Black rot caused by pv. () is a very important disease of cauliflower ( group) resulting into 10-50% yield losses every year. Since there is a dearth of availability of resistance to black rot disease in (C genome), therefore exploration of A and B genomes was inevitable as they have been reported to be potential reservoirs of gene(s) for resistance to black rot. To utilize these sources, interspecific hybrid and backcross progeny (B) were generated between cauliflower "Pusa Sharad" and Ethiopian mustard "NPC-9" employing embryo rescue technique. Direct ovule culture method was better than siliqua culture under different temperature regime periods. Hybridity testing of F inter-specific plants was carried out using co-dominant SSR marker and B and C genome-specific (DB and DC) primers. Meiosis in the di-genomic (BCC) interspecific hybrid of group (2 = 18, CC) × (2 = 4x = 34, BBCC) was higly disorganized and cytological analysis of pollen mother cells revealed chromosomes 2 = 26 at metaphase-I. Fertile giant pollen grain formation was observed frequently in interspecific F hybrid and BC plants. The F inter-specific plants were found to be resistant to race 1. Segregation distortion was observed in BC generation for black rot resistance and different morphological traits. The At1g70610 marker analysis confirmed successful introgression of black rot resistance in interspecific BC population. This effort will go a long way in pyramiding gene(s) for resistance against black rot in Cole crops, especially cauliflower and cabbage for developing durable resistance, thus minimize dependency on bactericides.
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http://dx.doi.org/10.3389/fpls.2017.01255 | DOI Listing |
Plant Dis
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Universidad de Chile, Departamento de Sanidad Vegetal, Facultad de Ciencias Agronomicas, Casilla 1004, Santiago, Chile, 8820000;
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Kashi, Xinjiang, China, China;
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January 2025
Hebei Academy of Agricultural and Forestry Sciences, Plant Protection Institute, 437 Dongguan Street, Baoding, Hebei, China, 071000.
Strawberry () is an important economic crop in Hebei, China. In May 2023, root rot was observed in strawberry plantations (cultivar 'Benihoppe') in Shijiazhuang (37°57'23″N, 115°16'34″E), Hebei, China. The incidence of the disease reached up to 30% in the field.
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December 2024
Department of Phytopathology, Institute of Phytomedicine, Faculty of Agricultural Sciences, University of Hohenheim, Otto-Sander-Str. 5, D-70599 Stuttgart, Germany.
Strawberries hold significant economic importance in both German and global agriculture. However, their yield is often adversely affected by fungal diseases. This study describes as a newly emerging pathogen responsible for leaf blight and fruit rot in strawberries in Germany.
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December 2024
Laboratory of Plant Pathology, Department of Crop Science, Agricultural University of Athens, 118 55 Athens, Greece.
is considered one of the main fungi responsible for black and sour rot in grapes, as well as the production of the carcinogenic mycotoxin ochratoxin A. The global regulatory methyltransferase protein controls the production of various secondary metabolites in species, as well as influences sexual and asexual reproduction and morphology. The goal of this study was to investigate the role of the regulatory gene in physiology, virulence, and ochratoxin A (OTA) production by deleting this gene from the genome of a wild-type strain.
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