evolution in Dactylis[J]. Genetica,1962,32(3):272-295
[25]
Horjales M, Redondo N, Pérez B, et al. Presencia en Galicia de Dactylis glomerata L. hexaploide [J]. Boletim da Sociedade Broteriana,sér.2,1995,67:223-230
[26]
Nei M. Analysis of gene diversity in subdivided populations [J]. Proceedings of National Academic Science,1973,70(12):3321-3323
[27]
Mizianty M. Biosystematic studies on Dactylis (Poaceae). 5. Variability of Dactylis glomerata subsp. glomerata in Poland[J]. Fragmenta Floristica and Geobotanica,1994,39(1):235-254
[28]
Mizianty M, Cenci C A. Dactylis glomerata subsp. slovenica (Poaceae) in Italy [J]. Fragmenta Floristica andt Geobotanica,1996,41(1): 405-409
[29]
Mizianty M. Comparative studies on Polish and Bulgarian populations of Dactylis glomerata subsp. glomerata (Poaceae)[J]. Fragments Floristica and Geobotanica,1996,41(1):411-418
Etherington J R. Relationship between morphological adaptation to grazing, carbon balance and waterlogging tolerance in clones of Dactylis glomerata L. [J]. New Phytologist,1984,98(4):647-658
[33]
Falcinelli M, Cenci CA, Negri V. An assessment of Dactylis glomerata L. ecotypes. I. Botanical characteristics[J]. Rivistadi Agronomia,1983,17(2):305-313
Falistocco E, Falcinelli M, Mariani A. Preliminary trials on the characterization of Italian ecotypes of Dactylis glomerata L. [J]. Sementi Elette,1980,26(2):2-25
[39]
Amirouche N, Misset M T. Morphological variation and distribution of cytotypes in the diploid-tetraploid complex of the genus Dactylis glomerata L. (Poaceae) from Algeria[J]. Plant Systematics and Evolution,2007,264(2):157-174
[40]
Cenci C A, Falistocco E. Morphological and cytological characteristics of Dactylis glomerata subsp. glomerata and subsp. hispanica (Roth) Nyman [M]. Congresso Sociale, Societa Botanica Italiana Relazioni, Comunicazioni, Dimostrazioni Riassunti,1982:47-48
[41]
Lindner R, Garcia A. Velasco P. Differences between diploid and tetraploid karyotypes of Dactylis glomerata subsp. izcoi[J]. Caryologia,1999,52(3/4):147-149
[42]
Lentz E M, Crane C F. An assessment of preferential chromosome pairing at meiosis in Dactylis glomerata[J]. Canadian Journal of Genetics and Cytology,1983,25(3):222-232
[43]
Tosun M, Akgun I, Sagsoz S. Determination of some cytological characters of wild orchardgrass (Dactylis glomerata L.) growing in Erzurum district [J]. Turkish Journal of Agriculture and Forestry,1999,23(1):219-228
[44]
Glaszmann J C, Lumaret R, Debussche M. Ecological control of the gene flow between two subspecies of Dactylis glomerata: Study of a contact zone in the south of the Massif Central (France) [J]. Acta Oecologica Oecologia Plantarum,1982,3(1):87-100
[45]
Catalan P, Torrecilla P, Rodriguez J A L, et al. Phylogeny of the festucoid grasses of subtribe Loliinae and allies (Poeae, Pooideae) inferred from ITS and trn L-F sequences [J]. Molecular Phylogenetic Evolution,2004,31(2):517-541
[46]
Trejo-Calzada R, O'Connell M A. Genetic diversity of drought-responsive genes in populations of the desert forage Dactylis glomerata [J]. Plant Science,2005,168(4):1327-1335
[47]
Tuna M, Khadka D K, Shrestha M K, et al. Characterization of natural orchardgrass (Dactylis glomerata L.) populations of the Thrace Region of Turkey based on ploidy and DNA polymorphisms [J]. Euphytica,2004,135(1):39-46
[48]
Reeves G, Francis D, Davies M S, et al. Genome size is negatively correlated with altitude in naturalpopulations of Dactylis glomerata. Angiosperm genome size [J]. Annals of Botany,1998,82(Suppl.A):99-105
Hirata M, Yuyama N, Cai H. Isolation and characterization of simple sequence repeat markers for the tetraploid forage grass Dactylis glomerata[J]. Plant Breeding,2011,130(4):503-506
[51]
Bushman B S, Larson S R, Robins J G. Orchardgrass (Dactylis glomerata L.) EST and SSR marker development, annotation, and transferability [J]. Theoretical and Applied Genetics,2011,123(1):119-129
[52]
Xie W G, Zhang X Q, Ma X, et al. Diversity comparison and phylogenetic relationships of cocksfoot(Dactylis glomerata L.) germplasm as revealed by SSR markers [J]. Canadian Journal of Plant Science,2010,90(1):13-21
[53]
Xie W, Zhang X, Cai H, et al. Genetic maps of SSR and SRAG markers indiploid orchardgrass (Dactylis glomerata L.) using the pseudo-testcross strategy [J]. Genome,2011,54(3):212-221
[54]
Song Y, Liu F, Zhu Z, et al. Construction of a simple sequence repeat marker-based genetic linkage map in the autotetraploid forage grass Dactylis glomerata L.[J]. Grassland Science,2011,57(3):158-167
[55]
Xie W G, Robins J G, Bushman B S. A genetic linkage map of tetraploid orchardgrass (Dactylis glomerata L.) and QTL for heading date [J]. Genome,2012,55(5):360-369
[56]
Cho M J, Choi H W, Lemaux P G. Transformed To orchardgrass (Dactylis glomerata L.) plants produced from highly regenerative tissues derived from mature seeds[J]. Plant Cell Reports,2001,20(4):318-324