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3篇 您的检索式:作者名="Fuhua Pang"
    题名 作者 年代 出处 被引量
1The complexity of the Fragaria x ananassa(octoploid)transcriptome by singlemolecule long-read sequencing显示文摘Strawberry(Fragaria x ananassa)is an allopolyploid species with diverse and complex transcripts.The regulatory mechanisms of fruit development and maturation have been extensively studied;however,little is known about the signaling mechanisms that direct this process in octoploid strawberry(Fragaria x ananassa).Here,we used long-read sequencing(LRS)technology and RNA-seq analysis to investigate the diversity and complexity of the polyploid transcriptome and differentially expressed transcripts along four successive fruit developmental stages of cultivated strawberry.We obtained a reference transcriptome with 119,897 unique full-length isoforms,including 2017 new isoforms and 2510 long noncoding RNAs.Based on the genome of the plausible progenitor(Fragaria vesca),20,229 alternative splicing(AS)events were identified.Using this transcriptome,we found 17,485 differentially expressed transcripts during strawberry fruit development,including 527 transcription factors(TFs)belonging to 41 families.The expression profiles of all members of the auxin,ABA pathway,and anthocyanin biosynthesis gene families were also examined,and many of them were highly expressed at the ripe fruit stage,strongly indicating that the role of those genes is in the regulation of fruit ripening.We produce a high-quality reference transcriptome for octoploid strawberry,including much of the full-length transcript diversity,to help understand the regulatory mechanisms of fruit development and maturation of polyploid species,particularly via elucidation of the biochemical pathways involved in auxin,ABA,and anthocyanin biosynthesis.Huazhao Yuan Hongmei Yu Tao Huang Xinjie Shen Jin Xia Fuhua Pang Jing Wang Mizhen Zhao 2019Horticulture Research2019,6,1:2
2Author Correction:The complexity of the Fragaria x ananassa(octoploid)transcriptome by single-molecule long-read sequencing显示文摘Since the publication of this article,the authors have noticed that the part of acknowledgement is missing from article.Here is the acknowledgement.Huazhao Yuan Hongmei Yu Tao Huang Xinjie Shen Jin Xia Fuhua Pang Jing Wang Mizhen Zhao 2019Horticulture Research2019,6,1:0
3UV-B irradiation and allelopathy by Sargassum thunbergii affects the activities of antioxidant enzymes and their isoenzymes in Corallina pilulifera显示文摘Intertidal macroalgae can cope with the dual effects of UV-B irradiation and allelopathy.To study the impacts of the two stressors,we co-cultured Corallina pilulifera with Sargassum thunbergii in 1:1 and 1:10 ratios under different doses of UV-B radiation.The response of the antioxidant defense system,focusing on activities of superoxide dismutase(SOD),ascorbate peroxidase(APX),peroxidase(POX)and glutathione reductase(GR),was monitored.In addition,isoenzyme patterns were analyzed using nondenaturing poly acry lamide gel electrophoresis.The results show that the activities of SOD,APX,and GR were all significantly affected by both UV-B radiation and allelopathy,and the effect of their interaction was significant.However,POX activity was only influenced by UV-B radiation.The enzymatic assay revealed four distinct bands of SOD.The SODⅢband weakened significantly when the co-cultures were exposed to extremely high dosage of UV-B irradiation under both co-culturing ratios of 1:1 and 1:10.When the coculturing ratio was 1:10,both POXⅡand APXⅡenzy me activities increased with different UV-B doses.GR activity was at its greatest when the co-culture ratio was 1:10 and exposure was to the higher UV-B doses.The activities of GRⅢand GRⅣwere elevated under all UV treatments whereas the activities of GRI and GRII were reduced under the lower UV-B treatments but were elevated under the higher UV-B treatments.However,lipid peroxidation,as indicated by the thiobarbituric acid-reacting substance(TBARS)assay,increased significantly under the dual stressors.Our data sugge st that allelopathy and UV-B radiation stre ss can each affect the antioxidant enzyme activities of C.pilulifera.Critically,the adverse effects of UV-B on C.pilulifera were intensified by the compounding effects of allelopathy.Ming LIU Jiqiang ZHAO Yujuan PANG Lipei ZHANG Fuhua BIAN Lixia LI 2022Journal of Oceanology and Limnology2022,40,5:0
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