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| 1 | A multi-locus phylogenetic evaluation of Diaporthe (Phomopsis)显示文摘The genus Diaporthe(Phomopsis)includes important plant pathogenic fungi with wide host ranges and geographic distributions.In the present study,phylogenetic species recognition in Diaporthe is re-evaluated using a multi-locus phylogeny based on a combined data matrix of rDNA ITS,and partial sequences from the translation elongation factor 1-α(EF 1-α),βtubulin(TUB)and calmodulin(CAL)molecular markers.DNA sequences of available extype cultures have been included,providing a multi-locus backbone tree for future studies on Diaporthe.Four utilizable loci were analyzed individually and in combination,and ITS,EF 1-αand multi-locus phylogenetic trees are presented.The phylogenetic tree inferred by combined analysis of four loci provided the best resolution for species as compared to single gene analysis.Notes are provided for nine species previously known in Phomopsis that are transferred to Diaporthe in the present study.The unraveling of cryptic species complexes of Diaporthe based on Genealogical Concordance Phylogenetic Species Recognition(GCPSR)is emphasized. | Dhanushka Udayanga Xingzhong Liu Pedro W.Crous Eric H.C.McKenzie Ekachai Chukeatirote Kevin D.Hyde | 2012 | Fungal Diversity2012,,5: | 10 |
| 2 | A multi-locus backbone tree for Pestalotiopsis, with a polyphasic characterization of 14 new species显示文摘Pestalotiopsis is a taxonomically confused,pathogenic and chemically creative genus requiring a critical reexamination using a multi-gene phylogeny based on ex-type and ex-epitype cultures.In this study 40 isolates of Pestalotiopsis,comprised of 28 strains collected from living and dead plant material of various host plants from China were studied by means of morphology and analysis of ITS,β–tubulin and tef1 gene sequence data.Based on molecular and morphological data we describe 14 new species(Pestalotiopsis asiatica,P.chinensis,P.chrysea,P.clavata,P.diversiseta,P.ellipsospora,P.inflexa,P.intermedia,P.linearis,P.rosea,P.saprophyta,P.umberspora,P.unicolor and P.verruculosa)and three species are epitypified(P.adusta,P.clavispora and P.foedans).Of the 10 gene regions(ACT,β-tubulin,CAL,GPDH,GS,ITS,LSU,RPB 1,SSU and tef1)utilized to resolve cryptic Pestalotiopsis species,ITS,β–tubulin and tef1 proved to be the better markers.The other gene regions were less useful due to poor success in PCR amplification and/or in their ability to resolve species boundaries.As a single gene tef1 met the requirements for an ideal candidate and functions well for species delimitation due to its better species resolution and PCR success.Althoughβ-tubulin showed fairly good differences among species,a combination of ITS,β-tubulin and tef1 gene data gave the best resolution as compared to single gene analysis.This work provides a backbone tree for 22 ex-type/epitypified species of Pestalotiopsis and can be used in future studies of the genus. | Sajeewa S.N.Maharachchikumbura Liang Dong Guo Lei Cai Ekachai Chukeatirote Wen Ping Wu Xiang Sun Pedro W.Crous D.Jayarama Bhat Eric H.C.McKenzie Ali H.Bahkali Kevin D.Hyde | 2012 | Fungal Diversity2012,,5: | 9 |
| 3 | A phylogenetic and taxonomic re-evaluation of the Bipolaris - Cochliobolus - Curvularia Complex显示文摘Three genera,Cochliobolus,Bipolaris and Curvularia form a complex that contains many plant pathogens,mostly on grasses(Poaceae)with a worldwide distribution.The taxonomy of this complex is confusing as frequent nomenclatural changes and refinements have occurred.There is no clear morphological boundary between the asexual genera Bipolaris and Curvularia,and some species show intermediate morphology.We investigated this complex based on a set of ex-type cultures and collections from northern Thailand.Combined gene analysis of rDNA ITS(internal transcribed spacer),GPDH(glyceraldehyde 3-phosphate dehydrogenase),LSU(large subunit)and EF1-α(translation elongation factor 1-α)shows that this generic complex divides into two groups.Bipolaris and Cochliobolus species clustered in Group 1 along with their type species,whereas Curvularia species(including species named as Bipolaris,Cochliobolus and Curvularia)clustered in Group 2,with its generic type.The nomenclatural conflict in this complex is resolved giving priority to the more commonly used established generic names Bipolaris and Curvularia.Modern descriptions of the genera Bipolaris and Curvularia are provided and species resolved in this study are transferred to one of these genera based on their phylogeny. | Dimuthu S.Manamgoda Lei Cai Eric H.C.McKenzie Pedro W.Crous Hugo Madrid Ekachai Chukeatirote Roger G.Shivas Yu Pei Tan Kevin D.Hyde | 2012 | Fungal Diversity2012,,5: | 7 |
| 4 | What are the common anthracnose pathogens of tropical fruits?显示文摘t Species of Colletotrichum are associated with anthracnose of a wide range of host plants including cultivated and wild tropical fruits.The genetic and ecological diversity of species associated with wild fruits are poorly explored,as compared to those associated with pre and postharvest diseases of cultivated fruits.In the present study,isolates of Colletotrichum were obtained from commercially available cultivated fruits,wild fruits(from native trees in natural habitats)and a few herbaceous hosts collected in northern Thailand.These isolates were initially characterized based on analysis of complete sequences of nuclear ribosomal internal transcribed spacer(ITS),into the genetically defined species complexes of Colletotrichum gloeosporioides,C.acutatum,C.boninense and C.truncatum.The isolates were primarily identified in the C.gloeosporioides species complex,based on a strongly supported clade within the ITS gene tree and were further characterized using multi-gene phylogenetic analyses and morphology.Phylogenetic analyses of ITS,partial sequences of actin(ACT),calmodulin(CAL),glyceraldehyde-3-phosphate dehydrogenase(GAPDH),glutamine synthetase(GS)andβtubulin(TUB2)genetic markers were performed individually and in combination.Colletotrichum gloeosporioides sensu stricto was identified from lime(Citrus aurantifolia)and rose apple(Syzygium samarangense).Colletotrichum fructicola was isolated from dragon fruit(Hylocerous undatus)and jujube(Ziziphus sp.).Colletotrichum endophytica was found only from an unknown wild fruit.We observed a considerable genetic and host diversity of species occurring on tropical fruits within the clade previously known as Colletotrichum siamense sensu lato.The clade consists of isolates identified as pre and postharvest pathogens on a wide range of fruits,including coffee(Coffea arabica),custard apple(Annona reticulata),Cerbera sp.,figs(Ficus racemosa)mango(Mangifera indica),neem(Azadirachta indica)and papaya(Carica papaya)and was the dominant group of species among most wild fruits studied.With the exception of one isolate from banana,which grouped in the C.siamense clade,all the other isolates were identified as Colletotrichum musae.A new species,Colletotrichum syzygicola,associated with Syzygium samarangense in Thailand,is introduced with descriptions and illustrations.This study highlights the need to re-assess the evolutionary relationships of Colletotrichum species occurring on cultivated and wild fruits with emphasis on their ecology and cryptic diversification including sampling at regional and global scales. | Dhanushka Udayanga Dimuthu S.Manamgoda Xingzhong Liu Ekachai Chukeatirote Kevin D.Hyde | 2013 | Fungal Diversity2013,,4: | 6 |
| 5 | 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 |
| 6 | Insights into the genus Diaporthe:phylogenetic species delimitation in the D.eres species complex显示文摘The genus Diaporthe comprises pathogenic,endophytic and saprobic species with both temperate and tropical distributions.Cryptic diversification,phenotypic plasticity and extensive host associations have long complicated accurate identifications of species in this genus.The delimitation of the generic type species Diaporthe eres has been uncertain due to the lack of ex-type cultures.Species limits of D.eres and closely related species were evaluated using molecular phylogenetic analysis of eight genes including nuclear ribosomal internal transcribed spacer(ITS),partial sequences of actin(ACT),DNA-lyase(Apn2),translation elongation factor 1-α(EF1-α),beta-tubulin(TUB),calmodulin(CAL),60s ribosomal protein L37(FG1093)and histone-3(HIS).The occurrence of sequence heterogeneity of ITS within D.eres is observed,which complicates the analysis and may lead to overestimation of the species diversity.The strict criteria of Genealogical Concordance Phylogenetic Species Recognition(GCPSR)were applied to resolve species boundaries based on individual and combined analyses of other seven genes except the ITS.We accept nine distinct phylogenetic species including Diaporthe alleghaniensis,D.alnea,D.bicincta,D.celastrina,D.eres,D.helicis,D.neilliae,D.pulla and D.vaccinii.Epitypes are designated for D.alnea,D.bicincta,D.celastrina,D.eres,D.helicis and D.pulla.Modern descriptions and illustrations are provided for these species.Newly designed primers are introduced to amplify and sequence the Apn2(DNA-lyase)gene in Diaporthe.Based on phylogenetic informativeness profiles,EF1-α,Apn2 and HIS genes are recognised as the best markers for defining species in the D.eres complex. | Dhanushka Udayanga Lisa A.Castlebury Amy Y.Rossman Ekachai Chukeatirote Kevin D.Hyde | 2014 | Fungal Diversity2014,,4: | 3 |
| 7 | Phyllosticta capitalensis,a widespread endophyte of plants显示文摘Phyllosticta capitalensis is an endophyte and weak plant pathogen with a worldwide distribution presently known from 70 plant families.This study isolated P.capitalensis from different host plants in northern Thailand,and determined their different life modes.Thirty strains of P.capitalensis were isolated as endophytes from 20 hosts.An additional 30 strains of P.capitalensis from other hosts and geographic locations were also obtained from established culture collections.Phylogenetic analysis using ITS,ACTand TEF gene data confirmed the identity of all isolates.Pathogenicity tests with five strains of P.capitalensis originating from different hosts were completed on their respective host plants.In all cases there was no infection of healthy leaves,indicating that this endophyte does not cause disease on healthy,unstressed host plants.That P.capitalensis is often isolated as an endophyte has important implications in fungal biology and plant health.Due to its endophytic nature,P.capitalensisis commonly found associated with lesions of plants,and often incorrectly identified as a species of quarantine importance,which again has implications for trade in agricultural and forestry production. | Saowanee Wikee Lorenzo Lombard Pedro W.Crous Chiharu Nakashima Keiichi Motohashi Ekachai Chukeatirote Siti A.Alias Eric H.C.McKenzie Kevin D.Hyde | 2013 | Fungal Diversity2013,,3: | 1 |
| 8 | Free-amino acid pro-files of thua nao, a Thai fermented soybean 显示文摘 | KATEKAN D ARUNEE A EKACHAI C | 2011 | Food Chem2011,125,2: | 1 |
| 9 | Errors associated with light-pipe radiation thermometer temperature measurements 显示文摘 | Qu Yan Puttitwong Ekachai Howell John R | 2007 | IEEE Transactions on Semiconductor Manufacturingm2007,20,1: | 1 |
| 10 | Endophytic Colletotrichum from tropical grasses with a new species C. endophytica显示文摘t Endophytic fungi are a diverse and important group of microorganisms.We investigated the occurrence of Colletotrichum species as endophytes in two common tropical grass species,Pennisetum purpureum(dwarf napier)and Cymbopogon citratus(lemon grass)in Thailand.Combined phylogenetic analysis of ITS,partial sequences of actin(ACT),calmodulin(CAL)and glyceraldehydes-3-phosphate dehydrogenase(GAPDH)gene regions and morphology were used to characterize the species.This is the first report of an association as endophytes of Colletotrichum fructicola,C.tropicale and C.siamense with Pennisetum purpureum,and C.fructicola and C.siamense with Cymbopogon citratus.Colletotrichum endophytica sp.nov.associated with Pennisetum purpureum,is introduced based on multi-locus phylogenetic analysis with descriptions and illustrations.The potential hyperdiversity of the endophytic Colletotrichum species associated with tropical grasses is discussed with an emphasis on future research. | Dimuthu S.Manamgoda Dhanushka Udayanga Lei Cai Ekachai Chukeatirote Kevin D.Hyde | 2013 | Fungal Diversity2013,,4: | 1 |
| 11 | RISK FACTORS FOR CANCER IN RENAL TRANSPLANT RECIPIENTS1显示文摘 | Ekachai Danpanich Bertram L. Kasiske | 1999 | Transplantation1999,,12: | 1 |
| 12 | Free-amino acid profiles of Thua nao,a Thai fermented soybean显示文摘 | Katekan D Arunee A Ekachai C | 2011 | Food Chemistry2011,125,2: | 1 |
| 13 | A molecular phylogenetic reappraisal of the Didymosphaeriaceae(=Montagnulaceae)显示文摘The ascomycetous families,Didymosphaeriaceae and Montagnulaceae,have been treated in Pleosporales,Dothideomycetes,and both include saprobes,endophytes and pathogens associated with a wide variety of substrates worldwide.Didymosphaeriaceae was characterized by 1-septate ascospores and trabeculate pseudoparaphyses,mainly anastomosing above the asci,while species in Montagnulaceae had 1 to multi-septate ascospores and generally cellular pseudoparaphyses.In recent treatments,Bimuria,Didymocrea,Kalmusia,Karstenula,Montagnula,Paraphaeosphaeria,Paraconiothyrium and Letendraea were placed in Montagnulaceae,while only Didymosphaeria has been placed in Didymosphaeriaceae.New morphological and molecular data from recent collections have become available and thus the understanding of the families can be improved.Based on analyses of concatenated internal transcribed spacer(ITS)with LSU,SSU andβ-tubulin gene sequences,the taxonomy of the genera classified in these families are reassessed.Our phylogenetic analyses conclude that,the recently introduced Didymosphaeria rubi-ulmifolii with Paraconiothyrium brasi liense species complex,Alloconiothyrium,Bimuria,Deniquelata,Didymocrea,Kalmusia,Karstenula,Letendraea,Montagnula,Neokalmusia,Paraconiothyrium,Paraphaeosphaeria,Phaeodothis and Tremateia,forms a robust clade named here Didymosphaeriaceae.We therefore synonymize Montagnulaceae under Didymosphaeriaceae which is the oldest name and has priority and provide a update account of the family.Didymosphaeria is represented by Didymosphaeria rubi-ulmifolii.A new genus,Neokalmusia,is introduced in the family to accommodate the bambusi colous taxa Kalmusia brevispora and K.scabrispora.This introduction is based on molecular data coupled with morphology.One new species,Paraconiothyrium magnoliae and the sexual morph of Paraconiothyrium fuckelii,is also introduced.Julella and Barria are assigned to the family based on morphological similarity with Didymosphaeriaceae.Wilmia(previously referred to the Phaeosphaeriaceae)is synonymized under Letendraea(Didymosphaeriaceae).Furthermore,a new species,Letendraea cordylinicola,is introduced and placed in Didymosphaeriaceae based on phylogeny and morphology.The paraphyletic nature of Paraconiothyrium is partially resolved,but further sampling with fresh collections and molecular data of species in this genus are needed to obtain a natural classification. | Hiran A.Ariyawansa Kazuaki Tanaka Kasun M.Thambugala Rungtiwa Phookamsak Qing Tian Erio Camporesi Sinang Hongsanan Jutamart Monkai Dhanushka N.Wanasinghe Ausanan Mapook Ekachai Chukeatirote Ji-Chuan Kang Jian-Chu Xu Eric H.C.McKenzie E.B.Gareth Jones Kevin D.Hyde | 2014 | Fungal Diversity2014,,5: | 1 |
| 14 | Dothideales显示文摘The type specimens or representative specimens of the potentially dothidealean genera Bagnisiella,Botryochora,Coccostromella,Columnosphaeria,Delphinel la,Dictyodothis,Discosphaerina,Dothidea,Dothiora,Endodothiora,Jaffuela,Mycoporis,Omphalospora,Pachysacca,Plowrightia,Saccothecium,Stylodothis,Sydowia and Yoshinagaia were examined while,fresh specimens of Aureobasidium pullulans,Dothidea insculpta,Plowrightia ribesia and Saccothecium sepincola were made from Italy and Thailand.An introduction and the history of these genera,their family placement,morphology,and molecular phylogeny are provided.Morphology plus GenBank data are used to provide a systematic treatment of Dothideales.Phylogenetic analysis of LSU,SSU and ITS gene regions was carried out and in the resulting phylogenetic tree the taxa cluster in two clades with high bootstrap support.Clade A comprises Dothideaceae,the family type of Dothideales.The family Dothioraceae is not recognized as a distinct family and is synonymized under Dothideaceae.Neocylindroseptoria is introduced to accommodate Cylindroseptoria pistaciae as it forms a well-supported distinct clade in Dothideaceae.Clade B comprises Aureobasidium,Kabatiella,Pseudoseptoria,Saccothecium and Selenophoma species and Columnosphaeria fagi,for which we propose a new family,Aureobasidiaceae.The recently introduced Sydowia eucalypti also clustered within Clade B and therefore based on morphology and molecular phylogeny a new genus Pseudosydowia is introduced for Sydowia eucalypti.Celosporium laricicola is separated in a distinct clade,and therefore it is placed in Dothideales,genera,incertae sedis.The genera Bagnisiella,Botryochora,Coccostromella,Jaffuela,Lucidascocarpa,Mycoporis,Omphalospora,Pachysacca and Yoshinagaia are excluded from Dothideales and their placements are discussed. | Kasun M.Thambugala Hiran A.Ariyawansa Yan-Mei Li Saranyaphat Boonmee Sinang Hongsanan Qing Tian Chonticha Singtripop D.Jayarama Bhat Erio Camporesi Ruvishika Jayawardena Zuo-Yi Liu Jian-Chu Xu Ekachai Chukeatirote Kevin D.Hyde | 2014 | Fungal Diversity2014,,5: | 1 |
| 15 | Families of Dothideomycetes显示文摘Dothideomycetes comprise a highly diverse range of fungi characterized mainly by asci with two wall layers(bitunicate asci)and often with fissitunicate dehiscence.Many species are saprobes,with many asexual states comprising important plant pathogens.They are also endophytes,epiphytes,fungicolous,lichenized,or lichenicolous fungi.They occur in terrestrial,freshwater and marine habitats in almost every part of the world.We accept 105 families in Dothideomycetes with the new families Anteagloniaceae,Bambusicolaceae,Biatriosporaceae,Lichenoconiaceae,Muyocopronaceae,Paranectriellaceae,Roussoellaceae,Salsugineaceae,Seynesiopeltidaceae and Thyridariaceae introduced in this paper.Each family is provided with a description and notes,including asexual and asexual states,and if more than one genus is included,the type genus is also characterized.Each family is provided with at least one figure-plate,usually illustrating the type genus,a list of accepted genera,including asexual genera,and a key to these genera.A phylogenetic tree based on four gene combined analysis add support for 64 of the families and 22 orders,including the novel orders,Dyfrolomycetales,Lichenoconiales,Lichenotheliales,Monoblastiales,Natipusillales,Phaeotrichales and Strigulales.The paper is expected to provide a working document on Dothideomycetes which can be modified as new data comes to light.It is hoped that by illustrating types we provide stimulation and interest so that more work is carried out in this remarkable group of fungi. | Kevin D.Hyde E.B.Gareth Jones Jian-Kui Liu Hiran Ariyawansa Eric Boehm Saranyaphat Boonmee Uwe Braun Putarak Chomnunti Pedro W.Crous Dong-Qin Dai Paul Diederich Asha Dissanayake Mingkhuan Doilom Francesco Doveri Singang Hongsanan Ruvishika Jayawardena James D.Lawrey Yan-Mei Li Yong-Xiang Liu Robert Lücking Jutamart Monkai Lucia Muggia Matthew P.Nelsen Ka-Lai Pang Rungtiwa Phookamsak Indunil C.Senanayake Carol A.Shearer Satinee Suetrong Kazuaki Tanaka Kasun M.Thambugala Nalin N.Wijayawardene Saowanee Wikee Hai-Xia Wu Ying Zhang Begoña Aguirre-Hudson S.Aisyah Alias AndréAptroot Ali H.Bahkali Jose L.Bezerra D.Jayarama Bhat Erio Camporesi Ekachai Chukeatirote Cécile Gueidan David L.Hawksworth Kazuyuki Hirayama Sybren De Hoog Ji-Chuan Kang Kerry Knudsen Wen-Jing Li Xing-Hong Li Zou-Yi Liu Ausana Mapook Eric H.C.McKenzie Andrew N.Miller Peter E.Mortimer Alan J.L.Phillips Huzefa A.Raja Christian Scheuer Felix Schumm Joanne E.Taylor Qing Tian Saowaluck Tibpromma Dhanushka N.Wanasinghe Yong Wang Jian-Chu Xu Supalak Yacharoen Ji-Ye Yan Min Zhang | 2013 | Fungal Diversity2013,,6: | 1 |
| 16 | Free Amino Acid Profiles of Fermented Soybean Products Prepared by Bacillus subtilis and Rhizopus oligosporus显示文摘Fermented soybean is one of the traditional foods widely consumed in many Asian countries. Most products(i.e., Natto, Jang, Kinema and Thua nao) are produced mainly by the bacterial activity. This study was performed as a part of the program to improve the soybean fermentation, and a use of the co-culture between the bacterium Bacillus subtilis and the fungus Rhizopus oligosporus was selected. For fermentation, the raw soybeans were washed, sterilized by autoclaving, and inoculated with a mixed microbial starter culture of B. subtilis(102 CFU · g^(-1)) and R. oligosporus(102 conidia · g^(-1)). The Free Amino Acid(FAA) contents were then investigated by using High Performance Liquid Chromatography(HPLC). The results showed that the amounts of FAAs and essential amino acids in the fermented soybean samples were found at significantly higher concentration when compared to those of the cooked, non-fermented soybean samples(p<0.05). These data indicated that an involvement of microbial fermentation helped to accelerate an increase of FAA. The food compositional data were useful as a reference(and/or guidance) for the nutritional value, when compared to other fermented soybeans and related products. | Anittaya Kanghae Prapassorn Damrongkoo Eungwanichayapant Ekachai Chukeatirote | 2017 | Journal of Northeast Agricultural University(English Edition)2017,24,2: | 1 |
| 17 | Use of bagasse fiber ash as secondary filler in silica or carbon black filled natural rubber compound显示文摘 | Sirichai Kanking Piyaporn Niltui Ekachai Wimolmala | 2012 | Materials&Design2012,41,: | 1 |
| 18 | Mechanical and morphological properties of cellular NR/SBR vulcanizates under thermal and weathering ageing显示文摘 | Ekachai Wimolmala Kritsara Khongnual | 2009 | Journal of Applied Polymer Science2009,114,: | 1 |
| 19 | Free-amino acid profiles of thua nao, a Thai fermented soybean显示文摘 | Katekan Dajanta Arunee Apichartsrangkoon Ekachai Chukeatirote | 2011 | Food Chemistry2011,125,: | 1 |
| 20 | Volatile profiles of thua nao, a Thai fermen- ted soy product显示文摘 | Katekan Dajanta Arunee Apichartsrangkoon Ekachai Chukeatirote | 2011 | Food Chemistry2011,125,: | 1 |