Dispersed repetitive DNA has spread to new genomes since polyploid formation in cotton.

Publication Overview
TitleDispersed repetitive DNA has spread to new genomes since polyploid formation in cotton.
AuthorsZhao XP; Si Y; Hanson RE; Crane CF; Price HJ; Stelly DM; Wendel JF; Paterson AH
TypeJournal Article
Journal NameGenome Research
Volume8
Issue(5)
Year1998
Page(s)479 492
CitationZhao XP, Si Y, Hanson RE, Crane CF, Price HJ, Stelly DM, Wendel JF, Paterson AH. Dispersed repetitive DNA has spread to new genomes since polyploid formation in cotton. Genome research. 1998 May; 8(5):479-92
Publication CodeGNR-8-479

Abstract

Polyploid formation has played a major role in the evolution of many plant and animal genomes\\; however, surprisingly little is known regarding the subsequent evolution of DNA sequences that become newly united in a common nucleus. Of particular interest is the repetitive DNA fraction, which accounts for most nuclear DNA in higher plants and animals and which can be remarkably different, even in closely related taxa. In one recently formed polyploid, cotton (Gossypium barbadense L.\\; AD genome), 83 non-cross-hybridizing DNA clones contain dispersed repeats that are estimated to comprise about 24\\% of the nuclear DNA. Among these, 64 (77\\%) are largely restricted to diploid taxa containing the larger A genome and collectively account for about half of the difference in DNA content between Old World (A) and New World (D) diploid ancestors of cultivated AD tetraploid cotton. In tetraploid cotton, FISH analysis showed that some A-genome dispersed repeats appear to have spread to D-genome chromosomes. Such spread may also account for the finding that one, and only one, D-genome diploid cotton, Gossypium gossypioides, contains moderate levels of (otherwise) A-genome-specific repeats in addition to normal levels of D-genome repeats. The discovery of A-genome repeats in G. gossypioides adds genome-wide support to a suggestion previously based on evidence from only a single genetic locus that this species may be either the closest living descendant of the New World cotton ancestor, or an adulterated relic of polyploid formation. Spread of dispersed repeats in the early stages of polyploid formation may provide a tag to identify diploid progenitors of a polyploid. Although most repetitive clones do not correspond to known DNA sequences, 4 correspond to known transposons, most contain internal subrepeats, and at least 12 (including 2 of the possible transposons) hybridize to mRNAs expressed at readily discernible levels in cotton seedlings, implicating transposition as one possible mechanism of spread. Integration of molecular, phylogenetic, and cytogenetic analysis of dispersed repetitive DNA may shed new light on evolution of other polyploid genomes, as well as providing valuable landmarks for many aspects of genome analysis.
Features
This publication contains information about 194 features:
Feature NameUniquenameType
PXP0126PXP0126genetic_marker
PXP0128PXP0128genetic_marker
PXP0131PXP0131genetic_marker
PXP0135PXP0135genetic_marker
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PXP0190PXP0190genetic_marker
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PXP0200PXP0200genetic_marker
PXP0224PXP0224genetic_marker
PXP0225PXP0225genetic_marker
PXP0226PXP0226genetic_marker
PXP0270PXP0270genetic_marker
PXP0271PXP0271genetic_marker
PXP0291PXP0291genetic_marker
PXP1-08PXP1-08genetic_marker
PXP1-13PXP1-13genetic_marker
PXP1-16PXP1-16genetic_marker
PXP1-18PXP1-18genetic_marker

Pages

Properties
Additional details for this publication include:
Property NameValue
PublisherCold Spring Harbor Laboratory Press,
Publication ModelPrint
ISSN1088-9051
Publication Date1998 May
Journal AbbreviationGenome Res.
Language Abbreng
Publication TypeJournal Article
Publication TypeResearch Support, Non-U.S. Gov't
Publication TypeResearch Support, U.S. Gov't, Non-P.H.S.
Journal CountryUNITED STATES
Journal CodeGNR
LanguageEnglish
pISSN1088-9051
Publication CodeGNR-8-479
Published LocationUnited States
Keywordspolymerase chain-reaction; gossypium l; sequences; evolution; recombination; element; genes; wheat; angiosperms; chromosomes