School of Life Science and Agriculture Forestry, Qiqihar University; Heilongjiang Provincial Technology Innovation Center of Agromicrobial Preparation Industrialization.
School of Foreign Languages, Qiqihar University.
J Vis Exp. 2022 Mar 25(181). doi: 10.3791/63249.
Chemotaxis identification is very important for the research and application of rhizosphere growth-promoting bacteria. We established a straightforward method to quickly identify the chemoattractants that could induce the chemotactic movement of rhizosphere growth-promoting bacteria on sterile glass slides via simple steps. Bacteria solution (OD600 = 0.5) and sterile chemoattractant aqueous solution were added dropwise on the glass slide at an interval of 1 cm. An inoculating loop was used to connect the chemoattractant aqueous solution to the bacterial solution. The slide was kept at room temperature for 20 min on the clean bench. Finally, the chemoattractant aqueous solution was collected for bacterial counting and microscopic observation. In this study, through multiple comparisons of experimental results, the method overcame multiple shortcomings of traditional bacterial chemotaxis methods. The method reduced the error of plate counting and shortened the experimental cycle. For the identification of chemoattractant substances, this new method can save 2-3 days compared to the traditional method. Additionally, this method allows any researcher to systematically complete a bacterial chemotaxis experiment within 1-2 days. The protocol can be considered a valuable resource for understanding plant-microbe interactions.
趋化性鉴定对于根际促生菌的研究和应用非常重要。我们建立了一种简单的方法,可以通过简单的步骤快速鉴定能够诱导根际促生菌趋化运动的趋化剂。将细菌溶液(OD600=0.5)和无菌趋化剂水溶液以 1cm 的间隔逐滴滴加到载玻片上。用接种环将趋化剂水溶液连接到细菌溶液上。在超净台上室温下放置 20 分钟。最后,收集趋化剂水溶液进行细菌计数和显微镜观察。在本研究中,通过对实验结果的多次比较,该方法克服了传统细菌趋化性方法的多个缺点。该方法减少了平板计数的误差,并缩短了实验周期。对于趋化剂物质的鉴定,与传统方法相比,该新方法可节省 2-3 天。此外,该方法使任何研究人员都能够在 1-2 天内系统地完成细菌趋化性实验。该方案可以被认为是了解植物-微生物相互作用的有价值的资源。