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| 1 | 咖啡的营养诊断与施肥显示文摘阿拉伯种或罗巴斯塔种咖啡是热带、亚热带高海拔森林中的多年生植物,植后大约10年成龄,保持生产能力好多年。依海拔和其它因素变化,它要求中等到轻度荫蔽。阿拉伯种最适生长温度为15—35℃,罗巴斯塔种20—30℃,相对湿度60—90%。在结构疏松、有机质含量高,保持水份性能好,呈微酸性反应(pH6.5)的土壤,咖啡生长良好。咖啡从开花到果实成熟要8—10个月时间,每公顷种植1000—3000株,净咖啡产量一般为1—3吨。每生产1吨咖啡豆。 | Jayarama 陈建白 | 1989 | 云南热作科技1989,12,3: | 7 |
| 2 | Towards a natural classification of Botryosphaeriales显示文摘The type specimens of Auerswaldia,Auerswaldiella,Barriopsis,Botryosphaeria,Leptoguignardia,Melanops,Neodeightonia,Phaeobotryon,Phaeobotryosphaeria,Phyllachorella,Pyrenostigme,Saccharata,Sivanesania,Spencermartinsia and Vestergrenia were examined and fresh specimens of Botryosphaeriales were collected from Thailand.This material is used to provide a systematic treatment of Botryosphaeriales based on morphology and phylogeny.Two new genera,Botryobambusa and Cophinforma are introduced and comparedwith existing genera.Four species newto science,Auerswaldia dothiorella,A.lignicola,Botryosphaeria fusispora and Phaeobotryosphaeria eucalypti,are also described and justified.We accept 29 genera in Botryosphaeriales,with Macrovalsaria being newly placed.In the phylogenetic tree,the 114 strains of Botyrosphaeriales included in the analysis cluster into two major clades with 80%,96%and 1.00(MP,ML and BY)support,with Clade A containing the family type of Botryosphaeriaceae,and Clade B containing Phyllosticta,Saccharata and Melanops species.This group may represent Phyllostictaceae.In Clade A the taxa analyzed cluster in eight sub-clades(Clades A1-8).Clade A1 comprises three distinct subclusters corresponding to the genera Diplodia(Diplodia Clade),Neodeightonia(Neodeightonia Clade)and Lasiodiplodia(Lasiodiplodia Clade).Clade A2 clusters into three groups representing Phaeobotryosphaeria(100%),Phaeobotryon(100%)and Barriopsis(94%).Clade A3 incorporates 17 strains that cluster into three well-supported genera(Dothiorella(86%),Spencermartinsia(100%)and Auerswaldia(63%);the position of Macrophomina is not stable.Clade A4 is a single lineage(100%)representing the new genus Botryobambusa.Clade A5 is a wellsupported subclade incorporating Neofussicoccum.Clade A6 represents the type species of Botryosphaeria,three other Botryosphaeria species and two other genera,Neoscytalidium and Cophinforma gen.nov.Clade A7 comprises two Pseudofusicoccum species and Clade A8 has two Aplosporella species.These sub-clades may eventually require separate families but this requires analysis of a much larger dataset.Our data advances the understanding of Botryosphaeriales,there is,however,still much research to be carried out with resolution of families and genera,linkage of sexual and asexual morphs and differentiation of cryptic species. | Jian-Kui Liu Rungtiwa Phookamsak Mingkhuan Doilom Saowanee Wikee Yan-Mei Li Hiran Ariyawansha Saranyaphat Boonmee Putarak Chomnunti Dong-Qin Dai Jayarama D.Bhat Andrea I.Romero Wen-Ying Zhuang Jutamart Monkai E.B.Gareth Jones Ekachai Chukeatirote Thida Win Ko Ko Yong-Chang Zhao Yong Wang Kevin D.Hyde | 2012 | Fungal Diversity2012,,6: | 4 |
| 3 | Families of Sordariomycetes显示文摘Sordariomycetes is one of the largest classes of Ascomycota that comprises a highly diverse range of fungi characterized mainly by perithecial ascomata and inoperculate unitunicate asci.The class includes many important plant pathogens,as well as endophytes,saprobes,epiphytes,coprophilous and fungicolous,lichenized or lichenicolous taxa.They occur in terrestrial,freshwater and marine habitats worldwide.This paper reviews the 107 families of the class Sordariomycetes and provides a modified backbone tree based on phylogenetic analysis of four combined loci,with a maximum five representative taxa from each family,where available.This paper brings together for the first time,since Barrs’1990 Prodromus,descriptions,notes on the history,and plates or illustrations of type or representative taxa of each family,a list of accepted genera,including asexual genera and a key to these taxa of Sordariomycetes.Delineation of taxa is supported where possible by molecular data.The outline is based on literature to the end of 2015 and the Sordariomycetes now comprises six subclasses,32 orders,105 families and 1331 genera.The family Obryzaceae and Pleurotremataceae are excluded from the class. | Sajeewa S.N.Maharachchikumbura Kevin D.Hyde E.B.Gareth Jones E.H.C.McKenzie Jayarama D.Bhat Monika C.Dayarathne Shi-Ke Huang Chada Norphanphoun Indunil C.Senanayake Rekhani H.Perera Qiu-Ju Shang Yuanpin Xiao Melvina J.D’souza Sinang Hongsanan Ruvishika S.Jayawardena Dinushani A.Daranagama Sirinapa Konta Ishani D.Goonasekara Wen-Ying Zhuang Rajesh Jeewon Alan J.L.Phillips Mohamed A.Abdel-Wahab Abdullah M.Al-Sadi Ali H.Bahkali Saranyaphat Boonmee Nattawut Boonyuen Ratchadawan Cheewangkoon Asha J.Dissanayake Jichuan Kang Qi-Rui Li Jian Kui Liu Xing Zhong Liu Zuo-Yi Liu JJennifer Luangsa-ard Ka-Lai Pang Rungtiwa Phookamsak Itthayakorn Promputtha Satinee Suetrong Marc Stadler Tingchi Wen Nalin N.Wijayawardene | 2016 | Fungal Diversity2016,,4: | 3 |
| 4 | The families Distoseptisporaceae fam.nov.,Kirschsteiniotheliaceae,Sporormiaceae and Torulaceae,with new species from freshwater in Yunnan Province,China显示文摘During a north–south latitudinal survey of aquatic fungi on submerged wood and herbaceous material in streams in the Asian region,we collected several hyphomycetous taxa.This paper is part of a series where we provide illustrated accounts of these taxa and place them in a natural classification in the fungi.DNA sequence based phylogenies in recent literature have shown that Dendryphion,Sporidesmium and Torula-like species are polyphyletic in the phylum Ascomycota and their taxonomyhas been problematic due to a lack of understanding of the importance of morphological characters used to delimit taxa,as well as the lack of ex-type or reference strains.Based on multi-locus phylogenies together with morphology,we propose the novel family Distoseptisporaceae(Sordariomycetes)and three novel genera Neotorula(Pleosporales,Dothideomycetes),Distoseptispora(Sordariomycetes)and Pseudosporidesmium(Sordariomycetes).In addition,Dendryphion aquaticum,D.submersum,Distoseptispora fluminicola,D.aquatica,Kirschsteiniothelia submersa,Neotorula aquatica,Sporidesmium aquaticum,S.submersum and S.fluminicola are introduced as new species.Pseudosporidesmium knawiae comb.nov.is proposed to accommodate Sporidesmium knawiae in Sordariomycetes.The polyphyletic nature of Dendryphion,Sporidesmium and Torula-like species are partially resolved,but further sampling with fresh collections and molecular data of species are needed to obtain a natural classification. | HongYan Su Kevin D.Hyde Sajeewa S.N.Maharachchikumbura Hiran A.Ariyawansa ZongLong Luo Itthayakorn Promputtha Qing Tian ChuanGen Lin QiuJu Shang YongChang Zhao HongMei Chai XiaoYing Liu Ali H.Bahkali Jayarama D.Bhat Eric H.C.McKenzie DeQun Zhou | 2016 | Fungal Diversity2016,,5: | 2 |
| 5 | Cardiogenic differentiation of mesenchymal stem cells on elastomeric poly (glycerol sebacate)/collagen core/shell fibers显示文摘AIM: To facilitate engineering of suitable biomaterials to meet the challenges associated with myocardial infarction. METHODS: Poly (glycerol sebacate)/collagen (PGS/ collagen) core/shell fibers were fabricated by core/ shell electrospinning technique, with core as PGS and shell as collagen polymer; and the scaffolds were characterized by scanning electron microscope (SEM), fourier transform infrared spectroscopy (FTIR), contact angle and tensile testing for cardiac tissue engineering. Collagen nanofibers were also fabricated by electrospinning for comparison with core/shell fibers. Studies on cell-scaffold interaction were carriedout using cardiac cells and mesenchymal stem cells (MSCs) co-culture system with cardiac cells and MSCs separately serving as positive and negative controls respectively. The co-culture system was characterized for cell proliferation and differentiation of MSCs into cardiomyogenic lineage in the co-culture environment using dual immunocytochemistry. The co-culture cells were stained with cardiac specific marker proteins like actinin and troponin and MSC specific marker protein CD 105 for proving the cardiogenic differentiation of MSCs. Further the morphology of cells was analyzed using SEM.RESULTS: PGS/collagen core/shell fibers, core is PGS polymer having an elastic modulus related to that of cardiac fibers and shell as collagen, providing natural environment for cellular activities like cell adhesion, proliferation and differentiation. SEM micrographs of electrospun fibrous scaffolds revealed porous, beadless, uniform fibers with a fiber diameter in the range of 380 ± 77 nm and 1192 ± 277 nm for collagen fibers and PGS/collagen core/shell fibers respectively. The obtained PGS/collagen core/shell fibrous scaffolds were hydrophilic having a water contact angle of 17.9 ± 4.6° compared to collagen nanofibers which had a contact angle value of 30 ± 3.2°. The PGS/collagen core/shell fibers had mechanical properties comparable to that of native heart muscle with a young's modulus of 4.24 ± 0.7 MPa, while that of collagen nanofibers was comparatively higher around 30.11 ± 1.68 MPa. FTIR spectrum was performed to confirm the functional groups present in the electrospun scaffolds. Amide Ⅰ and amide Ⅱ of collagen were detected at 1638.95 cm -1 and 1551.64 cm -1 in the electrospun collagen fibers and at 1646.22 cm -1 and 1540.73 cm -1 for PGS/collagen core/shell fibers respectively. Cell culture studies performed using MSCs and cardiac cells co-culture environment, indicated that the cellproliferation significantly increased on PGS/collagen core/shell scaffolds compared to collagen fibers and the cardiac marker proteins actinin and troponin were expressed more on PGS/collagen core/shell scaffolds compared to collagen fibers alone. Dual immunofluorescent staining was performed to further confirm the cardiogenic differentiation of MSCs by employing MSC specific marker protein, CD 105 and cardiac specific marker protein, actinin. SEM observations of cardiac cells showed normal morphology on PGS/collagen fibers and providing adequate tensile strength for the regeneration of myocardial infarction. CONCLUSION: Combination of PGS/collagen fibers and cardiac cells/MSCs co-culture system providing natural microenvironments to improve cell survival and differentiation, could bring cardiac tissue engineering to clinical application. | Rajeswari Ravichandran Jayarama Reddy Venugopal Subramanian Sundarrajan Shayanti Mukherjee Seeram Ramakrishna | 2013 | World Journal of Cardiology2013,5,3: | 2 |
| 6 | Simulation model for electron irradiated IGZO thin film transistors显示文摘An efficient drain current simulation model for the electron irradiation effect on the electrical parameters of amorphous In–Ga–Zn–O(IGZO) thin-film transistors is developed. The model is developed based on the specifications such as gate capacitance, channel length, channel width, flat band voltage etc. Electrical parameters of un-irradiated IGZO samples were simulated and compared with the experimental parameters and 1 kGy electron irradiated parameters. The effect of electron irradiation on the IGZO sample was analysed by developing a mathematical model. | G K Dayananda C Shantharama Rai A Jayarama Hyun Jae Kim | 2018 | Journal of Semiconductors2018,39,2: | 2 |
| 7 | Tubeufiales,ord.nov.,integrating sexual and asexual generic names显示文摘Tubeufiaceae is based on the generic type Tubeufia,which is characterized by superficial,oval and bright ascomata,bitunicate asci,mostly long fusiform to filiform,transeptate ascospores and hyphomycetous asexual states with helicosporous conidia.Most species in this family are saprobic on terrestrial woody substrates and some are aquatic.Their distinct morphology as well as combined LSU,SSU and TEF1 sequence analysis show that Tubeufiaceae should be accommodated in a new order Tubeufiales,which is introduced in this paper.Phylogenetic analyses of combined LSU and ITS sequences were used to resolve genera and species within the family Tubeufiaceae.In this study,we examine and incorporate sexual and asexual states of genera in Tubeufiales to provide a modern treatment,based on single names.An epitype for Tubeufia javanica,the type species of Tubeufia,is designated and represents Tubeufia sensu stricto.The genera Acanthophiobolus,Acanthostigma,Boerlagiomyces,Chlamydotubeufia,Kamalomyces,Podonectria,Thaxteriella and Thaxteriellopsis are accepted,Acanthostigmina is reinstated,and the asexual genera Aquaphila,Helicoma,Helicomyces,Helicosporium and Tamhinispora are accepted in Tubeufiaceae.Three new genera Acanthohelicospora,Helicangiospora and Neoacanthostigma are introduced.The genus Bifrontia is added to the family based on morphological similarity.The incongruous morphological genera Acanthostigmella,Amphinectria,Chaetocrea,Chaetosphaerulina,Glaxoa,Malacaria,Melioliphila,Paranectriella,Puttemansia,Rebentischia and Uredinophila are excluded from Tubeufiaceae despite having characteristic ascomata with setae and multiseptate long spores.A key to genera accepted in Tubeufiaceae is provided. | Saranyaphat Boonmee Amy Y.Rossman Jian-Kui Liu Wen-Jing Li Don-Qing Dai Jayarama D.Bhat E.B.Gareth Jones Eric H.C.McKenzie Jian-Chu Xu Kevin D.Hyde | 2014 | Fungal Diversity2014,,5: | 2 |
| 8 | A study on major inorganic ion composition of atmospheric aerosols at Tirupati 显示文摘 | Chandra Mouli P Venkata Mohanb S Jayarama Reddya S | 2003 | Journal of Hazardous Materials2003,96,: | 1 |
| 9 | Prevalence and pattern of dyslipidemia in type 2 diabetes mellitus patients in a rural tertiary care centre, southern India 显示文摘 | Jayarama N Madhavi Reddy Lakshmaiah V | 2013 | Global Journal of Medicine and Public Health2013,1,3: | 1 |
| 10 | Buckled structures and 5-azacytidine enhance cardiogenic differentiation of adipose-derived stem cells显示文摘 | Rajeswari Ravichandran Jayarama Reddy Venugopal Martina Mueller Subramanian Sundarrajan Shayanti Mukherjee Damian Pliska Erich Wintermantel Seeram Ramakrishna | 2013 | Nanomedicine2013,,12: | 1 |
| 11 | Nucleotide Sequence Analysis of the Capsid Genes and the Right-Hand Terminal Palindrome of Porcine Parvovirus, Strain NADL-2显示文摘 | Jayarama V Sukla B Ranga V S | 1989 | Viology1989,173,: | 1 |
| 12 | Characterization of phase transformation behavior and micro structural development of electroless Ni-B coating 显示文摘 | PALA S VERMAA N JAYARAMA V | 2011 | Materials Science and Engineering A2011,528,28: | 1 |
| 13 | RHABDOMYOLYSIS显示文摘 | Priya Visweswaran Jayarama Guntupalli | 1999 | Critical Care Clinics1999,,2: | 1 |
| 14 | Akt-phosphorylated mitogen- activated kinase-activating death domain protein(MADD) inhibits TRAIL-induced apoptosis by blocking Fas-associated death domain (FADD) association with death receptor 4显示文摘 | Li P Jayarama S Ganesh L | 2010 | J Biol Chem2010,285,22: | 1 |
| 15 | Primed in situ labeling(PRINS) for evalution of gene deletions in cancer显示文摘 | Augandhi A Tharapel Jayarama S | 2002 | Am J Med Genet2002,107,: | 1 |
| 16 | Down-modulation of expression, or dephosphorylation,of IG20/MADD in tumor necrosis factor-related apoptosis-inducing ligand-resistant thyroid cancer cells makes them susceptible to treatment with this ligand 显示文摘 | Li L C Jayarama S Pilli T | 2013 | Thyroid2013,23,1: | 1 |
| 17 | Down modulation of IG20/MADD expression or phosphorylation renders TRAIL resistant thyroid cancer cells susceptible to TRAIL treatment显示文摘 | Li L Jayarama S Pilli T | 2012 | Thyroid2012,21,: | 1 |
| 18 | Broad-spectrum virus reduction in red cell concentrates using lnactineTM penllo chemistry显示文摘 | Lazo A Tassello J Jayarama V | | 0,,04: | 1 |
| 19 | Minimally invasive in- jectable short nanofibers of poly (glycerol sebacate ) for cardiac tissue engineering 显示文摘 | Rajeswari Ravichandran Jayarama Reddy Venugopal Subramanian Sundarrajan | 2012 | Nanotechnology2012,23,38: | 1 |
| 20 | Nanobioengineered 'electrospun composite nanofibers and osteoblasts for bone regenera 显示文摘 | Jayarama Reddy Venugopal Sharon Low Aw Tar Choon | 2008 | Artificial Organs2008,32,5: | 1 |