| Literature DB >> 23668716 |
Mariadhas Valan Arasu1, Naif Abdullah Al-Dhabi, Valsalam Saritha, Veeramuthu Duraipandiyan, Chinnasamy Muthukumar, Sun-Ju Kim.
Abstract
BACKGROUND: Considerable attention has been paid to actinomycetes, especially the secondary metabolites obtained from Streptomyces species, as the best alternatives to chemicals as biological control agents for polyphagous pests such as Helicoverpa armigera and Spodoptera litura. On the basis of their novel biocontrol attributes, novel polyketide metabolite isolated from marine Streptomyces sp. AP-123 exhibited significant antifeedant, larvicidal and growth inhibitory activities against polyphagous pests.Entities:
Mesh:
Substances:
Year: 2013 PMID: 23668716 PMCID: PMC3655052 DOI: 10.1186/1471-2180-13-105
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Figure 1Polyketide antimicrobial metabolite isolated from sp. AP-123 [10].
Antifeedant activity of polyketide metabolite against and
| 125 | 38.01 ± 2.11b | 35.93 ± 3.14b |
| 250 | 51.77 ± 3.81c | 46.19 ± 3.88c |
| 500 | 64.29 ± 3.78d | 59.58 ± 2.41d |
| 1000 | 78.51 ± 3.90e,f | 70.75 ± 2.46e,f |
| 125 | 62.20 ± 3.05d | 65.47 ± 2.92e |
| 250 | 64.37 ± 3.26d,e | 75.41 ± 5.34f |
| 500 | 74.51 ± 4.95f | 83.73 ± 3.53g |
| 1000 | 89.84 ± 5.65g | 89.61 ± 2.88h |
| Control | 4.33 ± 1.07a | 1.54 ± 1.04a |
Mean ± SD within columns followed by the same letter do not differ significantly using Tukey’s test, P ≤0.05.
Larvicidal(%) and effective concentrations (LCand LCppm) of polyketide metabolite against and
| 125 | 15.52 ± 5.29a | | | 10.44 ± 0.60a | | |
| 250 | 33.16 ± 4.34b | 645.25 | 1724.58 | 29.11 ± 4.11b | 806.54 | 1725.01 |
| 500 | 54.08 ± 5.63c | | | 47.77 ± 3.04c | | |
| 1000 | 68.41 ± 6.04d | | | 60.02 ± 2.43d | | |
| 125 | 47.77 ± 4.26c | | | 51.98 ± 5.95c,d | | |
| 250 | 63.66 ± 4.47d | 170.48 | 401.65 | 69.18 ± 6.42e | 135.58 | 452.02 |
| 500 | 98.77 ± 4.45e | | | 95.77 ± 5.18f | | |
| 1000 | 100 ± 00e | 100 ± 00f | ||||
Mean ± SD within columns followed by the same letter do not differ significantly using Tukey’s test, P ≤ 0.05.
Growth inhibitory activity of polyketide metabolite against and
| 125 | 42 | 10.09 ± 0.44b | 20.99 ± 4.15b | 33 | 11.45 ± 0.40b | 43 | 10.02 ± 0.29a,b | 18.51 ± 6.33b | 35 | 10.28 ± 0.22a |
| 250 | 33 | 10.91 ± 0.35b,c | 32.58 ± 5.20b,c | 24 | 12.35 ± 0.46b,c | 34 | 10.44 ± 0.87b | 25.06 ± 7.22b | 25 | 11.53 ± 0.69b |
| 500 | 24 | 12.55 ± 0.37c | 42.55 ± 3.47c | 14 | 13.50 ± 0.70c | 21 | 11.96 ± 0.45c | 47.13 ± 10.9c | 11 | 13.86 ± 0.63c |
| 1000 | 18 | 13.98 ± 0.51d | 62.01 ± 11.7d | 8 | 15.45 ± 1.03d | 18 | 13.96 ± 0.92c | 55.06 ± 9.12c | 8 | 14.4 ± 0.54cd |
| 125 | 26 | 14.09 ± 0.16e | 70.45 ± 9.04d | 8 | 17.95 ± 0.54e | 23 | 14.56 ± 0.26d,e | 47.40 ± 7.48c | 12 | 14.10 ± 0.48c |
| 250 | 17 | 15.8 ± 0.74f | 100 ± 00e | | | 15 | 15.95 ± 0.98e | 76.08 ± 12.9d | 4 | 15.24 ± 0.5d |
| 500 | 0 | | | | | | | | | |
| 1000 | ||||||||||
| Control | 48 | 9.08 ± 0.15a | 0a | 48 | 9.58a | 48 | 8.95 ± 0.49a | 48 | 11.12 ± 0.39a | |
Mean ± SD within columns followed by the same letter do not differ significantly using Tukey’s test, P ≤ 0.05. N*: number.
Figure 2Phylogenetic tree based on 16S rDNA gene sequence showing the relationship between sp. AP-123 and species belonging to the genus was constructed using the neighbour-joining method. Bootstrapping values >50 are not mentioned [10].