浙江农业学报 ›› 2023, Vol. 35 ›› Issue (9): 2149-2159.DOI: 10.3969/j.issn.1004-1524.20221348
        
               		李彦湘1(
), 丁德东1, 何静1,*(
), 张金花2, 赵吉桃1, 赵倩1, 候彩霞1, 朱珠1
                  
        
        
        
        
    
收稿日期:2022-09-16
									
				
									
				
									
				
											出版日期:2023-09-25
									
				
											发布日期:2023-10-09
									
			作者简介:李彦湘(1997—),女,甘肃定西人,硕士研究生,主要从事经济林有害生物防治研究。E-mail:1837161121@qq.com
				
							通讯作者:
					何静,E-mail:基金资助:
        
               		LI Yanxiang1(
), DING Dedong1, HE Jing1,*(
), ZHANG Jinhua2, ZHAO Jitao1, ZHAO Qian1, HOU Caixia1, ZHU Zhu1
			  
			
			
			
                
        
    
Received:2022-09-16
									
				
									
				
									
				
											Online:2023-09-25
									
				
											Published:2023-10-09
									
			摘要:
为探究木醋液在植物病害生物防治中的实际应用及其对病原菌的作用机制,试验通过测定菌落生长直径和半数有效浓度(EC50值)评价木醋液对几种供试植物病原真菌的抑菌活性。考察木醋液对供试敏感菌株孢子萌发、菌丝干重、细胞膜通透性、细胞壁完整性、可溶性蛋白含量、可溶性糖含量、还原性糖含量和腺嘌呤核苷三磷酸(ATP)含量等指标的影响,结合电镜观察菌体超微结构变化揭示其作用机制。结果表明:木醋液对7种供试植物病原真菌均具一定的抑制效果,对黄色镰刀菌(Fusarium culmorum)的抑菌作用表现最为显著,其EC50值为4.98 μL·mL-1,在5.5 μL·mL-1时,木醋液对其孢子萌发和生物量抑制率分别达90.09%和95.22%。经木醋液处理后,F. culmorum的细胞结构遭到破坏,其菌丝细胞壁变薄且不完整,细胞器结构紊乱,细胞膜通透性增加;菌丝体碱性磷酸酶活性、可溶性糖含量、还原性糖含量、可溶性蛋白含量和ATP含量显著降低;碘化丙啶染色孢子后,孢子荧光强度显著增加。以上结果表明,木醋液主要通过破坏真菌细胞结构、扰乱菌体物质代谢和能量代谢来实现其抑菌效果。
中图分类号:
李彦湘, 丁德东, 何静, 张金花, 赵吉桃, 赵倩, 候彩霞, 朱珠. 木醋液对几种植物病原真菌的抑菌活性与作用机制[J]. 浙江农业学报, 2023, 35(9): 2149-2159.
LI Yanxiang, DING Dedong, HE Jing, ZHANG Jinhua, ZHAO Jitao, ZHAO Qian, HOU Caixia, ZHU Zhu. Antifungal activity and mechanism of wood vinegar against several plant pathogenic fungi[J]. Acta Agriculturae Zhejiangensis, 2023, 35(9): 2149-2159.
| 病原菌 Pathogenic fungus  |  回归方程 Regression equation  |  EC50/(μL·mL-1) | 相关系数 Correlation coefficient  | 
|---|---|---|---|
| 黄色镰刀菌F. culmorum | y=2.14x+3.51 | 4.98 | 0.958 5 | 
| 三线镰刀菌F. tricinctum | y=1.33x+4.06 | 5.10 | 0.948 4 | 
| 杨生盾壳霉C. populicola | y=2.45x+3.22 | 5.33 | 0.989 1 | 
| 木贼镰刀菌F. equiseti | y=1.77x+3.25 | 9.69 | 0.945 2 | 
| 链格孢菌A. alternata | y=2.18x+2.75 | 10.80 | 0.967 0 | 
| 尖孢镰刀菌F. oxysporum | y=1.41x+3.00 | 26.50 | 0.944 3 | 
| 腐皮镰刀菌F. solani | y=1.77x+2.26 | 22.04 | 0.993 7 | 
表1 木醋液对7种植物病原真菌的抑制作用
Table 1 Inhibitory effects of wood vinegar on 7 plant pathogenic fungi
| 病原菌 Pathogenic fungus  |  回归方程 Regression equation  |  EC50/(μL·mL-1) | 相关系数 Correlation coefficient  | 
|---|---|---|---|
| 黄色镰刀菌F. culmorum | y=2.14x+3.51 | 4.98 | 0.958 5 | 
| 三线镰刀菌F. tricinctum | y=1.33x+4.06 | 5.10 | 0.948 4 | 
| 杨生盾壳霉C. populicola | y=2.45x+3.22 | 5.33 | 0.989 1 | 
| 木贼镰刀菌F. equiseti | y=1.77x+3.25 | 9.69 | 0.945 2 | 
| 链格孢菌A. alternata | y=2.18x+2.75 | 10.80 | 0.967 0 | 
| 尖孢镰刀菌F. oxysporum | y=1.41x+3.00 | 26.50 | 0.944 3 | 
| 腐皮镰刀菌F. solani | y=1.77x+2.26 | 22.04 | 0.993 7 | 
																													图1 不同体积分数木醋液对黄色镰刀菌孢子萌发和芽管伸长的影响 柱上无相同小写字母表示差异显著(P<0.05)。下同。
Fig.1 Effects of different volume fractions of wood vinegar on spore germination and germ tube elongation of F. culmorum Data marked without the same lowercase letter indicated significant differences at P<0.05. The same as below.
																													图3 木醋液对黄色镰刀菌超微结构的影响 A,对照组;B,4.98 μL·mL-1 木醋液处理;C,5.5 μL·mL-1木醋液处理;CW,细胞壁;ER,内质网;V,液泡。
Fig.3 Effects of wood vinegar on ultrastructure of F. culmorum(2 000×) A, Control; B, Treatment with 4.98 μL·mL-1 wood vinegar; C, Treatment with 5.5 μL·mL-1 wood vinegar; CW, Cell wall; ER, Endoplasmic reticulum; V, Vacuole.
																													图5 木醋液对黄色镰刀菌相对渗透率和AKP活性的影响 *表示差异显著(P<0.05),**表示差异极显著(P<0.01)。下同。
Fig.5 Effects of wood vinegar on relative permeability and AKP activity of F. culmorum * indicates significant difference at P<0.05, and ** indicates significant difference at P<0.01. The same as below.
																													图6 木醋液对黄色镰刀菌可溶性糖、可溶性蛋白、还原性糖和ATP含量的影响
Fig.6 Effects of wood vinegar on contents of soluble sugar, soluble protein, reducing sugar and ATP of F. culmorum
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