DEVELOPMENT AND TESTING OF POLYMERASE CHAIN REACTION FOR INDICATION AND IDENTIFICATION OF ASPERGILLUS FLAVUS PHYTOPATHOGENIC FUNGI

N. Feoktistova, A. Mastilenko, E. Suldina, A. Lomakin
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Abstract

The article presents results of research on development of a test system by means of polymerase chain reaction with real-time detection for identification of Aspergillus flavus phytopathogenic fungi. The above microscopic fungi are contaminants of corn in various geographical areas. At present, a multiplex PCR-RT-test system "HRM-Zygo-Asp" is in operation for detection and identification of aspergillus (only to the genus) and a commercial test system for EIA "Aspergillus-IgG- EIA -BEST" (ZAO "VECTOR- BEST). The team of authors chose Aspergillus flavus strain CA14 4,044,380..4,045,732 b.p. for research, used Multiple Sequence Alignment Viewer 1.22.1 software, UGENA 44.0, NCBI BLAST-primer, Oligoevaluator. Specific primers were selected (f) 5'-3' GGGCCCGCAGCAAGAATAC, reverse primer - (r) 3'-5' ACGAGTTGTCACCTTCCCGAGA; a reaction protocol was developed, including preliminary denaturation - 95 0C - 5 minutes (1 cycle); denaturation - 95 0C - 5 sec, annealing - 60 0C - 15 sec (50 cycles). To determine the sensitivity of the test system, the authors selected a probe (CGGTTCGCTTTGGTCATCGT), a fluorescent dye - HEX, and a quencher - BHQ-2. It was determined that the sensitivity of the test system is 1000 cells. Approbation of the scientific development was carried out on 33 field strains isolated from 33 corn samples (grain, vegetative mass with signs of disease) and a reference strain (Aspergillus flavus VKM № F-25). When choosing field strains identified by V.I. Bilay and E.Z. Koval (1988) and the key of Nikitinskiy-Aleev, it was established that 25 samples were contaminated with bacteria of Aspergillus flavus species.
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聚合酶链反应用于黄曲霉植物病原真菌指示和鉴定的开发与试验
本文介绍了利用聚合酶链反应实时检测黄曲霉植物病原真菌的检测系统的研制结果。上述微观真菌是不同地理区域玉米的污染物。目前,用于曲霉(仅属)检测鉴定的多重pcr - rt检测系统“HRM-Zygo-Asp”已投入运行,EIA检测系统“aspergillus - igg - EIA -BEST”(ZAO“VECTOR- BEST”)已商品化。作者团队选择了黄曲霉菌株CA14 4,044,380。4045,732 bp用于研究,使用多序列比对器1.22.1软件,UGENA 44.0, NCBI BLAST-primer, Oligoevaluator。选择特异性引物(f) 5′-3′GGGCCCGCAGCAAGAATAC,反向引物- (r) 3′-5′ACGAGTTGTCACCTTCCCGAGA;制定了反应方案,包括预变性- 95℃- 5分钟(1循环);变性- 95℃- 5秒,退火- 60℃- 15秒(50个循环)。为了确定测试系统的灵敏度,作者选择了探针(CGGTTCGCTTTGGTCATCGT),荧光染料- HEX和猝灭剂- BHQ-2。测定了该检测系统的灵敏度为1000个细胞。对从33个玉米样品(籽粒,有病害迹象的营养块)和参考菌株(黄曲霉VKM№F-25)中分离的33个田间菌株进行了科学开发的批准。选取V.I. Bilay和E.Z. Koval(1988)鉴定的田间菌株和Nikitinskiy-Aleev的关键菌株,确定25份样品中含有黄曲霉属细菌。
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