bioRxiv Science⌕ Search

Biology subjects

Kneubehl, A.

Publications and source records attributed to Kneubehl, A..

2 recordsLinked to original sources

Defining strain variation in the maintenance of Borrelia turicatae during hyperparasitism and transovarial transmission in Ornithodoros turicata

Tick-borne relapsing fever (TBRF) spirochetes are maintained in nature through vector-associated transmission routes primarily in argasid ticks. However, the extent to which strain-level differences influence the maintenance of TBRF spirochetes remains unclear. We evaluated two Borrelia turicatae strains, Bt-SSK1 and Bt-FCB, in Ornithodoros turicata. Both strains were acquired by female ticks, and after mating we unexpectedly observed that they were hyperparasitized by uninfected and unfed male O. turicata. Bt- SSK1 was maintained in males while Bt-FCB was not. Transovarial transmission (TOT) of Bt-SSK1 and Bt-FCB was also evaluated and striking differences were observed between strains. Bt-SSK1 was vertically maintained in F1 progeny but we failed to detect TOT of Bt-FCB. TOT of Bt-SSK1 occurred inefficiently in early ovipositions but increasing in later or delayed reproductive events, indicating a timing-dependent barrier. Using a gfp-expressing Bt-FCB strain, we show that failure of vertical transmission is associated with a lack of persistent oocyte colonization despite dissemination to ovarian tissues. These findings demonstrate strain-dependent differences in oocyte colonization and represent a critical bottleneck governing vertical transmission and persistence of relapsing fever spirochetes in tick populations. ImportanceVector-borne pathogens rely on diverse transmission strategies to persist in nature, yet the biological factors that govern these processes remain poorly understood. In this study, we demonstrated that strains of Borrelia turicatae differ markedly in their ability to persist within Ornithodoros turicata ticks. We also discovered that male ticks frequently hyperparasitized engorged females, creating an unrecognized transmission route in which previously uninfected ticks can acquire, maintain, and transmitted the B. turicatae. We further showed phenotypic differences in vertical transmission and that it is temporally regulated and linked to successful colonization of developing oocytes, identifying a critical bottleneck in pathogen maintenance. Together, these findings revealed that strain-specific traits influence both horizontal maintenance within tick populations and vertical transmission to progeny. This work provides insight into the ecological and evolutionary processes that enable relapsing fever spirochetes to persist in nature.

microbiology↗

Repeat Ascaris challenge reduces worm intensity through gastric cellular reprograming

Ascariasis (roundworm) is the most prevalent parasitic nematode infection worldwide, impacting approximately 500 million people predominantly in low- and middle-income countries (LMICs). While people of all ages are infected with Ascaris, infection intensity (defined by worm burden) paradoxically peaks in pre-school and school aged children but then declines with age. The cause of age-dependent Ascaris worm intensity is not well understood but may be dependent on cellular changes in mucosal barrier sites. We have previously found that the gastric mucosa is a critical barrier site for Ascaris infection. Following oral ingestion of Ascaris eggs, larvae use AMCase secreted by gastric chief cells and acid secreted by gastric parietal cells to hatch. Once hatched, larvae translocate across the gastric mucosa to initiate the larval migratory cycle. However, inducing mucosal injury with administration of Tamoxifen induces mucosa cellular changes that impairs Ascaris hatching and reduces larval translocation across the gastric mucosa. In this study we established a repeated Ascaris suum challenge mouse model and evaluated if repeated Ascaris challenge also lead to cellular changes in the gastric mucosal barrier. We found that repeated Ascaris challenge caused cellular changes in the gastric mucosa which reduced worm intensity in the liver independent of the adaptive immune response. Thus, in endemic regions, where individuals experience recurrent infection throughout their lives, gastric cellular changes may be a key mechanism leading to the observed age-dependent Ascaris worm intensity changes from childhood to adulthood.

microbiology↗