Adaptability of Rhizoctonia solani AG-1 IA for mancozeb sensitivity under temperature stress

IF 0.6 4区 农林科学 Q4 AGRONOMY Bioagro Pub Date : 2022-07-31 DOI:10.51372/bioagro343.9
S. D. de Oliveira, T. Silva, Samara Campos V., Guilherme Moraes Ferraudo, Silvino Intra Moreira, Katherin Castro Ríos, P. Ceresini
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Abstract

The genetic architecture of quantitative characters in plants can be influenced by stress due to environmental changes, in combination with the decrease in the organism’s average performance, resulting in genetic and environmental variances. The main objective of this study was to determine how the high-temperature stress affects the sensitivity of three populations of the soybean foliar blight pathogen Rhizoctonia solani AG-1 IA from Mato Grosso, Maranhão, and Tocantins to a broad-spectrum fungicide. The specific objective was to determine the effect of environmental stress on evolvability components (i.e., the selection response measures such as genotypic, environmental, and phenotypic variances) associated with sensitivity to the broad spectrum dithiocarbamate fungicide mancozeb. The fungal isolates from the three pathogen populations were grown under two temperatures (25 °C and 33.5 ºC, optimum and stress, respectively) and three fungicide concentrations (0.0, 0.32, and 0.64 g·L-1 of active ingredient). The mycelial growth was measured, and evolvability components, such as the genotypic variance coefficient (IG), the environmental variance (IE), and the broad-sense heritability (h2), were determined. The results showed that high-temperature stress decreased (≈ 0.1 units, in a scale from 0 to 1.0) the genotypic variance and the heritability for mancozeb sensitivity in three populations of the soybean foliar blight pathogen R. solani AG-1 IA.
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立枯丝核菌AG-1IA对代森锰锌敏感性的适应性
植物数量性状的遗传结构可能受到环境变化引起的压力的影响,再加上生物体平均性能的下降,从而导致遗传和环境变异。本研究的主要目的是确定高温胁迫如何影响来自马托格罗索、马拉尼昂和托坎廷斯的三个大豆叶枯病病原体立枯丝核菌AG-1IA群体对广谱杀菌剂的敏感性。具体目的是确定环境胁迫对与广谱二硫代氨基甲酸酯杀菌剂代森锰锌敏感性相关的进化性成分(即选择反应指标,如基因型、环境和表型方差)的影响。来自三个病原体种群的真菌分离株在两个温度(分别为25°C和33.5ºC,最适温度和胁迫温度)和三种杀菌剂浓度(0.0、0.32和0.64 g·L-1的活性成分)下生长。测定菌丝生长,测定进化性成分,如基因型变异系数(IG)、环境变异系数(IE)和广义遗传力(h2)。结果表明,高温胁迫降低了大豆叶枯病菌R.solani AG-1IA三个群体代森锰锌敏感性的基因型方差和遗传力(≈0.1个单位,范围从0到1.0)。
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来源期刊
Bioagro
Bioagro Agricultural and Biological Sciences-General Agricultural and Biological Sciences
CiteScore
1.40
自引率
37.50%
发文量
22
期刊介绍: Bioagro es una revista científica del Decanato de Agronomía de la Universidad Centroccidental “Lisandro Alvarado” (UCLA). Su periodicidad es cuatrimestral y se publica en los meses de enero, mayo y septiembre. Cada trabajo es revisado por al menos dos especialistas en el área, externos a la revista, de cuya opinión depende la aceptación definitiva. Se utiliza sistema de arbitraje doble ciego. La revista va dirigida, fundamental pero no exclusivamente, a profesionales y técnicos del área agrícola. Su objetivo es publicar trabajos científicos originales e inéditos en ciencias agrícolas que enfoquen aspectos de agronomía, botánica y propagación de plantas, entomología y zoología, suelos, fitopatología y protección vegetal, ingeniería agrícola, genética y mejoramiento de plantas, ecología, procesamiento de productos agrícolas, biotecnología y sociales. También pueden ser publicados artículos cortos en los que se presenten descubrimientos científicos, desarrollos tecnológicos y resultados de diagnósticos integrales, en la modalidad de Notas Técnicas. En Venezuela, se encuentra en las bibliotecas de todas las universidades e institutos de educación superior que ofrecen carreras agronómicas, así como de los entes oficiales de investigación agropecuaria. En el exterior, la revista llega a universidades y/o institutos de investigación agrícolas de todos los países de América Latina así como Estados Unidos, Canadá y España.
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