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Gut bacterial communities of Lymantria xylina and their associations with host development and diets

<p>The gut microbiota of insects has&nbsp;a wide range of effects on host nutrition, physiology, and behavior. The structure of gut microbiota may also be shaped by their environment, causing them to adjust to their hosts; thus, the objective of this study was to examine variations in the morphological traits and gut microbiota of <em>Lymantria xylina</em>&nbsp;in response to natural and artificial diets&nbsp;using high-throughput sequencing. Regarding morphology, the head widths for larvae fed on a sterilized artificial diet were smaller than for larvae fed on a non-sterilized host-plant diet in the early instars. The gut microbiota diversity of <em>L. xylina</em>&nbsp;fed on different diets varied significantly,&nbsp;but did not change during different development periods. This seemed to indicate that vertical inheritance occurred in <em>L. xylina</em>&nbsp;mutualistic symbionts. <em>Acinetobacter</em>&nbsp;and <em>Enterococcus</em>&nbsp;were dominant in/on eggs. In the first instar larvae, <em>Acinetobacter</em>&nbsp;accounted for 33.52% of the sterilized artificial diet treatment, while <em>Enterococcus </em>(67.88%) was the predominant bacteria for the non-sterilized host-plant diet treatment. Gut microbe structures were adapted to both diets through vertical inheritance and self-regulation. This study clarified the impacts of microbial symbiosis on&nbsp;<em>L. xylina</em>&nbsp;and might&nbsp;provide new possibilities for improving the control of these bacteria.</p>

ShareScore

32/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
4
Harmonization
4
Access
16
Reuse readiness
8
Engagement
0