首页> 外文期刊>Frontiers in Microbiology >Biocontrol of Sugarcane Smut Disease by Interference of Fungal Sexual Mating and Hyphal Growth Using a Bacterial Isolate
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Biocontrol of Sugarcane Smut Disease by Interference of Fungal Sexual Mating and Hyphal Growth Using a Bacterial Isolate

机译:通过使用细菌分离物干扰真菌性交配和菌丝生长来对甘蔗黑穗病进行生物防治。

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Sugarcane smut is a fungal disease caused by Sporisorium scitamineum , which can cause severe economic losses in sugarcane industry. The infection depends on the mating of bipolar sporida to form a dikaryon and develops into hyphae to penetrate the meristematic tissue of sugarcane. In this study, we set to isolate bacterial strains capable of blocking the fungal mating and evaluate their potential in control of sugarcane smut disease. A bacterial isolate ST4 from rhizosphere displayed potent inhibitory activity against the mating of S. scitamineum bipolar sporida and was selected for further study. Phylogenetic analyses and biochemical characterization showed that the isolate was most similar to Pseudomonas guariconensis . Methanol extracts from minimum and potato dextrose agar (PDA) agar medium, on which strain ST4 has grown, showed strong inhibitory activity on the sexual mating of S. scitamineum sporida, without killing the haploid cells MAT-1 or MAT-2. Further analysis showed that only glucose, but not sucrose, maltose, and fructose, could support strain ST4 to produce antagonistic chemicals. Consistent with the above findings, greenhouse trials showed that addition of 2% glucose to the bacterial inoculum significantly increased the strain ST4 biocontrol efficiency against sugarcane smut disease by 77% than the inoculum without glucose. The results from this study depict a new strategy to screen for biocontrol agents for control and prevention of the sugarcane smut disease.
机译:甘蔗黑穗病是由鞘质孢子虫引起的一种真菌病,可导致甘蔗业的严重经济损失。感染取决于双极孢子虫的交配以形成双核,并发展为菌丝,以穿透甘蔗的分生组织。在这项研究中,我们着手分离能够阻断真菌交配的细菌菌株,并评估其在控制甘蔗黑穗病中的潜力。来自根际的细菌分离物ST4对S. scitamineum双极孢子虫的交配显示出有效的抑制活性,并被选择作进一步研究。系统发育分析和生化特征表明,该菌株与瓜假单胞菌最相似。 ST4菌株已在其上生长的极少和马铃薯右旋糖琼脂(PDA)琼脂培养基中的甲醇提取物对葡萄球菌葡萄球菌的有性交配表现出强大的抑制活性,而没有杀死单倍体细胞MAT-1或MAT-2。进一步的分析表明,只有葡萄糖,而不是蔗糖,麦芽糖和果糖,才能支持菌株ST4产生拮抗化学物质。与上述发现一致,温室试验表明,向细菌接种物中添加2%的葡萄糖,与不添加葡萄糖的接种物相比,菌株ST4对甘蔗黑穗病的生物防治效率显着提高了77%。这项研究的结果描述了一种筛选生物防治剂以控制和预防甘蔗黑穗病的新策略。

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