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61.
62.
AFLP analysis revealed differences in genetic diversity of four natural populations of Manila clam(Ruditapes philippinarum) in China 总被引:7,自引:0,他引:7
LIU Xiangquan BAO Zhenmin HU Jingjie WANG Shi ZHAN Aibin LIU Hui FANG Jianguang WANG Rucai 《海洋学报(英文版)》2007,26(1):150-158
1 IntroductionManila clam (Ruditapes philippinarum) is aworldwide distributed species. In China, it is foundfrom the northern to southern seashores (Wang etal., 1993; Zhuang, 2001). This species is eura-line with the salinity tolerance ranging from 20 to4… 相似文献
63.
64.
Genetic diversity and differentiation of mud crab Scylla serrata populations from southeastern China 总被引:1,自引:0,他引:1
The genetic diversity and differentiation of 6 mud crab Scylla serrata populations from southeastern China are investigated using allozyme electrophoresis. The mean number of alleles per locus population is 1.3 ± 0.1; the percentage of polymorphic loci per population is 27.3; the observed heterozygosity ranges from ( 0.195 ± 0.083)to ( 0.241 ± 0.090) and the expected heterozygosity ranges from ( 0.105 ± 0.043 ) to ( 0.131 ± 0.047 ). The coefficient of gene differentiation among populations is low (Fst =0.032), indicating that only 3.2 % of the total genetic diversity comes from inter-population, while the remaining 96.8 % comes from intra-population differences.The genetic distance among populations is 0.000~0.008 (the average is 0.002). Gene flow among the populations is large (Nm= 7.56).Genetic structure is very similar among 6 Scylla serrata populations. 相似文献
65.
棘皮动物再生研究进展 总被引:1,自引:0,他引:1
棘皮动物具有极强的再生能力,在进化上和发育上与脊椎动物具有许多相似性,是在器官、组织、细胞和分子水平上研究后口动物再生过程与再生机理的理想模式动物。本文综合该领域的研究现状并结合作者的研究成果,对棘皮动物再生的研究进展进行综述。 相似文献
66.
浙江省近岸海域底栖生物生态研究 总被引:5,自引:1,他引:5
对2003年4~5月在浙江省近岸海域底栖生物调查中获得的126种底栖生物的种类组成、生物量及栖息密度的分布和群落结构进行了叙述和讨论。结果表明:底栖生物种类组成以甲壳动物及软体动物占优势,两者占生物总种数的51.6%;浙江近岸海域底栖生物总平均生物量为18.74 g/m2;总平均栖息密度为89.1个/m2。按生态特征划分,调查海域的底栖生物可分成7个群落。分析调查海域各测站群落结构指数可以看出,浙江近岸海域70%测站呈现出生物多样性指数低及种类分布不均匀等特点。 相似文献
67.
栉孔扇贝(Chlamys farreri)自然群体遗传多样性的RAPD分析 总被引:7,自引:0,他引:7
利用RAPD技术对栉孔扇贝(Chlamysfarreri)的四个自然群体(大连、烟台、青岛、韩国)的遗传多样性进行了分析。12个随机引物在四个群体中共检测到123个位点,其中多态位点109个,多态位点比例为88.62%;四个群体中均未检测到各群体特有的扩增带。韩国、烟台、大连、青岛四个群体的遗传多样性指数(Shannon指数)分别为0.2557、0.2557、0.2344和0.2249,以韩国和烟台群体遗传多样性较高,其次为大连群体,青岛群体最低,但它们之间无明显差异。不同群体的遗传多样性指数的平均数Hpop为0.2427,整个栉孔扇贝自然群体的遗传多样性指数Hsp为0.2503。遗传多样性剖分显示,绝大多数(97%)的遗传多样性是由群体内不同个体间的差异造成的,只有很小部分(3%)的遗传多样性与群体间的遗传分化有关。而采用基于单倍型(等位基因)之间的进化距离的AMOVA分析得到的这两个数据则分别为99%和1%,Φ值为0.010,且P=0.05,表明群体间遗传分化明显程度位于临界值。 相似文献
68.
Abstract. The distribution of Ibla cumingi DARWIN on different types of hard substrata along 30 km of coast in the Gulf of Elat was studied. I. cumingi was found among and underneath Tetraclita squamosa rufotincta , in oyster beds, underneath slabs of beachrock, and in fissures in igneous rocks. In the Tetraclita belt, I. cumingi is most frequent in empty shells of dead Tetraclita while in the oyster bed it is common inside the meshwork made by the oysters. The distribution is regarded as clustered distribution. The density and size of the clusters of I. cumingi is determined by the available sheltered space within the midlittoral zone. The form of the habitat determines the shape of the animals. Those found in the oyster bed and fissures are usually longer than those found in the Tetraclita belt due to the depth of the fissures or to the bigger spaces within the oyster bed. I. cumingi is orientated so that the capitulum with the cirri is projecting towards the open water, and the water current. It is concluded that I. cumingi can withstand the physical stress encountered in a tropical intertidal zone, but that the distribution pattern is caused by predation. 相似文献
69.
Two processes are generally explained as causes of temporal changes in the stoichiometric silicon/nitrogen (Si/N) ratios of
sinking particles and of nutrient consumption in the surface water during the spring diatom bloom: (1) physiological changes
of diatom under the stress of photosynthesis of diatom and (2) differences of regeneration between silicon and nitrogen. We
investigated which process plays an important role in these changes using a one-dimensional ecosystem model that explicitly
represents diatom and the other non-silicious phytoplankton. The model was applied to station A7 (41°30′ N, 145°30′ E) in
the western North Pacific, where diatom regularly blooms in spring. Model simulations show that the Si/N ratios of the flux
exported by the sinking particles at 100 m depth and of nutrient consumptions in the upper 100 m surface water have their
maxima at the end of the spring diatom bloom, the values and timings of which are significantly different from each other.
Analyses of the model results show that the differences of regeneration between silicon and nitrogen mainly cause the temporal
changes of the Si/N ratios. On the other hand, the physiological changes of diatoms under stress can hardly cause these temporal
changes, because the effect of the change in the diatom's uptake ratio of silicon to nitrogen is cancelled by that in its
sinking rate. 相似文献
70.