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| 1 | The amazing potential of fungi:50 ways we can exploit fungi industrially显示文摘Fungi are an understudied,biotechnologically valuable group of organisms.Due to the immense range of habitats that fungi inhabit,and the consequent need to compete against a diverse array of other fungi,bacteria,and animals,fungi have developed numerous survival mechanisms.The unique attributes of fungi thus herald great promise for their application in biotechnology and industry.Moreover,fungi can be grown with relative ease,making production at scale viable.The search for fungal biodiversity,and the construction of a living fungi collection,both have incredible economic potential in locating organisms with novel industrial uses that will lead to novel products.This manuscript reviews fifty ways in which fungi can potentially be utilized as biotechnology.We provide notes and examples for each potential exploitation and give examples from our own work and the work of other notable researchers.We also provide a flow chart that can be used to convince funding bodies of the importance of fungi for biotechnological research and as potential products.Fungi have provided the world with penicillin,lovastatin,and other globally significant medicines,and they remain an untapped resource with enormous industrial potential. | Kevin D.Hyde Jianchu Xu Sylvie Rapior Rajesh Jeewon Saisamorn Lumyong Allen Grace T.Niego Pranami D.Abeywickrama Janith V.S.Aluthmuhandiram Rashika S.Brahamanage Siraprapa Brooks Amornrat Chaiyasen K.W.Thilini Chethana Putarak Chomnunti Clara Chepkirui Boontiya Chuankid Nimali I.de Silva Mingkwan Doilom Craig Faulds Eleni Gentekaki Venkat Gopalan Pattana Kakumyan Dulanjalee Harishchandra Hridya Hemachandran Sinang Hongsanan Anuruddha Karunarathna Samantha C.Karunarathna Sehroon Khan Jaturong Kumla Ruvishika S.Jayawardena Jian-Kui Liu Ningguo Liu Thatsanee Luangharn Allan Patrick G.Macabeo Diana S.Marasinghe Dan Meeks Peter E.Mortimer Peter Mueller Sadia Nadir Karaba N.Nataraja Sureeporn Nontachaiyapoom Meghan O’Brien Watsana Penkhrue Chayanard Phukhamsakda Uma Shaanker Ramanan Achala R.Rathnayaka Resurreccion B.Sadaba Birthe Sandargo Binu C.Samarakoon Danushka S.Tennakoon Ramamoorthy Siva Wasan Sriprom T.S.Suryanarayanan Kanaporn Sujarit Nakarin Suwannarach Thitipone Suwunwong Benjarong Thongbai Naritsada Thongklang Deping Wei S.Nuwanthika Wijesinghe Jake Winiski Jiye Yan Erandi Yasanthika Marc Stadler | 2019 | Fungal Diversity2019,,4: | 3 |
| 2 | Energy spectrum of cosmic protons and helium nuclei by a hybrid measurement at 4300 m a.s.l.显示文摘The energy spectrum of cosmic Hydrogen and Helium nuclei has been measured below the so-called 'knee' by using a hybrid experiment with a wide field-of-view Cherenkov telescope and the Resistive Plate Chamber(RPC) array of the ARGO-YBJ experiment at 4300 m above sea level. The Hydrogen and Helium nuclei have been well separated from other cosmic ray components by using a multi-parameter technique. A highly uniform energy resolution of about 25% is achieved throughout the whole energy range(100–700 TeV). The observed energy spectrum is compatible with a single power law with index γ =-2.63±0.06. | B.Bartoli P.Bernardini 毕效军 I.Bolognino P.Branchini A.Budano A.K.Calabrese Melcarne P.Camarri 曹臻 R.Cardarelli S.Catalanotti 陈松战 陈天禄 P.Creti 崔树旺 戴木忠 A.D'Amone 单增罗布 I.De Mitri B.D'Ettorre Piazzoli T.Di Girolamo G.Di Sciascio 冯存峰 冯朝阳 冯振勇 苟全补 郭义庆 何会海 胡海兵 胡红波 M.Iacovacci R.Iuppa 贾焕玉 拉巴次仁 厉海金 G.Liguori 刘成 刘俊 刘茂元 卢红 马玲玲 马欣华 G.Mancarella S.M.Mari G.Marsella D.Martello S.Mastroianni P.Montini C.C.Ning M.Panareo B.Panico L.Perrone P.Pistilli F.Ruggieri P.Salvini R.Santonico S.N.Sbano 沈培若 盛向东 石峰 A.Surdo 谭有恒 P.Vallania S.Vernetto C.Vigorito 王辉 吴超勇 吴含荣 薛良 杨群羽 杨先楚 姚志国 袁爱芳 查敏 张慧敏 张力 张学尧 张勇 赵静 扎西次仁 扎西桑珠 周勋秀 祝凤荣 朱清棋 G.Zizzi 白云翔 陈明君 陈垚 冯少辉 高博 顾旻皓 侯超 李晓晓 刘佳 刘加丽 王旭 肖刚 张丙开 张寿山 周斌 左雄 | 2014 | Chinese Physics C2014,38,4: | 1 |
| 3 | Correlates of energy balance‐related behaviours in preschool children: a systematic review显示文摘 | M.De Craemer E.De Decker I.De Bourdeaudhuij C.Vereecken B.Deforche Y.Manios G.Cardon | 2012 | Obesity Reviews2012,,: | 1 |
| 4 | A simple and efficient algorithm for multifocus image fusion using morphological wavelets显示文摘 | I.De B.Chanda | | 0,,86: | 1 |
| 5 | 拓宽二语教师教育议程:教师情绪的国际视角(英文)显示文摘Good teaching is an emotionally charged event where teachers connect with each student as they passionately deliver their lesson in a pleasurable environment. Such classrooms reflect an environment where both students and teacher are enthusiastic and excited as they discover learning and risk-taking in a safe environment(Farrell, 2018, p. vii). | peter i.de costa hima rawal 李文景 | 2018 | Chinese Journal of Applied Linguistics2018,41,4: | 1 |
| 6 | Systematic prevention of overweight and obesity in adults: a qualitative and quantitative literature analysis显示文摘 | S.Kremers A.Reubsaet M.Martens S.Gerards R.Jonkers M.Candel I.De Weerdt N.De Vries | 2010 | Obesity Reviews2010,,5: | 1 |
| 7 | Sustained attention as a potential endophenotype for bipolar disorder显示文摘 | I.Ancín J. L.Santos C.Teijeira E. M.Sánchez‐Morla M. J.Bescós I.Argudo S.Torrijos B.Vázquez‐álvarez I.De La Vega J. J.López‐Ibor A.Barabash J. A.Cabranes‐Díaz | 2010 | Acta Psychiatrica Scandinavica2010,,3: | 1 |
| 8 | Microwave radiation can alter protein conformation without bulk heating显示文摘 | David I.de P Brette S Adam D | | 0,,: | 1 |
| 9 | 砷化镓高电子迁移率晶体管的贮存试验与失效分析显示文摘高电子迁移率晶体管(HEMT)能在高频(>60GHz)下工作,具有增益高和噪声系数小的优点,因而成为微波通信和高速微电子应用中的关键器件.今天,这些器件已成功地用于卫星接收器、微波振荡器、混频器和多路转换器中.文献中描述过的限制HEMT可靠性的失效机理包括:界面和陷阱相关效应、2度泄漏、欧姆与肖特基接点退化、ESD和紫斑.本文的目的是介绍通过商用晶格匹配的AlGaAs/GaAs低噪声HEMT的无偏压贮存试验来鉴别的失效机理。 | I.De Munari 刘涌 | 1996 | 电子产品可靠性与环境试验1996,14,1: | 0 |
| 10 | One stop shopⅢ:taxonomic update with molecular phylogeny for important phytopathogenic genera:51–75(2019)显示文摘This is a continuation of a series focused on providing a stable platform for the taxonomy of phytopathogenic fungi and organisms.This paper focuses on 25 phytopathogenic genera:Alternaria,Capnodium,Chaetothyrina,Cytospora,Cyphellophora,Cyttaria,Dactylonectria,Diplodia,Dothiorella,Entoleuca,Eutiarosporella,Fusarium,Ilyonectria,Lasiodiplodia,Macrophomina,Medeolaria,Neonectria,Neopestalotiopsis,Pestalotiopsis,Plasmopara,Pseudopestalotiopsis,Rosellinia,Sphaeropsis,Stagonosporopsis and Verticillium.Each genus is provided with a taxonomic background,distribution,hosts,disease symptoms,and updated backbone trees.A new database(Onestopshopfungi)is established to enhance the current understanding of plant pathogenic genera among plant pathologists. | Ruvishika S.Jayawardena Kevin D.Hyde Eric H.C.McKenzie Rajesh Jeewon Alan J.L.Phillips Rekhani H.Perera Nimali I.de Silva Sajeewa S.N.Maharachchikumburua Milan C.Samarakoon Anusha H.Ekanayake Danushka S.Tennakoon Asha J.Dissanayake Chada Norphanphoun Chuangen Lin Ishara S.Manawasinghe Qian Tian Rashika Brahmanage Putarak Chomnunti Sinang Hongsanan Subashini C.Jayasiri F.Halleen Chitrabhanu S.Bhunjun Anuruddha Karunarathna Yong Wang | 2019 | Fungal Diversity2019,,5: | 0 |