Detection of the bacterial endosymbiont Wolbachia and determination of super groups present within New Zealand invertebrates : a thesis presented in partial fulfilment of the requirements for the degree of Masters of Science in Zoology at Massey University, Palmerston North, New Zealand

Loading...
Thumbnail Image

Date

DOI

Open Access Location

Journal Title

Journal ISSN

Volume Title

Publisher

Massey University

Rights

The Author

Abstract

๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข is one of the most widespread intracellular bacterium on earth, estimated to infect between 40 and 66% of arthropod species. Where significantly screened for, there is virtually no ecosystem that ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข has not managed to invade. Their impact does not come solely from their vast distribution but in their ability to modify their hosts reproductive biology. ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข is a maternally inherited endosymbiont that can induce a range of host phenotypic responses, including cytoplasmic incompatibility, male death, feminization, and parthenogenesis. This holds high potential for influencing genetic diversity and speciation of its host. ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข has yet to be formally identified in New Zealand native invertebrates and therefore a gap remains in the global understanding of ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข distribution and diversity. The first aim of this thesis (Chapter 2) was to determine if the use of high throughput sequencing (HTS) of invertebrates could be used to identify ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข sequences and establish a ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข infection. seven HTS produced a positive indication for ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข sequences, with six samples originating from native New Zealand invertebrate hosts. Once ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข was detected the second aim (Chapter 2) was to determine which super group the ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข strains detected fall into. Comparing New Zealand ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข sequences to sequences obtained from GenBank, it was determined that there were two distinct strains of ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ขin New Zealand hosts. One strain was related to ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข super group A and the other matched ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข super group B. ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข had now been detected in New Zealand, the next aim (Chapter 3) was to determine the presence and distribution of ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข across New Zealand and across a number of native invertebrates. ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข was detected in both of the main islands of New Zealand across a number of species or putative species of ground and cave weta. The final aim of this thesis was to determine the diversity of the ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข detected and compare that to the diversity of the ground weta complex ๐˜๐˜ฆ๐˜ฎ๐˜ช๐˜ข๐˜ฏ๐˜ฅ๐˜ณ๐˜ถ๐˜ด ๐˜ฎ๐˜ข๐˜ค๐˜ถ๐˜ญ๐˜ช๐˜ง๐˜ณ๐˜ฐ๐˜ฏ๐˜ด to determine if there was any evidence for ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข affecting the genetic diversity of its host (Chapter 4). It was observed that ๐˜. ๐˜ฎ๐˜ข๐˜ค๐˜ถ๐˜ญ๐˜ช๐˜ง๐˜ณ๐˜ฐ๐˜ฏ๐˜ด complex was infected with both strains of ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข detected in New Zealand invertebrates. There was however not enough resolution to determine if ๐˜ž๐˜ฐ๐˜ญ๐˜ฃ๐˜ข๐˜ค๐˜ฉ๐˜ช๐˜ข has had a significant effect on the diversity and speciation of the ground weta host.

Description

Keywords

Citation

Endorsement

Review

Supplemented By

Referenced By