Search bioRxivSearch

Biology subjects

Stentiford, G. D.

Publications and source records attributed to Stentiford, G. D..

2 recordsLinked to original sources

A potential prokaryotic and microsporidian pathobiome that may cause shrimp white feces syndrome (WFS)

White feces syndrome (WFS) in shrimp cultivation ponds is characterized by the occurrence of shrimp with abnormal, white intestines (midguts) combined with large floating mats of white, shrimp fecal strings. The etiology for WFS is complex, similar to diarrhea in humans. EHP-WFS is a type of WFS characterized by massive quantities of spores from the microsporidian parasite Enterocytozoon hepatopenaei (EHP) together with mixed, unidentified bacteria in the shrimp hepatopancreas, midgut and fecal strings. However, WFS does not always develop in shrimp with severe EHP infections in controlled laboratory challenges. Further, in EHP-WFS outbreak ponds, some shrimp show white midguts (WG) while others in the same pond show grossly normal midguts (NG). We hypothesized that comparison of the microbial flora between WG and NG from the same EHP-WFS pond would reveal probable combinations of microbes significantly associated with EHP-WFS. To test this hypothesis, we selected a pond exhibiting a severe EHP-WFS outbreak in cultivated Penaeus vannamei and used a combination of microscopic and microbial profiling analyses to compare WG and NG samples. By histology, EHP plasmodia and spores were confirmed in the hepatopancreas (HP) and midgut of WG and NG shrimp, but pathological severity and spore quantity was higher in the WG shrimp. In addition, intestinal microbiomes in WG shrimp were less diverse and had higher abundance of bacteria from the genera Vibrio and Propionigenium. Propionigenium quantity in the HP of WG shrimp was significantly higher (P = 1.08e-5) than in NG shrimp (4,506 vs. 3 copies /100 ng DNA, respectively). These findings supported our hypothesis by revealing two candidate bacterial genera that should be tested in combination with EHP as a potential eukaryote-prokaryote pathobiome that causes EHP-WFS in P. vannamei. HighlightsO_LIWhite feces syndrome (WFS) shrimp often harbor the microsporidian Enterocytozoon hepatopenaei (EHP) C_LIO_LIThe hepatopancreas (HP) and midgut of EHP-WFS shrimp had more EHP copies and spores than EHP-non.-WFS shrimp C_LIO_LIVibrio spp., Propionigenium sp. and EHP dominated in HP microbiomes of EHP-WFS shrimp C_LIO_LIPropionigenium copy numbers were uniquely high in the HP of EHP-WFS shrimp C_LIO_LIEHP-WFS shrimp also showed intestinal microbiomes of reduced diversity but more heterogeneity C_LI

molecular biology

A novel RNA virus, Macrobrachium rosenbergii Golda virus (MrGV), linked to mass mortalities of the larval giant freshwater prawn in Bangladesh

1Mass mortalities of the larval stage of the giant freshwater prawn, Macrobrachium rosenbergii, have been occurring in Bangladesh since 2011. Mortalities can reach 100% and have resulted in an 80% decline in the number of hatcheries actively producing M. rosenbergii. To investigate a causative agent for the mortalities, a disease challenge was carried out using infected material from a hatchery experiencing mortalities. Moribund larvae from the challenge were prepared for metatranscriptomic sequencing. De novo virus assembly revealed a 29 kb single-stranded positive-sense RNA virus with similarities in key protein motif sequences to yellow head virus (YHV), an RNA virus that causes mass mortalities in marine shrimp aquaculture, and other viruses in the Nidovirales order. Primers were designed against the novel virus and used to screen cDNA from larvae sampled from hatcheries in the South of Bangladesh from two consecutive years. Larvae from all hatcheries screened from both years were positive by PCR for the novel virus, including larvae from a hatchery that at the point of sampling appeared healthy, but later experienced mortalities. These screens suggest that the virus is widespread in M. rosenbergii hatchery culture in southern Bangladesh, and that early detection of the virus can be achieved by PCR. The hypothesised protein motifs of MrGV suggest that it is likely to be a new species within the Nidovirales order. Biosecurity measures should be taken in order to mitigate global spread through the movement of post-larvae within and between countries, which has previously been linked to other virus outbreaks in crustacean aquaculture.

molecular biology