Genetic architecture of chalcone isomerase non-coding regions in common bean (Phaseolus vulgaris L.)

Genome ◽  
2007 ◽  
Vol 50 (2) ◽  
pp. 203-214 ◽  
Author(s):  
Phillip E. McClean ◽  
Rian K. Lee

Sequence data for 2 non-coding regions of the chalcone isomerase gene were analyzed to study the genetic architecture of common bean ( Phaseolus vulgaris L.). One region corresponded to the first 596 nucleotides (nt) of the 5′-untranslated region (UTR). The other region was the 710 nt intron 3. Data were collected from 67 genotypes representing both landraces and cultivars from the geographical range of the cultivated form of the species. Variability in the 5′-UTR region was represented by single nucleotide polymorphisms (SNPs), whereas intron 3 variation was due to a collection of SNPs and insertion–deletion events. Diversity was greater in the 5′-UTR (π = 0.0175) than in intron 3 (π = 0.0089). For each region, diversity was greater for genotypes of Middle American than Andean origin. A single recombination event was observed, and the hybridization pattern necessary to derive the recombinant genotypes supported the previous observation of an ancestral gene pool from which modern domesticated genotypes are derived. For both regions, a strongly supported Andean group was observed, whereas the presence of 2 Middle American subgroups was also supported. Although a significantly positive Tajima’s D statistic was observed for the 5′-UTR for all genotypes, we conclude that this is more likely the result of a strong demographic effect and that balancing selection is occurring only among the Middle American genotypes.

Genome ◽  
2005 ◽  
Vol 48 (3) ◽  
pp. 562-570 ◽  
Author(s):  
Maeli Melotto ◽  
Claudia B Monteiro-Vitorello ◽  
Adriano G Bruschi ◽  
Luis E.A Camargo

To rapidly and cost-effectively generate gene expression data, we developed an annotated unigene database of common bean (Phaseolus vulgaris L.). In this study, 3 cDNA libraries were constructed from the bean breeding line SEL1308, 1 from young leaf and 2 from seedlings inoculated or not inoculated with the fungal pathogen Colletotrichum lindemuthianum (Sacc. & Magnus) Briosi & Cavara, which causes anthracnose in common bean. To this date, 5255 single-pass sequences have been included in the database after selection based on sequence quality. These ESTs were trimmed and clustered using the computer programs Phred and CAP3 to form a unigene collection of 3126 unique sequences. Within clusters, 318 single nucleotide polymorphisms (SNPs) and 68 insertions–deletions (indels) were found, indicating the presence of paralogous gene families in our database. Each unigene sequence was analyzed for possible function using their similarity to known genes represented in the GenBank database and classified into 14 categories. Only 314 unigenes showed significant similarities to Phaseolus genomic sequences and P. vulgaris ESTs, which indicates that 90% (2818 unigenes) of our database represent newly discovered common bean genes. In addition, 12% (387 unigenes) were shown to be specific to common bean. This study represents a first step towards the discovery of novel genes in beans and a valuable source of molecular markers for expressed gene tagging and mapping.Key words: expressed sequence tag (EST), Colletotrichum lindemuthianum, Phaseolus vulgaris, simple sequence repeat (SSR), single nucleotide polymorphism (SNP).


2012 ◽  
Vol 109 (14) ◽  
pp. E788-E796 ◽  
Author(s):  
E. Bitocchi ◽  
L. Nanni ◽  
E. Bellucci ◽  
M. Rossi ◽  
A. Giardini ◽  
...  

2021 ◽  
Author(s):  
Sofora Jan ◽  
Irshad Ahmad Rather ◽  
Parvaze Ahmad Sofi ◽  
Mohd Altaf Wani ◽  
Farooq Ahmad Sheikh ◽  
...  

2021 ◽  
Author(s):  
Rosa Cecilia Viscarra‐Torrico ◽  
Aga Pajak ◽  
Alvaro Soler Garzón ◽  
BaiLing Zhang ◽  
Sudhakar Pandurangan ◽  
...  

2021 ◽  
Vol 99 ◽  
pp. 103883
Author(s):  
Mayra Denise Herrera ◽  
Rosalía Reynoso-Camacho ◽  
Valentín Melero-Meraz ◽  
Salvador H. Guzmán-Maldonado ◽  
Jorge A. Acosta-Gallegos

2021 ◽  
Author(s):  
Yarmilla Reinprecht ◽  
Yanzhou Qi ◽  
Fariba Shahmir ◽  
Thomas H. Smith ◽  
Karl Peter Pauls

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