Literature DB >> 6741170

[Effect of metalaxyl on the synthesis of RNA, DNA and protein in Phytophthora nicotianae].

R Wollgiehn, E Bräutigam, B Schumann, D Erge.   

Abstract

Metalaxyl is used to control diseases caused by fungi of the order of the Perenosporales. We investigated the action of this fungicid eon nucleic acid and protein synthesis in liquid cultures of Phytophthora nicotianae. The uptake of 32P, 3H-uridine, 3H-thymidine and 14C-leucine as precursors of nuclei acid and protein synthesis by the mycelium was not inhibited by metalaxyl. RNA synthesis as indicated by 3H-uridine incorporation was strongly inhibited (about 80%) by 0.5 micrograms/ml of metalaxyl. The inhibition was visible already few minutes after addition of the toxicant. Since the inhibition of incorporation of 3H-thymidine into DNA and of 14C-leucine into protein became significant 2-3 hours later, we conclude that metalaxyl primarily interfers with RNA synthesis. Synthesis of ribosomal RNA is more affected (more than 90%) than that of tRNA (about 55%) and poly(A)-containing RNA. Since in the presence of actinomycin, in contrast to metalaxyl, protein synthesis is inhibited immediately as a consequence of complete inhibition of RNA synthesis and of the short life-time of mRNA, it is also evident that mRNA synthesis is less strongly inhibited, at least during the early period of metalaxyl action. The molecular mechanism of metalaxyl inhibition of the transcription process remains open. The fungicide did not inhibit the activity of a partially purified RNA polymerase isolated from the fungus. On the other hand, the RNA synthesis (14C-UTP-incorporation) by a cell homogenate and by isolated nuclear fractions was inhibited significantly. Possibilities of the molecular action of metalaxyl are discussed. The RNA synthesis of some plant systems (cell cultures of Lycopersicon peruvianum, isolated nuclei from the same cell cultures, purified RNA polymerase from Spinacia oleracea chloroplasts) was not inhibited by metalaxyl, not even at high concentrations.

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Year:  1984        PMID: 6741170     DOI: 10.1002/jobm.3630240417

Source DB:  PubMed          Journal:  Z Allg Mikrobiol        ISSN: 0044-2208


  2 in total

1.  In vitro growth response of Phytophthora cactorum, P. nicotianae and P. × pelgrandis to antibiotics and fungicides.

Authors:  M Pánek; M Tomšovský
Journal:  Folia Microbiol (Praha)       Date:  2017-01-26       Impact factor: 2.099

2.  Sequence diversity in the large subunit of RNA polymerase I contributes to Mefenoxam insensitivity in Phytophthora infestans.

Authors:  Eva Randall; Vanessa Young; Helge Sierotzki; Gabriel Scalliet; Paul R J Birch; David E L Cooke; Michael Csukai; Stephen C Whisson
Journal:  Mol Plant Pathol       Date:  2014-04-14       Impact factor: 5.663

  2 in total

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