77 resultados para Sinolingularia gen. nov


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本文综述了放线菌分类学研究的目的和作用,分析了放线菌分类学的历史和现状,介绍了当前放线菌多相分类研究中所采用的技术方法及适用范围。同时还重点介绍了极端高温、低温、高盐放线菌分离及分类研究的进展。从云南采集高温温泉水样、火山口土样,从云南、新疆等地采集雪山土样,从新疆、青海等地采集盐碱土样进行放线菌分离,对不同极端环境下的放线菌分离方法进行探讨,并对分离到的部分典型放线菌菌株采用形态特征、培养特征,生理生化测定,细胞化学组份分析,DNA G+C mol%和DNA同源性测定,以及16SrDNA全序列分析等相结合的多相分类技术进行系统的分类研究。从表型、基因型及系统发育三个不同层次对其分类地位进行了最终确定。其中,分离自云南洱源温泉的菌株YIM60013和腾冲火山口的菌株YIM60032分别确定为高温放线菌属的两个新种:白色高温放线菌(Thermoactznomyces albus sp. nov.)和云南高温放线菌(Termoactomyces yunnanensis sp. nov.);分离自新疆北疆地区的一株低温放线菌菌株,结合其形态特征、细胞化学组份及16S rDNA序列分析将其鉴定为链霉菌的一个新种,北疆链霉菌(Streptomyces beijiangensis sp. nov.);来自新疆盐碱土样的6株嗜盐放线菌菌株YIM90001-90006中,菌株YIM90001被命名为嗜盐普氏菌新种(Prauserella halophila sp. nov.),菌株YIM90005被 命名为脱卤普氏菌新种(Prauserella dehalogenans sp. nov.),菌株YIM90002和YIM90003鉴定为拟诺卡氏菌科中的链单抱菌新属Streptomonospora gen. nov.)和它的两个新种:菌株YIM90002定为盐生链单抱菌新种(Streptomonospora saline sp. nov.),菌株YIM90003定为白色链单抱菌新种(Streptomonospora alba sp. nov.);菌株YIM90004和YIM90006分别被确定为拟诺卡氏菌属的一个新种和一个亚种:新疆拟诺卡氏菌新种(Nocardopsi sxiniangensis sp. nov.)和嗜阿拉伯糖新疆拟诺卡氏菌亚种( Noocardiopsi sxiniangensis subsp.arabicus subsp.nov,)。

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本文综述了放线菌分类学研究的意义和进展,分析了放线菌分类学研究特点及发展趋势;同时综述了嗜盐、嗜碱放线菌的研究进展,分析了嗜盐和嗜碱放线菌研究的重要性和意义。通过对采自渤海沿岸盐场、青海盐湖、张北盐湖、曲周、保定等地盐碱和高盐的样品进行嗜盐和嗜碱放线菌的分离,建立了适于嗜盐和嗜碱放线菌的分离培养条件;找到了广适性的嗜盐放线菌培养用培养基;发现了嗜盐放线菌多数耐碱的规律。采用形态培养特征、生理生化测定、细胞化学组分分析、DNA G+C mol%测定以及DNA同源性分析和165 rDNA序列为基础的系统发育分析等相结合的多相分类技术对分离得到的部分典型菌株系统地进行了分类研究,从表型、基因型和系统发育三个层次对其分类地位进行了确定。本研究发现嗜盐放线菌新属新种1个,为波状盐场放线菌新属新种(Actinoosalterria undulata gen.nov.sp.nov),嗜盐放线菌新种4个,分别是:沧州拟诺卡氏菌(Nocardiopsl's cangzhouensis sp.nov.)、塘沽拟诺卡氏菌(Nocardiopsis tangguensis sp.nov)、茶卡拟诺卡氏菌(NocardioPs沽chakaensis)和盐场链霉菌(Streptomyces salinarum sP.nov.);发现嗜碱放线菌新种2个,分别是;布尔津拟诺卡氏菌(NocardioPsis buerjinensis sp.nov.)和城墙拟诺卡氏菌(Nocardiopsis rampartis sp.nov.);另有2株嗜碱放线菌鉴定为达松维尔拟诺卡氏菌,2株嗜碱放线菌鉴定为产气味拟诺卡氏。论文研究中还初步建立了放线菌磷酸类脂高效液相色谱测定的方法与测定条件。

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对隆肛蛙属的物种构成进行了订正,建立新属肛刺蛙属Yerana gen. nov.;订正后的隆肛蛙属现仅隶2种, 即隆肛蛙F. quadrana和太行隆肛蛙F. taihangnicus。运用形态学分析探讨了隆肛蛙属物种及种群的形态差异和分类关系,通过分子系统学研究探讨了隆肛蛙属物种及种群的分类和系统发育关系,运用动物地理学方法结合系统发育关系探讨了隆肛蛙属种群的地理分布格局成因与历史过程。主要结果和推论如下: 1.隆肛蛙属物种构成的订正及一新属建立 建立新属肛刺蛙属,将隆肛蛙属中的原叶氏隆肛蛙F. yei归隶新属肛刺蛙属并更名为叶氏肛刺蛙Y. yei,,新属建立的主要依据为:(1)雄性肛部隆起,肛孔下方有两个布满黑刺的大的白色球形隆起,具单咽下内声囊, 第一指具婚刺;(2)形态量度分析表明叶氏肛刺蛙与隆肛蛙和太行隆肛蛙的形态差异远大于后两者之间的差异;(3)叶氏肛刺蛙的分布区与隆肛蛙和太行隆肛蛙的分布区距离较远且呈隔离状态;(4)分子系统学研究资料(Jiang et al.,2005)证明叶氏肛刺蛙与隆肛蛙和太行隆肛蛙非单系发生;叶氏肛刺蛙在第二支中位于基部。因此,隆肛蛙属现仅隶2种,即隆肛蛙和太行隆肛蛙。 2.隆肛蛙属种群形态学研究 对隆肛蛙属中隆肛蛙和太行隆肛蛙的15个地理种群565只标本的28项形态性状进行了测量,运用典型判别分析法对其分析的结果表明:(1)太行隆肛蛙与隆肛蛙形态差异明显,支持其为不同的物种;(2)原隆肛蛙河南伏牛山种群和山西中条山种群应为太行隆肛蛙的地理种群;(3)隆肛蛙不同地理种群之间形态差异明显,其中四川安县种群、陕西周至种群和湖北利川种群与模式产地重庆巫山种群的差异可能达到了亚种或亚种以上分化水平。对隆肛蛙属量度分析的15个种群进行定性形态分析表明其分为三种形态型,对应隆肛蛙、过渡型和太行隆肛蛙,其变异特征主要为内跗褶、雄性肛部隆起及疣粒分布、第五趾外侧缘膜等,这与量度分析结果相似。 3.隆肛蛙属种群分子系统学研究 测定隆肛蛙属Feirana的2种19种群的线粒体12S rRNA和16S rRNA基因片段、ND2基因的DNA序列,比对后共计1953bps。(1)遗传多样性与距离分析:结果表明,隆肛蛙属种群具很高的遗传多样性,19个种群样品表现出19种单倍型(遗传多样性指数Hd=1.0); ND2基因的进化信息含量远高于12SrRNA和16SrRNA。隆肛蛙属2种群组内的种群间的遗传距离远小于两种群组间的距离,种群在不同基因上的遗传距离表现的关系与对应的系统树一致。(2)系统发育关系分析:结果表明,不同基因片断基于不同方法构建的隆肛蛙属种群系统发育树结构基本一致,基本表明隆肛蛙属种群为单系发生;它们在系统树中分为两大支,分别对应于隆肛蛙和太行隆肛蛙;支持中条山种群(沁水、历山和济源种群)和伏牛山种群(栾川和内乡种群)为太行隆肛蛙的地理种群,而原隆肛蛙秦岭中东段的部分种群(柞水、宁陕、长安大坝沟种群)也应为太行隆肛蛙的地理种群。(3)亚种分化分析:根据遗传距离分析和系统发育关系分析结果,并考虑形态上的差异情况以及地理分布信息,隆肛蛙所隶种群组可分为2亚种,即隆肛蛙指名亚种F. quadrana quadrana包括四川盆地东缘大巴山东段-巫山-武陵山北麓种群和秦岭中段(周至板房子和长安广货街)种群,他们在系统关系树上聚为一支;安县亚种F. quadrana anxianensis包括四川盆地西缘岷山东麓-龙门山-大巴山和秦岭西段的种群(安县、青川、文县、南江和凤县种群),他们在系统关系树上聚为一支。太行隆肛蛙所隶种群组也可分为2亚种,即太行隆肛蛙指名亚种F. taihangnicus taihangnicus包括中条山的种群(沁水、历山和济源种群)和中东秦岭的部分种群(柞水、长安大坝沟和宁陕种群),他们在系统关系树上聚为一支;太行隆肛蛙伏牛亚种F. taihangnicus funiuensis,为伏牛山地区的种群(栾川和内乡种群),他们在系统关系树上聚为一支。 4.隆肛蛙属种群动物地理学研究 隆肛蛙属19种群的分歧年代分析: 以长江巫山段和黄河三门峡段的形成历史时期为参考点,根据已测隆肛蛙属19种群及其外群包括N. pleski、P. yunnanesis、P. robertingeri、F. limnocharis的1953bps DNA序列构建分子钟,获得各支系的分歧年代。结果表明:①棘蛙族在70Ma左右开始其独立演化历程,这与Roelants et al.(2004)的分析结果~60±15Ma左右开始分化基本一致,后者印证了本文的分子钟。②隆肛蛙属的起始分化年代较早,隆肛蛙和太行隆肛蛙两种群组的最近祖先种群大概在46Ma~50Ma左右;隆肛蛙和太行隆肛蛙种群组内的种群分化年代相对两种群组间晚得多, 隆肛蛙种群组内两亚种分化起始年代约为10Ma左右,而太行隆肛蛙种群组内两亚种分化起始年代约为6Ma。 隆肛蛙属种群分布格局形成过程分析: ①隆肛蛙属的系统关系与地理分布格局密切相关,大部分系统分支分级与地理距离成正比;②隆肛蛙属最近祖先种群的分化中心可能位于秦岭中部地区, 隆肛蛙属的种群分布格局的形成表现为隔离分化与扩散相结合的机制,由隔离分化产生的隆肛蛙祖先种群主要从秦岭中部向西南方向扩散,后隔离分化为两亚种;太行隆肛蛙祖先种群向东北方向扩散也分化为两亚种。 隆肛蛙属种群分布区域地质历史的探讨:本文所建分子钟和种群分化方式印证了该区域的几次主要地质事件,包括岷山-龙门山-西秦岭等地区的快速差异隆起、第四纪冰期等。 The specific composition of the genus Feirana should be revised. A new genus Yerana gen. nov.(Ranidae:Dicroglossinae)was established based on morphological data-set and molecular phylogeny, as a result, only two species F. quadrana and F. taihangnicus are classified into Feirana now. Morphological differences and taxonomy of populations of Feirana were investigated based on morphological and morphometric data; phylogenetic relationships and taxonomy of populations of Feirana were elucidated using molecular data, and then the proceeding of the distribution pattern of populations of Feirana were discussed. The main results and conclusions and proposals were presented as following: 1. Revising of the specific composition of the genus Feirana and establishment of a new genus The new genus Yerana, only containing the type species Y. yei, was established based on the following evidences: (1) In adult male, distinct up-heaved circular vesicle presents around the anal, and under anal there are two white balls on which black spines exist, black horny spines scatter on the upper side of first finger, and internal single subgular vocal sac presents; (2) there is obvious morphometric differences between Yerana and Feirana; (3) Yerana is distributed far from Feirana; (4) evidences of molecular phylogeny(Jiang et al.,2005)suggested that Yerana take a special phylogenetic clade which is different from other genus included in the tribe Paini. As a result, there are only two species in Feirana, i.e., F. quadrana and F. taihangnicus. 2. Morphological research of populations of Feirana Twenty-eight characters of 565 individuals of 15 populations of the genus Feirana were measured, the results of Canonical Discriminant analysis of the morphometric data-set indicated that: (1) there are very prominent differences between the two species F. quadrana and F. taihangnicus. The validity of species F. taihangnicus was approved here; (2) Mt. Funiu population and Mt. Zhongtiao population should belong to the species F. taihangnicus; (3) Obvious differences exist among 12 populations of F. quadrana, the differentiation among Zhouzhi population, Anxian population, Lichuan population, and Wushan population together with the others probably reach sub-specific or specific level. Result of morphological comparison between 15 different populations show that 3 morphological types are recogenized in according with F. quadrana, F. taihangnicus and intergradation, this result conform to the result of morphometric analysis. 3. Molecular phylogenetic study on populaions of Feirana Fragment of 12SrRNA and 16SrRNA genes, and ND2 gene of 19 populations of two species of Feirana were sequenced and aligned, from which 1953 bps were received. (1) analyses of genetic distance and hereditary diversity indicated that: genetic distance between populations in each group were less than distance between two groups of Feirana, 19 haplotypes were recognized from 19 samples of 19 populations, so the hereditary diversity of populations of Feirana was very high (Hd=1.0), phylogenetic information in ND2 gene is more than fragment sequence of 12SrRNA and 16SrRNA genes. (2) Result of molecular phylogeny indicate that the phylogenetic trees constructed using different methods based on different sequence data sets showed the revised genus Feirana is monophyletic since the 19 populations of Feirana were firstly clustered together as one large clade, which was further clustered into two major clades, corresponding to F. quadrana(GroupⅠ) and F. taihangnicus(GroupⅡ), respectively. So populations of Qinshui and Lishan in Mt. Zhongtiao, populations of Luanchuan and Neixiang in Mt. Funiu, and populations of Zhashui, Dabagou of Chang’an and Ningshan in eastern Mt. Qinling should belong to the species F. taihangnicus; (3) Subspecific differentiation. on the basis of genetic distance, phylogenetic trees and geographical distribution, F. quadrana should have two subspecies, i.e., F. quadrana qudadrana, consisting of the populations Guanghuojie of Chang’an and Zhouzhi in Mid-Mt. Qinling, populations in Wushan area and northern Mt. Wuling (Lichuan), and F. qudadrana anxianensis, consisting of the populations in eastern Mt. Ming shan-Mt. Longmen-western Mt. Daba-western Mt. Qinling (Anxian, Qingchuan, Wenxian, Nanjiang and Fengxian); F. taihangnicus should also has two subspecies, i.e., F. taihangnicus taihangnicus, consisting of the populations in Mt. Zhongtiao and eastern Mt. Qinling, and F. taihangnicus funiuensis, consisting of the populations in Mt. Funiu. 4. Zoogeography of populaions of Feirana Analysis for divergent time of 19 populations of Feirana: Using the dates of run-through of Wushan segment of Changjiang River as the time when the population of Lichuan started differentiated from the populations of Wushan and Shennongjia, and the dates of Sanmenxia segment of Yellow River as the time when the populations in Mt. Zhongtiao started differentiated from the population of Dabagou in Chang’an, molecular clock was established using sequences with 1953 bps of 19 populations of Feirana and outgroup including N. pleski, P. yunnanesis, P. robertingeri, F. limnocharis in order to estimate divergent time of all clades. Result of that indicated that: ① the tribe Paini started to evolve independently at about 70Ma when is in consistent with that estimated by Roelants et al.(2004)with result of about ~60±15Ma, they were corroborated by each other, this confirms the validity of this molecular clock; ② divergent time for speciation of Feriana is early, ancestral populations of F. quadrana and F. taihangnicus were found about 46Ma~50Ma; differentiation of populations within species is greatly late to the divergence of the two species, divergent time for F. quadrana is 10Ma and divergent time for F. taihangnicus is 6Ma. Proceeding of distribution pattern of Feirana. Phylogenetic relationships of populations of Feirana matched quite with distribution pattern of them, the relationships among clades showed in phylogenetic trees is direct ratio to geographical distance of them; the estimated date of speciation between two species of Feirana was as early as speciation of Paa yunnanesis and Nanara pleski; middle part of Mt. Qinling is the center of speciation of Feirana, combination of mult-events of dispersal and vicariance are probably the mechanism of speciation of Feirana, F. quadrana colonized the mid-Mt. Qinling and then differentiated into two subspecies in southwest direction, ancestral population of F. taihangnicus colonized the mid-Mt. Qinling and then differentiated into two subspecies in northeast direction. On geological history of the distribution of Feirana. According to molecular clock and speciation model of populations of Feirana, some geological events are confirmed, including special rise of Mt. Minshan- Mt. Longmen-western Mt. Qinling, glacial age.

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海洋污损苔虫(marine fouling bryozoans或bryozoan foulers)是海洋污损生物群落的一个重要组成部分。在海洋污损动物中,海洋污损苔虫是仅次于软体动物和甲壳动物的主要污损生物。海洋污损苔虫有独特的群体生长方式,既有能利用表面积宽阔的附着基形成单层片状、多层结核状或丘状群体的成员;也有能利用表面积狭窄的附着基形成树枝状、树丛状或中空管状群体的成员;某些污损苔虫还能随附着基表面积的改变而改变其群体生长方式,即同一种污损苔虫在表面积宽阔的附着基上形成片状被覆群体,而在表面积狭窄的附着基上或空间竞争激烈的环境中则形成被覆和直立两种生长方式式兼有的被覆-直立群体。随着海水养殖事业的发展,各种养殖生物尤其是养殖贝类及其养殖笼网的投入为海洋污损生物提供了极其丰富的附着基。而与其它污损生物相比污损苔虫更能充分利用养殖贝类及其养殖笼网作为附着基,从而成为养殖贝类及其养殖笼网污损生物群落的优势类群,给贝类养殖业带来极大危害。近年来对养殖贝类污损苔虫的研究已开始受到人们的重视,但由于污损苔虫的调查一直是与其它污损生物调查同时进行的,污损生物学家在对污损苔虫的分类鉴定中面临着许多困难。作者对中国科学院海洋研究所历年来所收集的中国沿岸水域养殖贝类及其养殖笼网的污损苔虫标本进行了系统的分类研究,并对中国学者曾报道过的中国沿岸水域工污损苔虫进行了对比分析,得到的结果如下:1.中国沿岸水域养殖贝类及其养殖笼网的污损苔虫现有143种,分隶于2纲3目9亚目46科76属。其中养殖贝类的污损苔虫122种,分隶于44科68属;养殖笼网的污损苔虫90种,分隶于37科53属。养殖贝类和养殖笼网两类物体上的污损苔虫科属组成几乎相同,主要优势种组成几乎相同,膜孔苔虫Membranipora、琥珀苔虫Electra、草苔虫 Bugula、三胞苔虫 Tricellaria、软苔虫 Alcyonidium、隐槽苔虫 Cryptosula、血苔虫 Watersipora 拟分胞苔虫Celleporaria、和仿分胞苔虫 Celleporina等属的成员常形成污损苔虫生物群落的优势类群。2.本项研究中,我们发现一新科、一新属和7新种。新科为:太平洋苔虫科,新科Pacificincolidae fam. nov.。新属为:太平洋苔虫属,新属Pacificincola gen. nov.。7个新种分别为:(1)空穴拟小孔苔虫,新种Microporella vacuatus sp. nov.;(2)小筛网拟小孔苔虫,新种 Microporella cribellata sp. nov.;(3)无齿拟小孔苔虫,新种 Microporella inermis sp. nov.;(4)异北方拟小孔苔虫,新种 Microporella antiborealis sp. nov.;(5)项链拟小孔苔虫,新种 Microporella monilifera sp. nov.;(6)中华斑孔苔虫,新种 Fenestrulina sinica sp. nov.;(7)东方斑孔苔虫,新种 Fenestrulina orientalis sp. nov.。3. 笔者发现,本项研究以前其他中国学者所报道的污损苔虫在分类鉴定中存在许多异物同名和同物异名现象。例如,过去许多学者所报道的大室膜孔苔虫实际上包括3个不同的独立种;而过去一直被标定为聚合软苔虫的污损苔虫经鉴定为迈氏软苔虫。笔者对在本项研究以前的污损调查报告中所出现的污损苔虫的分类鉴定错误进行了适当的更正,并在系统分类研究的基础上编制了中国沿岸水域养殖贝类及其养殖笼网143种污损苔虫的分类检索表。

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This paper reports a new genus i.e. Parapachyacris gen. nov and a new species Parapachyacris taiwanensis sp. nov in Cyrtacathacridinae. The new genus is similar to Pachyacris Uvarov, 1923 and differs from the latter in: 1) foveolae lacking; 2) hind tibiae with 10 spines on inner side and 8 spines on outer side; 3) basal part of prostemal process thickened; 4) cross veins right angled with longitudinal veins in apical part of tegmina and 5) the back of body with yellow longitudinal stripe in middle. The new genus is also similar to Patanga Uvarov, 1923 and differs from the latter in: 1) foveolae lacking; 2) basal part of prostemal process thickened; 3) upper side of hind femora with three dark bands and 4) black spots of tegmina lacking. Type specimen is deposited in the National Museum of Natural Science (NMNH), Taichung, Taiwan, China.

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The morphology and infraciliature of a new ciliate, Metastrongylidium distichum, isolated from the Yellow Sea, are investigated using live observation and protargol impregnation. Metastrongylidium distichum is about 170 x 40 pm in vivo, clavate to elongate ellipsoidal with bluntly pointed posterior end, and has two macronuclear nodules, six distinctly large buccal and frontal cirri, three dorsal kineties and two each of spiralled ventral and marginal cirral rows. These features indicate a generic allocation in Strongylidium Sterki, 1878. However, the new ciliate has a distinct feature not recognizable in Strongylidiurn, viz., the presence of (three or four) transverse cirri. Thus, we propose a new genus Metastrongylidium for the new species, M distichum nov. gen., n. sp. Metastrongylidium belongs to the family Spirofilidae, where it differs from Mucotrichidium by the lack of postperistomial cirrus and the different frontal and ventral cirral pattern. Metastrongylidium distichum is easily distinguishable from the seemingly similar species Strongylidium californicum Kahl, 1932 by the macronuclear pattern (invariably 2 vs. many nodules). It highly resembles the poorly known species S. contortum (Gelei 1954) Borror, 1972 in the body outline and nuclear pattern, differing in the biotope, the posterior cirral pattern, and the arrangement of right marginal row.