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181.
禁牧条件下不同类型草地群落结构特征   总被引:2,自引:0,他引:2  
利用幂乘方法则模型探讨了鄂尔多斯3种不同类型草地在禁牧情况下的群落结构特征,包括物种组成、物种多样性、生物量和空间分布规律。结果表明:幂乘方法则在解析鄂尔多斯不同类型草地的空间异质性时具有很好的吻合性;羊草(Leymuschinensis)草地、芨芨草(Achnatherum splendens)草地和油蒿(Artemisia ordosica)灌丛草地均比随机分布呈现了较强的空间异质性,群落整体的空间异质性指数表现为油蒿灌丛草地>羊草草地>芨芨草草地;群落整体的物种多样性指数为油蒿灌丛草地>羊草草地>芨芨草草地;L-样方(50cm×50cm)内的平均物种数和物种多样性指数均表现为羊草草地极显著地高于油蒿灌丛草地,油蒿灌丛草地又极显著地高于芨芨草草地(P<0.001);L-样方内的平均生物量表现为油蒿灌丛草地极显著地高于芨芨草草地(P<0.001),而羊草草地与油蒿灌丛草地以及芨芨草草地之间没有显著性差异;这3种类型的草地其L-样方内的平均生物量和物种多样性指数都随着群落整体空间异质性指数的增大而增大。  相似文献   
182.
胜利河连续系统中蜉蝣优势种的生产量动态和营养基础   总被引:1,自引:0,他引:1  
大型底栖动物在河流生态系统中发挥着重要作用, 2009 年3月至2010 年3月间对长江中游支流巴河流域的胜利河大型底栖动物群落优势种类的生产力进行为期1 周年的调查研究, 结果表明, 主要蜉蝣优势种扁蜉、等蜉和红斑蜉的生活史为3代/年、3代/年和 2代/年。现存量呈现出1-3级河流增加,而4级又较3级有所下降的趋势。采用龄期频率法( instar-frequency method) 测算的平均周年生产量分别为扁蜉, 200.13 g/(m2.a) , P/B 为23.69; 等蜉, 82.06 g/(m2.a), P/B 为18.12;红斑蜉, 12.30 g/(m2.a), P/B 为8.78。三种蜉蝣的生产量动态在时间上与现存量动态较一致,但彼此各不相同。扁蜉的日均产量于2009年3月在二级河流中达到最大(363.56 mg/m2.d),等蜉于2010年3月在三级河流中到达最大(282.76 mg/m2.d),而红斑蜉于2009年3月在一级河流中到达最大(33.36 mg/m2.d)。生产量的营养基础分析结果表明,扁蜉前肠内含物中无形态碎屑、动物组织、植物纤维、丝状藻类、硅藻所占平均比例为74.37%,4.19%,17.11%,4.29%,0.04%,对生产量的贡献率分别为77.15%,11.27%,6.57%,4.95% ,0.04%;等蜉前肠内含物中无形态碎屑、动物组织、植物纤维、真菌、丝状藻类和硅藻所占平均比例为65.64%,6.17%,23.04%,0.54%,4.53%,对生产量的贡献率分别为: 68.16%,16.61%,8.86%,1.03%,5.23%,0.09%,0.10%;红斑蜉前肠内含物中,无形态碎屑、动物组织、植物纤维、真菌、丝状藻类和硅藻所占平均比例为41.14%,5.96%,38.04%,1.34%,11.21%,2.31%,对生产量的贡献率分别为46.67%,17.52%,15.98%,2.81%,14.13%,2.91%。这与我们在黑竹冲和叹气沟的研究结果存在一定差异,可能与这些溪流自身环境和地区分布有关。  相似文献   
183.
乌兰布和沙漠典型灌木群落结构及数量特征   总被引:5,自引:0,他引:5  
灌木群落是乌兰布和沙漠生态系统中最重要的组成部分,根据野外样地的调查资料,从各群落物种组成、生活型谱、盖度特征、物种多样性、群落相似性等方面对乌兰布和沙漠中典型灌木群落结构和数量特征进行分析,为该区生物多样性保护与植物资源持续利用提供理论依据。结果表明:(1)梭梭、白刺、沙冬青、沙蒿、油蒿、盐爪爪是乌兰布和沙漠中主要灌木群落类型;各典型灌木植被群落中仅出现12科47属共计58种植物,各群落间物种组成差异较大,但均以藜科、菊科、禾本科、蒺藜科、豆科等干旱荒漠区的表征科数量居多;(2)沙漠中分布范围最广的梭梭群落、白刺群落、沙冬青群落和油蒿群落其生活型谱均以一年生植物所占比例最大,与研究区干旱的气候特征相吻合;(3)各群落中灌木层植物所占群落盖度的比重均超过了50%,其贡献率大于草本植物;(4)分布于生境条件较好的群落类型其物种多样性相对较高,从整体看各典型灌木群落的H′多样性指数的变化范围在0.98~3.42之间,而D多样性指数的变化范围在0.415 5~0.879 5之间,其物种多样性指数较低,物种组成比较简单;(5)各典型植物群落的相似性系数在0.068 2~0.604 7之间,均未达到极相似水平,其中白刺群落、梭梭群落以及沙冬青群落之间呈轻度相似水平,而其他各群落之间相似性系数均低于0.25,表明各群落间生境差异较大。  相似文献   
184.
不同稻作方式对稻田杂草群落的影响   总被引:4,自引:0,他引:4  
运用半试验与调查相结合的方法,以贵州省从江县传统农业区的糯稻和杂交稻为例,研究了在水稻单作(R)、稻-鱼(R-F)和稻-鱼-鸭(R-F-D)3种不同稻作方式下稻田杂草群落的特征.结果表明:糯稻在3种稻作方式下的抑制杂草能力均优于杂交稻;R-F-D显著降低了田间杂草的发生密度,对鸭舌草、节节菜等的抑制效果达到100%,总体抑制杂草效果显著优于其他稻作方式,杂草的物种丰富度及Shannon多样性指数显著降低,Pielou均匀度指数提高,表明群落物种组成发生了很大的改变,降低了原来优势杂草的发生, 是一种较好的可达到抑制杂草效果的稻作方式.  相似文献   
185.
Biological invasions are an increasing global challenge, for which single-species studies and analyses focused on testing single hypotheses of causation in isolation are unlikely to provide much additional insight. Species interact with other species to create communities, which derive from species interactions and from the interactions of species with the scale specific elements of the landscape that provide suitable habitat and exploitable resources. I used logistic regression analysis to sort among potential intrinsic, community and landscape variables that theoretically influence introduction success. I utilized the avian fauna of the Everglades of South Florida, and the variables body mass, distance to nearest neighbor (in terms of body mass), year of introduction, presence of congeners, guild membership, continent of origin, distribution in a body mass aggregation or gap, and distance to body-mass aggregation edge (in terms of body mass). Two variables were significant predictors of introduction success. Introduced avian species whose body mass placed them nearer to a body-mass aggregation edge and further from their neighbor were more likely to become successfully established. This suggests that community interactions, and community level phenomena, may be better understood by explicitly incorporating scale.  相似文献   
186.
The morphological and molecular differentiation of the Micrasterias truncata (Corda) ex Bréb species complex was investigated. In total, 17 strains traditionally assigned to M. truncata were isolated from different European localities (Czech Republic, southwest France, Ireland), and obtained from public culture collections. In addition, strains of the morphologically similar species, M. decemdentata (Nägeli) W. Archer and M. zeylanica F. E. Fritsch, were also included. Molecular phylogenetic analysis based on trnGucc intron sequences revealed five well supported clades. Two Australian strains assigned to M. truncata var. pusilla G. S. West formed a lineage sister to M. zeylanica. This was evident from a concatenated phylogeny based on small subunit rDNA and trnGucc intron sequences. The isolated position of these strains was also illustrated by parallel landmark‐based geometric morphometric analysis of cell shapes. The strains NIES 783 and NIES 784 probably represent a separate species. Particular analysis, including additional strains, is needed to resolve the relationship inside this lineage. The second phylogenetic lineage, containing two strains of M. truncata var. semiradiata (Kützing) Wolle, was also different from other strains on the basis of morphometric data. We suggest recognizing this variety as a separate species, Micrasterias semiradiata L.A. Brébisson ex F. T. Kützing. The remaining three clades formed a firmly supported group of the ‘core’M. truncata recognized by both molecular markers. However, neither any morphological, morphometric, nor geographical pattern was detected among members of these three clades. This pattern could be caused by a relatively recent origin of these lineages that may represent a sympatric, truly cryptic species. Strains attributable to traditional morphologically defined variety M. truncata var. neodamensis were nested within the ‘core’M. truncata.  相似文献   
187.
Endemism in the Australian flora   总被引:9,自引:1,他引:9  
  相似文献   
188.
Detecting marine invasions can be challenging, especially for lesser-known taxa, and requires (a) thorough field surveys of the region of interest for members of the taxon, (b) systematic analyses to identify all species found, (c) literature searches for the worldwide distribution of these species and for previous records of the taxon in this region, and (d) application of rigorous criteria to assess whether each species found is native or introduced. We carried out these steps in order to detect and document kamptozoan (entoproct) invasions on the American mid-Atlantic coast. We report on the occurrence of two colonial kamptozoans (Barentsia benedeni, Loxosomatoides laevis) in Chesapeake Bay (Maryland and Virginia, USA). On the American Atlantic coast, B. benedeni had previously only been reported from Massachusetts, although this species has a worldwide distribution in bays and harbors. The genus Loxosomatoides had not previously been reported from North America and L. laevis was known only from India. Since the genus Loxosomatoides was very poorly characterized, we briefly review all four of its species, which differ only slightly from each other. We have also synonymized L. japonicum with L. laevis. We did not find any of the kamptozoan species previously recorded in surveys of Chesapeake Bay and the American Atlantic coast. This is the first detailed consideration of anthropogenic influences on kamptozoan distributions, and we emphasize that most kamptozoan species are cryptogenic pending further investigation.  相似文献   
189.
Although Darwin pioneered the study of long‐distance dispersal (LDD) of aquatic invertebrates via waterbirds, it remains in its infancy as a modern discipline. A handful of recent studies have quantified internal or external transport in the field, confirming that a variety of long‐distance migrants carry invertebrates both internally and externally. These studies show that variation in the morphology of vectors influences the frequency and size of propagules transported, and suggest that more invertebrate groups disperse via birds than was previously thought. Dispersal limitation has mainly been investigated for zooplankton in small experimental systems from which waterbirds were effectively excluded, and the extent of such limitation for invertebrate populations in wetlands interconnected by waterbird movements remains unclear. We expect that the spatial and temporal scales at which dispersal limitation constrains geographical ranges, species richness and genetic structure of invertebrates depends partly on the density of migratory birds using the area. Birds may have a major role in the expansion of exotic species. We propose several avenues for future research. There is a particular need for more quantitative studies of LDD by birds that will enable modellers to assess its role in maintaining invertebrate biodiversity among increasingly fragmented wetlands and in the face of climate change, as well as in the spread of invasive species.  相似文献   
190.
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