Curvulin and Phaeosphaeride A from Paraphoma sp. VIZR 1.46 Isolated from Cirsium arvense as Potential Herbicides
Курвулин и феосфаерид A из Paraphoma sp. VIZR 1.46, выделенной из Cirsium arvense, как потенциальные гербициды
2018-10-28
SCID: 54.1/mytyeswg
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Adjuvant-enhanced herbicidal activityCurvulinParaphoma sp. VIZR 1.46Phaeosphaeride APhytotoxicity
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Abstract (AI)
Phoma-like fungi are known as producers of diverse spectrum of secondary metabolites, including phytotoxins. Our bioassays had shown that extracts of Paraphoma sp. VIZR 1.46, a pathogen of Cirsium arvense, are phytotoxic. In this study, two phytotoxically active metabolites were isolated from Paraphoma sp. VIZR 1.46 liquid and solid cultures and identified as curvulin and phaeosphaeride A, respectively. The latter is reported also for the first time as a fungal phytotoxic product with potential herbicidal activity. Both metabolites were assayed for phytotoxic, antimicrobial and zootoxic activities. Curvulin and phaeosphaeride A were tested on weedy and agrarian plants, fungi, Gram-positive and Gram-negative bacteria, and on paramecia. Curvulin was shown to be weakly phytotoxic, while phaeosphaeride A caused severe necrotic lesions on all the tested plants. To evaluate phaeosphaeride A’s herbicidal efficacy, the phytotoxic activity of this compound in combination with five different adjuvants was studied. Hasten at 0.1% (v/v) was found to be the most potent and compatible adjuvant, and its combination with 0.5% (v/v) semi-purified extract of Paraphoma sp. VIZR 1.46 solid culture exhibited maximum damage to C. arvense plants. These findings may offer significant importance for further investigation of herbicidal potential of phaeosphaeride A and possibly in devising new herbicide of natural origin.
Key Findings
1
Among five adjuvants tested, Hasten at 0.1% (v/v) was the most potent and compatible enhancer of phaeosphaeride A activity.
2
Combination of 0.5% (v/v) semi-purified extract from Paraphoma sp. VIZR 1.46 solid culture with 0.1% Hasten produced maximum damage to Cirsium arvense plants.
3
Curvulin exhibited weak phytotoxicity across tested plants.
4
Findings indicate phaeosphaeride A merits further investigation as a natural-origin herbicide candidate.
5
Phaeosphaeride A and curvulin were assayed for antimicrobial and zootoxic activities against fungi, Gram-positive and Gram-negative bacteria, and paramecia (results: phytotoxicity highlighted).
6
Phaeosphaeride A caused severe necrotic lesions on all tested weedy and agrarian plant species.
7
Phaeosphaeride A is reported for the first time as a fungal phytotoxic product with potential herbicidal activity.
8
Two phytotoxically active metabolites were isolated from Paraphoma sp. VIZR 1.46 and identified as curvulin and phaeosphaeride A.
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2018-10-28
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References available in scid.ai4
Chemical Pesticides and Human Health: The Urgent Need for a New Concept in Agriculture2016
Establishment of Relative and Absolute Configurations of Phaeosphaeride A: Total Synthesis of ent-Phaeosphaeride A2014
Total Synthesis and Biological Activity of the Proposed Structure of Phaeosphaeride A2012
Phaeosphaeride A, an Inhibitor of STAT3-Dependent Signaling Isolated from an Endophytic Fungus2006