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14篇 您的检索式:作者名="Stenlid"
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1Global diversity and taxonomy of the Inonotus linteus complex(Hymenochaetales,Basidiomycota):Sanghuangporus gen.nov.,Tropicoporus excentrodendri and T.guanacastensis gen.et spp.nov.,and 17 new combinations显示文摘Although Inonotus linteus complex is placed in the genusInonotus,its perennial basidiocarps with a dimitic hyphal system,at least in the trama,distinguish the complex from other species in the genus,which have an annual habit and a monomitic hyphal system.The species number of Inonotus linteus complex has been increased in China and tropical America in recent publications.However,whether species in this complex belong to Inonotus has not specifically been addressed.To explore the phylogenetic placement of species of Inonotus linteus complex,we performed a comprehensive study using morphological and phylogenetic data based on global samples.nLSU(53 with 13 new)and ITS(70 with 18 new)datasets were used to produce the phylogenetic results.Taking into consideration the phylogenies inferred from the nLSU and ITS datasets,Inonotus is a polyphyletic genus comprising at least three clades.Clade A,the core Inonotus clade,contains the generic type,Inonotus hispidus,while Clades B and C comprise species from the Inonotus linteus complex.Morphological and phylogenetic evidence indicates that Clades B and C are new genera,and Sanghuangporus and Tropicoporus are introduced in this study.Ten species are transferred to Sanghuangporus and seven to Tropicoporus.Tropicoporus excentrodendri and T.guanacastensis spp.nov.are described,and their distinctive characters are discussed.Keys to the two new genera and the Inonotus sensu stricto,and to species of each new genus are provided.Li-Wei Zhou Josef Vlasák Cony Decock Addisu Assefa Jan Stenlid Dawit Abate Sheng-Hua Wu Yu-Cheng Dai 2016Fungal Diversity2016,,2:7
2Accuracy of the Rotfinder instrument in detecting decay on Norway spruce trees显示文摘OLIVA J ROMERALO C STENLID J 2011Forest Ecology and Management2011,262,8:1
3Spatiotemporal patterns of laccase activity in interacting mycelia of wood-decaying basidiomycete fungi 显示文摘Iakovlev A Stenlid J 2000Microbial Ecology2000,39,:1
4Potential for biological control of Botrytis einerea in Pinus sylvestris seedlings 显示文摘Capieau K Stenlid J Stenstrom E 2004Scand J For Res2004,19,:1
5Somatic incompatibility and nuclear reassortment in Heterobasidion annosum显示文摘HANSEN EM STENLID J JOHANSSON M 1993Myco Rea1993,97,:1
6The importance of inoculum size for the competitive ability of wood decomposing fungi 显示文摘Holmer L Stenlid J 1993FEMS Mi- crobiology Ecology1993,12,:1
7Accuracy of the Rotfinder in- strument in detecting decay on Norway spruce trees 显示文摘Oliva J Romeralo C Stenlid J 2011Forest Ecology and Management2011,262,8:1
8Comparison of five strains of Phlebiopsis gigantea and two Trichoderma formulations for treatment against natural Heterobasidion spore infections on Norway spruce stumps显示文摘Berglund M RSnnberg J Holmer L Stenlid J 2005Scandinavian Journal of Forest Research2005,20,:1
9Effects of resource availability on mycelial interactions and 32P-transfer between a saprotrophic and an ectomycorrhizal fungus in soil microcosms显示文摘LINDAHL B STENLID J FINLAY R 2001FEMS Microbiology Ecology2001,38,:1
10Species differences between plant roots in the reac- :ion to inhibitory sugars 显示文摘Stenlid G 1959Plant Physiology1959,12,:1
11Fungal C translocation restricts N-mineralization in heterogeneous environments显示文摘BOBERG J B FINLAY R D STENLID J 2009Functional Ecology2009,24,:1
12Genetic diversity within and among vegetative compatibility groups of Stereum sanguinolentum determined by arbitrary primed PCR 显示文摘Stenlid J Vasiliausaks R 1998Mol Ecol1998,7,:1
13Retracing the routes of introduction of invasive species: the case of the S irex noctilio woodwasp显示文摘E. Boissin B. Hurley M. J. Wingfield R. Vasaitis J. Stenlid C. Davis P. Groot R. Ahumada A. Carnegie A. Goldarazena P. Klasmer B. Wermelinger B. Slippers 2012Mol Ecol2012,,23:1
14Electronic structure factors and the importance of adsorbate effects in chemisorption on surface alloys显示文摘The chemisorption energy is an integral aspect of surface chemistry,central to numerous fields such as catalysis,corrosion,and nanotechnology.Electronic-structure-based methods such as the Newns-Anderson model are therefore of great importance in guiding the engineering of material surfaces with optimal properties.However,existing methods are inadequate for interpreting complex,multi-metallic systems.Herein,we introduce a physics-based chemisorption model for alloyed transition metal surfaces employing primarily metal d-band properties that accounts for perturbations in both the substrate and adsorbate electronic states upon interaction.Importantly,we show that adsorbate-induced changes in the adsorption site interact with its chemical environment leading to a second-order response in chemisorption energy with the d-filling of the neighboring atoms.We demonstrate the robustness of the model on a wide range of transition metal alloys with O,N,CH,and Li adsorbates yielding a mean absolute error of 0.13 eV versus density functional theory reference chemisorption energies.Shikha Saini Joakim Halldin Stenlid Frank Abild-Pedersen 2022npj Computational Materials2022,,1:0
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