Reducing progoitrin and enriching glucoraphanin in Braasica napus seeds through silencing of the GSL-ALK gene family
The hydrolytic products of glucosinolates in brassica crops are bioactive compounds. Some glucosinolate derivatives such as oxazolidine-2-thione from progoitrin in brassica oilseed meal are toxic and detrimental to animals, but some isothiocyanates such as sulforaphane are potent anti-carcinogens th...
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Veröffentlicht in: | Plant molecular biology 2012-05, Vol.79 (1-2), p.179-189 |
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Sprache: | eng |
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Zusammenfassung: | The hydrolytic products of glucosinolates in brassica crops are bioactive compounds. Some glucosinolate derivatives such as oxazolidine-2-thione from progoitrin in brassica oilseed meal are toxic and detrimental to animals, but some isothiocyanates such as sulforaphane are potent anti-carcinogens that have preventive effects on several human cancers. In most
B. rapa
,
B. napus
and
B. juncea
vegetables and oilseeds, there is no or only trace amount of glucoraphanin that is the precursor to sulforaphane. In this paper, RNA interference (RNAi) of the
GSL
-
ALK
gene family was used to down-regulate the expression of
GSL
-
ALK
genes in
B. napus
. The detrimental glucosinolate progoitrin was reduced by 65 %, and the beneficial glucosinolate glucoraphanin was increased to a relatively high concentration (42.6 μmol g
−1
seed) in seeds of
B. napus
transgenic plants through silencing of the
GSL
-
ALK
gene family. Therefore, there is potential application of the new germplasm with reduced detrimental glucosinolates and increased beneficial glucosinolates for producing improved brassica vegetables. |
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ISSN: | 0167-4412 1573-5028 |
DOI: | 10.1007/s11103-012-9905-2 |