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Populations of American beech in Virginia and the Great Smoky Mountain National Park in Tennessee and North Carolina were investigated for demographic genetic substructurings. Two Virginia populations, one on the Blue Ridge (WG1) and the other on the Piedmont (WG2) occur over an elevational gradient of several hundreds meters. One of the Great Smoky Mountain populations (GS1) was in a 'beech gap' and the other (GS2) in a 'cove forest' along a creek. The populations in the Great Smoky Mountain National Park were only separated by a few hundred meters in elevation, but both on the same physiographic province. The populations had two growth forms. Trees produced extensive root suckers at WG1, GS1 and GS2, but WG2 had no root suckers and all individuals had obviously been established from seeds. A total of 1335 shoots were mapped at the four sites, their size measured [diameter at breast height (DBH) or diameter at ground height (DGH)], and genotypes were determined for each locus using allozyme analysis. FIS among five different size-classes revealed an excess of homozygotes in WG1, GS1 and GS2, and an excess of heterozygotes in WG2. The offshoot formation from root suckers obviously contributed to the abundance of intermediate size-classes in WG1, GS1 and GS2. Exceedingly localized patchiness of different multilocus genotypes reveals genetic clustering of shoots that have obviously originated from root suckers in WG1, GS1 and GS2. The Piedmont population (WG2), on the other hand, showed loose localization of genetically related trees at a scale of 35–40 m in area, suggesting broader ranges of pollen and seed dispersal. The data are discussed in the light of the differences in growth form and mode of reproduction, and also in relation to the post-glacial migration and the current geographic distribution of the species.  相似文献   
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日本日光地区森林中梅花鹿的夏季巢区面积和内部利用   总被引:1,自引:0,他引:1  
为了估算梅花鹿(Cervusnippon)巢区面积和内部利用以及雌雄个体间的比较,于1993-1997年在日本国日光国立公园使用无线电遥测定位法测定了8头成年雌鹿和4头雄鹿(包括1头亚成年)在森林生境中的活动定位点。按照当地梅花鹿离开和返回越夏地的日期,使用每年6月1日至10月25日的无线电遥测定位数据,采用定值核心法(Fixed kernel)计算了梅花鹿的夏季巢区面积和内部利用密度分布。梅花鹿雄鹿夏季巢区面积(192·5±50·5 hm2)显著大于雌鹿(115·7±56·7 hm2,P=0·017) ,其半家区面积(HRS0·50)和核心区面积(HRS0·25)也显著大于雌鹿(依次为P=0·027和P=0·042) ,但巢区内部利用集中度指标Ah(HRS0·50/HRS0·95)和Ac(HRS0·25/HRS0·50)在雌雄鹿之间没有显著性差异(依次为P=0·999和P=0·234)。在无线电遥测的12头梅花鹿中, 11头个体的巢区为单核心型,只有1头成年雄鹿的巢区为双核心型。11头梅花鹿个体的混合数据显示巢区面积和体重之间存在显著性相关(P=0·049) [动物学报52 (2) : 235 -241 , 2006]。  相似文献   
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