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Combination of mechanisms of resistance to rust fungi as a strategy to increase durability

By: Contributor(s): Material type: ArticleArticleLanguage: English Series: Options Méditerranéennes : Série A. Séminaires Méditerranéens ; No. 40Publication details: Zaragoza (Spain) : CIHEAM, 2000.Subject(s): In: Durum wheat improvement in the Mediterranean region: New challenges p. 333-339Summary: It is unknown which criteria to use to decide whether a resistance is durable or not. We present some examples where resistance to cereal rusts that proved to be durable is of complex inheritance, and also others where durability is due to particular single genes that cause relatively small effects on the pathogen development, and yet seem to be race-non-specific and not based on hypersensitivity. Their effect can be greatly enhanced if they occur in combination with other, even when these maybe race-specific, resistance genes. Combinations of different resistance mechanisms seem to be of great value to increase durability of resistance. It is generally agreed that the use of cultivars with single-gene race-specific resistance should be avoided, but such genes could still be of great help in enhancing and/or protecting durability. An alternative to the development of individual cultivars with long-lasting resistance might be the use of genetic diversity for resistance and diversity in its strategic deployment, and may include combining of race-specific with non-specific resistance.
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Abstract in English and French

It is unknown which criteria to use to decide whether a resistance is durable or not. We present some examples where resistance to cereal rusts that proved to be durable is of complex inheritance, and also others where durability is due to particular single genes that cause relatively small effects on the pathogen development, and yet seem to be race-non-specific and not based on hypersensitivity. Their effect can be greatly enhanced if they occur in combination with other, even when these maybe race-specific, resistance genes. Combinations of different resistance mechanisms seem to be of great value to increase durability of resistance. It is generally agreed that the use of cultivars with single-gene race-specific resistance should be avoided, but such genes could still be of great help in enhancing and/or protecting durability. An alternative to the development of individual cultivars with long-lasting resistance might be the use of genetic diversity for resistance and diversity in its strategic deployment, and may include combining of race-specific with non-specific resistance.

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