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- W177195385 abstract "Viruses such as alfalfa mosaic alfamovirus (AMV), white clover mosaic potex virus (WCMV) and clover yellow vein potyvirus (CYVV), which are members of the three largest groups of plant viruses, have been found to have significant adverse effects on forage legumes. Each of these viruses individually infects a large number of plant species, has a worldwide distribution, and causes significant losses, especially in pasture and grain legumes. Pasture legumes contribute to the input base of the rural industries by providing improved pastures for grazing and nitrogen for cropping. However, a widespread gradual decline in pasture yield and persistence and reduced winterhardiness is harming farm profitability. Virus diseases are major causes of this reduced pasture performance, and it is estimated that controlling AMV, WCMV, and CYVV could increase profitability for Australian rural industries by over AUD 860 million per year. Most of the classical methods for preventing plant virus infections are laborious and economically unsustainable. There is no effective, readily transferable natural resistance to viruses in forage legumes. This makes the production of virus resistant varieties by means of gene technology an attractive option due to the ability to overcome species-specific barriers, to develop multi-gene resistance and to manipulate levels and sites of expression. Strategies for developing pathogen-derived resistance to virus diseases in forage legumes depend on the availability of sequence information of virus genomes and robust regeneration and transformation protocols for the major pasture legumes. In this paper the current status of molecular breeding of crop plants including forage legumes for virus resistance is reviewed." @default.
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- W177195385 date "2001-01-01" @default.
- W177195385 modified "2023-10-18" @default.
- W177195385 title "Molecular Breeding of Forage Legumes for Virus Resistance" @default.
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- W177195385 doi "https://doi.org/10.1007/978-94-015-9700-5_13" @default.
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