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Linalool synthase LIS

Figure 10.1. The gene from Clarkia breweri coding for (S)-linalool synthase (LIS) was added to three different piant species (tomato, petunia and carnation) and each species produced the expected product, S-iinaiooi. However, the existing NP metabolic flexibility in each species aiiowed the novei substance, S-iinaiooi, to be converted to other substances, those substances being different in each species due to the differences in NP metabolism in each plant. ... Figure 10.1. The gene from Clarkia breweri coding for (S)-linalool synthase (LIS) was added to three different piant species (tomato, petunia and carnation) and each species produced the expected product, S-iinaiooi. However, the existing NP metabolic flexibility in each species aiiowed the novei substance, S-iinaiooi, to be converted to other substances, those substances being different in each species due to the differences in NP metabolism in each plant. ...
Not all attempts at metabolic engineering deliver the expected results. For example, Liicker et al. [11] transformed petunia (Petunia hybrida) with the (S)-linalool synthase (LIS) gene from Clarkia breweri (Scheme 26.1), but despite... [Pg.617]

Fig. 6 Different species-specific fates of linalool produced via ectopic expression of Clarkia breweri lina-lool synthase (LIS) [132] in tomato [200], petunia [187] and carnation [188]. GPP, geranyl diphosphate... Fig. 6 Different species-specific fates of linalool produced via ectopic expression of Clarkia breweri lina-lool synthase (LIS) [132] in tomato [200], petunia [187] and carnation [188]. GPP, geranyl diphosphate...

See other pages where Linalool synthase LIS is mentioned: [Pg.318]    [Pg.318]    [Pg.420]    [Pg.318]    [Pg.318]    [Pg.420]    [Pg.170]    [Pg.406]   
See also in sourсe #XX -- [ Pg.420 ]




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