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971.
A series of experiments investigated the potential role of microbial mats in nutrition of the early settlement stages of Penaeus semisulcatus. From 3 days post-metamorphosis, the microbial mat supported high growth and survival rates in postlarvae, equivalent to
that supported by a control diet of Artemia nauplii and mussel. Examination of gut contents indicated that benthic postlarvae feed indiscriminately on the microbial
mat. However, when postlarvae were fed separated size-fractions of the microbial mat, only the fraction containing a high
concentration of infauna (mainly nematodes) was able to support the same growth as intact microbial mat. This appears to be
due to the low nitrogen content (0.4–0.9 mmol g−1) of the various size-fractions, compared to that of infauna (4.0 mmol g−1). The stable isotope composition of the dietary size-fractions and postlarval shrimp tissue supports the hypothesis that
the shrimp assimilated C and N primarily from the associated infauna. This may be due to selective feeding that is not apparent
from stomach contents, due to rapid digestion of fauna soft tissues, or to differential assimilation of infaunal prey relative
to other microbial mat components. The results demonstrate that microbial mats may support survival and growth in early-stage
penaeid shrimp postlarvae on intertidal mud flats. 相似文献
972.
Genetic diversity and population structure of the Chinese mitten crab <Emphasis Type="Italic">Eriocheir sinensis</Emphasis> in its native range 总被引:1,自引:0,他引:1
Liying Sui Fumin Zhang Xiaomei Wang Peter Bossier Patrick Sorgeloos Bernd Hänfling 《Marine Biology》2009,156(8):1573-1583
The Chinese mitten crab Eriocheir sinensis is an indigenous and economically important species in China, but can also be found as invasive species in Europe and America.
Mitten crabs have been exploited extensively as a food resource since the 1990s. Despite its ecological and economic importance,
the genetic structure of native mitten crab populations is not well understood. In this paper, we investigated the genetic
structure of mitten crab populations in China by screening samples from ten locations covering six river systems at six microsatellite
loci. Our results provide further evidence that mitten crabs from the River Nanliujiang in Southern China are a genetically
differentiated population within the native range of Eriocheir, and should be recognized as a separate taxonomic unit. In contrast, extremely low levels of genetic differentiation and
no significant geographic population structure were found among the samples located north of the River Nanliujiang. Based
on the reproductive biology of mitten crabs and the geography of their habitat we argue that both natural and human-mediated
gene flow are unlikely to fully account for the similar allele frequency distributions at microsatellite loci. Large population
sizes of mitten crabs suggest instead that a virtual absence of genetic drift and significant homoplasy of microsatellite
alleles have contributed to the observed pattern. Furthermore, a coalescent-based maximum likelihood method indicated a more
than two-fold lower effective population size of the Southern population compared to the Northern Group and low but significant
levels of gene flow between both areas. 相似文献
973.
Physical shelter features (e.g. shape, size and substrate slope) were tested in the laboratory to evaluate the preferences
of juveniles of European spiny lobster, Palinurus elephas. Tethering experiments to assess whether substrate slope affects the vulnerability of juveniles to predation were also performed.
Our results showed that: (1) semi-circular dens were significantly preferred over square and circular shapes; (2) when not
disturbed by a predator, lobsters sheltered in holes with a diameter closely related to their own size, while in the presence
of a potential predator lobsters showed no significant preference for a particular shelter size; (3) lobsters significantly
preferred dens excavated on sub-vertical (35°) substrates over those excavated on vertical ones (90°); (4) individual lobsters
tethered on vertical substrates were subject to greater predation activity than those tethered on horizontal structures. In
conclusion, the present study contributes to the understanding of how physical properties of shelters affect the choice of
P. elephas juveniles, enhancing their protection and survival rate. 相似文献
974.
Coral sand beaches harbor gobiid sand darts (genus Kraemeria), the only fish known to live in the sand throughout their adult life. Despite the uniqueness of sand-dwelling habitat as
a vertebrate, the biology of this fish remains unclear. To explore how this unique fish utilize an unusual habitat, we investigated
diurnal patterns of microhabitat use and prey consumption by the transparent sand dart, Kraemeria cunicularia, at a sandy beach on Iriomote Island, the Ryukyu Archipelago, Japan. Sand darts were found in sediment in the lower intertidal
zone throughout the daytime regardless of changes in tidal level, whereas at nighttime these fish were found swimming. Gut
content analyses revealed that the sand dart diet was dominated by harpacticoid copepods throughout the day. Analyses of meiobenthic
distribution indicated that these copepods were most abundant at lower intertidal zones where highest numbers of sand darts
were found during the daytime; thus, it is possible that microhabitat use of the fish is largely determined by food availability.
An extensive distributional survey throughout the Ryukyu Archipelago further indicated that sand darts prefer sandy beaches
with well-sorted, coarse sand. These results provide novel insights into how sand darts respond to the tidal rhythm and highlight
putative key environmental factors that determine their distribution at both regional and microhabitat scales.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
975.
Simon Anthony Morley Koh Siang Tan Robert W. Day Stephanie M. Martin Hans-O. Pörtner Lloyd S. Peck 《Marine Biology》2009,156(10):1977-1984
The upper thermal limits for burrowing and survival were compared with micro-habitat temperature for anomalodesmatan clams:
Laternula elliptica (Antarctica, 67°S); Laternula recta, (temperate Australia, 38°S) and Laternula truncata (tropical Singapore, 1°N). Lethal limits (LT50) were higher than burrowing limits (BT50) in L. elliptica (7.5–9.0 and 2.2°C) and L. recta (winter, 32.8–36.8 and 31.1–32.8°C) but the same range for L. truncata (33.0–35.0 and 33.4–34.9°C). L. elliptica and L. truncata had a BT50 0.4 and 2.4–3.9°C, respectively, above their maximum experienced temperature. L. recta, which experience solar heating during midday low tides, had a BT50 0.7–2.4°C below and a range for LT50 that spanned their predicted environmental maximum (33.5°C). L. recta showed no seasonal difference in LT50 or BT50. Our single genus comparisons contrast with macrophysiological studies showing that temperate species cope better with elevated
temperatures.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
976.
Network structure and parasite transmission in a group living lizard,the gidgee skink, <Emphasis Type="Italic">Egernia stokesii</Emphasis> 总被引:1,自引:1,他引:0
Stephanie S. Godfrey C. Michael Bull Richard James Kris Murray 《Behavioral ecology and sociobiology》2009,63(7):1045-1056
Gidgee skinks (Egernia stokesii) form large social aggregations in rocky outcrops across the Flinders Ranges in South Australia. Group members share refuges
(rock crevices), which may promote parasite transmission. We measured connectivity of individuals in networks constructed
from patterns of common crevice use and observed patterns of parasitism by three blood parasites (Hemolivia, Schellackia and Plasmodium) and an ectoparasitic tick (Amblyomma vikirri). Data came from a 1-year mark-recapture study of four populations. Transmission networks were constructed to represent possible
transmission pathways among lizards. Two lizards that used the same refuge within an estimated transmission period were considered
connected in the transmission network. An edge was placed between them, directed towards the individual that occupied the
crevice last. Social networks, a sub-set of same-day only associations, were small and highly fragmented compared with transmission
networks, suggesting that non-synchronous crevice use leads to more transmission opportunities than direct social association.
In transmission networks, lizards infested by ticks were connected to more other tick-infested lizards than uninfected lizards.
Lizards infected by ticks and carrying multiple blood parasite infections were in more connected positions in the network
than lizards without ticks or with one or no blood parasites. Our findings suggest higher levels of network connectivity may
increase the risk of becoming infected or that parasites influence lizard behaviour and consequently their position in the
network.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users.
This contribution is part of the special issue “Social Networks: new perspectives” (Guest Editors: J. Krause, D. Lusseau and
R. James). 相似文献
977.
Hierarchical perception of fertility signals and nestmate recognition cues in two dolichoderine ants
Laurent Cournault Jean-Christophe de Biseau 《Behavioral ecology and sociobiology》2009,63(11):1635-1641
In social insects, queens are likely to “honestly” inform their nestmates of their presence and fertility status through pheromonal
communication. Cuticular hydrocarbons (CHCs) have been reported to be effective nestmate discriminators and strongly suspected
to act as fertility signals, at least in some species. The use of the same chemical bouquet (i.e., the CHC profile) to convey
two fundamentally different information seems puzzling. However, a recent threshold model proposes a hierarchy in the discriminating
processes, i.e., fertility signals can only be perceived if nestmate recognition has been reached (Le Conte and Hefetz, Annu
Rev Entomol 53:523–542, 2008). Here, we developed a simple behavioral bioassay based on chemical recruitment toward a queen placed outside the nest in
two dolichoderine ants (Linepithema humile and Tapinoma erraticum), which allowed us to investigate the interplay between fertility signaling and colonial recognition. Using queen corpses
of various origins (nestmates or aliens) and physiological states (fertile or infertile; mated or unmated), we demonstrated
that nestmate recognition cues clearly override fertility signals under our experimental conditions. Indeed, while nestmate
infertile queens were largely ignored by the workers, nestmate fertile queens (mated or not) induced worker recruitment, whereas
alien fertile queens did not and were aggressed by the workers. 相似文献
978.
There is growing evidence that the sex ratios of wild vertebrate populations are determined by mechanisms that are directly
influenced by environmental characteristics. The Trivers–Willard (TWH) and extrinsic modification (EMH) hypotheses postulate
differing determinants of mammalian offspring sex ratios. TWH states that mothers allocate resources according to their current
condition and sex-specific offspring costs. EMH states that environmental forces that affect maternal condition determine
offspring sex ratios, independently of maternal tactics of sex-biased allocation. We statistically assessed support for each
of these hypotheses using long-term life histories of the allied rock-wallaby, Petrogale assimilis; a continuously breeding, polygynous, weakly dimorphic marsupial. We showed that birth sex ratios were equal and independent
of maternal and environmental conditions. However, secondary sex ratios were male-biased under good environmental conditions
and for high quality mothers or mothers in good condition. Sex differences in offspring survival contributed to these biases:
(1) environmental conditions strongly influenced survival to pouch emergence (in support of EMH) and (2) maternal quality
affected survival to the end of maternal care (in support of TWH). Environmental effects on survival were more important than
maternal factors over the entire period of maternal care and contributed most to male-biased sex ratios at pouch emergence.
In contrast, maternal mass was the best predictor of sex ratios at the end of maternal care—the life history stage where offspring
body mass differed between the sexes. 相似文献
979.
Love bites: male fang use during coercive mating in wolf spiders 总被引:1,自引:1,他引:0
Julianna L. Johns J. Andrew Roberts David L. Clark George W. Uetz 《Behavioral ecology and sociobiology》2009,64(1):13-18
Evolutionary conflicts of interest between the sexes are common, as mating tactics and strategies that increase fitness benefits
for one sex may incur costs for the other. As a consequence, antagonistic coevolution between the sexes often results in a
complex arms race between male persistence and female resistance. Coercive mating (e.g., forced copulation) likely benefits
males by increasing the probability of mating; however, costs to females may be high, including injury or even death. Here,
we report on a study of the use of fangs by males of the wolf spider Schizocosa ocreata (Hentz) during forcible mating with resistant females, which results in hemolymph loss and scar tissue formation in females.
Microscopic inspection revealed that fang wounds (evidenced by scar tissue) were absent on unmated (virgin) females but were
found on mated females and were significantly more frequent in coercively mated females. Experimental fang immobilization
studies found no difference in copulation success between experimental (fangs immobilized) and control (sham manipulation)
males. However, males that had use of their fangs had significantly longer copulation duration. These findings represent a
previously unknown male mating tactic in spiders and an unrecognized potential cost of mating for female spiders. 相似文献
980.
Luke Holman 《Behavioral ecology and sociobiology》2009,63(11):1679-1688
The causes and consequences of variation in sperm quality, survival and ageing are active areas of research in ecology and
evolution. In order to address these topics, many recent studies have measured sperm viability using fluorescent staining.
Although sperm viability staining has produced a number of interesting results, it has some potential pitfalls that have rarely
been discussed. In the present paper, I review the major findings of ecology and evolution studies employing sperm viability
staining and outline the method’s principle limitations. The key problem is that the viability assay may itself kill sperm,
which is likely to confound many common experimental designs in addition to producing artificially low estimates of sperm
viability. I further suggest that sperm number should be routinely measured in sperm viability studies, as it may be an important
but overlooked source of spurious results. I provide methodological advice on sperm viability staining aimed at minimising
artefacts and producing robust conclusions, and discuss possible avenues for future research.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献