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Rubber Degrading Strains of Microtetraspora and Dactylosporangium
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Abstract
Latex clearing protein (lcp) found in Actinobacterial strains is reportedly critical for the initial oxidative cleavage of poly(cis-1,4-isoprene), the major polymeric unit of rubber. In this study, we screened 940 Actinobacterial strains isolated from various locations in Sarawak on NR latex agar and identified 18 strains from 5 genera that produced clearing zones and contained (latex clearing protein) lcp genes. We report here the first lcp genes from Microtetraspora sp. AC03309 (lcp 1 and lcp2) and Dactylosporangium sp. AC04546 (lcp1, lcp2, lcp3), together with their operon structure. Complete 16S rDNA gene sequence revealed that Dactylosporangium sp. AC04546 is 99% identical to Dactylosporangium sucinum RY35-23 whereas Microtetraspora sp. AC03309 is 98% identical to Microtetraspora glauca IFO14761. Morphological images and the spectrophotometric detection of aldehyde and keto groups in rubber samples incubated with the strains confirm the strains’ ability to degrade rubber-based products.
Springer Science and Business Media LLC
Title: Rubber Degrading Strains of Microtetraspora and Dactylosporangium
Description:
Abstract
Latex clearing protein (lcp) found in Actinobacterial strains is reportedly critical for the initial oxidative cleavage of poly(cis-1,4-isoprene), the major polymeric unit of rubber.
In this study, we screened 940 Actinobacterial strains isolated from various locations in Sarawak on NR latex agar and identified 18 strains from 5 genera that produced clearing zones and contained (latex clearing protein) lcp genes.
We report here the first lcp genes from Microtetraspora sp.
AC03309 (lcp 1 and lcp2) and Dactylosporangium sp.
AC04546 (lcp1, lcp2, lcp3), together with their operon structure.
Complete 16S rDNA gene sequence revealed that Dactylosporangium sp.
AC04546 is 99% identical to Dactylosporangium sucinum RY35-23 whereas Microtetraspora sp.
AC03309 is 98% identical to Microtetraspora glauca IFO14761.
Morphological images and the spectrophotometric detection of aldehyde and keto groups in rubber samples incubated with the strains confirm the strains’ ability to degrade rubber-based products.
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