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首页> 外文期刊>Molecules >Identification for the First Time of Cyclo(d-Pro-l-Leu) Produced by Bacillus amyloliquefaciens Y1 as a Nematocide for Control of Meloidogyne incognita
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Identification for the First Time of Cyclo(d-Pro-l-Leu) Produced by Bacillus amyloliquefaciens Y1 as a Nematocide for Control of Meloidogyne incognita

机译:由Bacillus淀粉氨酸淀粉胺(D-Pro-L-Leu)的第一次鉴定由Bacillus淀粉胺酰胺Y1作为Nematogide,用于控制Meloidogyne Incognita

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摘要

The aim of the current study was to describe the role and mechanism of Bacillus amyloliquefaciens Y1 against the root-knot nematode, Meloidogyne incognita, under in vitro and in vivo conditions. Initially, the exposure of the bacterial culture supernatant and crude extract of Y1 to M. incognita significantly inhibited the hatching of eggs and caused the mortality of second-stage juveniles (J2), with these inhibitory effects depending on the length of incubation time and concentration of the treatment. The dipeptide cyclo(d-Pro-l-Leu) was identified in B. amyloliquefaciens culture for the first time using chromatographic techniques and nuclear magnetic resonance (NMR H-1, C-13, H-H COSY, HSQC, and HMBC) and recognized to have nematocidal activity. Various concentrations of cyclo(d-Pro-l-Leu) were investigated for their effect on the hatching of eggs and J2 mortality. Moreover, the in vivo nematocidal activity of the Y1 strain was investigated by conducting pot experiments in which tomato plants were inoculated with M. incognita. Each and every pot was amended 50 mL of fertilizer media (F), or Y1 culture, or nematicide (N) (only once), or fertilizer media with N (FN) at 1, 2, 3, 4 and 5 weeks after transplantation. The results of the pot experiments demonstrated the antagonistic effect of B. amyloliquefaciens Y1 against M. incognita as it significantly decreases the count of eggs and galls per root of the tomato plant as well as the population of J2 in the soil. Besides, the investigation into the growth parameters, such as the length of shoot, shoot fresh and dry weights of the tomato plants, showed that they were significantly higher in the Y1 strain Y1-treated plants compared to F-, FN- and N-treated plants. Therefore, the biocontrol repertoire of this bacterium opens a new insight into the applications in crop pest control.
机译:目前研究的目的是描述芽孢杆菌淀粉氨酸淀粉胺酰胺Y1对体外和体内条件下的根结Nematode,Meloidogyne Incognita的作用和机制。最初,细菌培养上清液和粗提物的暴露为Y1至M.Inmognita显着抑制了鸡蛋的阴影并导致第二阶段幼年(J2)的死亡率,这取决于孵育时间和浓度的长度治疗。使用色谱技术和核磁共振(NMR H-1,C-13,HH COZY,HSQC和HMBC)首次在B.淀粉醇提取物培养中鉴定了二肽环酰胺(D-Pro-L-Leu)。有nematical活动。研究了各种浓度的Cyclo(D-Pro-L-Leu)以对鸡蛋和J2死亡率的孵化产生影响。此外,通过进行罐实验研究了Y1菌株的体内Nematical活性,其中用M. incognita接种番茄植物。将每个罐修订50ml肥料培养基(F),或Y1培养物,或在移植后1,2,3,4和5周的N(FN)的杀虫剂介质(仅一次),或肥料培养基。罐实验的结果证明了B.淀粉醇提取物Y1对M.的拮抗作用,因为它显着降低了番茄植物的鸡蛋的计数以及土壤中的J2的群体。此外,对生长参数的调查,例如番茄植物的芽长度,拍摄新鲜和干重,表明,与F1,FN和N-相比,Y1菌株Y1处理植物中的显着较高。治疗植物。因此,这种细菌的生物控制曲目对农作物害虫控制中的应用开辟了新的洞察力。

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