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11.
Deer can have severe effects on plant communities, which in turn can affect insect communities. We studied the effects of Key deer herbivory on the incidence of insect herbivores that occur within deer habitats in the lower Florida Keys, within the National Key Deer Refuge (NKDR). We analyzed plant chemistry (tannins, nitrogen) and surveyed for the occurrence of insects (above the browse tier) among plant species that were either deer-preferred or less-preferred. Results indicated higher levels of foliar tannins on islands with fewer Key deer and larger amounts of foliar nitrogen on islands with a high density of Key deer. Consequently, leaf miners were significantly more abundant on islands with high deer density, irrespective of deer-preference of plant species. On islands with a high deer density, incidence of leaves damaged by chewing insects was lower on preferred plant species but greater on less-preferred species than on islands with fewer deer. No apparent patterns were evident in the distribution of leaf gallers among plant species or islands with different deer density. Our results imply that plant nutrition levels—either preexisting or indirectly affected by deer deposition—are more important than plant defenses in determining the distribution of insect herbivores in the NKDR. Although high densities of the endangered Key deer have negative effects on some plant species in the NKDR, it seems Key deer might have an indirect positive influence on insect incidence primarily above the browse tier. Further research is warranted to enable fuller understanding of the interactions between Key deer and the insect community.  相似文献   
12.
How do deer affect tree seedlings on a dwarf bamboo-dominated forest floor?   总被引:4,自引:0,他引:4  
A field experiment was conducted in Mt. Ôdaigahara, west-central Japan, to reveal the effects of two herbivores, Sika deer (Cervus nippon) and mice (Apodemus spp.), on the seedlings of five cohorts of three tree species, Abies homolepis, Fraxinus lanuginosa f. serrata and Fagus crenata. The forest floor of the study site was covered with dwarf bamboo, Sasa nipponica, which would also affect the seedlings. Eight combinations of three treatments were set: exclusion of deer, exclusion of mice and removal of dwarf bamboo. Deer were expected to affect the seedlings not only negatively by foraging but also positively by browsing dwarf bamboo that overshadows seedlings. The survival of these cohorts was analyzed by survival analysis and the differences in their survival between the treatments were investigated. The results of the experiment showed that: (1) exclusion of deer increased the aboveground biomass of dwarf bamboo and made it more difficult for seedlings to survive under the regenerated dwarf bamboo stand, and (2) deer negatively affected the seedlings, but they had positive, indirect effects in some cohorts by decreasing the aboveground biomass of dwarf bamboo. However, such effects were not detected in some cohorts which were affected excessively by deer or dwarf bamboo. No clear results on the effect of mice on seedlings were obtained. We conclude that a positive, indirect effect of deer on seedling survivorship would be observable when the magnitude of a positive, indirect effect caused by decreasing dwarf bamboo is larger than that of a negative, direct effect of deer.  相似文献   
13.
The purpose of this study was to determine a practical method in Wapiti (Cervus elaphus) of using predetermined sexed Sika (Cervus nippon) semen. Semen was collected by electro-ejaculation from one stag of proven fertility and transported to the laboratory where it was retained as unsorted (control) or was separated into X- and Y-chromosome-bearing sperm using a modified high-speed cell sorter. Wapiti hinds (n = 81) were inseminated into the uterus by rectum manipulation with 1 × 106 (X1 and Y1 group, respectively) or 2 × 106 (X2 and Y2 group, respectively) of sorted frozen-thawed and 1 × 107 non-sorted frozen-thawed (a commercial dose control) Sika motile sperm 60–66 h after removal of intra-vaginal progesterone-impregnated CIDR devices and administration of 700 IU of PMSG at the time of CIDR removal. The percentage of hinds calving after insemination was similar for X1 (38.5%), X2 (41.7%), Y1 (44.4%), Y2 (38.9%) groups (P > 0.05), but higher for control (75%) treatment (P < 0.05). Ultimately 15 out of the 16 Sika and Wapiti-hybrid calves produced by Wapiti hinds inseminated with Y-sorted sperm were male (93.7%) and 10/10 (100%) Sika and Wapiti-hybrid calves from hinds inseminated with X-sorted sperm were female. The sex ratio of the Sika and Wapiti-hybrid calves born to hinds inseminated with sex-sorted sperm deviated significantly (P < 0.05) from 50% and 50.0% in the control group. All Sika and Wapiti-hybrid calves were born between 237 and 250 d of gestation. Male and female calves in the control group had similar birth weights and weaning weights as calves from hinds inseminated with X- or Y-sorted sperm. In conclusion it can be said that normal Sika and Wapiti-hybrid calves of predicted sex can be produced after artificial insemination of Wapiti does with low numbers of sex-sorted cryopreserved Sika sperm.  相似文献   
14.
圈养獐分娩的初步观察   总被引:3,自引:0,他引:3  
2004年的5~7月,在浙江省嵊州市河麂种源繁育基地对34只獐(Hydropotes inermis)的分娩活动进行了观察。结果表明,母獐通常选择安全的地点进行分娩。獐集中分娩的时间为6月3日到6月19日,占分娩母獐总数的73.53%(n=34),并且分娩多在白天进行。产程(从胎膜露出到胎盘娩出)平均为(302.20±15.27)min(n=15)。胎儿娩出的姿势多为前躯前置(前足、头先露出),占83.78%;少数为后躯前置(后足先露出),占16.22%。幼仔首次吮乳时间在单胎和多胎间无显著差异,平均为出生后(44.97±2.73)min(n=35)。幼仔出生后首次平均站立时间在双胞胎、三胞胎和四胞胎分别为(32.25±2.49)min(n=16)(、29.42±2.52)min(n=12)和(65.00±7.39)min(n=6)。每胎幼仔数越多,初生幼仔的平均体重越轻。  相似文献   
15.
采用HSV 1-2 TK和人IL-1β特异性引物分别对鹿肝组织cDNA文库及鹿血cDNA进行PCR扩增,得到的特异性cDNA片段分别连入TA克隆载体测序,得到三个EST,输入GeneBank,Swissprot dbEST等数据库中进行同源比较分析,同源分析表明,获得双阳梅花鹿三个基因EST,EST-1为梅花鹿α2-抗纤溶酶同源基因EST,EST-2为梅花鹿水通道蛋白同源基因EST,EST-3为鹿血未知基因EST,并含有一个267个碱基编码88个氨基酸的开放读码框架。  相似文献   
16.
17.
Summary Nuclear and cytoplasmic size (2) of acidophils in the pars distalis of adult male deer were measured and the data analyzed statistically with reference to the four classical seasons of the photoperiodic cycle and five periods and two events of the antler cycle. The seasons, and the respective mean cross-sectional areas of cell nuclei and cytoplasm, are: Spring (21 March–20 June; increasing photoperiod greater than 12 hours), 28.45 and 48.68 2; Summer (21 June–20 September; decreasing photoperiod greater than 12 hours), 27.81 and 44.25 2; Fall (21 September–20 December; decreasing photoperiod less than 12 hours), 30.40 and 45.07 2; Winter (21 December–20 March; increasing photoperiod less than 12 hours) 27.28 and 40.30 2. Beginning in late winter and early spring the components of the antler cycle, and the respective cross-sectional areas of cell nuclei and cytoplasm, are: Initial Antler Growth, 28.08 and 38.58 2; Growth of Velvet Antler Form, 28.93 and 50.61 2, Antlers Hardening, 27.53 and 40.83 2; Velvet Shedding, 29.03 and 53.20 2; Rutting Season, 29.95 and 44.97 2; Preparation for Shedding, 26.50 and 40.38 2; Antlers Recently Shed, 27.53 and 47.85 2. Shedding of boney antlers, growth of velvet antlers and increases in nuclear and cytoplasmic areas of acidophil cells in the pars distalis occur when the photoperiod is increasing. Construction and retention of hard antlers occur when photoperiod is decreasing. This lessening of day length appears to influence the gonadotrophs that regulate secretion of testosterone.A part of a dissertation submitted in partial fulfillment of the requirements for the degree Doctor of Philosophy, Anatomy, Colorado State University. Specimens were contributed by Colorado Federal Aid Project W-105-R, Colorado Division of Game, Fish and Parks, Game Research Center, Fort Collins and investigations of them was supported by grant T1-DE130 from the National Institutes of Health, Bethesda, Maryland, U.S.A.NIDR Predoctoral Trainee.  相似文献   
18.
The aim of the study was to compare transrectal ultrasound with progesterone (P4) and pregnancy-associated glycoproteins (PAGs) as pregnancy detection methods for semidomesticated reindeer (Rangifer tarandus tarandus) in field conditions. Female reindeer (n = 195) were scanned transrectally by a 7.5-MHz linear array transducer, and blood was sampled either in December 2005 (n = 33), December 2006 (n = 92), or January 2007 (n = 70) during early or mid gestation. Plasma levels of P4 and PAGs were assessed by radioimmunoassay (RIA). Based on calving records, the sensitivity, specificity, predictive values, and the overall accuracy of the three tests were calculated. The overall calving rate calculated from the calving records was 86.2%. The overall accuracy of transrectal ultrasound was 99.5%. The sensitivity and specificity of transrectal ultrasound were 99.4% and 100%, respectively. In the plasma P4 test, the threshold level of 5.0 nmol/L gave the highest overall accuracy (94.9%). The sensitivity of the P4 test decreased from 96.4% to 81.5%, when the threshold level increased from 5.0 nmol/L to 8.0 nmol/L, while the specificity remained at 85.2% over the range of these cutoff values. The overall accuracy of the plasma PAG test decreased from 96.4% to 64.1% when the plasma PAG threshold level increased from 0.5 ng/mL to 3.5 ng/mL, whereas sensitivity decreased from 99.4% to 58.3%. Specificity increased from 77.8% to 100% when the plasma PAG threshold level reached 3.0 ng/mL. Transrectal ultrasound showed higher diagnostic values than those of plasma P4-RIA and PAG-RIA in diagnosing pregnancy of reindeer, with the advantage that diagnoses can be made in real time in field conditions.  相似文献   
19.
Previous studies have shown that despite having a clear seasonal fluctuation in fecal testosterone concentration, the significantly lower testosterone levels found in velvet stags of the nonseasonal breeder muntjac (Muntiacus sp.) apparently did not stop their spermatogenesis as in other deer species. In the present study, in vitro cultivated Leydig cells isolated from adult stags of three native deer species of Taiwan were treated with androstenedione, with or without adding human chorionic gonadotropin. Results showed that, unlike the two seasonal breeders, sika deer (Cervus nippon) and sambar deer (Rusa unicolor), Leydig cells of velvet muntjac had no dramatic reduction in or even maintained the full capability of their testosterone productivity compared with the hard-antlered stage. The decrease in fecal testosterone level observed earlier in muntjac during the velvet period was probably due to a reduction of number of Leydig cells. These results support the hypothesis that testosterone production in muntjac during its velvet period might never be low enough to trigger the quiescent phase of the reproduction cycle.  相似文献   
20.
Deer antler is the only mammalian organ that can fully grow back once lost from its pedicle – the base from which it grows. Therefore, antlers probably offer the most pertinent model for studying organ regeneration in mammals. This paper reviews our current understanding of the mechanisms underlying regeneration of antlers, and provides insights into the possible use for human regenerative medicine. Based on the definition, antler renewal belongs to a special type of regeneration termed epimorphic. However, histological examination failed to detect dedifferentiation of any cell type on the pedicle stump and the formation of a blastema, which are hallmark features of classic epimorphic regeneration. Instead, antler regeneration is achieved through the recruitment, proliferation and differentiation of the single cell type in the pedicle periosteum (PP). The PP cells are the direct derivatives of cells resident in the antlerogenic periosteum (AP), a tissue that exists in prepubertal deer calves and can induce ectopic antler formation when transplanted elsewhere on the deer body. Both the AP and PP cells express key embryonic stem cell markers and can be induced to differentiate into multiple cell lineages in vitro and, therefore, they are termed antler stem cells, and antler regeneration is a stem cell-based epimorphic regeneration. Comparisons between the healing process on the stumps from an amputated mouse limb and early regeneration of antlers suggest that the stump of a mouse limb cannot regenerate because of the limited potential of periosteal cells in long bones to proliferate. If we can impart a greater potential of these periosteal cells to proliferate, we might at least be able to partially regenerate limbs lost from humans. Taken together, a greater understanding of the mechanisms that regulate the regeneration of antlers may provide a valuable insight to aid the field of regenerative medicine.This article is part of a Directed Issue entitled: Regenerative Medicine: the challenge of translation.  相似文献   
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