|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | One stop shop:backbones trees for important phytopathogenic genera:Ⅰ(2014)显示文摘Many fungi are pathogenic on plants and cause significant damage in agriculture and forestry.They are also part of the natural ecosystem and may play a role in regulating plant numbers/density.Morphological identification and analysis of plant pathogenic fungi,while important,is often hampered by the scarcity of discriminatory taxonomic characters and the endophytic or inconspicuous nature of these fungi.Molecular(DNA sequence)data for plant pathogenic fungi have emerged as key information for diagnostic and classification studies,although hampered in part by non-standard laboratory practices and analytical methods.To facilitate current and future research,this study provides phylogenetic synopses for 25 groups of plant pathogenic fungi in the Ascomycota,Basidiomycota,Mucormycotina(Fungi),and Oomycota,using recent molecular data,up-to-date names,and the latest taxonomic insights.Lineagespecific laboratory protocols together with advice on their application,as well as general observations,are also provided.We hope to maintain updated backbone trees of these fungal lineages over time and to publish them jointly as new data emerge.Researchers of plant pathogenic fungi not covered by the present study are invited to join this future effort.Bipolaris,Botryosphaeriaceae,Botryosphaeria,Botrytis,Choanephora,Colletotrichum,Curvularia,Diaporthe,Diplodia,Dothiorella,Fusarium,Gilbertella,Lasiodiplodia,Mucor,Neofusicoccum,Pestalotiopsis,Phyllosticta,Phytophthora,Puccinia,Pyrenophora,Pythium,Rhizopus,Stagonosporopsis,Ustilago and Verticillium are dealt with in this paper. | Kevin D.Hyde R.Henrik Nilsson S.Aisyah Alias Hiran A.Ariyawansa Jaime E.Blair Lei Cai Arthur W.A.M.de Cock Asha J.Dissanayake Sally L.Glockling Ishani D.Goonasekara Michal Gorczak Matthias Hahn Ruvishika S.Jayawardena Jan A.L.van Kan Matthew H.Laurence C.AndréLévesque Xinghong Li Jian-Kui Liu Sajeewa S.N.Maharachchikumbura Dimuthu S.Manamgoda Frank N.Martin Eric H.C.McKenzie Alistair R.McTaggart Peter E.Mortimer Prakash V.R.Nair Julia Pawlowska Tara L.Rintoul Roger G.Shivas Christoffel F.J.Spies Brett A.Summerell Paul W.J.Taylor Razak B.Terhem Dhanushka Udayanga Niloofar Vaghefi Grit Walther Mateusz Wilk Marta Wrzosek Jian-Chu Xu JiYe Yan Nan Zhou | 2014 | Fungal Diversity2014,,4: | 3 |
| 2 | Exploring the moderating role of financial development in environmental Kuznets curve for South Africa:fresh evidence from the novel dynamic ARDL simulations approach显示文摘The extant literature has produced mixed evidence on the relationship between finan-cial development and ecological sustainability.This work addresses this conundrum by investigating financial development’s direct and indirect consequences on ecologi-cal quality utilizing the environmental Kuznets curve(EKC)methodological approach.Our empirical analysis is based on the novel dynamic autoregressive distributed lag simulations approach for South Africa between 1960 and 2020.The results,which used five distinct financial development measures,demonstrate that financial develop-ment boosts ecological integrity and environmental sustainability over the long and short terms.In the instance of South Africa,we additionally confirm the validity of the EKC theory.More importantly,the outcomes of the indirect channels demonstrate that financial development increases energy usage’s role in causing pollution while attenuating the detrimental impacts of economic growth,trade openness,and foreign direct investment on ecological quality.Moreover,the presence of an inadequate financial system is a requirement for the basis of the pollution haven hypothesis(PHH),which we examine using trade openness and foreign direct investment variables.PHH for both of these variables disappears when financial development crosses specified thresholds.Finally,industrial value addition destroys ecological quality while tech-nological innovation enhances it.This research provides some crucial policy recom-mendations and fresh perspectives for South Africa as it develops national initiatives to support ecological sustainability and reach its net zero emissions goal. | Maxwell Chukwudi Udeagha Marthinus Christoffel Breitenbach | 2023 | Financial Innovation2023,9,1: | 2 |
| 3 | Using Statistical Learning Algorithms in Regional Landslide Susceptibility Zonation with Limited Landslide Field Data显示文摘Regional Landslide Susceptibility Zonation(LSZ) is always challenged by the available amount of field data, especially in southwestern China where large mountainous areas and limited field information coincide. Statistical learning algorithms are believed to be superior to traditional statistical algorithms for their data adaptability. The aim of the paper is to evaluate how statistical learning algorithms perform on regional LSZ with limited field data. The focus is on three statistical learning algorithms, Logistic Regression(LR), Artificial Neural Networks(ANN) and Support Vector Machine(SVM). Hanzhong city, a landslide prone area in southwestern China is taken as a study case. Nine environmental factors are selected as inputs. The accuracies of the resulting LSZ maps are evaluated through landslide density analysis(LDA), receiver operating characteristic(ROC) curves and Kappa index statistics. The dependence of the algorithm on the size of field samples is examined by varying the sizes of the training set. The SVM has proven to be the most accurate and the most stable algorithm at small training set sizes and on all known landslide sizes. The accuracy of SVM shows a steadilyincreasing trend and reaches a high level at a small size of the training set, while accuracies of LR and ANN algorithms show distinct fluctuations. The geomorphological interpretations confirm the strength of SVM on all landslide sizes. Our results show that the strengths of SVM in generalization capability and model robustness make it an appropriate and efficient tool for regional LSZ with limited landslide field samples. | WANG Yi-ting SEIJMONSBERGEN Arie Christoffel BOUTEN Willem CHEN Qing-tao | 2015 | Journal of Mountain Science2015,12,2: | 2 |
| 4 | Memory and language skills in simultaneous interpreters: The role of expertise and language proficiency显示文摘 | Ingrid K. Christoffels Annette M.B. de Groot Judith F. Kroll | 2005 | Journal of Memory and Language2005,,3: | 2 |
| 5 | Step by step removal of hyperforin and hypericin: activity profile of different Hypericum preparations in behavioral models显示文摘 | Butterweck V christoffel V Nahrstedt A | 2003 | Life siences2003,73,: | 1 |
| 6 | A comprehensive approach to clustering of expressed human gene sequence: the sequence tag alignment and consensus knowledge base 显示文摘 | Miller R T Christoffels A G Gopalakrishnan C | 1999 | Genome Res1999,9,: | 1 |
| 7 | Tbx18 and the fate of epicar- dial progenitors显示文摘 | Christoffels VM Grleskamp T Norden J | 2009 | Nature2009,458,7240: | 1 |
| 8 | Cardiac chamber formation:development,genes,and evolution显示文摘 | Moorman AF Christoffels VM | 2003 | Physiol Rev2003,83,4: | 1 |
| 9 | Effects of long-term treatment with resveratrol and subcutaneous and oral estradiol administration on pituitary function in rats 显示文摘 | Bottner M Christoffel J Jarry H | 2006 | J Endocrinol2006,189,1: | 1 |
| 10 | Development of the pacemaker tissues of the heart 显示文摘 | Christoffels VM Smits GJ Kispert A | 2010 | Circ Res2010,106,2: | 1 |
| 11 | Atrial fibrillation:a developmental point of view显示文摘 | Mommersteeg MTM Christoffels VM Anderson RH | | 0,,: | 1 |
| 12 | From GWAS to function:genetic variation in sodium channel gene enhancer influences electrical patterning显示文摘 | Van den Boogaard M Barnett P Christoffels VM | | 0,,03: | 1 |
| 13 | Cimicifuga racemosa extract BNO 1055 inhibits proliferation of the human prostate cancer cell lines LNCaP 显示文摘 | Jarry H Thelen P Christoffel V | 2005 | Phytomedicine2005,12,3: | 1 |
| 14 | Effects of long-term treatment with 8-prenylnaringenin and oral estradiol on the GH-IGF-1 axis and lipid metabolism in rats显示文摘 | Bottner M Christoffel J Wuttke W | 2008 | Endocrinology2008,198,3: | 1 |
| 15 | Cimicifuga extract BNO 1055: reduction of hot flushes and hints on antidepressant activity 显示文摘 | Winterhoff H Spengler B Christoffel V | 2003 | Maturitas2003,44,1: | 1 |
| 16 | Comparison of thephytohormones genistein, resveratrol and 8-prenylnaringenin asagents for preventing osteoporosis显示文摘 | Sehmisch S Hammer F Christoffel J | 2008 | Planta Med2008,74,7: | 1 |
| 17 | Localized and temporal gene regulation in heart development 显示文摘 | Barnett P van den Boogaard M Christoffels V | 2012 | Curr Top Dev Biol2012,100,: | 1 |
| 18 | Fugu genome analysisprovides evidence for a whole-genome duplication early duringthe evolution of ray-finned fishes显示文摘 | Christoffels A Koh E G L Chia J M | 2004 | Molecular Biology and Evo-lution2004,21,6: | 1 |
| 19 | A comprehensive approach to clustering of expressed human gene sequence: the sequence tag alignment and consensus knowledge base显示文摘 | MILLER R T CHRISTOFFELS A G GOPALAKRISHNAN C | 1999 | Genome Research1999,,9: | 1 |
| 20 | Formation of the venous pole of the heart from an Nkx2-5-negativeprecursor population requires Tbxl8显示文摘 | Christoffels V M Mommersteeg M T Trowe M 0 | 2006 | Circ Res2006,98,12: | 1 |