278 resultados para Solani Ag-8


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蕨属(Pteridium Gled. ex Scop)分布范围极广,几乎遍布于全世界。关于此属的属下分类一直争论不休,主要是因为此属的分布广,形态变异比较大,变异类型之间形态差异不显著,缺乏明确的鉴别性状,或者变异类型之间存在过渡。 本研究利用叶绿体rps4-trnS DNA序列和trnS-G DNA序列构建了世界不同地区蕨属植物的系统关系及中国区域蕨属植物的系统关系,同时构建了世界不同地区蕨属植物的单倍型关系。我们发现,(1)南美洲和澳洲的蕨属植物分化最早;(2)北美洲的蕨属植物遗传变异最丰富,有多条相互独立的进化线(evolutionary lineages);(3)欧亚大陆和非洲的蕨属植物都与北美洲具有密切关系;(4)大洋洲的蕨属植物同时受南美洲和亚洲蕨属植物的影响;(5)东亚的蕨属植物直接受北美洲蕨属植物的影响,与欧洲和非洲没有直接的关系;(6)非洲和欧洲的蕨属植物关系密切,有着相同的起源。 根据不同地点的蕨属植物的系统关系和单倍型Network关系,我们认为,蕨属植物起源于南美洲,而后向北美洲和澳洲扩散。在北美洲东部和东南部蕨属植物得到繁荣并分别向三个方向扩散与分化。第一个方向是朝北美西部扩散,第二个方向是两次独立扩散到亚洲,第三个方向是扩散到非洲,进而由非洲向欧洲扩散。 根据叶绿体基因所揭示的世界不同地区蕨属植物的发生和发展规律结合前人的研究,我们认为蕨属包含四个物种。Pteridium aquilinum (L.) Kuhn,分布于北美洲、亚洲、非洲和欧洲。该种分布广泛,存在一定的地理分化,可进一步划分8个亚种。Pteridium esculentum (G. Forst.) Cokayne,分布于南美洲,并扩散到澳大利亚,甚至东南亚国家。Pteridium caudatum (L.) Maxon,分布于中美洲和南美洲,是个异源四倍体。Pteridium semihastatum (Wall. ex Ag.) S.B.Andrews,分布于澳洲和东南亚,是个异源四倍体。 通过分子数据和形态分析相结合,作者认为中国蕨属包括两个亚种,即蕨[Pteridium aquilinum (L.) Kuhn subsp.japonicum (Nakai) Á.Löve & D.Löve]和毛轴蕨[Pteridium aquilinum (L.) Kuhn subsp. revolutum (Bl.) X. Q. Chen, stat. nov.]。作者认为,《中国植物志》中记载的食蕨,特有种云南蕨、糙轴蕨、镰羽蕨和长羽蕨并不存在或只是蕨或毛轴蕨的变形,或者毛轴蕨与蕨的杂交个体。 为了今后更进一步研究蕨属植物的系统与进化关系、居群的遗传结构等问题,作者还分离了8个具有多态性的微卫星位点,探讨了微卫星引物开发设计过程中如何提高效率等问题。

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第一部分 茎尖分生组织的中央部位是由干细胞组成,维持干细胞的动态平衡对于植物器官启动显得尤为重要。在拟南芥花序分生组织和花分生组织中分别有WUS/CLV和(WUS+LFY)/AG两个负反馈调节环控制着这一平衡,保证了花序分生组织的非决定性和花分生组织的决定性。 本文用T-DNA激活标签技术得到功能增强突变体bre,序列分析表明BRE就是干细胞特征基因WUSCHEL。定量RT-PCR表明在突变体的茎节间WUS大量表达,证实在WUS基因的调控区插入的4个35S增强子使WUS表达增强。突变体bre生长发育缓慢,茎弯曲,花器官数目改变,心皮发育加快。尤为突出的是在茎皮层直接分化出花分生组织。这些表型可能与WUS的表达增强有关。这说明WUS功能是多效的,除了在分生组织中决定干细胞命运、促进CLV和AG的表达外,还可能与生长素极性运输以及花分生组织特征基因的表达有关。 第二部分 春化作用是促进植物从营养生长向生殖生长转变的有效途径之一,作者所在实验室曾经分离到多个小麦春化相关基因。为研究春化期间它们在不同组织或不同细胞内的表达模式,首先建立并完善了RNA组织原位杂交系统。以春化相关基因ver203F为模板,采用地高辛为标记分子,借助体外转录制备RNA探针,分析了小麦胚芽和幼苗中ver203F的表达模式。结果表明:春化前和脱春化的胚芽中不表达ver203F,春化处理14天以上的胚芽幼叶表达ver203F,而且主要定位在叶的边缘分生组织细胞内,叶维管束和表皮组织未检测到转录物,胚芽鞘和茎尖分生组织中不表达。幼苗的侧芽中的幼叶有相同的表达模式。茉莉酸可以诱导ver203F的表达。.说明春化时的低温信号可能由幼叶接收,并有可能涉及到茉莉酸介导的信号转导途径。

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Complete sets of chromosome-specific painting probes, derived from flow-sorted chromosomes of human (HSA), Equus caballus (ECA) and Equus burchelli (EBU) were used to delineate conserved chromosomal segments between human and Equits burchelli, and among four equid species, E. przewalskii (EPR), E. caballus, E. burchelli and E. zebra hartmannae (EZH) by cross-species chromosome painting. Genome-wide comparative maps between these species have been established. Twenty-two human autosomal probes revealed 48 conserved segments in E. burchelli. The adjacent segment combinations HSA3/21, 7/16p, 16q/19q, 14/15, 12/22 and 4/8, presumed ancestral syntenies for all eutherian mammals, were also found conserved in E. burchelli. The comparative maps of equids allow for the unequivocal characterization of chromosomal rearrangements that differentiate the karyotypes of these equid species. The karyotypes of E. przewalskii and E. caballus differ by one Robertsonian translocation (ECA5 = EPR23 + EPR24); numerous Robertsonian translocations and tandem fusions and several inversions account for the karyotypic differences between the horses and zebras. Our results shed new light on the karyotypic evolution of Equidae. Copyright (C) 2003 S. Karger AG, Basel.

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Kallikrein 8 (KLK8) is a serine protease functioning in the central nervous system, and essential in many aspects of neuronal activities. Sequence comparison and gene expression analysis among diverse primate species identified a human-specific splice for

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OBJECTIVE: To determine whether rDNA of Giardia lamblia forms a nucleolus organizer region (NOR)-like structure and is in a very primitive state. STUDY DESIGN: G lamblia was used as the experimental animal, with Euglena gracilis as the control. The distribution was demonstrated indirectly by the modified Ag-I silver technique, which can specifically indicate the NOR under both light and electron microscopes. RESULTS: In the ultrathin sections of silver-stained Euglena cells, all the silver grains were concentrated in the fibrosa of the nucleolus, while no grains found in the cytoplasm, nucleoplasm, condensed chromosomes or pars granulosa of the nucleus. In the silver-stained Giardia cells, no nucleolus was found; a few silver grains were scattered in the nucleus but were not concentrated in any specific region. CONCLUSION: The distribution of silver grains in G lamblia showed that the transcription of rDNA occurs inside the nucleus, though no nucleolus is present. It is possible that chromosomes are in a very primitive state in diplomonad cells; as each chromosome has few prRNA genes, the transcription is independent of a nucleolus. These results imply that the rDNA of Giardia does not form a NOR-like structure and seems to represent a very primitive state in the evolution of the nucleolus.

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报道了锦蛇属团花锦蛇( E. davidi) 、绿锦蛇( E. prasina) 和三索锦蛇( E. radiata) 3 个种的核型和Ag - NORs ,团花锦蛇的核型2 n = 36 (8V + 6sV + 2I + 20M) ;绿锦蛇的核型2 n = 36 (7V + 7sV + 2I + 20m) ,三索锦蛇的 核型2 n = 40 (6V + 3sV + 2sI + 5I + 24m) ; ①团花锦蛇和绿锦蛇的染色体数目和结构与此属大多数种的相似, ; ② 此属种类的性染色体为ZW型,绿锦蛇的性染色体为第4 对大染色体,三索锦蛇的为第5 对大染色体,团花锦蛇 由于为雄性,未见染色体异型. ③Ag - NORs 在数目及在染色体上的位置均不相同,团花锦蛇的NORs 在第9 对 染色体上,数目为2 个;绿锦蛇的NORs 在第5 对染色体上,数目为4 个;三索锦蛇的NORs 在第4 对大染色体上, 数目为4 个; ④我们发现三索锦蛇较为特殊,其染色体数目、形态、性染色体的位置和形态及Ag - NORs 均与其 它种类不同. 可能的原因是此物种在核型演化过程中发生过染色体断裂和重排事件,提示三索锦蛇可能是一个 特化的类群. ⑤锦蛇属的种类可分为包括三索锦蛇为特殊的一组的4 个组. 图版1 表2 参18

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To search for compounds with superior anti-human immunodeficiency virus type 1 (HIV-1) activity, ten 5,5'-(p-phenylenebisazo)-8-hydroxyquinoline sulfonates (4a-j) were synthesized and preliminarily evaluated as HIV-1 inhibitors in vitro for the first time. Some compounds demonstrated anti-HIV-1 activity, especially 5,5'-(p-phenylenebisazo)-8-hydroxyquinoline p-ethylbenzenesulfonate (4g) and 5,5'-(p-phenylenebisazo)-8-hydroxyquinoline p-chlorobenzenesulfonate (41) showed the more potent anti-HIV-1 activity with 50% effective concentration (EC50) values of 2.59 and 4.01 mu g/ml, and therapeutic index (TI) values of 31.77 and 24.51, respectively.

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报道了云南8种树蛙的染色体组型, 并对目前所已知的树蛙种类的染色体组型进行了比较。