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Wang T, Xiang S, Ren D, Zhu P*, Xu L. First Report of Colletotrichum gloeosporioides Causing Postharvest Fruit Rot on Citrus aurantifolia in China. Plant Disease. 2019,7-24.
Chen X, Wang T, Guo H, Zhu PK, Xu L*.First report of Anthracnose of Camellia sasanqua Caused by Colletotrichum aenigma in China. Plant Disease. 2019,103(6):1423.
Li XJ , Xie XF , Xing FG , Xu L , Zhang J, Wang ZD .Glucose oxidase as a control agent against the fungal pathogen Botrytis cinerea in postharvest strawberry. Food Control. 2019,105:277-284.
Zhu P*, Li Q, Azad SM., Qi Y, Wang YW, Jiang YN and Xu L* . Fungal Gene Mutation Analysis Elucidating Photoselective Enhancement of UV-C Disinfection Efficiency Toward Spoilage Agents on Fruit Surface. Fromtiers in Microbiology. 2018. doi: 10.3389/fmicb.2018.01141
Zhu P, Xu Zhen,Cui ZJ,Zhang ZB,Xu L*. Ethylene production by Alternaria alternata and its association with virulence on inoculated grape berries.Phytoparasitica., 2017, 45:273-279
Wang C, Wang G, Zhang C, Zhu P, Dai HL, Yu N, He ZH, Xu L*, Wang E*. OsCERK1-mediated chitin perception and immune signaling requires Receptor-like Cytoplasmic Kinase 185 to activate a MAPK cascade in rice. Molecular Plant. 2017,10: 619-633.
Zhu P, Li Q, Zhang CH, Na YT, Xu L*. Bcpks12 gene inactivation substantiates biological functions of sclerotium melanization in Botrytis cinerea. Physiological and Molecular Plant Pathology., 2017,98:80-84.
Zhang CH, Lin T,Li JF,Ma GB,Wang YW,Zhu PK,Xu L*. First report of the melon stem rot disease in protected cultivationcaused by Pseudomonas fluorescens. Journal of Plant Diseases and Protection. 2016,123(5):1-9.
Zhang CH, He YF, Zhu PK*, Chen L, Wang YW, Ni B, Xu L*. Loss of bcbrn1 and bcpks13 in Botrytis cinerea not only blocks melanization but also increases vegetative growth and virulence. Molecular Plant-Microbe Interactions. 2015, 28(10): 1091-1101.
Huang C, Yu QB, Yuan XB, Li ZR, Wang J, Ye LS, Xu L*, Yang ZN* . Rubisco accumulation is important for the greening of the fln2-4 mutant in Arabidopsis. Plant Science. 2015,236:185-194.
Li QZ, Chen L, Yu Y, Wang YW, Zhu PK, Xu L, Nonomura T, Matsuda Y, Toyoda H. Phomopsis vaccinii: the Main Pathogen Causing Market Diseases in Kiwifruit. Ann. Rept. Kansai Pl. Prot. 2015, 57: 31-35.
Hu YZ, He JY, Wang YW, Zhu PK, Zhang CH, Lu L, Xu L*. Disruption of a phytochrome-like histidine kinase gene by homologous recombination leads to a significant reduction in vegetative growth, sclerotia production, and the pathogenicity of Botrytis cinerea.Physiological and Molecular Plant Pathology. 2014,85,25-33.
Zhu PK, Wu LQ, Liu LY, Huang L, Wang YW, Tang WH, Xu L*. Fusarium asiaticum : an Emerging Pathogen Jeopardizing PostharvestAsparagus Spears. Journal of Phytopathology. 2013, 161: 696-703.
Zhu PK, Zhang C, Xiao H, Wang Y, Toyoda H, Xu L*. Exploitable Regulatory effects of light on growth and development of Botrytis cinerea. Journal of Plant Pathology. 2013, 95 (3), 509-517.
Liu LY, Zhu PK, WangY, Wu LQ, Xu L*, Zou H, Nonomura T, Matsuda Y, Toyoda T. Botrytis squamosa : the pathogen of market disease of garlic sprouts. Ann. Rept. Kansai PI. Prot.(日刊)2013,55: 31-35.
Li XF, Xu J, Yang R, J LY, Deng XJ, X LJ; Zhang XP, Fang Q, Zhang W, Sun Y, Xu L.Analysis of B-Class Genes NAP3L3 and NAP3L4 in Narcissus tazetta var. chinensis. Plant Molecular Biology Reporter. 2013,31(2): 255-263.
Zhu PK, Xu L*, Zhang CH, Toyoda H, Gan S. Ethylene produced by Botrytis cinerea can affect early fungal development and can be used as a marker for infection during storage of grapes. Postharvest Biology and Technology. 2012,66:23-29.
Lin T, Zhang CH,Zhu PK, Xu L*, Nonomura T, Matsuda Y, Toyoda H. Identification and Characterization of Brown Rot on Import Carambola Caused by Fusarium proliferatum in Shanghai. Ann. Rept. Kansai PI. Prot, (日刊)2012,54:61-66.
Zhang C, Song Y, Cheng ZH, Wang YX, Zhu J, Ma H, Xu L*, Yang ZN*.The Arabidopsis thaliana DSB formation (AtDFO) gene is required for meiotic double-strand break formation. Plant Journal. 2012,158:264-272.
Liu Y, Zhu PK, Xu Z, Xu L *, Nonomura T, Matsuda Y, Toyoda H. A simplified method for screening ethylene-producing phytopathogenic fungi. Ann. Rept. Kansai PI.Prot. 2011, 53: 7-12.
Takikawa Y, Xu L , Kakutani K, Nonomura T, Sameshima T, Matsuda Y, Toyoda H. Conidia of the tomato powderymildew Oidium neolycopersici initiate germ tubes at a predetermined site. Mycoscience.2011. DOI10.1007/s10267-010-0102-3.
Li XF, Shao XH,Deng XJ, Wang Y,Zhang XP,Jia LY,Xu J,Zhang DM,Sun Y,Xu L. Necessityof high temperature for the dormancy release of Narcissus tazetta var. chinensis. Journal of plant physiology. 2011, 169(14):1340-1347.
Wang YW, Xu J, Chen A, Wang YZ, Zhu JB, Yu GQ, Xu L*, Luo L*. GGDEF and EAL proteins play different rolesin thecontrol of Sinorhizobium meliloti growth, motility, exopolysaccharide production, and competitive nodulation on host alfalfa. Acta Biochim Biophys Sin. 2010,42 (6) :410-417.
Wang YW, Xu Z, Zhu PK,Liu Y, Zhang ZB, Mastuda Y, Toyoda H, Xu L*. Postharvest biological control of melon (Cucumis melo L.) pathogens using Bacillus subtilis EXWB1. Journal of Phytopathology. 2010,92(3): 647-654.
Nonomura T, Nishitomi A, Matsuda Y, Soma C, Xu L, Kakutani K, Takikawa Y, Toyoda H. Polymorphic change of appressoria by the tomato powdery mildew Oidium neolycopersici on host tomato leaves reflects multiple unsuccessful penetration attempts. Fungal Biology . 2010, 114:917-928.
Liu Y, Xu Z, Zhu PK, Liu Y, Zhang ZB, Xu L*. Toyoda H. Postharvest Black Spot Disease in Broccoli Caused by Alternaria brassicicola. Ann. Rept. Kansai PI. Prot. 2009,51:11-15.
Ma TF, Yang B, Yu Y, Wang YW, Liu Y, Xu Z, Liu Y, Zu PK, Zhang W, Zhang ZB, Toyoda H , Xu L*. Market Disease Pathogens Detection of Imported Fruits in Shanghai. 2009. Agricultural Sciences in China. 2009, 8(9): 101-105.
Nonomura T, Matsuda Y, Xu L, Kakutani K, Takikawa Y, Toyoda H. Collection of highly germinative pseudochain conidia of Oidium neolycopersici from conidiophores by electrostatic attraction. Mycological Research.2009,113:364-372.
Nonomura T, Xu L, Wada M, Kawamura S, Miyajima T, Nishitomi A, Kakutani K, Takikawa Y, Matsuda Y, Toyoda H. Trichome exudates of Lycopersicon pennellii form a chemical barrier to suppress leaf-surface germination of Oidium neolycopersici conidia. Plant Science.2009,176:31-37.
Nonomura T, Komaki S, Xu L, Moriuran, Ioroi H, Takashima S, Kakutani K, Takikawa Y, Matsuda Y, Toyoda H. Tryptophan synthesis block-associated sugar response, a physiological marker for rapid selection of Arabidopsis thaliana transformants, marked with feedback-inhibition-insensitive anthranilate synthase gene. Plant Breeding. 2009, 128: 282-289.
許玲*,冯琳燕,豊田秀吉. 収穫後のブドウ果実に灰色かび病を発症するBotrytis属病原菌の比較. 日本関西病虫研報. 2008,50: 133-135.
Li JF, Ma GB, Xu L*.SSR markers for identification of purity of melon hybrids. Chinese Journal ofAgricultural Biotechnology. 2008,5(3); 223–229.
Xu L, Nonomura T, Suzuki S, KitagawaY, Tajma H, Okada K, Kusakari S, Matsud Y, Toyoda H. Symptomaticevidence for differential root invasion by Fusarium crown and root rot pathogens between common tomato Lycopersicon esculentum and its varieties. Journal of Phytopathology.2006,154:577-586.