Agricultural Biotechnology Research Center, Academia Sinica, Taipei 11529, Taiwan.
Biopesticide Division, Taiwan Agricultural Chemicals and Toxic Substances Research Institute, Council of Agriculture, Taichung 41358, Taiwan.
Int J Mol Sci. 2020 Nov 16;21(22):8639. doi: 10.3390/ijms21228639.
The Gram-negative bacterium is a novel bacterium that uses shrimp shell waste as its sole sources of carbon and nitrogen. It is a versatile bacterium with potential for use in biological control, with activities including toxicity toward insects, fungi, and the rice pathogen pv (). In this study, the complete 5.08-Mb genome sequence of CMS was determined by a combination of NGS/Sanger sequencing and optical mapping. Comparison of optical maps of seven species showed that is most closely related to KT 2400. We screened a total of 11,646 individual Tn-transponson tagged strains to identify genes that are involved in the production and regulation of the iron-chelator pyoverdine in , which is a key anti- factor. Our results indicated that the two-component system (TCS) EnvZ/OmpR plays a positive regulatory role in the production of pyoverdine, whereas the sigma factor RpoS functions as a repressor. The knowledge of the molecular basis of the regulation of pyoverdine by provided herein will be useful for its development for use in biological control, including as an anti- agent.
革兰氏阴性菌 是一种新型细菌,它将虾壳废物作为其唯一的碳源和氮源。它是一种多功能细菌,具有在生物防治中的应用潜力,其活性包括对昆虫、真菌和水稻病原体 pv()的毒性。在这项研究中,通过 NGS/Sanger 测序和光学作图的组合,确定了 CMS 的完整 5.08-Mb 基因组序列。比较七种 物种的光学图谱表明, 与 KT 2400 最为密切相关。我们总共筛选了 11646 个 Tn-转座子标记的菌株,以鉴定参与 铁螯合吡咯并啉产生和调节的基因,这是一种关键的抗菌因子。我们的结果表明,双组分系统(TCS)EnvZ/OmpR 在吡咯并啉的产生中发挥正调控作用,而 sigma 因子 RpoS 作为抑制剂。本文提供的关于 调节吡咯并啉产生的分子基础的知识,将有助于其在生物防治中的开发,包括作为一种抗菌剂。