PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 19, 2026Ecosphere0 citationsOpen Access

Does water vole diet meet the prerequisites of the “plant hypothesis” for explaining population cycles?

View Full Paper
HLHélène LisseCJCédric JacquetGSGaëlle Sobczyk-Moran

Key Points

  • This study aims to explore how the water vole's diet influences population cycles in relation to the plant hypothesis.
  • Investigated water vole diet in outbreak and control areas across seasons.
  • Utilized camera traps and cafeteria tests to assess food preferences.
  • Conducted field sampling at different geographical locations.
  • Water voles preferred dandelion, especially in winter, demonstrating a narrower realized niche.
  • Preference for food remained consistent across seasons and densities, with a notable switch to clover when dandelions were abundant.
  • Concluded that dandelion is a critical winter resource for water vole populations.

Abstract

Abstract Rodent population cycles are observed in highly seasonal environments. As most rodents are herbivorous, the availability and the quality of their food resources vary greatly across seasons. Furthermore, it is well documented that herbivore densities have a measurable effect on vegetation and, conversely, that vegetation dynamics can influence herbivore population dynamics. Many previous studies have investigated whether rodent population cycles could be induced by bottom‐up regulation. A recent review summarized several sub‐hypotheses regarding rodent population cycles: cycles may be due to inherent inter‐annual variations of plant quantity, to overshoot of carrying capacity by overgrazing (i.e., lack of quantity), or to changes in quality of food (decrease in quality of preferred food or switch towards lower quality food) in response to rodent grazing (e.g., plant defenses). While some sub‐hypothesis seems to be more important than others, there is currently a prerequisite to construct scientific consensus: dietary description is still overlooked in many systems and should be more investigated. The fossorial water vole shows contrasted population dynamics depending on its geographical location and exhibits large outbreaks in grasslands in highly seasonal climate. It is thus a good model species to investigate plant hypotheses. In this study, the diet of water vole was investigated in and out of an outbreak area with a combination of approaches in the field, in different sampling sites and across seasons. We demonstrated that voles have a very large fundamental trophic niche, but strong behavioral selection, inducing a narrower realized niche, especially during winter. Using an experimental device based on camera traps and cafeteria tests, we observed a strong preference for dandelion ( Taraxacum officinale ) in wild water voles, resulting in exclusive selection during winter for food stores. These preferences were constant across seasons, in control and outbreak areas and independent of vole density on plots. When dandelions were overabundant on plots, this preference was less marked, with voles favoring white clover ( Trifolium repens ). We concluded that dandelion is a winter key resource for water vole. It thus might be interesting to investigate the role of dandelion in vole population dynamics.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Lisse et al. (2026) studied this question.

synapsesocial.com/papers/6a0bfdc7166b51b53d379071https://doi.org/10.1002/ecs2.70579
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Is the diet cyclic phase‐dependent in boreal vole populations?2024 · 8 citations
  2. 2Feeding Behavior of the Insular Beach Vole, Microtus breweri1977 · 22 citations
  3. 3Population Cycles2002 · 122 citations
  4. 4VII. - Le comportement d'amassement (hoarding) chez les rongeurs1946 · 3 citations
  5. 5Specialist Predators, Generalist Predators, and the Microtine Rodent Cycle1991 · 821 citations