Expression Analysis in a Dispersal-Fecundity Polyphenism Identifies Growth Regulators and Effectors

Author:

Angelini David R1ORCID,Steele Joshua L1,Yorsz Michael C1ORCID,O'Brien Devin M1

Affiliation:

1. Department of Biology, Colby College, 5700 Mayflower Hill , Waterville, ME 04901 , USA

Abstract

Abstract Polyphenism allows organisms to respond to varying environmental conditions by adopting alternative collections of morphological traits, often leading to different reproductive strategies. In many insects, polyphenism affecting the development of flight trades dispersal ability for increased fecundity. The soapberry bug Jadera haematoloma (Hemiptera: Rhopalidae) exhibits wing polyphenism in response to juvenile nutritional resources and cohort density. Development of full-length wings and flight-capable thoracic muscles occurs more frequently in cohorts raised under low food density conditions, and these features are correlated to reduced female fecundity. Soapberry bugs represent an example of polyphenic dispersal-fecundity trade-off. Short-wing development is not sex-limited, and morphs can also differ in male fertility. We have previously shown, via a candidate gene approach, that manipulation of insulin signaling can alter the threshold for nutritional response and that changes in the activity of this pathway underlie, at least in part, differences in the polyphenic thresholds in different host-adapted populations of J. haematoloma. We now expand the examination of this system using transcriptome sequencing across a multidimensional matrix of life stage, tissue, sex, food density, and host population. We also examine the use of wing and thorax shape as factors modeling gene expression. In addition to insulin signaling, we find that components of the TOR, Hippo, Toll, and estrogen-related receptor pathways are differentially expressed in the thorax of polyphenic morphs. The transcription factor Sox14 was one of the few genes differentially expressed in the gonads of morphs, being up-regulated in ovaries. We identify two transcription factors as potential mediators of morph-specific male fertility differences. We also find that bugs respond to nutrient limitation with expression of genes linked to cuticle structure and spermatogenesis. These findings provide a broad perspective from which to view this nutrition-dependent polyphenism.

Funder

Colby College Division of Natural Sciences

National Institute of General Medical Sciences

National Institutes of Health

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Animal Science and Zoology

Reference52 articles.

1. Borealis: Tools for reproducible geometric morphometric analysis. R package;Angelini,2021

2. A ubiquitin ligase complex regulates caspase activation during sperm differentiation in Drosophila;Arama;PLOS Biol,2007

3. SALS, a WH2-domain-containing protein, promotes sarcomeric actin filament elongation from pointed ends during Drosophilamuscle growth;Bai;Dev Cell,2007

4. Geomorph v4.0 and gmShiny: enhanced analytics and a new graphical interface for a comprehensive morphometric experience;Baken;Methods Ecol Evol,2021

5. Parcas, a regulator of non-receptor tyrosine kinase signaling, acts during anterior–posterior patterning and somatic muscle development inDrosophila melanogaster;Beckett;Dev Biol,2006

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