Kim Jiyeun Kate, Lee Jun Beom, Jang Ho Am, Han Yeon Soo, Fukatsu Takema, Lee Bok Luel
Department of Microbiology, Kosin University College of Medicine, Busan 602-703, South Korea.
Global Research Laboratory of Insect Symbiosis, College of Pharmacy, Pusan National University, Busan 609-735, South Korea.
Dev Comp Immunol. 2016 Nov;64:75-81. doi: 10.1016/j.dci.2016.01.005. Epub 2016 Jan 13.
Valuable insect models have tremendously contributed to our understanding of innate immunity and symbiosis. Bean bug, Riptortus pedestris, is a useful insect symbiosis model due to harboring cultivable monospecific gut symbiont, genus Burkholderia. Bean bug is a hemimetabolous insect whose immunity is not well-understood. However, we recently identified three major antimicrobial peptides of Riptortus and examined the relationship between gut symbiosis and host immunity. We found that the presence of Burkholderia gut symbiont positively affects Riptortus immunity. From studying host regulation mechanisms of symbiont population, we revealed that the symbiotic Burkholderia cells are much more susceptible to Riptortus immune responses than the cultured cells. We further elucidated that the immune-susceptibility of the Burkholderia gut symbionts is due to the drastic change of bacterial cell envelope. Finally, we show that the immune-susceptible Burkholderia symbionts are able to prosper in host owing to the suppression of immune responses of the symbiotic midgut.
有价值的昆虫模型极大地促进了我们对先天免疫和共生关系的理解。豆蝽(Riptortus pedestris)是一种有用的昆虫共生模型,因为它携带可培养的单特异性肠道共生菌伯克霍尔德氏菌属(Burkholderia)。豆蝽是一种不完全变态昆虫,其免疫机制尚未得到充分了解。然而,我们最近鉴定出了豆蝽的三种主要抗菌肽,并研究了肠道共生与宿主免疫之间的关系。我们发现伯克霍尔德氏菌肠道共生菌的存在对豆蝽的免疫有积极影响。通过研究宿主对共生菌种群的调控机制,我们发现共生的伯克霍尔德氏菌细胞比培养细胞更容易受到豆蝽免疫反应的影响。我们进一步阐明,伯克霍尔德氏菌肠道共生菌的免疫敏感性是由于细菌细胞包膜的剧烈变化。最后,我们表明,免疫敏感的伯克霍尔德氏菌共生菌能够在宿主中繁衍,这是由于共生中肠免疫反应受到抑制。