Searching the Resource Information Network

Our searching services are busy right now. Please try again later

  • Register
X
Forgot Password

If you have forgotten your password you can enter your email here and get a temporary password sent to your email.

X

Leaving Community

Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.

No
Yes

Mitochondria and Wolbachia titers are positively correlated during maternal transmission.

Lucas P Henry | Irene L G Newton
Molecular ecology | 2018

Mothers provide their offspring with symbionts. Maternally transmitted, intracellular symbionts must disperse from mother to offspring with other cytoplasmic elements, like mitochondria. Here, we investigated how the intracellular symbiont Wolbachia interacts with mitochondria during maternal transmission. Mitochondria and Wolbachia may interact antagonistically and compete as each population tries to ensure its own evolutionary success. Alternatively, mitochondria and Wolbachia may cooperate as both benefit from ensuring the fitness of the mother. We characterized the relationship between mitochondria and Wolbachia titers in ovaries of Drosophila melanogaster. We found that mitochondria and Wolbachia titers are positively correlated in common laboratory genotypes of D. melanogaster. We attempted to perturb this covariation through the introduction of Wolbachia variants that colonize at different titers. We also attempted to perturb the covariation through manipulating the female reproductive tract to disrupt maternal transmission. Finally, we also attempted to disrupt the covariation by knocking down gene expression for two loci involved in mitochondrial metabolism: NADH dehydrogenase and a mitochondrial transporter. Overall, we find that mitochondria and Wolbachia titers are commonly positively correlated, but this positive covariation is disrupted at high titers of Wolbachia. Our results suggest that mitochondria and Wolbachia have likely evolved mechanisms to stably coexist, but the competitive dynamics change at high Wolbachia titers. We provide future directions to better understand how their interaction influences the maintenance of the symbiosis.

Pubmed ID: 29691935

Publication data is provided by the National Library of Medicine ® and PubMed ®. Data is retrieved from PubMed ® on a weekly schedule. For terms and conditions see the National Library of Medicine Terms and Conditions.

This is a list of tools and resources that we have found mentioned in this publication.


y[1] sc[*] v[1] sev[21]; P{y[+t7.7] v[+t1.8]=TRiP.HMS01584}attP2 (organism)

RRID:BDSC_36695

Drosophila melanogaster with name y[1] sc[*] v[1] sev[21]; P{y[+t7.7] v[+t1.8]=TRiP.HMS01584}attP2 from BDSC.

View all literature mentions

w[*]; P{w[+mC]=GAL4-Hsp70.PB}2 (organism)

RRID:BDSC_2077

Drosophila melanogaster with name w[*]; P{w[+mC]=GAL4-Hsp70.PB}2 from BDSC.

View all literature mentions

P{w[+mC]=otu-GAL4::VP16.R}1, w[*]; P{w[+mC]=GAL4-nos.NGT}40; P{w[+mC]=GAL4::VP16-nos.UTR}CG6325[MVD1] (organism)

RRID:BDSC_31777

Drosophila melanogaster with name P{w[+mC]=otu-GAL4::VP16.R}1, w[*]; P{w[+mC]=GAL4-nos.NGT}40; P{w[+mC]=GAL4::VP16-nos.UTR}CG6325[MVD1] from BDSC.

View all literature mentions

w[1118]; P{w[+mC]=osk-GAL4::VP16}A11/CyO (organism)

RRID:BDSC_44241

Drosophila melanogaster with name w[1118]; P{w[+mC]=osk-GAL4::VP16}A11/CyO from BDSC.

View all literature mentions

y[1] sc[*] v[1] sev[21]; P{y[+t7.7] v[+t1.8]=TRiP.HMS00550}attP2 (organism)

RRID:BDSC_34523

Drosophila melanogaster with name y[1] sc[*] v[1] sev[21]; P{y[+t7.7] v[+t1.8]=TRiP.HMS00550}attP2 from BDSC.

View all literature mentions

y[1] sc[*] v[1] sev[21]; P{y[+t7.7] v[+t1.8]=TRiP.HMS01199}attP2/TM3, Sb[1] (organism)

RRID:BDSC_34720

Drosophila melanogaster with name y[1] sc[*] v[1] sev[21]; P{y[+t7.7] v[+t1.8]=TRiP.HMS01199}attP2/TM3, Sb[1] from BDSC.

View all literature mentions

P{w[+mW.hs]=GawB}109C1, y[1] w[*] (organism)

RRID:BDSC_7020

Drosophila melanogaster with name P{w[+mW.hs]=GawB}109C1, y[1] w[*] from BDSC.

View all literature mentions