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J C Glaszmann

Explore the profile of J C Glaszmann including associated specialties, affiliations and a list of published articles. Areas
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Articles 20
Citations 658
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Recent Articles
1.
Asnaghi C, DHont A, Glaszmann J, Rott P
Plant Dis . 2019 Mar; 85(3):282-286. PMID: 30832043
Two different inoculation techniques were investigated before studying the reaction of the major rust resistance gene of sugarcane cultivar R 570 against isolates of Puccinia melanocephala from different geographic locations....
2.
Lanaud C, du Montcel H, Jolivot M, Glaszmann J, de Leon D
Heredity (Edinb) . 2017 Dec; 68(2):147-156. PMID: 29231209
The diversity of rDNA spacer length (IGS) of 107 wild and cultivated clones of banana belonging to different genetic groups, was studied using a sulphonated wheat rDNA probe. The length...
3.
Glaszmann J
Theor Appl Genet . 2013 Nov; 74(1):21-30. PMID: 24241451
Enzyme variation detected by starch gel electrophoresis was used to investigate the genetic structure of Oryza sativa L. species. Fifteen polymorphic loci coding for 8 enzymes were surveyed among 1688...
4.
Glaszmann J, Fautret A, Noyer J, Feldmann P, Lanaud C
Theor Appl Genet . 2013 Nov; 78(4):537-43. PMID: 24225682
Isozyme variation was used to identify biochemical markers of potential utility in sugarcane genetics and breeding. Electrophoretic polymorphism was surveyed for nine enzymes among 39 wild and noble sugarcane clones,...
5.
Paulet F, Engelmann F, Glaszmann J
Plant Cell Rep . 2013 Nov; 12(9):525-9. PMID: 24196115
A cryopreservation process using encapsulation/dehydration was set up for apices sampled on in vitro plantlets of sugarcane. After dissection, apices were cultured for one day on standard medium and then...
6.
Deu M, Gonzalez-de-Leon D, Glaszmann J, Degremont I, Chantereau J, Lanaud C, et al.
Theor Appl Genet . 2013 Nov; 88(6-7):838-44. PMID: 24186186
Careful assessment of the comparative diversity for molecular markers and for potentially-useful morpho-agronomic traits is paramount to the analysis of a genome through the mapping of favorable genes. Sorghum (Sorghum...
7.
DHont A, Rao P, Feldmann P, Grivet L, Islam-Faridi N, Taylor P, et al.
Theor Appl Genet . 2013 Oct; 91(2):320-6. PMID: 24169780
Molecular markers were used to characterise sugarcane intergeneric hybrids between S. officinarum and E. arundinaceus. Very simple diagnostic tools for hybrid identification among the progeny were derived from isozyme electrophoresis...
8.
Daugrois J, Grivet L, Roques D, Hoarau J, Lombard H, Glaszmann J, et al.
Theor Appl Genet . 2013 Oct; 92(8):1059-64. PMID: 24166636
Inheritance of resistance to rust was investigated in the self progeny of the sugarcane cultivar 'R570' also used to build a RFLP genetic map. Resistance was evaluated through both field...
9.
Dufour P, Grivet L, DHont A, Deu M, Trouche G, Glaszmann J, et al.
Theor Appl Genet . 2013 Oct; 92(8):1024-30. PMID: 24166631
Comparative mapping within maize, sorghum and sugarcane has previously revealed the existence of syntenic regions between the crops. In the present study, mapping on the sorghum genome of a set...
10.
Gouy M, Rousselle Y, Bastianelli D, Lecomte P, Bonnal L, Roques D, et al.
Theor Appl Genet . 2013 Aug; 126(10):2575-86. PMID: 23907359
Sugarcane cultivars are interspecific hybrids with an aneuploid, highly heterozygous polyploid genome. The complexity of the sugarcane genome is the main obstacle to the use of marker-assisted selection in sugarcane...