نتایج جستجو برای: bulked segregant analysis

تعداد نتایج: 2824314  

Journal: :Cellular & molecular biology letters 2002
Kianoosh Cheghamirza Oksana Koveza Fedor Konovalov Sergei Gostimsky

The RAPD method (Random Amplified Polymorphic DNA) was used for identifying and mapping new molecular markers in pea. RAPD analysis of various cultivars and lines of pea was carried out using 10-mer random primers. The presence of multiple polymorphism between cultivars and lines was revealed; at least one fragment for any given primer was present in the DNA of one form of pea and absent in the...

2016
Hong Zhang Hongping Yi Mingzhu Wu Yongbin Zhang Xuejin Zhang Meihua Li Guangzhi Wang Edward J Louis

We used a next-generation high-throughput sequencing platform to resequence the Xinguowei and Shouxing melon cultivars, the parents of Fengwei melon. We found 84% of the reads (under a coverage rate of "13×") placed on the reference genome DHL92. There were 2,550,000 single-nucleotide polymorphisms and 140,000 structural variations in the two genomes. We also identified 1,290 polymorphic genes ...

2014
Juan A. Salazar Mousa Rasouli Reza Fatahi Moghaddam Zabihollah Zamani Ali Imani Pedro Martínez-Gómez

Evaluation of agronomic traits in Prunus breeding programs is a tedious process because of the long juvenile period of trees, the influence of juvenility and the existence of climatic factors affecting the expression of the trait. For these reasons, marker-assisted selection (MAS) strategies are particularly useful in these cases. The objective of this work is the analysis of alternative lowcos...

Journal: :Genome 1997
H M William D Hoisington R P Singh D González-de-León

Leaf rust, caused by Puccinia recondita Rob. ex Desm., is a common disease in wheat. The objective of this study was to develop molecular markers associated with the quantitative trait loci (QTLs) putatively conferring durable leaf rust resistance in Triticum aestivum L. em. Thell. A population of 77 recombinant inbred lines (RILs) developed from 'Parula' (resistant) and 'Siete Cerros' (moderat...

Journal: :Genetics 2004
R Linning D Lin N Lee M Abdennadher D Gaudet P Thomas D Mills J W Kronstad G Bakkeren

Race-cultivar specialization during the interaction of the basidiomycete smut pathogen Ustilago hordei with its barley host was described in the 1940s. Subsequent genetic analyses revealed the presence of dominant avirulence genes in the pathogen that conform to the gene-for-gene theory. This pathosystem therefore presents an opportunity for the molecular genetic characterization of fungal gene...

2017
Oscar P. Hurtado-Gonzales Giseli Valentini Thiago A. S. Gilio Alexandre M. Martins Qijian Song Marcial A. Pastor-Corrales

Bean rust, caused by Uromyces appendiculatus, is a devastating disease of common bean (Phaseolus vulgaris) in the Americas and Africa. The historically important Ur-3 gene confers resistance to many races of the highly variable bean rust pathogen that overcome other rust resistance genes. Existing molecular markers tagging Ur-3 for use in marker-assisted selection produce false results. Here, w...

2017
Yuki Yoshitsu Masato Takakusagi Akira Abe Hiroki Takagi Aiko Uemura Hiroki Yaegashi Ryohei Terauchi Yoshihito Takahata Katsunori Hatakeyama Shuji Yokoi

Heading date is an important event to ensure successful seed production. Although foxtail millet (Setaria italica (L.) P.Beauv.) is an important foodstuff in semiarid regions around the world, the genetic basis determining heading date is unclear. To identify genomic regions regulating days to heading (DTH), we conducted a QTL-seq analysis based on combining whole-genome re-sequencing and bulke...

2015
Abhijit Daspute B. Fakrudin

Pigeonpea Sterility Mosaic Disease (PSMD) is an important foliar disease caused by Pigeonpea sterility mosaic virus (PPSMV) which is transmitted by eriophyid mites (Aceria cajani Channabasavanna). In present study, a F2 mapping population comprising 325 individuals was developed by crossing PSMD susceptible genotype (Gullyal white) and PSMD resistant genotype (BSMR 736). We identified a set of ...

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