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网柄细胞状黏菌(简称网柄菌)是黏菌的第二大类群,对其生态特征的研究有助于深入了解这类生物适宜的生存条件和人类活动的影响。本文回顾了1869年至今的网柄菌生态学研究历史,从地理因素、植被因素、生物因素三个角度,探讨了影响网柄菌物种丰度和多度的生态因素,从而为土壤及凋落物中黏菌的物种多样性保护提供参考。 相似文献
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【背景】网柄细胞状黏菌是生物学、细胞学及发生生物学研究中一类重要的模式生物,至今已报道了百余种,但每个种的个体发育过程不是很明晰。【目的】了解网柄细胞状黏菌的个体发育。【方法】对采自云南苍山的土壤样品进行网柄菌的分离、培养和鉴定,并详细记录其个体发育全阶段特征。在传统形态学方法基础上,对样品进行基因组18S测序,并将获得序列在GenBank注册。通过双凹载玻片及水琼脂培养基添加大肠杆菌的培养方法,显微观察样品的发育过程,包括孢子、黏变形体、集群、假原质团、拔顶、孢堆果的发育特征。【结果】分离得到大头网柄菌Dictyostelium macrocephalum;该种温度适应范围较广,是亚热带和热带的广布种;其完成一个生活循环历时3 d,接种20 h后孢子开始萌发释放黏变形体,第50 h形成集群,第56 h假原质团形成,第58 h孢堆原形成,第71 h孢堆果完全成熟。【结论】研究分离的大头网柄菌为云南省新记录种,增加了其在我国亚热带的新分布区;明确了该种的个体发育过程。 相似文献
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采用固相微萃取气相色谱-质谱联用技术,对紫轮柄菌Polysphondylium violaceum和簇生岐柄菌Cavenderia fasciculata子实体的挥发性成分进行分析,从这两种网柄细胞状黏菌中共鉴定出32种挥发性成分,包括烃、醛、吲哚、萜、酮、酯和酚类化合物。其中,紫轮柄菌P. violaceum的挥发性成分有15种化合物,簇生岐柄菌C. fasciculata的挥发性成分有27种化合物,二者共有化合物11种,部分化合物可用于制作香料等,研究结果为网柄细胞状黏菌的进一步应用提供了理论依据。 相似文献
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本文研究了网柄细胞状黏菌中国新记录种硬基网柄菌Dictyostelium firmibasis从孢子-黏变形体-细胞集群-假原质团-成熟孢堆果的无性生活循环过程。结果表明:该种细胞状黏菌孢子萌发至少需要8h,孢子萌发释放出具有不规则形状的黏变形体,黏变形体无色并进行不规则的高速运动;黏变形体细胞集群为典型的辐射状;孢堆果对光极为敏感,在成熟发育期微弱的光刺激便会导致子实体生长畸形或停止生长并死亡;从集群开始形成到孢堆果成熟持续约12-14h,完成一个完整的生活史循环约需36-38h。 相似文献
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《Fungal Biology Reviews》2020,34(4):170-177
Dictyostelid cellular slime molds are a ubiquitous component of most soils, where they feed upon bacteria and other microbes and thus play an essential role in the soil ecosystem. Herein we review the available literature on dictyostelid cellular slime molds in China, especially their diversity and ecology. The patterns of distribution for these organisms in relation to the different habitats with which they are associated are analyzed and discussed. In addition, the assemblages of dictyostelids reported from China and the United States were compared. The CC value obtained (0.48) indicates that China and the United States are perhaps less similar than might be expected. Our data point out the need for further studies to characterize more completely the assemblages of dictyostelids associated with particular vegetation types or particular regions throughout the world. 相似文献
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In late Jan and early Feb 2005 samples for isolation of dictyostelid cellular slime molds (dictyostelids) were collected in five different provinces and from six national parks (all located 39-55°S) in Patagonia and Tierra del Fuego, Argentina. Southern beech (Nothofagus) forests represented the primary vegetation type investigated, but some samples were obtained from Patagonian steppe, alpine meadows, Valdivian temperate rainforests and coniferous forests dominated by Araucaria, Austrocedrus and Fitzroya. Among the dictyostelids isolated from the samples we collected were seven species new to science. These species (Dictyostelium austroandinum, D. chordatum, D. fasciculoideum, D. gargantuum, D. leptosomopsis, D. valdivianum and Polysphondylium patagonicum) are described herein on the basis of both morphology and molecular (SSU rDNA) data. One of the new species, D. gargantuum, is one of the largest representatives of the group reported to date. Another unusual species, D. chordatum, produces long interwoven sorocarps that do not appear to respond to a spacing gas similar to the condition first noted in D. implicatum. 相似文献
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Dictyostelids (cellular slime molds) and myxomycetes (plasmodial slime molds) are two groups of mycetozoans usually present and often abundant in the soil and litter microhabitats of terrestrial ecosystems. Because they utilize the same food resource and occur together in a spatially limited and clearly defined microhabitat, the potential for ecological interactions would seem to exist. However, relatively few previous studies have considered this aspect of mycetozoan ecology. In the present study twenty-eight isolates (8 species) of dictyostelids were co-cultured in all possible pair-wise combinations with fourteen isolates (7 species) of myxomycetes to determine if there were any effects on the production of fruiting bodies. Dictyostelids showed little or no delay in culmination and only random and inconsistent reductions in sorocarp abundance when co-cultured with myxomycetes. In contrast, myxomycetes displayed a number of specific effects. The heterothallic isolates exhibited delays in plasmodial formation and/or maturation, with some pairings showing little to no effect, while others displayed nearly complete inhibition of plasmodial formation or maturation. Apomictic isolates, in general, were much less affected, with only a few combinations displaying significant delays in both formation and maturation of plasmodia. 相似文献
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Dictyostelid cellular slime molds (dictyostelids) associated with grassland ecosystems of the central and western United States were investigated at nine sites that included examples of the three major ecological types of grasslands (tall grass, mixed grass and short grass) generally recognized for the region. Samples of soil/humus collected from each site were examined with the Cavender method of isolating dictyostelids. For each of those six sites with well developed gallery forests present, an additional set of forest soil/humus samples was collected. A more intensive sampling effort was carried out at one site (Konza LTER) to assess the possible effects of burning and grazing on dictyostelid diversity and density. Twelve species of dictyostelids were recovered from grassland sites, whereas gallery forest sites yielded only nine species. Four cosmopolitan species (Dictyostelium giganteum, D. mucoroides, D. sphaerocephalum and Polysphondylium pallidum) were represented by the greatest densities of clones, with D. sphaerocephalum particularly common. The general pattern across all sites was that both species richness and density of dictyostelids decreased with decreasing precipitation. Samples collected from ungrazed grassland plots yielded higher numbers of both species and clones as compared to grazed plots, and the general pattern was for both values to increase as the interval between fires increased. For numbers of clones this correlation was statistically significant. 相似文献
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Distribution and ecology of dictyostelid cellular slime molds in Great Smoky Mountains National Park
Great Smoky Mountains National Park encompasses an area of 2080 km2 in eastern Tennessee and western North Carolina between 35 degrees 28' and 35 degrees 47' N. Elevations are 270-2000 m above sea level, and the topography and vegetation are as diverse as any region of eastern North America. In 1998-2004 soil/litter samples for isolation of dictyostelid cellular slime molds were collected throughout the park. Collecting sites included examples of all major forest types along with the more common types of nonforest vegetation. More than 2300 clones of dictyostelids were recovered from 412 samples. These clones included representatives of 20 described species together with at least 10 species new to science. This total is higher than those reported for other temperate regions of the world. In general both numbers of species and numbers of clones/g of sample material decreased with increasing elevation and several species displayed a distinct preference for either the low or high end of the elevation gradient. The relatively high number of new species recovered from samples collected at high elevations is an important new finding for dictyostelid ecology and distribution. 相似文献
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Hannah Bonsey Suthers 《Oecologia》1985,65(4):526-530
Cosmopolitan species of cellular slime molds occur continents apart in both tropical and temperate zones of the world though the spore masses are too heavy to be wind borne, and water dispersal is limited to the watercourses. A highly mobile distribution vector was found in ground-feeding migratory song birds. Nine ubiquitous species and 2 ecologicially distinct species of dictyostelid cellular slime molds were isolated from the feces of ground-feeding eastern North American migratory thrushes, finches, sparrows and warblers, both on breeding and winter grounds. Three propagules of slime molds, amoebae, spores and macrocysts survive passage through the avian digesive tract and remain in the gut long enough to be transported by major bird migrations. Habitats with the greates species diversity of both cellular slime molds and ground-feeding passerines concur in both eastern North America and Central America. Birds actively seek their prefered habitats; the cellular slime molds have arrived at these habitats as passengers. Rare slime molds can serve as a marker to the habitats that migratory birds have visited, or birds with known habitats can provide clues as to the distribution of rare species of cellular slime molds. 相似文献
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Haruhisa Kikuchi Yuzuru Kubohara Van Hai Nguyen Yasuhiro Katou Yoshiteru Oshima 《Bioorganic & medicinal chemistry》2013,21(15):4628-4633
Cellular slime molds are expected to have the huge potential for producing secondary metabolites including polyketides, and we have studied the diversity of secondary metabolites of cellular slime molds for their potential utilization as new biological resources for natural product chemistry. From the methanol extract of fruiting bodies of Polysphondylium filamentosum, we obtained new chlorinated benzofurans Pf-1 (4) and Pf-2 (5) which display multiple biological activities; these include stalk cell differentiation-inducing activity in the well-studied cellular slime mold, Dictyostelium discoideum, and inhibitory activities on cell proliferation in mammalian cells and gene expression in Drosophila melanogaster. 相似文献
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Eduardo Vadell James C. Cavender John C. Landolt Allison L. Perrigo Pu Liu Steven L. Stephenson 《BMC evolutionary biology》2018,18(1):198