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Wang, X.-X.

Publications and source records attributed to Wang, X.-X..

2 recordsLinked to original sources

Frequent intertrophic transmission of Wolbachia by parasitism but not predation

Wolbachia is one of the most pervasive symbionts, estimated to infect ~50% of arthropod species. It is primarily transmitted vertically, inducing a variety of fascinating reproductive manipulations to promote its spread within host populations. However, incongruences between host and Wolbachia phylogenies indicate substantial horizontal transmissions, the mechanisms of which are largely unexplored. By systematically analyzing Wolbachia surface protein (wsp) sequences on NCBI, we found that parasitism, not predation, is the primary route of intertropical Wolbachia transmission. This conclusion held after accounting for sampling bias. One example of frequent Wolbachia transfers is between egg parasitoid wasps, Trichogramma, and their lepidopteran hosts. Moreover, both bioinformatics and experimental results showed that Wolbachia from the parasitoid wasp Encarsia formosa can be transmitted to its whitefly host Bemisia tabaci, through unsuccessful parasitism. Once En. formosa Wolbachia is transferred to whiteflies, it can be vertically transmitted within whiteflies and induce fitness costs. To our knowledge, this is the first compelling evidence that Wolbachia can be transmitted from parasitoid wasps to their hosts, revealing the bidirectional nature of Wolbachia transfers between parasitoids and their hosts. Overall, our findings enrich the current understanding of the horizontal transmission of Wolbachia and shed new light on its ecology and evolution.

microbiology↗

Collagen co-localised with macrovesicular steatosis for fibrosis progression in non-alcoholic fatty liver disease

Non-alcoholic fatty liver disease (NAFLD) is a commonly occurring liver disease; however, its exact pathogenesis is not fully understood. The purpose of this study was to quantitatively evaluate the progression of steatosis and fibrosis by examining their distribution, morphology, and co-localisation in NAFLD animal models. qSteatosis showed a good correlation with steatosis grade (R: 0.823-0.953, P<0.05) and demonstrated high performance (area under the curve [AUC]: 0.617-1) in all six mouse models. Based on their high correlation with histological scoring, qFibrosis containing four shared parameters were selected to create a linear model that could accurately identify differences among fibrosis stages (AUC: 0.725-1). qFibrosis co-localised with macrosteatosis generally correlated better with histological scoring and had a higher AUC in all six animal models (AUC: 0.846-1). Quantitative assessment using second-harmonic generation/two-photon excitation fluorescence imaging technology can be used to monitor different types of steatoses and fibrosis progression in NAFLD models. The collagen co-localised with macrosteatosis could better differentiate fibrosis progression and might aid in developing a more reliable and translatable fibrosis evaluation tool for animal models of NAFLD.

pathology↗