147 resultados para Sclerolobium paniculatum var. rubiginosum


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用细胞色素b(Cyt b)基因特异性引物,对萍乡肉红鲫(Carassius auratus var.pingxiangnensis)的线粒体Cytb基因进行PCR扩增和双向测序。在12个个体中均得到序列一致的Cytb基因全序列,长度为1 140 bp。其A、T、G、C含量分别为28.2%(321)、28.8%(328)、14.8%(170)和28.2%(321),A+T含量(57%)明显高于G+C含量(43%),与其他水生动物相同基因片段碱基含量相似。该基因中密码子第1位核苷酸中4种碱基组成较为均衡;第2

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2004~2006年,对武汉东湖的底栖藻类进行了生态学调查研究。在对底栖硅藻的定性和定量研究中,发现了一种中心纲种类为中国新记录,它具有一些海洋角盘藻科种类的特征,如眼纹斑(Ocellus)等。经鉴定为光滑侧链藻Pleurosira laevis(Ehrenberg) Compere。参考Compere 1982年的研究,我们同意他的看法,即以前在我国台湾发现的台湾多变筒藻Proteucylindrus taiwanensis Li et Chiang和广东发现的Cerataulus laevis var

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在对江汉平原钻孔中属晚更新世地层的化石硅藻进行鉴定时,发现1个新种:Geissleria jianghanensis sp.nov.Li,2个中国新记录属:Geissleria和Aneumast us,6个中国新记录:Cymbella neuquina var.fastigata(Krasske)Krammer,Maidana et Villanueva,Cymbella perfossilis Krammer,Cymbella neocistula Krammer,Cym-bella neocistul

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本文对来自青海省异极藻属和桥弯藻属 (硅藻门 )的三个新变种进行描述 ,它们是 :橄榄异极藻短纹变种(Gomphonemaolivaceum (Lyngbye)Kuetzingvar.brevistriatumLiY .L .etShi,var.nov .) ;十字异极藻矩形变种 (Gom phonemastaurophorum (Pant.)Cleve EulervaroblongumLiY .L .etShi,var.nov)和亚贝桥弯藻具点变种 (CymbellayabeSkvortzowvar.p

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像许多转基因高等生物一样,用显微注射方法研制的转基因鱼均为转植基因嵌合体,培育纯合转基因品系已成为研究者们向往和追求的目标。以澎泽鲫(Carassius auratus,Pengze var.)和黄河鲤(Cyprinus carpio,Huanghe var.)为实验材料,以转基因囊胚细胞核或原肠胚细胞核为供体,进行了细胞核移植.检测了转植基因在所获得的移核胚胎和5尾澎泽鲫移核鱼及1尾黄河鲤移核鱼中的存在状况,分析了用转基因早期胚胎细胞核移植方法研制纯合转基因鱼的可能性。

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江汉平原47号钻孔,位于湖北省江汉平原的江陵县,在其上段的46.6-2.2m层位上,有丰富的化石硅藻,约有26属148种,其中绝大多数是现存的淡水种类,并以附生性、沿岸带和浅水性的种类为主。种类较多的属有:Navicula(28种)、Cymbella(23种)、Achnanthes(15种)、Gomphonema(14种)和Eunotia(13种)。主要种类有Gomphonema tropicale var. nonpunctatum、Cyclotella comta、Cocconeis placemul

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在江汉平原47号钻孔中的46.60—2.20m层位上(上更新统到全新统),含有丰富的化石硅藻,经鉴定有4个新种类,即Cymbella jianghanensis sp.nov.,C.tenuistriata sp.nov.,C.cistula(Hempr.) Grun.var.retcta var.nov.,Gomphonema tropicale Brun var.nonpunctatum var.nov..同时,对一个变种进行了重新命名和特征修改,即Eunotia clevei Grun.var.ob

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<正> 作者在进行四川、云南硅藻分类研究中,发现了星肋小环藻的一新变种,定名为星肋小环藻线纹变种(Cyclotella asterocoaata var.striata),为编写《中国硅藻志》提供资料。星肋小环藻线纹变种(新变种)(图1)。Cyclotella asterocostata var. striata, var. nov. Differt a typo valvis in margine areae centralis striis puncticulosis (22—24 in 10μm)r

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<正> 本文报道的是1981年5—6月在鄂西地区(包括五峰、宜都、宜昌、当阳、兴山及神农架林区)采集到的裸藻门植物5个新种,7个新变种和3个新变型。1.阿洛格裸藻头状变种(新变型) (图1:a—e)Euglena allorgii var.capitata shi, var. nov.

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<正> 本文仅报道属于中心纲硅藻的二新种和一新变种以及对菱形小环藻Cyclotella rhomboideo-elliptica Skuja(1937)特征的补充和修改。 1.罗兹直链藻西藏变种 (新变种) Melosira roeseana var.xizangensis

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本文报道了轮藻科1新种、2新变种及4个中国新记录:不等丽藻 Nitella inaequabilis sP.nov,分叉丽藻齿网变种N.furcata var.dentireticulata var.nov.;普生轮藻等苞变种 Chara vulgaris var.aequibracteata var.nov.;裂顶丽藻 Nitella partita Nordst.;过渡丽藻N.transilis T.F.Allen;布洛丽藻 N.blowiana J.Grove;娇小丽藻 N.pulchella T.

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This study consisted of sampling benthic algae at 32 sites in the Gangqu River, an important upstream tributary of the Yangtze River. Our aims were to characterize the benthic algae communities and relationships with environmental variables. Among the 162 taxa observed, Achnanthes linearis and Achnanthes lanceolata var. elliptica were the dominant species (17.10% and 14.30% of the total relative abundance, respectively). Major gradients and principal patterns of variation within the environmental variables were detected by principal component analysis (PCA). Then non-metric multidimensional scaling (NMS) divided all the sites into three groups, which were validated by multi-response permutation procedures (MRPP). Canonical correspondence analysis (CCA) indicated that three environmental variables (TN, TDS, and TP) significantly affected the distribution of benthic algae. Weighted averaging regression and cross-calibration produced strong models for predicting TN and TDS concentration, which enabled selection of algae taxa as potentially sensitive indicators of certain TN and TDS levels: for TN, Achnanthes lanceolata, Achnanthes lanceolata var. elliptica, and Cymbella ventricosa var. semicircularis; for TDS, Cocconeis placentula, Cymbella alpina var. minuta, and Fragilaria virescens. The present study represents an early step in establishing baseline conditions. Further monitoring is suggested to gain a better understanding of this region.

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Apiosoma piscicola (Blanchard 1885) was reported from fry of Carassius auratus (Var. pengze) and Ctenopharyngodon idella during parasite surveys in May 2005 and June 2006 at Hongze Lake Fish Hatchery, Jiangsu province, China. Twelve morphometric parameters were used to describe this peritrich in detail in the present study and comparisons were made with other reports. Its synonyms, Glossatella cylindriformis (Chen 1955) and Apiosoma magna (Banina 1968), were clarified based on reliable data. A. piscicola was still considered somewhat host-specific by us, especially to cyprinids, although it shows a quite wide limit of host variability. The telotroch was also observed, and its structures were described herein. Besides, the difficulties of the generic taxonomy were discussed and some suggestions were given.

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We surveyed the benthic algae at 32 sites in the Gangqu River system during May 2005. Among the 162 different taxa observed, 88.8% were diatoms. Achnanthes linearis and Achnanthes lanceolata var. elliptica were the dominant species, comprising 17.1% and 14.3% of the total relative abundance, respectively.

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Benthic diatom communities were sampled monthly from May 2004 to May 2005 at four different sites in the littoral zone of Lake Donghu, a shallow eutrophic lake of China. The seasonal patterns of the total abundance, which were lowest in summer and highest in spring, were found at all sites. Total densities of diatom assemblages were significantly higher at hyper-eutrophic sites than at moderately eutrophic sites. Melosira varians was the most abundant species and dominant contributor to total abundance at all sites during spring, autumn and winter, whereas Achnanthes exigua dominated benthic diatom assemblages at the site with the highest nutrient concentrations during the summer. Achnanthes lanceolata var. dubia, Gomphonema parvulum, Navicula similis, Navicula verecunda and Nitzschia amphibia were generally observed at all sites throughout the year and were dominant at higher-nutrient sites. The abundance of ambient nutrients was probably responsible for the spatial variation in biomass, composition and diversity of benthic diatom assemblages, and lake water temperature was the major factor that controlled seasonal distribution.