Construction of BAC and BIBAC libraries and their applications for generation of SSR markers for genome analysis of chickpea, Cicer arietinum L

Publication Overview
TitleConstruction of BAC and BIBAC libraries and their applications for generation of SSR markers for genome analysis of chickpea, Cicer arietinum L
AuthorsLichtenzveig J, Scheuring C, Dodge J, Abbo S, Zhang HB
TypeComparative Study
Media TitleTAG. Theoretical and applied genetics. Theoretische und angewandte Genetik
Volume110
Issue3
Year2005
Page(s)492-510
CitationLichtenzveig J, Scheuring C, Dodge J, Abbo S, Zhang HB. Construction of BAC and BIBAC libraries and their applications for generation of SSR markers for genome analysis of chickpea, Cicer arietinum L. TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik. 2005 Feb; 110(3):492-510.

Abstract

Large-insert bacterial artificial chromosome (BAC) libraries, plant-transformation-competent binary BAC (BIBAC) libraries, and simple sequence repeat (SSR) markers are essential for many aspects of genomics research. We constructed a BAC library and a BIBAC library from the nuclear DNA of chickpea, Cicer arietinum L., cv. Hadas, partially digested with HindIII and BamHI, respectively. The BAC library has 14,976 clones, with an average insert size of 121 kb, and the BIBAC library consists of 23,040 clones, with an average insert size of 145 kb. The combined libraries collectively cover ca. 7.0 x genomes of chickpea. We screened the BAC library with eight synthetic SSR oligos, (GA)10, (GAA)7, (AT)10, (TAA)7, (TGA)7, (CA)10, (CAA)7, and (CCA)7. Positive BACs were selected, subcloned, and sequenced for SSR marker development. Two hundred and thirty-three new chickpea SSR markers were developed and characterized by PCR, using chickpea DNA as template. These results have demonstrated that BACs are an excellent source for SSR marker development in chickpea. We also estimated the distribution of the SSR loci in the chickpea genome. The SSR motifs (TAA)n and (GA)n were much more abundant than the others, and the distribution of the SSR loci appeared non-random. The BAC and BIBAC libraries and new SSR markers will provide valuable resources for chickpea genomics research and breeding (the libraries and their filters are available to the public at http://hbz.tamu.edu).

Features
This publication contains information about 233 features:
Feature NameUniquenameType
H1O09H1O09genetic_marker
H1O10H1O10genetic_marker
H1O12H1O12genetic_marker
H1O14H1O14genetic_marker
H1P01H1P01genetic_marker
H1P02H1P02genetic_marker
H1P091H1P091genetic_marker
H1P092H1P092genetic_marker
H1P17H1P17genetic_marker
H1P181H1P181genetic_marker
H1P182H1P182genetic_marker
H1P23H1P23genetic_marker
H2A02H2A02genetic_marker
H2A04H2A04genetic_marker
H2A08H2A08genetic_marker
H2A11H2A11genetic_marker
H2B02H2B02genetic_marker
H2B061H2B061genetic_marker
H2B18H2B18genetic_marker
H2B19H2B19genetic_marker
H2B201H2B201genetic_marker
H2B202H2B202genetic_marker
H2B203H2B203genetic_marker
H2C03H2C03genetic_marker
H2C10H2C10genetic_marker

Pages

Properties
Additional details for this publication include:
Property NameValue
Publication TypeComparative Study
Journal CountryGermany
Publication ModelPrint-Electronic
ISSN0040-5752
pISSN0040-5752
Publication Date2005 Feb
Journal AbbreviationTheor. Appl. Genet.
LanguageEnglish
Language Abbreng
Publication TypeJournal Article
Publication TypeResearch Support, Non-U.S. Gov't