Rhizomania resistance in the Tandem® sugar beet variety
N. D. De Temmerman, Mark N. Anfinrud, M. Meulemans, K. Rick, Alexandra Bürkholz, Erik De Bruyne, G. Weyens, Steve R. Barnes, S. Horemans, Marie Lefebvre, Melvin D. Bolton
Abstract
N. D. De Temmerman, Mark N. Anfinrud, M. Meulemans, K. Rick, Alexandra Bürkholz, Erik De Bruyne, G. Weyens, Steve R. Barnes, S. Horemans, Marie Lefebvre, Melvin D. Bolton
Abstract
Rhizomania, caused by beet necrotic yellow vein virus (BNYVV), is a major disease of sugar beet world-wide. The 'Holly' resistance gene (Rz1) confers strong resistance to several BNYW isolates and has been incorporated into most major sugar beet breeding lines. However, the threat presented by resistance-breaking isolates of BNYVV, to which the Holly gene does not confer adequate resistance, underscores the need for novel sources of Rhizomania-resistant germplasm. The Tandem ® sugar beet variety combines resistances to BNYW from two sources: the Rz1 gene and a proprietary Beta maritima-derived source. Beets from Tandem, Holly-mediated resistant, and susceptible non-Rz lines were harvested from replicated microplots with heavy Rhizomania disease pressure in the Red River Valley (Minnesota and North Dakota, U.S.), and were analyzed for virus accumulation, root yield, sugar content and juice purity parameters. BNYW titers were significantly and uniformly lower in samples from Tandem ® or Holly than those from the susceptible controls.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Rhizomania, caused by beet necrotic yellow vein virus (BNYVV), is a major disease of sugar beet world-wide. The 'Holly' resistance gene (Rz1) confers strong resistance to several BNYW isolates and has been incorporated into most major sugar beet breeding lines. However, the threat presented by resistance-breaking isolates of BNYVV, to which the Holly gene does not confer adequate resistance, underscores the need for novel sources of Rhizomania-resistant germplasm. The Tandem ® sugar beet variety combines resistances to BNYW from two sources: the Rz1 gene and a proprietary Beta maritima-derived source. Beets from Tandem, Holly-mediated resistant, and susceptible non-Rz lines were harvested from replicated microplots with heavy Rhizomania disease pressure in the Red River Valley (Minnesota and North Dakota, U.S.), and were analyzed for virus accumulation, root yield, sugar content and juice purity parameters. BNYW titers were significantly and uniformly lower in samples from Tandem ® or Holly than those from the susceptible controls.
Key concepts: Sugar beet, Sugar, Biology, Germplasm, Agronomy, Plant disease resistance, Horticulture, Plant virus