Identification and Pathogenicity of the Soybean Root Rot Pathogen in Arid Conditions

Q3 Agricultural and Biological Sciences OnLine Journal of Biological Sciences Pub Date : 2023-02-01 DOI:10.3844/ojbsci.2023.202.209
N.M. Kuldybayev, Yerlan Bozanbaiulu Dutbayev, O. Konstantinova, D. Borodulin, M. Yessimbekova, Saule Daugaliyeva, M. Toishimanov, Aydarkhan Yesserkenov, S. Bastaubaeva, I. Temreshev
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Abstract

: Soy is an important oilseed crop in Kazakhstan. However, its yield is significantly reduced due to an increase in the development of fungal diseases with soil infection. This study aims to identify the root rot pathogen in soybean varieties in Western Kazakhstan and assess its pathogenicity. Samples of soybean roots to determine the root rot pathogen were selected at the experimental plots of the Aktobe agricultural experimental station in 2021. Genetic analysis of isolates observed on potato dextrose agar medium from soybean root slices was carried out using the sequencing reaction of internal transcribed spacer region nucleotide sequences using the Big Dye Terminator protocol (applied biosystems) with a further comparison of data with the Gen bank database. A test for the pathogenicity of the identified isolates of the fungus was carried out. Statistical data processing was carried out using the R-studio software according to the nonparametric Kruskal Wallis test. Phylogenetic analysis of samples of soybean affected by root rot showed that the main biotic agent causing root rot was the imperfect fungus Fusarium equiseti . Sequencing of the highly informative internal transcribed spacer region of fungal isolates allowed identifying strains 1 and 2 belonging to the species Fusarium equiseti. The pathogenicity test established that isolates of the Fusarium equiseti fungus caused discoloration of seedlings and plant roots and necrosis in soybean seedlings
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干旱条件下大豆根腐病病原菌的鉴定及致病性研究
:大豆是哈萨克斯坦重要的油料作物。然而,由于土壤感染真菌疾病的发展增加,其产量显著降低。本研究旨在鉴定西哈萨克斯坦大豆品种的根腐病病原体并评估其致病性。2021年,在阿克托别农业试验站的试验地块上选择了大豆根系样品,以确定根腐病病原体。使用Big Dye Terminator协议(应用生物系统),使用内部转录间隔区核苷酸序列的测序反应,对在马铃薯葡萄糖琼脂培养基上从大豆根切片观察到的分离株进行遗传分析,并将数据与Gen bank数据库进一步比较。对已鉴定的真菌分离株进行了致病性试验。根据非参数Kruskal-Wallis检验,使用R-studio软件进行统计数据处理。对大豆根腐病样品的系统发育分析表明,引起根腐病的主要生物因子是不完全真菌马镰孢。对真菌分离株的高信息量内部转录间隔区进行测序,可以鉴定属于马镰孢属的菌株1和2。致病性试验证实,分离的马镰孢菌引起大豆幼苗和植物根系变色和坏死
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来源期刊
OnLine Journal of Biological Sciences
OnLine Journal of Biological Sciences Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
2.10
自引率
0.00%
发文量
35
期刊介绍: :: Cell biology :: Developmental biology :: Structural biology :: Microbiology :: Molecular biology & genetics :: Biochemistry :: Biotechnology :: Biodiversity :: Ecology :: Marine biology :: Plant biology :: Bioinformatics
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