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The Killarney fern Trichomanes speciosum Willd. (Hymenophyllaceae) is unique in possessing both extensive sexual (sporophyte and gametophyte generations present) and asexual (gametophyte only) ranges. It was first discovered in central Europe in 1993 and is represented in this area only by its perennial, vegetatively propagating gametophyte generation. Genetic variation has been investigated at 35 sites. Allozyme diversity is partitioned primarily between, not within, sites. Although genetic variation exists at a fine scale (lt 5 m) within some populations, the results suggest that clones were not intimately associated in these cases. The majority of sites support unique multilocus phenotypes. Where phenotypes were present at more than one site they tended to recur at the next closest site. However, similar phenotypes link eastern and western Pfälzerwald sites up to c. 70 km apart. This pattern of diversity suggests that colonisation was not solely of a “stepping stone” or “leading edge” type. We suggest that during a climatically favourable period, probably the Atlantic hypsithermal, there may have been an explosive colonisation by long-distance dispersal from refugial areas. This was followed by a short period during which sporophyte production, sexual reproduction and local spread were possible. With climatic change, reduction in the available habitat and the loss of the sporophyte generation, different individual genets became fixed within small, favourable, but scattered, sites. The possibility that some central European sites north of the Alps acted as periglacial refugia cannot be discounted, but would appear less likely than (re-) colonisation from the Atlantic fringe.  相似文献   
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Phenotypic plasticity may be adaptive if the phenotype expressed in a focal environment performs better there relative to alternative phenotypes. Plasticity in morphology may particularly benefit modular organisms that must tolerate environmental change with limited mobility, yet this hypothesis has rarely been evaluated for the modular inhabitants of subtidal marine environments. We test the hypothesis for Asparagopsis armata , a clonal red seaweed whose growth-form plasticity across light environments is consistent with the concept of foraging behaviour in clonal plants. We manipulated the light intensity to obtain clonal replicates of compact, densely branched ('phalanx') phenotypes and elongate, sparsely branched ('guerrilla') phenotypes, which we reciprocally transplanted between inductive light environments to explore the performance consequences of a poor phenotype–environment match. Consistent with the hypothesis of adaptive plasticity, we found that performance (as relative growth rate) depended significantly on the interaction between growth form and environment. Each growth form performed better in its inductive environment than the alternative form, implying that this type of plasticity, thought to be adaptive for clonal plants, may also benefit photoautotrophs in marine environments. Given the prevalence and diversity of modular phyla in such systems, they offer a relatively unexplored opportunity to broaden our understanding of the evolutionary ecology of phenotypic plasticity.  © 2009 The Linnean Society of London, Biological Journal of the Linnean Society , 2009, 97 , 80–89.  相似文献   
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A Gardner 《Heredity》2014,113(2):104-111
Two guiding principles identify which biological entities are able to evolve adaptations. Williams'' principle holds that, in order for an entity to evolve adaptations, there must be selection between such entities. Maynard Smith''s principle holds that, in order for an entity to evolve adaptations, selection within such entities must be absent or negligible. However, although the kinship theory of genomic imprinting suggests that parent-of-origin-specific gene expression evolves as a consequence of natural selection acting between—rather than within—individuals, it evades adaptive interpretation at the individual level and is instead viewed as an outcome of an intragenomic conflict of interest between an individual''s genes. Here, I formalize the idea that natural selection drives intragenomic conflicts of interest between genes originating from different parents. Specifically, I establish mathematical links between the dynamics of natural selection and the idea of the gene as an intentional, inclusive-fitness-maximizing agent, and I clarify the role that information about parent of origin plays in mediating conflicts of interest between genes residing in the same genome. These results highlight that the suppression of divisive information may be as important as the suppression of lower levels of selection in maintaining the integrity of units of adaptation.  相似文献   
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热激蛋白70(heat shock protein,Hsp70)是目前最为受人们关注的一类蛋白质因子,从低等细菌到高等人类中普遍存在,它结构保守、功能多样。Hsp70像是生物有机体的"防弹衣",使生物体在饥饿、酷热、氧化、感染等条件下避开不利因素的攻击;同时,它也是病菌、病毒等攻击寄主时的"作案工具",所以我们可以称之为细胞的"双刃剑"。本文主要对Hsp70的结构以及病毒感染过程中的"双刃"作用情况进行了综述。  相似文献   
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养殖乌鳢类立克次体感染的组织病理学研究   总被引:2,自引:1,他引:1  
本文系统报道了养殖乌鳢类立克次体(Rickettsia-like organism,RLO)感染的各器官(脑、眼、鳃、心脏、头肾、肝、胰腺组织、脾、肾、肠和卵巢)的组织病理变化,探讨了炎症发展的基本规律。感染乌鳢病理解剖学特征和最具病理诊断意义的是体内各器官普遍出现的白色结节。这些结节的显微结构为肉芽肿炎症即一种慢性增生性炎症。在严重病变的肾脏,由于组织坏死区域较大和周围明显的细胞增生形成了境界较为清楚的巨大“肉瘤”状肿物。内脏器官的血管(特别是造血器官的血管)出现明显纤维素性血栓、混合血栓、弥散性血管内凝血(disseminated intravascu-lar coagulation,DIC)和组织细胞大范围的变性或坏死、溶解。大多数器官的组织细胞主要是上皮性细胞、吞噬性细胞,胞质内富含嗜酸性包涵体(eosinophilic intracytoplasmic inclusion),这种细胞多位于鳃上皮处、鳃部和体内器官血管内皮及血管周边结缔组织。血管内皮细胞及周边细胞内大量包涵体的出现导致血管内皮细胞的肿胀和破坏。  相似文献   
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养殖乌鳢类立克次体感染的超微病理学研究   总被引:1,自引:0,他引:1  
应用电子显微镜技术,观察了养殖乌鳢RLO感染主要内脏器官超微结构病理变化,并初步探讨了发病机制。观察发现:RLO寄生细胞明显肿大,胞质电子密度低,细胞器肿大、溶解,RLO可随肿胀、破裂的细胞进人组织间隙;在一些寄生细胞内尚发现变性的RLO。内脏组织细胞普遍肿大,细胞器分散、稀少,线粒体除明显肿胀、嵴断裂消失外,尚发现坏死性变化即出现致密核心或无定形的电子密度物质;粗面内质网扩张、破裂和脱颗粒;部分细胞内溶酶体增多,胞质内发现明显的髓鞘样结构;核肿大或核固缩、溶解,并可见核内出现髓鞘样结构和核包含物。  相似文献   
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Several regulatory organisations are involved in the assessment of clinical gene therapy trials involving genetically modified organisms (GMOs) in The Netherlands. Medical, ethical and scientific aspects are, for instance, evaluated by the Central Committee on Research Involving Human Subjects (CCMO). The Ministry of Housing, Spatial Planning and the Environment (VROM) is the competent authority for the environmental risk assessment according to the deliberate release Directive 2001/18/EC. A Gene Therapy Office has been established in order to streamline the different national review processes and to enable the official procedures to be completed as quickly as possible. Although the Gene Therapy Office improved the application process at the national level, there is a difference of opinion between the EU member states with respect to the EU Directive according to which gene therapy trials are assessed, that urges for harmonisation. This review summarises the gene therapy legislation in The Netherlands and in particular The Netherlands rationale to follow Directive 2001/18/EC for the environmental risk assessment.  相似文献   
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