| Literature DB >> 28520785 |
Madison Rode1, Nathan P Lemoine1, Melinda D Smith1.
Abstract
Insect herbivores play a pivotal role in regulating plant production and community composition, and their role in terrestrial ecosystems is partly determined by their feeding behavior and performance among plants of differing nutritional quality. Historically, nitrogen (N) has been considered the primary limiting nutrient of herbivorous insects, but N is only one of many potential nutrients impn>ortant to insect performance. Of these nutrients, phosphorus (P) is perhaps the most important because somatic growth depends upon P-rich ribosomal RNA. Yet relatively few studies have assessed the strength of P-limitation for terrestrial insects and even fewer have simultaneously manipulated both N and P to assess the relative strengths of N- and P-limitation. Here, we tested for potential N and P limitation, as well as N:P co-limitation, on Chorthippis curtipennis (Orthoptera, Acrididae), an abundant member of arthropod communities of central US prairies. Our results demonstrate weak evidence for both N and P limitation of C. curtipennis growth rates in laboratory feeding assays. Importantly, P-limitation was just as strong as N-limitation, but we found no evidence for NP co-limitation in our study. Furthermore, nutrient limitation was not apparent in field studies, suggesting that insect growth rates may be predominately controlled by other factors, including temperature and predation. Our results suggest that P should be jointly considered, along with N, as a primary determinant of herbivore feeding behavior under both current and future climate conditions.Entities:
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Year: 2017 PMID: 28520785 PMCID: PMC5433754 DOI: 10.1371/journal.pone.0177754
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Posterior probabilities for main and interactive effects for N- and P- enrichment treatments in the field experiment.
| N(0,1) Priors | Uninformative Priors | |
|---|---|---|
| 0.76 | 0.87 | |
| 0.68 | 0.80 | |
| 0.77 | 0.89 |
Fig 1Final mass of C. curtipennis in all N- and P-enrichment treatments at the end of the field experiment.
Points show means ± 1 SE.
Posterior probabilities for main and interactive effects for N- and P- enrichment treatments on individual growth rates in the laboratory feeding assays.
| N(0,1) Priors | Uninformative Priors | |
|---|---|---|
| 0.85 | 0.82 | |
| 0.88 | 0.85 | |
| 0.68 | 0.68 |
Fig 2Mass of C. curtipennis grasshoppers during laboratory feeding assays for all N- and P-enrichment treatments.
Chorthippus curtipennis mass was measured every week. Points show means ± 1 SE and lines show the best fit for growth rates in each treatment from the model with N(0,1) priors. Inset shows the estimated slopes (i.e. growth rates) for each enrichment treatment.