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Lopadostoma fagi (Lopadostomataceae) on Fagus sylvatica from Italy
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作者 Daranagama DA Camporesi E +4 位作者 liu xz Chamyuang S Stadler M Jingzu S Hyde KD 《Studies in Fungi》 2016年第1期80-89,共10页
A new record of Lopadostoma fagi is described in Italy from Fagus sylvatica based on morphological and molecular data.It has effused-pulvinate stromata immersed in the host tissue,with a narrow,black,carbonized encase... A new record of Lopadostoma fagi is described in Italy from Fagus sylvatica based on morphological and molecular data.It has effused-pulvinate stromata immersed in the host tissue,with a narrow,black,carbonized encasement.The ectostromatic disc is visible as a clypeus and surrounded by the reddish brown bark surface.In the combined phylogenetic analysis of ITS,LSU and RPB2 sequence data,the strain derived from the specimen clustered with other L.fagi strains with high bootstrap support.A morphological description with detailed photographs for L.fagi is provided in this study. 展开更多
关键词 ASCOMYCETES PHYLOGENY SORDARIOMYCETES TAXONOMY XYLARIALES
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Ramularia coleosporii(Mycosphaerella)on Plumeria rust in Thailand
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作者 Sun JZ liu JK +2 位作者 McKenzie EHC liu xz Hyde KD 《Studies in Fungi》 2017年第1期38-46,共9页
A hyperparasitic fungus was found on uredinia of Coleosporium plumeria on leaves of Plumeria rubra in Thailand.The hyperparasite was identified as Ramularia coleosporii following an examination of its morphological ch... A hyperparasitic fungus was found on uredinia of Coleosporium plumeria on leaves of Plumeria rubra in Thailand.The hyperparasite was identified as Ramularia coleosporii following an examination of its morphological characters and a phylogenetic analysis by using ITS sequence data.This is the first record of R.coleosporii on C.plumeriae in Thailand.Ramularia coleosporii has the potential for biocontrol management strategies of the rust. 展开更多
关键词 BIOCONTROL Coleosporium plumeriae fungicolous fungi HYPERPARASITE
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严重烫伤后肠道菌群移位的分子机制:囊性纤维化穿膜传导调节蛋白的作用
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作者 liu xz Chen Y +2 位作者 You B 杨云稀(编译) 孙炳伟(审校) 《中华烧伤与创面修复杂志》 CAS CSCD 北大核心 2022年第2期129-129,共1页
严重烫伤后肠道缺血缺氧会引起肠上皮屏障受损,发生肠道细菌移位(EBT),从而导致严重的并发症,如SIRS、脓毒症和MOF的发生。囊性纤维化穿膜传导调节蛋白(CFTR)可因肠上皮细胞缺氧而表达下调,进而影响紧密连接蛋白的正常结构与功能,而紧... 严重烫伤后肠道缺血缺氧会引起肠上皮屏障受损,发生肠道细菌移位(EBT),从而导致严重的并发症,如SIRS、脓毒症和MOF的发生。囊性纤维化穿膜传导调节蛋白(CFTR)可因肠上皮细胞缺氧而表达下调,进而影响紧密连接蛋白的正常结构与功能,而紧密连接蛋白正是维持肠道屏障的关键结构。 展开更多
关键词 严重烫伤 囊性纤维化 紧密连接蛋白 SIRS 缺血缺氧 肠道屏障 肠上皮细胞 调节蛋白
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