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Biosafety Virtual Library Resources
(VLR)
last updated: 09 May 2012
Transgenesis has less impact on the transcriptome of wheat grain than conventional breeding
EN
Blackwell Publishing
EN
2006
EN
Plant Biotechnology Journal
EN
© 2006 Blackwell Publishing Ltd
EN
Summary:
Detailed global gene expression profiles have been obtained for a series of transgenic and conventionally bred wheat lines expressing additional genes encoding HMW (high molecular weight) subunits of glutenin, a group of endosperm specific seed storage proteins known to determine dough strength and therefore bread-making quality. Differences in endosperm and leaf transcriptome profiles between untransformed and derived transgenic lines were consistently extremely small, when analysing plants containing either transgenes only, or also marker genes. Differences observed in gene expression in the endosperm between conventionally bred material were much larger in comparison to differences between transgenic and untransformed lines exhibiting the same complements of gluten subunits. These results suggest that the presence of the transgenes did not significantly alter gene expression and that, at this level of investigation, transgenic plants could be considered substantially equivalent to untransformed parental lines.
EN
Detailed global gene expression profiles have been obtained for a series of transgenic and conventionally bred wheat lines expressing additional genes encoding HMW (high molecular weight) subunits of glutenin, a group of endosperm specific seed storage proteins known to determine dough strength and therefore bread-making quality. Differences in endosperm and leaf transcriptome profiles between untransformed and derived transgenic lines were consistently extremely small, when analysing plants containing either transgenes only, or also marker genes. Differences observed in gene expression in the endosperm between conventionally bred material were much larger in comparison to differences between transgenic and untransformed lines exhibiting the same complements of gluten subunits. These results suggest that the presence of the transgenes did not significantly alter gene expression and that, at this level of investigation, transgenic plants could be considered substantially equivalent to untransformed parental lines.
- GBF-T17. Strengthen biosafety and distribute benefits of biotechnology
No
No
No
Identifier (ISBN, ISSN, etc.)
doi: 10.1111/j.1467-7652.2006.00193.x
Format
12 page PDF
Keywords and any other relevant information
Keywords: transgenic wheat, transcriptome analysis, substantial equivalence.
Citation: Plant Biotechnology Journal(2006) 4, pp. 369–380
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