Morgunov Igor G, Kamzolova Svetlana V, Dedyukhina Emilia G, Chistyakova Tatiana I, Lunina Julia N, Mironov Alexey A, Stepanova Nadezda N, Shemshura Olga N, Vainshtein Mikhail B
G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms, Russian Academy of Sciences, Prospect Nauki 5, Pushchino, Moscow region, Russia, 142290.
Pushchino State Institute of Natural Sciences, Pushchino, Russia, 142290.
Appl Microbiol Biotechnol. 2017 Feb;101(3):921-932. doi: 10.1007/s00253-016-8067-6. Epub 2016 Dec 31.
The basic tendency in the field of plant protection concerns with reducing the use of pesticides and their replacement by environmentally acceptable biological preparations. The most promising approach to plant protection is application of microbial metabolites. In the last years, bactericidal, fungicidal, and nematodocidal activities were revealed for citric, succinic, α-ketoglutaric, palmitoleic, and other organic acids. It was shown that application of carboxylic acids resulted in acceleration of plant development and the yield increase. Of special interest is the use of arachidonic acid in very low concentrations as an inductor (elicitor) of protective functions in plants. The bottleneck in practical applications of these simple, nontoxic, and moderately priced preparations is the absence of industrial production of the mentioned organic acids of required quality since even small contaminations of synthetic preparations decrease their quality and make them dangerous for ecology and toxic for plants, animals, and human. This review gives a general conception on the use of organic acids for plant protection against the most dangerous pathogens and pests, as well as focuses on microbiological processes for production of these microbial metabolites of high quality from available, inexpensive, and renewable substrates.
植物保护领域的基本趋势是减少农药的使用,并以环境可接受的生物制剂取而代之。植物保护最有前景的方法是应用微生物代谢产物。近年来,已发现柠檬酸、琥珀酸、α-酮戊二酸、棕榈油酸和其他有机酸具有杀菌、杀真菌和杀线虫活性。结果表明,施用羧酸可促进植物生长并提高产量。特别值得关注的是,极低浓度的花生四烯酸可作为植物保护功能的诱导剂(激发子)。这些简单、无毒且价格适中的制剂在实际应用中的瓶颈在于,所需质量的上述有机酸缺乏工业化生产,因为即使合成制剂受到微小污染也会降低其质量,使其对生态环境有害,对植物、动物和人类有毒。本文综述了有机酸在植物保护免受最危险病原体和害虫侵害方面的一般概念,并着重介绍了利用现有、廉价且可再生底物生产这些高质量微生物代谢产物的微生物学过程。