Serveur d'exploration Phytophthora

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Labdanes: antifungal compounds isolates from the resinous exudate of Madia sativa against Phytophthora cinnamomi Rands.

Identifieur interne : 000135 ( Main/Exploration ); précédent : 000134; suivant : 000136

Labdanes: antifungal compounds isolates from the resinous exudate of Madia sativa against Phytophthora cinnamomi Rands.

Auteurs : Katy Díaz [Chili] ; Javier Espinoza [Chili] ; Luis Espinoza [Chili] ; César González [Chili] ; Alejandro Madrid [Chili]

Source :

RBID : pubmed:30585076

Descripteurs français

English descriptors

Abstract

In this study, resinous exudate from Madia sativa was analyzed by GC-MS. The major bioactive compounds 13,14,15-trihydroxylabd-7-ene (14) and 3,14,15-trihydroxylabd-8-ene (15) were isolated and their structures were determined by NMR. The antifungal activity of the resinous exudate and the labdanes compounds was evaluated using the inhibitory effects on the mycelial growth of plant pathogen Phytophthora cinnamomi causing root rot of various crops. The evaluation of the resinous exudate showed no inhibition over 50% at 75 mg/L, while compound 15 had the stronger effect on the myceliar growth of P. cinnamomi, with a 94.6% inhibition at 175 mg/L. The same way, the mixture of both compounds in equal parts did not show a synergistic effect but showed similar percentages of mycelial growth inhibition from 25 mg/L with respect to the compounds separately.

DOI: 10.1080/14786419.2018.1531402
PubMed: 30585076


Affiliations:


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Le document en format XML

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Rands.</title>
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<term>Diterpenes (pharmacology)</term>
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<div type="abstract" xml:lang="en">In this study, resinous exudate from
<i>Madia sativa</i>
was analyzed by GC-MS. The major bioactive compounds 13,14,15-trihydroxylabd-7-ene (
<b>14</b>
) and 3,14,15-trihydroxylabd-8-ene (
<b>15</b>
) were isolated and their structures were determined by NMR. The antifungal activity of the resinous exudate and the labdanes compounds was evaluated using the inhibitory effects on the mycelial growth of plant pathogen
<i>Phytophthora cinnamomi</i>
causing root rot of various crops. The evaluation of the resinous exudate showed no inhibition over 50% at 75 mg/L, while compound
<b>15</b>
had the stronger effect on the myceliar growth of
<i>P. cinnamomi</i>
, with a 94.6% inhibition at 175 mg/L. The same way, the mixture of both compounds in equal parts did not show a synergistic effect but showed similar percentages of mycelial growth inhibition from 25 mg/L with respect to the compounds separately.</div>
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<b>14</b>
) and 3,14,15-trihydroxylabd-8-ene (
<b>15</b>
) were isolated and their structures were determined by NMR. The antifungal activity of the resinous exudate and the labdanes compounds was evaluated using the inhibitory effects on the mycelial growth of plant pathogen
<i>Phytophthora cinnamomi</i>
causing root rot of various crops. The evaluation of the resinous exudate showed no inhibition over 50% at 75 mg/L, while compound
<b>15</b>
had the stronger effect on the myceliar growth of
<i>P. cinnamomi</i>
, with a 94.6% inhibition at 175 mg/L. The same way, the mixture of both compounds in equal parts did not show a synergistic effect but showed similar percentages of mycelial growth inhibition from 25 mg/L with respect to the compounds separately.</AbstractText>
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