1979
DOI: 10.1104/pp.63.3.481
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Effects of the Herbicide San 9789 on Photomorphogenic Responses

Abstract: The herbicide, 4-chloro-5-(methybano)-2-(aaa-trifluoro-m-tolyl)- In many plant species sublethal doses of 4-chloro-5-(methylamino)-2-(a,a,a-trifluoro-m-tolyl)-3(2H)-pyridazinone (Norflurazon; hereafter referred to as San 9789, manufacturer's code no.) inhibit carotenoid synthesis (2). When exposed to white light these plants do not accumulate Chl pigments, but appear to grow and develop as well as untreated plants for several days.Our interest in this herbicide evolved from the possibility of using it as a too… Show more

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Cited by 88 publications
(50 citation statements)
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“…The most dramatic effect is that Chl fails to accumulate due to rapid photooxidation, resulting in albino seedlings which are incapable of photoautotrophic growth (1,6). Herbicides which block the accumulation of colored carotenoids exhibit phenotypes very similar to those of the nuclear albino mutants (23). Leaf plastids within these carotenoid-deficient seedlings show little or no development of internal membrane structure (4,14).…”
mentioning
confidence: 99%
“…The most dramatic effect is that Chl fails to accumulate due to rapid photooxidation, resulting in albino seedlings which are incapable of photoautotrophic growth (1,6). Herbicides which block the accumulation of colored carotenoids exhibit phenotypes very similar to those of the nuclear albino mutants (23). Leaf plastids within these carotenoid-deficient seedlings show little or no development of internal membrane structure (4,14).…”
mentioning
confidence: 99%
“…4A could be converted to long-root morphotypes by supplementary sucrose. To further test the hypothesis, we used three physiological treatments for inhibiting various sections of the photosynthetic apparatus in WT seedlings: (i) removal of CO 2 from the atmosphere in the light, (ii) preventing greening with the carotenoid-biosynthesis inhibitor norflurazone in the light (20), and (iii) preventing greening, but not PhyA-mediated photomorphogenesis, by growing the seedlings in far-red light (Fig. 5).…”
mentioning
confidence: 99%
“…The differences in anthocyanin production be- (1,4,5). However, these inhibitors should not be used in physiological experiments without previous studies of their effects on the response/system combination: differences in the effects of the inhibitor can be quite large even for the same response in closely related systems, as shown in this report.…”
Section: Conclusion Streptomycin Enhances Anthocyanin Production Andmentioning
confidence: 62%
“…Streptomycin inhibits chloroplast development and Chl synthesis and enhances anthocyanin production in young cabbage seedlings (9). We used STM instead of Norflurazon, a more commonly used 'Chl-bleacher' (1,4,5), because the differences in the Chl levels of seedlings exposed to prolonged irradiations with different spectral regions are less pronounced in STM-treated than in Norflurazon-treated seedlings (7). Figure 1 are the means of 14 to 18 replicates in two independent experiments.…”
mentioning
confidence: 99%
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