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J L Bennetzen

Explore the profile of J L Bennetzen including associated specialties, affiliations and a list of published articles. Areas
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Articles 73
Citations 4988
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Recent Articles
1.
Eckdahl T, Bennetzen J, Anderson J
Plant Mol Biol . 2013 Nov; 12(5):507-16. PMID: 24271067
DNA fragments capable of conferring autonomous replicating ability to plasmids inSaccharomyces cerevisiae were isolated from four different plant genomes and from the Ti plasmid ofAgrobacterium tumefaciens. The DNA structure of...
2.
Bennetzen J, Adams T
Plant Cell Rep . 2013 Nov; 3(6):258-61. PMID: 24253581
Suspension cultures of Lycopersicon peruvianum were selected for resistance to cadmium by stepwise exposure to increasing concentrations of cadmium sulfate. Resistant cells grow in 1500 micromolar Cd(++). This resistance was...
3.
Springer P, ZIMMER E, Bennetzen J
Theor Appl Genet . 2013 Nov; 77(6):844-50. PMID: 24232902
The structure and organization of the ribosomal DNA (rDNA) of sorghum (Sorghum bicolor) and several closely related grasses were determined by gel blot hybridization to cloned maize rDNA. Monocots of...
4.
Berhan A, Hulbert S, Butler L, Bennetzen J
Theor Appl Genet . 2013 Nov; 86(5):598-604. PMID: 24193709
Cloned maize genes and random maize genomic fragments were used to construct a genetic map of sorghum and to compare the structure of the maize and sorghum genomes. Most (266/280)...
5.
Bennetzen J, Springer P
Theor Appl Genet . 2013 Nov; 87(6):657-67. PMID: 24190408
The mobile DNAs of the Mutator system of maize (Zea mays) are exceptional both in structure and diversity. So far, six subfamilies of Mu elements have been discovered; all Mu...
6.
Sanz-Alferez S, Richter T, Hulbert S, Bennetzen J
Theor Appl Genet . 2013 Oct; 91(1):25-32. PMID: 24169663
The Rp3 locus of maize conditions race-specific resistance to a fungal rust pathogen, Puccinia sorghi. Both morphological and DNA markers were employed to characterize alleles of Rp3 and to accurately...
7.
Vitte C, Estep M, Leebens-Mack J, Bennetzen J
Ann Bot . 2013 Jul; 112(5):881-9. PMID: 23887091
Background And Aims: Although monocotyledonous plants comprise one of the two major groups of angiosperms and include >65 000 species, comprehensive genome analysis has been focused mainly on the Poaceae...
8.
Estep M, DeBARRY J, Bennetzen J
Heredity (Edinb) . 2013 Jan; 110(2):194-204. PMID: 23321774
Sample sequence analysis was employed to investigate the repetitive DNAs that were most responsible for the evolved variation in genome content across seven panicoid grasses with >5-fold variation in genome...
9.
Gleick P, ADAMS R, Amasino R, Anders E, Anderson D, Anderson W, et al.
Science . 2010 May; 328(5979):689-90. PMID: 20448167
No abstract available.
10.
Chu Z, Fu B, Yang H, Xu C, Li Z, Sanchez A, et al.
Theor Appl Genet . 2005 Dec; 112(3):455-61. PMID: 16328230
Bacterial blight, caused by Xanthomonas oryzae pv. oryzae (Xoo), is one of the most serious diseases of rice worldwide. Thirty bacterial blight resistance (R) genes (21 dominant genes and 9...