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PMID: 19082588 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Recent advances in the biochemistry of spinosyns.

Applied microbiology and biotechnology ·Vol. 82 ·No. 1 ·2009-02-00 ·Pages 13-23

Huang KX, Xia L, Zhang Y, Ding X, Zahn JA

Abstract

Spinosyn and its analogs, produced by Saccharopolyspora spinosa, are the active ingredients in a family of insect control agents. They are macrolides with a 21-carbon, 12-membered tetracyclic lactones that are attached to two deoxysugars, tri-O-methylrhamnose and forosamine. Labeling studies, analysis of the biosynthetically blocked mutants, and the genetic identification of the spinosyn gene cluster have provided detailed information concerning the mechanism of spinosyn biosynthesis and have enabled combinatorial biosynthesis of a large group of new spinosyns. The following developments have recently impacted the field of spinosyn biology: (1) A second-generation spinosyn called spinetoram (XDE-175) was launched in late 2007; it is a semisynthesized spinosyn derivative produced through the modification of 3'-O-methyl group of rhamnose and the double bond between C5 and C6 of spinosyn J and L. This molecule was shown to have improved insecticidal activity, enhanced duration of control, and an expanded pest spectrum. (2) A new class of spinosyns, the butenyl-spinosyns, was discovered from Saccharopolyspora pogona. The butenyl-spinosyns are similar to spinosyns, but differ in the length of the side chain at C-21. In addition to structural similarities with the spinosyns, the butenyl-spinosyns exhibit a high level of similarity in insecticidal activity to spinetoram. (3) Spinosyn analogs, 21-cyclobutyl-spinosyn A and 21-cyclobutyl-spinosyn D were generated by metabolic engineering of the spinosyn biosynthetic gene cluster. They showed better insecticidal activities against cotton aphid and tobacco budworm than that of spinosyn A and D. Future progress toward the development of more potent spinosad analogs, as well as enhancements in production yields will likely result from these recent advances in the genetics and biochemistry of spinosyns.

MeSH Terms
Animals Bacterial Proteins/genetics,metabolism Biochemistry Biosynthetic Pathways Genetic Engineering Insecta/drug effects Insecticides/chemistry,metabolism,pharmacology Macrolides/chemistry,metabolism,pharmacology Saccharopolyspora/chemistry,genetics,metabolism
Chemicals
Bacterial Proteins Insecticides Macrolides spinetoram
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Huang Ke-xue
Key Laboratory of Microbial Molecular Biology of Hunan Province, College of Life Science, Hunan Normal University, Changsha, 410081, China. huangkx@hunnu.edu.cn
Xia Liqiu
Zhang Youming
Ding Xuezhi
Zahn James A
Article Info
Journal
Applied microbiology and biotechnology
Abbr.
Appl Microbiol Biotechnol
ISSN
1432-0614
Published
2009-02-00
Epub
2008-00-10
Pages
13-23
Language
English
Region
Germany
NLM ID
8406612
Subset
IM
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