作物杂志,2023, 第2期: 238–244 doi: 10.16035/j.issn.1001-7283.2023.02.034

• 植物保护 • 上一篇    下一篇

水稻潜根线虫生防菌筛选、鉴定及其杀线虫活性研究

贾路明(), 莫爱素, 莫意雪, 吴海燕()   

  1. 广西农业环境与农产品安全重点实验室/广西大学农学院,530004,广西南宁
  • 收稿日期:2021-08-04 修回日期:2021-10-13 出版日期:2023-04-15 发布日期:2023-04-11
  • 通讯作者: 吴海燕,主要从事植物线虫学研究,E-mail:wuhy@gxu.edu.cn
  • 作者简介:贾路明,主要从事植物线虫病害及其防治,E-mail:932497173@qq.com
  • 基金资助:
    国家自然科学基金(31460464)

Screening and Identification of Biocontrol Fungi against Hirschmanniella sp. and Analysis of Nematocidal Activity

Jia Luming(), Mo Aisu, Mo Yixue, Wu Haiyan()   

  1. Guangxi Key Laboratory of Agro-Environment and Agric-Products Safety/Agricultural College of Guangxi University, Nanning 530004, Guangxi, China
  • Received:2021-08-04 Revised:2021-10-13 Online:2023-04-15 Published:2023-04-11

摘要:

水稻潜根线虫在世界各稻区均普遍发生,给水稻生产造成一定的经济损失。从前期对根结线虫有较好毒杀活性的9个菌株中筛选出对水稻潜根线虫有很好毒杀效果的菌株。结果表明,2周发酵液2.5倍稀释液处理水稻潜根线虫,菌株ZW-1和XO-2对潜根线虫毒杀活性较强,72h的死亡率分别为93.7%和96.7%,LC50值分别为90.4451和76.3875μL/mL。根据形态学特征和rDNA-ITS序列分析,鉴定菌株ZW-1和XO-2分别为日本曲霉(Aspergillus japonicus)和黑曲霉(A.niger)。这些生防真菌菌株的发掘,为植物线虫病害的生物防治提供了新的微生物资源。

关键词: 水稻潜根线虫, 生防菌, 筛选, 杀线虫活性

Abstract:

Hirschmanniella sp. is common in all rice regions of the world, which causes some economic losses of rice production. From the nine strains with good virulence against root-knot nematodes, we selected the strains with good virulence against of rice latent root nematodes. The results showed that ZW-1 and XO-2 had high nematocidal activities against Hirschmanniella sp., and the mortality rate in 2.5×dilution for 72h were 93.7% and 96.7%, respectively, with LC50 values of 90.4451 and 76.3875μL/mL, respectively. Strains ZW-1 and XO-2 were identified as Aspergillus japonicus and A.niger, respectively, based on morphological and rDNA-ITS molecular analysis. The discovery of two biocontrol fungal strains provides new microbial resources for the biological control of plant nematode diseases.

Key words: Hirschmanniella sp., Biocontrol fungus, Screening, Nematocidal activity

表1

Czapek培养液2.5倍稀释液处理水稻潜根线虫后的死亡率

处理
Treatment
处理时间Incubation time
24h 48h 72h
2.5倍稀释液2.5 times dilution 0.00±0.00a 0.00±0.00a 0.74±0.74a
水Water 0.00±0.00a 0.00±0.00a 0.00±0.00a

图1

供试菌株发酵液5倍稀释液处理后不同时间水稻潜根线虫死亡率 不同字母表示差异显著(P < 0.05)。下同

图2

ZW-1和XO-2菌株5倍发酵液处理72h潜根线虫形态 a:潜根线虫正常形态;b~c:ZW-1和XO-2处理后潜根线虫形态变化;标尺=100μm

图3

ZW-1菌株的形态特征 a:PDA上培养1周菌落正反面;b~c:分生孢子梗及分生孢子,标尺=20μm

图4

XO-2菌株显微结构形态 a:PDA上培养1周菌落正反面;b~c:分生孢子梗及分生孢子,标尺=20μm

图5

ZW-1菌株不同发酵时间2.5倍稀释液处理潜根线虫死亡率

图6

ZW-1菌株的2周发酵液不同稀释倍数处理潜根线虫死亡率

图7

XO-2菌株不同发酵时间2.5倍稀释液处理潜根线虫死亡率

图8

XO-2菌株2周发酵液不同稀释倍数处理潜根线虫死亡率

表2

ZW-1和XO-2菌株2周发酵液对水稻潜根线虫毒力分析

处理时间
Incubation time (h)
发酵液
Fermentation filtrate
斜率
Slope (±SE)
相关系数
Correlation coefficient
LC50(95%置信区间)
LC50 (95% CI) (μL/mL)
24 ZW-1 1.7206(±0.2582) 0.9678** 384.9935(235.8036~628.5741)
XO-2 1.3485(±0.1992) 0.9688** 447.8656(266.6069~752.3573)
48 ZW-1 2.3146(±0.3341) 0.9701** 136.5220(102.0527~182.6336)
XO-2 2.3538(±0.2537) 0.9923*** 128.9058(111.7788~148.6570)
72 ZW-1 2.3769(±0.2791) 0.9799** 90.4451(72.0930~113.4688)
XO-2 2.6327(±0.1341) 0.9961*** 76.3875(69.0175~84.5446)
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