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Indeed, the loss of body mass during cold exposure despite higher expression of daily heterothermia observed in aged, but not adult gray mouse lemurs, suggests that deep daily heterothermia episodes in aged heterotherms increase rather than decrease daily energy expenditure [8], [9].
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MSS on the other hand suggests one additional clock, with a fragmented partition scheme over the phylogeny (Supporting Information Figure S1) and a dramatically different picture of the diversification of mouse lemurs, suggesting that these would date back to 12 MY ago (Table 1).
To gain an insight into the origin of lateralization in primates, we have studied gray mouse lemurs, suggested to represent the most ancestral primate condition.
To gain insight into the origin of manual lateralization in primates, we studied gray mouse lemurs, suggested to represent the most ancestral primate condition.
First, does the distribution of mouse lemurs indicate competitive interactions?
Because previous studies on mouse lemurs have suggested that several gut hormones may be related to the pre-wintering fattening phase and to the daily heterothermia expression [ 17], we also tested the effects of RSV supplementation on several gut-derived peptide hormones that are involved in numerous aspects of fuel homeostasis [ 18].
The low water flux rate in Lemur catta compared with that of brown lemurs suggests mechanisms to conserve water.
On the other hand, most of the CNSs evolved after the emergence of mouse lemur are suggested to acquire new functional constraints.
For example, the exhibition of female philopatry in mouse lemurs [34], [35] suggests that the maternally inherited mtDNA locus may be strongly biased in such cases.
It suggests that mouse lemurs do not behave in the wild as if they are using kin signatures from the alarm calls (commonly given during predator mobbing) to selectively give aid to kin [ 46].
The relative changes in both total and phosphorylated ERK1/2, JNK, MEK and p38 kinase expression observed in the organs of the hibernating gray mouse lemur, M. murinus, suggest important cellular roles for MAPK signaling in adapting the animal for torpor.
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