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21.
Franzen C Fischer S Schroeder J Schölmerich J Schneuwly S 《The Journal of eukaryotic microbiology》2005,52(2):141-152
A new species of microsporidia from Drosophila melanogaster was investigated by light and electron microscopy and by ribosomal RNA (rRNA) sequencing. This microsporidium and the previously described Nosema kingi and Nosema acridophagus have been transferred to the new genus Tubulinosema gen. nov. with the following characters: nuclei are in diplokaryotic arrangement during the life cycle. All stages are in direct contact with the host cell cytoplasm, slightly anisofilar polar tube with the last coils being smaller in diameter arranged in one or two rows on both sides of the diplokaryon and small tubuli on the surface of late meronts. Spores are oval or slightly pyriform. Thick endospore wall, thinner over anchoring disc. This new genus and the genus Brachiola have been placed in a new family Tubulinosematidae fam. nov. Phylogenetic analysis of small subunit rRNA sequences by different methods placed Tubulinosema spp. in one clade with the genus Brachiola forming its sister clade, which is distant from the clade containing the true Nosema spp. including Nosema bombycis. 相似文献
22.
九种蟋蟀mtDNA-16S rRNA基因序列及其系统进化(直翅目:蟋蟀科) 总被引:1,自引:2,他引:1
蟋蟀科5属9个种的线粒体16S rRNA基因部分序列被测定或从Gen Bank获得,比较其同源性,计算核苷酸使用频率,并构建NJ和MP分子系统树。在获得的449bp的序列中A、T、C和G碱基含量分别为31.8%、36.9%、9.9%和21.4%,A T平均含量为68.7%。研究结果表明:所研究的5属9种蟋蟀聚成3个聚类簇,斗蟋属先与灶蟋属汇合,再与棺头蟋属构成聚类簇Ⅰ;油葫芦属黑脸油葫芦和北京油葫芦与蟋蟀属的家蟋相聚构成聚类簇Ⅱ;蟋蟀属的田蟋单独构成聚类簇Ⅲ。 相似文献
23.
Shu-Miaw Chaw Huei Long Bin-Shin Wang Andrey Zharkikh Wen-Hsiung Lie 《Journal of molecular evolution》1993,37(6):624-630
The evolutionary position of the yew family, Taxaceae, has been very controversial. Some plant taxonomists strongly advocate excluding Taxaceae from the conifer order and raising its taxonomic status to a new order or even class because of its absence of seed cones, contrary to the case in the majority of conifers. However, other authors believe that the Taxaceae are not fundamentally different from the rest of the conifers except in that they possess the most reduced solitary-ovule cones. To resolve the controversy, we have sequenced the 18S rRNA genes from representative gymnosperms: Taxus mairei (Taxaceae), Podocarpus nakaii (Podocarpaceae), Pinus luchuensis (Pinaceae), and Ginkgo biloba (Ginkgoales). Our phylogenetic analysis of the new sequence data with the published 18S rRNA sequence of Zamia pumila (a cycad) as an outgroup strongly indicates that Taxus, Pinus, and Podocarpus form a monophyletic group with the exclusion of Ginkgo and that Taxus is more closely related to Pinus than to Podocarpus. Therefore, Taxaceae should be classified as a family of Coniferales. Our finding that Taxaceae, Pinaceae, and Podocarpaceae form a clade contradicts both the view that the uniovulate seed of Taxaceae is a primitive character and the view that the Taxaceae are descendants of the Podocarpaceae. Rather, the uniovulate seed of Taxaceae and that of some species of Podocarpus appear to have different origins, probably all reduced from multiovulate cones.
Correspondence to: W.-H. Li 相似文献
24.
Species of Borrelia distinguished by restriction site polymorphisms in 16S rRNA genes 总被引:2,自引:0,他引:2
David Ralph Daniele Postic Guy Baranton Charles Pretzman Michael McClelland 《FEMS microbiology letters》1993,111(2-3):239-243
Abstract Three phyletic groups of Borrelia associated with Lyme disease, B. burgdorferi, B. garinii and group VS461 can be distinguished from each other and other species of Borrelia by Bfa I restriction site polymorphisms in PCR amplified 16S rRNA genes. One strain isolated from an Ixodes pacificus tick in California that was previously unclassifiable was distinguishable from B. burgdorferi by an Mnl I restriction site polymorphism. 相似文献
25.
26.
For phylogenetic analysis of the higher fungi, we sequenced the nuclear small subunit rRNA (18S rRNA) gene fromTaphrina populina, the type species of the genusTaphrina, andProtomyces lactucae-debilis. The molecular phylogeny inferred from these 2 sequences and 75 sequences from the DNA data bank divided the Ascomycota into three major lineages: the hemiascomycetes, the euascomycetes, and the archiascomycetes, newly described herein. The former two lineages are monophyletic, whereas the archiascomycetes, which originated first and are comprised ofTaphrina, Protomyces, Saitoella, Schizosaccharomyces, andPneumocystis, may not be monophyletic. Among the archiascomycetes, theTaphrina/Protomyces branch is monophyletic. Confirmation of the archiascomycetes as a monophyletic taxonomic class will require comparison of additional genetically defined characters.This work was supported in part by grants 05454030 from the Ministry of Education, Science, and Culture of Japan (to J. S.) and 4369 from the Japan Society for the Promotion of Science Fellowship Programs (to H. N.). 相似文献
27.
28.
广东金山温泉沉积物中原核与真核微生物多样性初步分析 总被引:2,自引:0,他引:2
[目的]本研究旨在采用不同的PCR引物对广东省恩平市金山温泉的高温水底沉积物微生物多样性进行初步的分析.[方法]采用改进的玻璃珠法抽提温泉沉积物中环境基因组DNA,通过对用4对引物分别扩增得到的原核微生物16S rRNA基因和真核微生物ITS序列的分析,将所得到的数据与国际基因数据库GenBank进行相似性比较并构建系统发育树.[结果]研究发现原核类群G的 14个优势克隆中7个都属于蛭弧菌属(Bdellovibrio).与它们最相似的序列是从海洋中分离到的两个菌株 Bacteriovorax sp. NE1 (EF092445)和Bdellovibrio sp. JS5 (AF084859),相似性分别为96%和99%.原核类群X的4个序列主要属于蓝细菌类群,其中JS-X2与在美国黄石公园温泉发现的Uncultured Cyanobacterium (L35331)有95%的相似性,并且与已经全基因组测序的嗜热蓝细菌聚球藻Thermosynechococcus elongatus BP-1 (47118315)有89%的相似性.真核类群Z有三个类群,分别是Penicillium sp.,Lodderomyces sp.和Gloeotinia sp..其中大部分序列与青霉属相似性在88%~ 90%之间.[结论]所得到的结果显示金山温泉中的微生物多样性十分丰富. 相似文献
29.
从江西德兴分离得到一株嗜酸硫氧化杆菌DX-2,采用双层固体培养基进行分离纯化,对分离菌株进行了形态、生理生化特性研究及16SrRNA序列分析.该菌株为革兰氏阴性细菌,短杆状,菌体大小(0.4~0.5)μm×(1~2)μm,化能自养,可利用硫磺和硫代硫酸盐为能源生长,不能利用亚铁进行生长.以16SrRNA序列同源性为基础构建了相关种属在内的系统发育树,结果表明,DX-2与喜温硫杆菌(Acidithiobacillus caldus)处于同一进化树分支中,相似性达99%以上.考察了不同重金属离子对DX-2的生长的影响. 相似文献
30.
Weekers PH Murugan G Vanfleteren JR Belk D Dumont HJ 《Molecular phylogenetics and evolution》2002,25(3):535-544
The nuclear small subunit ribosomal DNA (18S rDNA) of 27 anostracans (Branchiopoda: Anostraca) belonging to 14 genera and eight out of nine traditionally recognized families has been sequenced and used for phylogenetic analysis. The 18S rDNA phylogeny shows that the anostracans are monophyletic. The taxa under examination form two clades of subordinal level and eight clades of family level. Two families the Polyartemiidae and Linderiellidae are suppressed and merged with the Chirocephalidae, of which together they form a subfamily. In contrast, the Parartemiinae are removed from the Branchipodidae, raised to family level (Parartemiidae) and cluster as a sister group to the Artemiidae in a clade defined here as the Artemiina (new suborder). A number of morphological traits support this new suborder. The Branchipodidae are separated into two families, the Branchipodidae and Tanymastigidae (new family). The relationship between Dendrocephalus and Thamnocephalus requires further study and needs the addition of Branchinella sequences to decide whether the Thamnocephalidae are monophyletic. Surprisingly, Polyartemiella hazeni and Polyartemia forcipata ("Family" Polyartemiidae), with 17 and 19 thoracic segments and pairs of trunk limb as opposed to all other anostracans with only 11 pairs, do not cluster but are separated by Linderiella santarosae ("Family" Linderiellidae), which has 11 pairs of trunk limbs. All appear to be part of the Chirocephalidae and share one morphological character: double pre-epipodites on at least part of their legs. That Linderiella is part of the Polyartemiinae suggests that multiplication of the number of limbs occurred once, but was lost again in Linderiella. Within Chirocephalidae, we found two further clades, the Eubranchipus-Pristicephalus clade and the Chirocephalus clade. Pristicephalus is reinstated as a genus. 相似文献