High-resolution organellar genome analysis of Triticum and Aegilops sheds new light on cytoplasm evolution in wheat

被引:0
|
作者
J. Provan
P. Wolters
K. H. Caldwell
W. Powell
机构
[1] The Queen’s University of Belfast,School of Biology and Biochemistry
[2] DuPont Agricultural Products,E.I. DuPont Nemours and Company
[3] Scottish Crop Research Institute,Genome Dynamics Programme
来源
Theoretical and Applied Genetics | 2004年 / 108卷
关键词
Emmer Wheat; Mononucleotide Repeat; Aegilops Species; Simple Sequence Length Polymorphism; Cytoplasm Type;
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中图分类号
学科分类号
摘要
We have utilised polymorphic chloroplast microsatellites to analyse cytoplasmic relationships between accessions in the genera Triticum and Aegilops. Sequencing of PCR products revealed point mutations and insertions/deletions in addition to the standard repeat length expansion/contraction which most likely represent ancient synapomorphies. Phylogenetic analyses revealed three distinct groups of accessions. One of these contained all the non-Aegilops speltoides S-type cytoplasm species, another comprised almost exclusively A, C, D, M, N, T and U cytoplasm-type accessions and the third contained the polyploid Triticum species and all the Ae. speltoides accessions, further confirming that Ae. speltoides or a closely related but now extinct species was the original B-genome donor of cultivated polyploid wheat. Successive decreases in levels of genetic diversity due to domestication were also observed. Finally, we highlight the importance of elucidating longer-term evolutionary processes operating at microsatellite repeat loci.
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页码:1182 / 1190
页数:8
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