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Induction of phytoalexins and proteins related to pathogenesis in plants treated with extracts of cutaneous secretions of southern Amazonian Bufonidae amphibians

机译:用南部亚马逊河两栖类两栖动物皮肤分泌物提取物处理过的植物中的植物抗毒素和相关病原蛋白的诱导

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摘要

Cutaneous secretions produced by amphibians of the family Bufonidae are rich sources of bioactive compounds that can be useful as new chemical templates for agrochemicals. In crop protection, the use of elicitors to induce responses offers the prospect of durable, broad-spectrum disease control using the plant’s own resistance. Therefore, we evaluated the potential of methanolic extracts of cutaneous secretions of two species of amphibians of the family Bufonidae found in the Amazon biome—Rhaebo guttatus (species 1) and Rhinella marina (species 2)—in the synthesis of phytoalexins in soybean cotyledons, bean hypocotyls, and sorghum mesocotyls. Additionally, changes in the enzyme activity of β-1,3-glucanase, peroxidase (POX), and polyphenol oxidase (PPO) and in the total protein content of soybean cotyledons were determined. In the soybean cultivar ‘TMG 132 RR’, our results indicated that the methanolic extract of R. guttatus cutaneous secretions suppressed glyceollin synthesis and β-1,3-glucanase activity and increased POX and PPO activities at higher concentrations and total protein content at a concentration of 0.2 mg/mL. On the other hand, the methanolic extract of R. marina cutaneous secretions induced glyceollin synthesis in the soybean cultivars ‘TMG 132 RR’ and ‘Monsoy 8372 IPRO’ at 0.1–0.2 mg/mL and 0.2 mg/mL, respectively. The methanolic extract of R. marina cutaneous secretions also increased the specific activity of POX and PPO in ‘Monsoy 8372 IPRO’ and ‘TMG 132 RR’, respectively, and decreased the activity of β-1,3-glucanases in ‘Monsoy 8372 IPRO’. At 0.3 mg/mL, it stimulated phaseolin synthesis. The extracts did not express bioactivity in the synthesis of deoxyanthocyanidins in sorghum mesocotyls. The study in soybean suggests that the bioactivity in defense responses is influenced by cultivar genotypes. Therefore, these results provide evidence that extracts of cutaneous secretions of these amphibians species may contribute to the bioactivity of defense metabolites in plants.
机译:蟾蜍科两栖动物产生的皮肤分泌物是丰富的生物活性化合物的来源,可用作农业化学的新化学模板。在作物保护中,使用激发子诱导反应为利用植物自身的抗性提供持久,广谱的疾病控制前景。因此,我们评估了在亚马逊生物群落中发现的两类蟾蜍科两栖动物的皮肤分泌物的甲醇提取物在大豆子叶中合成植物抗毒素的潜力,该物种是双生的Rhaebo guttatus(物种1)和Rinellla marina(物种2)。豆下胚轴和高粱中胚轴。此外,测定了β-1,3-葡聚糖酶,过氧化物酶(POX)和多酚氧化酶(PPO)的酶活性以及大豆子叶总蛋白含量的变化。在大豆品种'TMG 132 RR'中,我们的研究结果表明,番石榴R.皮肤分泌物的甲醇提取物抑制甘油醇的合成和β-1,3-葡聚糖酶的活性,并在较高浓度下增加POX和PPO活性,而在较高浓度下总蛋白含量较高。浓度为0.2 mg / mL。另一方面,滨海罗非鱼皮肤分泌物的甲醇提取物分别在大豆品种“ TMG 132 RR”和“ Monsoy 8372 IPRO”中以0.1-0.2 mg / mL和0.2 mg / mL诱导了甘油合成。滨海罗非鱼皮肤分泌物的甲醇提取物还分别增加了“ Monsoy 8372 IPRO”和“ TMG 132 RR”中POX和PPO的比活性,并降低了“ Monsoy 8372 IPRO”中β-1,3-葡聚糖酶的活性。 '。在0.3 mg / mL时,它会刺激菜豆素的合成。提取物在高粱中胚轴中的脱氧花青素合成中不表达生物活性。在大豆中的研究表明防御反应中的生物活性受品种基因型的影响。因此,这些结果提供了证据,表明这些两栖动物物种的皮肤分泌物提取物可能有助于植物防御代谢产物的生物活性。

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