Pyramiding of transgenic Pm3 alleles in wheat results in improved powdery mildew resistance in the field
Key message The combined effects of enhanced total transgene expression level and allele-specificity combination in transgenic allele-pyramided Pm3 wheat lines result in improved powdery mildew field resistance without negative pleiotropic effects. Allelic Pm3 resistance genes of wheat confer race-s...
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Veröffentlicht in: | Theoretical and applied genetics 2018-04, Vol.131 (4), p.861-871 |
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Sprache: | eng |
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The combined effects of enhanced total transgene expression level and allele-specificity combination in transgenic allele-pyramided Pm3 wheat lines result in improved powdery mildew field resistance without negative pleiotropic effects.
Allelic
Pm3
resistance genes of wheat confer race-specific resistance to powdery mildew (
Blumeria graminis
f. sp.
tritici
,
Bgt
) and encode nucleotide-binding domain, leucine-rich repeat (NLR) receptors. Transgenic wheat lines overexpressing alleles
Pm3a, b, c, d, f,
and
g
have previously been generated by transformation of cultivar Bobwhite and tested in field trials, revealing varying degrees of powdery mildew resistance conferred by the transgenes. Here, we tested four transgenic lines each carrying two pyramided
Pm3
alleles, which were generated by crossbreeding of lines transformed with single
Pm3
alleles. All four allele-pyramided lines showed strongly improved powdery mildew resistance in the field compared to their parental lines. The improved resistance results from the two effects of enhanced total transgene expression levels and allele-specificity combinations. In contrast to leaf segment tests on greenhouse-grown seedlings, no allelic suppression was observed in the field. Plant development and yield scores of the pyramided lines were similar to the mean scores of the corresponding parental lines, and thus, the allele pyramiding did not cause any negative effects. On the contrary, in pyramided line, Pm3b × Pm3f normal plant development was restored compared to the delayed development and reduced seed set of parental line Pm3f. Allele-specific RT qPCR revealed additive transgene expression levels of the two
Pm3
alleles in the pyramided lines. A positive correlation between total transgene expression level and powdery mildew field resistance was observed. In summary, allele pyramiding of
Pm3
transgenes proved to be successful in enhancing powdery mildew field resistance. |
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ISSN: | 0040-5752 1432-2242 |
DOI: | 10.1007/s00122-017-3043-9 |