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41.
SCOTT A. SCHAEFER PROSANTA CHAKRABARTY ANTHONY J. GENEVA MARK H. SABAJ PÉREZ 《Zoological Journal of the Linnean Society》2011,162(1):90-102
Phylogenetic analysis based on nuclear and mitochondrial DNA sequences was used to test the validity of morphospecies of catfishes of the family Astroblepidae inhabiting the southern‐most limit of their Andean distribution in the upper Ucayali and upper Madre de Dios river basins. Population samples of morphospecies designated a priori on the basis of morphological features were further diagnosed by the presence of unique and unreversed molecular synapomorphies, thereby confirming species validity for seven of nine cases. Although each are distinguished by unique combinations of morphological features, two morphospecies (designated F and H) cannot be diagnosed on the basis of apomorphic changes in molecular sequence that did not also occur in other astroblepid morphospecies or outgroup taxa. Further, one morphospecies (species G) was recovered as nested within the assemblage of populations sampled from morphospecies F, whose morphological diagnosis does not involve unique or apomorphic characters. In contrast, the absence of corroborating molecular apomorphies for species H, otherwise recognized by distinctive and uniquely derived morphological characters, suggests a history of rapid divergence and insufficient time for fixation of genetic differences. Species sharing syntopic distributions were not recovered as sister groups, and in some cases species distributed in adjacent river drainage basins were not more closely related to one another than to species distributed in more distant drainages. Three independent instances were observed of sister‐group relationships involving species distributed in both the Apurimac and Urubamba rivers (Ucayali drainage). These observations combine to suggest that the current distribution of astroblepid species in the southern region may have arisen via a complex history involving both divergence between and dispersal amongst drainage basins that is probably repeated numerous times throughout the Andean distribution of the group. © 2011 The Linnean Society of London, Zoological Journal of the Linnean Society, 2011, 162 , 90–102. 相似文献
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Kenji Hirata Motoaki Kusaba Izumi Chuma Jun Osue Hitoshi Nakayashiki Shigeyuki Mayama Yukio Tosa 《Mycological Research》2007,111(7):799-808
Pyricularia isolates from various host plants were subjected to a multilocus phylogenetic analysis based on rDNA-ITS, actin, β-tubulin, and calmodulin loci. A combined gene tree resolved seven groups with 100 % BS support, suggesting that they are monophyletic groups supported concordantly by all four loci. By incorporating biological and morphological species criteria, each of the seven groups was considered to be a current species. However, phylogenetic relationships among these species were unresolved in the single-gene trees and in the combined tree. Furthermore, the transition from concordance to conflict occurred more than once in the combined gene tree. They were interpreted by assuming that Pyricularia has evolved through repeated species radiation. The transition point other than the current species limit was considered to be the limit of the former species. 相似文献
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Abbott RJ Ritchie MG Hollingsworth PM 《Philosophical transactions of the Royal Society of London. Series B, Biological sciences》2008,363(1506):2965-2969
Although approximately 150 years have passed since the publication of On the origin of species by means of natural selection, the definition of what species are and the ways in which species originate remain contentious issues in evolutionary biology. The biological species concept, which defines species as groups of interbreeding natural populations that are reproductively isolated from other such groups, continues to draw support. However, there is a growing realization that many animal and plant species can hybridize with their close relatives and exchange genes without losing their identity. On occasion, such hybridization can lead to the origin of new species. A key to understanding what species are and the ways in which they originate rests to a large extent on a detailed knowledge of the nature and genetics of factors that limit gene flow between species and the conditions under which such isolation originates. The collection of papers in this issue addresses these topics and deals as well with some specific issues of hybrid speciation and the causes of species radiations. The papers included arise from a 1-day symposium on speciation held during the Sixth Biennial Meeting of the Systematics Association at Edinburgh in August 2007. In this introduction, we provide some background to these papers and highlight some key points made. The papers make clear that highly significant advances to our understanding of animal and plant speciation are currently being made across the range of this topic. 相似文献
46.
道德和道德观念是随着人类社会历史发展以及社会实践活动的深化而不断发展变化的。人们依据不同发展阶段的特征,提出符合时代发展趋势的道德原则、道德规范和道德标准,以推动道德进步。现在人类社会开始进入由人工业文明向生态文明迈进的发展新阶段,因而,时代要求转变以往支配人们行动的旧道德观,打破狭隘的视野局限,把原有道德观仅仅局限于人与人之间、人与社会之间扩展到人与自然之间,以人与自然和谐发展作为生态文明时期的道德准则。这种新的道德观要求树立崭新的生态意识,坚持公正和平等的原则。以约束人类行为,提高人的生态道德修养为宗旨。使人类的社会实践活动有利于资源的持续利用和环境保护,倡导过一种适度消费的文明生活。 相似文献
47.
Schroën CG Nierstrasz VA Bosma R Kroon PJ Tjeerdsma PS DeVroom E VanderLaan JM Moody HM Beeftink HH Janssen AE Tramper J 《Biotechnology and bioengineering》2002,80(2):144-155
Integrated process concepts for enzymatic cephalexin synthesis were investigated by our group, and this article focuses on the integration of reactions and product removal during the reactions. The last step in cephalexin production is the enzymatic kinetic coupling of activated phenylglycine (phenylglycine amide or phenylglycine methyl ester) and 7-aminodeacetoxycephalosporanic acid (7-ADCA). The traditional production of 7-ADCA takes place via a chemical ring expansion step and an enzymatic hydrolysis step starting from penicillin G. However, 7-ADCA can also be produced by the enzymatic hydrolysis of adipyl-7-ADCA. In this work, this reaction was combined with the enzymatic synthesis reaction and performed simultaneously (i.e., one-pot synthesis). Furthermore, in situ product removal by adsorption and complexation were investigated as means of preventing enzymatic hydrolysis of cephalexin. We found that adipyl-7-ADCA hydrolysis and cephalexin synthesis could be performed simultaneously. The maximum yield on conversion (reaction) of the combined process was very similar to the yield of the separate processes performed under the same reaction conditions with the enzyme concentrations adjusted correctly. This implied that the number of reaction steps in the cephalexin process could be reduced significantly. The removal of cephalexin by adsorption was not specific enough to be applied in situ. The adsorbents also bound the substrates and therewith caused lower yields. Complexation with beta-naphthol proved to be an effective removal technique; however, it also showed a drawback in that the activity of the cephalexin-synthesizing enzyme was influenced negatively. Complexation with beta-naphthol rendered a 50% higher cephalexin yield and considerably less byproduct formation (reduction of 40%) as compared to cephalexin synthesis only. If adipyl-7-ADCA hydrolysis and cephalexin synthesis were performed simultaneously and in combination with complexation with beta-naphthol, higher cephalexin concentrations also were found. In conclusion, a highly integrated process (two reactions simultaneously combined with in situ product removal) was shown possible, although further optimization is necessary. 相似文献
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As the wilderness metaphor has decreased in utility due to widespread human‐driven environmental change, conservationists and restorationists have struggled to find new ways to inspire nature conservation. Some have suggested gardening as a new metaphor, but many are wary of its implications, particularly for animals viewed as threats or pests. Others, however, point out positive attributes for the metaphor including its focus on stewardship of nature which allows for positive human agency in ecosystems. We argue a gardening metaphor may also allow increased flexibility in approaches to biodiversity conservation, in part by allowing goals to be fit to communities and their specific cultural contexts. Wild gardening would seek to preserve global biodiversity while acknowledging the pivotal role humans now play in that process. Here we review the use of the garden metaphor over the last 25 years and discuss what wild gardening might mean for restoration. Consistent with a long history of environmental thought, we suggest such a metaphor will work best if it is coupled with a civic/stewardship ethic and a good dose of humility on the part of all gardeners. 相似文献
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