Intergeneric relationships in the Australian Vitaceae: new evidence from cpDNA analysis

被引:34
作者
Rossetto, M [1 ]
Jackes, BR
Scott, KD
Henry, RJ
机构
[1] So Cross Univ, Ctr Plant Conservat Genet, Lismore, NSW 2480, Australia
[2] James Cook Univ N Queensland, Townsville, Qld 4811, Australia
关键词
Cayratia; chloroplast DNA; Cissus; grapes; Tetrastigma; trnL (UAA);
D O I
10.1023/A:1011225319360
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Taxa related to important agricultural species are likely to contain a considerable amount of potentially valuable genetic diversity. Nevertheless, before breeding programs or gene discovery projects can be initiated it is important to understand the phylogenetic relationships between the species involved. A component of a major gene discovery project in grapes at the Centre for Plant Conservation Genetics (Southern Cross University, Australia) is directed at the discovery of novel genes in native Vitaceae. As a result a study was conducted in order to assess the phylogenetic relationships between V. vinifera and the native members of the three major Australian genera: Cayratia, Cissus and Tetrastigma. CpDNA sequence analysis (from the trnL intron) adequately resolved intergeneric relationship between the majority of the species studied and provided some useful new information on the phylogenetic relationships within the Vitaceae. This preliminary project identified two species, C. hypoglauca and C. sterculiifolia, as being closely related to V. vinifera and worthy of further in-depth investigation.
引用
收藏
页码:307 / 314
页数:8
相关论文
共 25 条
[1]   Analysis of grape ESTs: global gene expression patterns in leaf and berry [J].
Ablett, E ;
Seaton, G ;
Scott, K ;
Shelton, D ;
Graham, MW ;
Baverstock, P ;
Lee, LS ;
Henry, R .
PLANT SCIENCE, 2000, 159 (01) :87-95
[2]  
Bentham G, 1863, Flora Australiensis, DOI DOI 10.5962/BHL.TITLE.16515
[3]   PHYLOGENETICS OF SEED PLANTS - AN ANALYSIS OF NUCLEOTIDE-SEQUENCES FROM THE PLASTID GENE RBCL [J].
CHASE, MW ;
SOLTIS, DE ;
OLMSTEAD, RG ;
MORGAN, D ;
LES, DH ;
MISHLER, BD ;
DUVALL, MR ;
PRICE, RA ;
HILLS, HG ;
QIU, YL ;
KRON, KA ;
RETTIG, JH ;
CONTI, E ;
PALMER, JD ;
MANHART, JR ;
SYTSMA, KJ ;
MICHAELS, HJ ;
KRESS, WJ ;
KAROL, KG ;
CLARK, WD ;
HEDREN, M ;
GAUT, BS ;
JANSEN, RK ;
KIM, KJ ;
WIMPEE, CF ;
SMITH, JF ;
FURNIER, GR ;
STRAUSS, SH ;
XIANG, QY ;
PLUNKETT, GM ;
SOLTIS, PS ;
SWENSEN, SM ;
WILLIAMS, SE ;
GADEK, PA ;
QUINN, CJ ;
EGUIARTE, LE ;
GOLENBERG, E ;
LEARN, GH ;
GRAHAM, SW ;
BARRETT, SCH ;
DAYANANDAN, S ;
ALBERT, VA .
ANNALS OF THE MISSOURI BOTANICAL GARDEN, 1993, 80 (03) :528-580
[4]  
Cronquist A., 1988, The evolution and classification of flowering plants, V2d
[5]   TOWARD DEFINING COURSE OF EVOLUTION - MINIMUM CHANGE FOR A SPECIFIC TREE TOPOLOGY [J].
FITCH, WM .
SYSTEMATIC ZOOLOGY, 1971, 20 (04) :406-&
[6]   A phylogeny of the European gentians inferred from chloroplast trnL (UAA) intron sequences [J].
Gielly, L ;
Taberlet, P .
BOTANICAL JOURNAL OF THE LINNEAN SOCIETY, 1996, 120 (01) :57-75
[7]   Phylogenetic use of noncoding regions in the genus Gentiana L: Chloroplast trnL (UAA) intron versus nuclear ribosomal internal transcribed spacer sequences [J].
Gielly, L ;
Yuan, YM ;
Kupfer, P ;
Taberlet, P .
MOLECULAR PHYLOGENETICS AND EVOLUTION, 1996, 5 (03) :460-466
[8]  
GIELLY L, 1994, MOL BIOL EVOL, V11, P769
[9]  
JACKES B B, 1987, Austrobaileya, V2, P365
[10]  
JACKES B R, 1988, Austrobaileya, V2, P481