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解淀粉芽胞杆菌Jt84防治水稻稻曲病田间应用技术研究 被引量:6
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作者 张荣胜 于俊杰 +9 位作者 齐中强 张浩 杜艳 俞咪娜 宋天巧 曹慧娟 潘夏艳 雍明丽 陈志谊 刘永锋 《中国生物防治学报》 CSCD 北大核心 2021年第3期525-530,共6页
为了明确解淀粉芽胞杆菌Jt84防治水稻稻曲病田间应用技术,本文初步研究生防菌Jt84定殖规律以及不同喷施时期对水稻稻曲病的防效。结果显示:生防菌Jt84在水稻叶表能够有效定殖,7~16d时,叶表定殖菌量维持在10^(4) cfu/cm^(2),30 d仍可在... 为了明确解淀粉芽胞杆菌Jt84防治水稻稻曲病田间应用技术,本文初步研究生防菌Jt84定殖规律以及不同喷施时期对水稻稻曲病的防效。结果显示:生防菌Jt84在水稻叶表能够有效定殖,7~16d时,叶表定殖菌量维持在10^(4) cfu/cm^(2),30 d仍可在水稻叶表检测到生防菌Jt84;生防菌Jt84防治水稻稻曲病的最佳防治时期为水稻叶枕平时期(旗叶与倒二叶的叶枕在同一处),田间试验表明在此时期防治,当解淀粉芽胞杆菌Jt84使用量为200~400 mL/667 m^(2)时,对水稻稻曲病防治效果为77.8%~89.5%。 展开更多
关键词 解淀粉芽胞杆菌 水稻稻曲病 防治时期 生物防治技术
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基于代谢组学分析丝瓜果肉褐变过程酚酸类物质变化 被引量:3
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作者 王雅慧 刘晓宏 +2 位作者 雍明丽 熊爱生 苏小俊 《中国农业科学》 CAS CSCD 北大核心 2021年第22期4869-4879,共11页
【目的】褐变是影响丝瓜商品价值的主要因素,酚酸类物质代谢是导致褐变的主要原因。研究丝瓜褐变过程酚酸类物质变化有助于深入了解丝瓜褐变的生理机制,为丝瓜的贮藏和加工、品种选育和种质资源利用提供依据。【方法】以耐褐变丝瓜品种... 【目的】褐变是影响丝瓜商品价值的主要因素,酚酸类物质代谢是导致褐变的主要原因。研究丝瓜褐变过程酚酸类物质变化有助于深入了解丝瓜褐变的生理机制,为丝瓜的贮藏和加工、品种选育和种质资源利用提供依据。【方法】以耐褐变丝瓜品种‘2D-2’和易褐变丝瓜品种‘35D-7’为试验材料,测定其鲜切后放置不同时间的褐变程度、总酚含量和多酚氧化酶活性,并借助超高效液相色谱-质谱(UPLC-MS)联用的方法对沸水浴褐变前后的丝瓜果肉样品进行代谢组学分析。【结果】鲜切褐变处理后,2个品种丝瓜果肉中的多酚含量及多酚氧化酶活性均有所增加。与‘2D-2’相比,丝瓜品种‘35D-7’的褐变程度较重,放置24 h后的总酚含量约为‘2D-2’的3倍以上;多酚氧化酶活性在放置12 h时最高,达174.23 U·g^(-1)·min^(-1)。通过代谢组学对易褐变丝瓜品种‘35D-7’酶促褐变反应底物及褐变前后的差异代谢物进行分析,经检测共获得420种代谢物,其中229种为差异代谢物。经褐变处理后,140种差异代谢物含量显著下降,89种升高。KEGG通路富集分析结果表明,苯丙素类生物合成、脯氨酸代谢和类黄酮生物合成等代谢途径中的代谢物含量发生了显著变化。代谢组定性定量分析结果发现,供试样品丝瓜果肉中鉴定出的酚酸类物质中对香豆酸含量最高,其次是松柏苷和龙胆酸。经褐变处理后,共有35种差异代谢物被鉴定为酚酸类代谢物。其中,松柏醛、3-氨基水杨酸和咖啡酸苯乙酯的含量下降最明显。相反地,紫丁香苷、2,5-二羟基苯甲酸O-己糖苷和异绿原酸A的含量显著提高,log2变化倍数达10以上。【结论】易褐变丝瓜品种‘35D-7’果肉中的主要酚类物质为对香豆酸,参与丝瓜‘35D-7’果肉褐变过程的主要酚酸类代谢物有松柏醛、紫丁香苷和异绿原酸A等。 展开更多
关键词 丝瓜 果肉 酶促褐变 代谢组 酚酸
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Genome-Wide Identification of Zn_(2)Cys_(6 ) Class Fungal-Specific Transcription Factors(ZnFTFs)and Functional Analysis of UvZnFTFI in Ustilaginoidea virens 被引量:4
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作者 SONG Tianqiao ZHANG Xiong +11 位作者 ZHANG You LIANG Dong YAN Jiaoling YU Junjie YU Mina CAO Huijuan yong mingli PAN Xiayan QI Zhongqiang DU Yan ZHANG Rongsheng LIU yongfeng 《Rice science》 SCIE CSCD 2021年第6期567-578,I0038,I0039,共14页
Transcription factors(TFs)orchestrate the regulation of cellular gene expression and thereby determine cell functionality.In this study,we analyzed the distribution of TFs containing domains,which named as ZnFTFs,both... Transcription factors(TFs)orchestrate the regulation of cellular gene expression and thereby determine cell functionality.In this study,we analyzed the distribution of TFs containing domains,which named as ZnFTFs,both in ascomycete and basidiomycete fungi.We found that ZnFTFs were widely distributed in these fungal species,but there was more expansion of the ZnFTF class in Ascomycota than Basidiomycota.We identified 40 ZnFTFs in Ustilaginoidea virens,and demonstrated the involvement of UvZnFTF1 in vegetative growth,conidiation,pigment biosynthesis and pathogenicity.RNA-Seq analysis suggested that UvZnFTF1 may regulate different nutrient metabolism pathways,the production of secondary metabolites,and the expression of pathogen-host interaction genes and secreted protein-encodi ng genes.Analysis of the distributi on of differe nt fungal TFs in U.virens further dem on strated that UvZnFTFs make up a large TF family and may play essential biological roles in U.virens. 展开更多
关键词 Zn_(2)Cys_(6)-type fungal-specific transcription factor Ustilaginoidea virens rice pathogen gene silencing RNA-Seq metabolism pathway effector expression pathogen-host interaction
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UvSMEK1,a Suppressor of MEK Null,Regulates Pathogenicity,Conidiation and Conidial Germination in Rice False Smut Fungus Ustilaginoidea virens 被引量:1
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作者 Yu Junjie Yu Mina +9 位作者 SONG Tianqiao CAO Huijuan yong mingli Pan Xiayan Qi Zhongqiang Du Yan Zhang Rongsheng Yin Xiaole Liang Dong Liu yongfeng 《Rice science》 SCIE CSCD 2021年第5期457-465,I0018,I0019,共11页
Rice false smut,which is caused by Ustilaginoidea virens,is an emerging disease of rice spikelets in rice-growing areas worldwide.However,the infection mechanism of U.virens on rice spikelets is still unclear.Here,we ... Rice false smut,which is caused by Ustilaginoidea virens,is an emerging disease of rice spikelets in rice-growing areas worldwide.However,the infection mechanism of U.virens on rice spikelets is still unclear.Here,we characterized a suppressor of mitogen-activated protein kinase kinase or ERK kinase(MEK)null(UvSMEKI)in U.virens that is conserved among filamentous fungi.Compared with wild type U.virens strain P-1,UvSMEKI deletion mutants were defective in pathogenicity and conidial germination.In addition,conidiation of UvSMEKI deletion mutants was significantly reduced on yeast extract tryptone(YT)plates,but inc「eased in YT broth compared with the wild type.Compared with UvSMEKI expression level during the vegetative mycelia and conidiation stages,UvSMEKI dramatically increased during infection of rice florets.Surprisingly,the UvSMEKI deletion mutants exhibited higher tolerance to H_(2)O_(2) and NaCl.In summary,presented evidence suggested that UvSMEKI positively regulated pathogenicity,conidial germination and conidiation in YT broth,and negatively regulated conidiation on YT medium and tolerance to oxidative and osmotic stresses.The results enhanee our understanding of the regulatory mechanism of pathogenicity of U.virens,and present a potential molecular target for blocking rice infection by U.virens. 展开更多
关键词 SUPPRESSOR MEK null Ustilaginoidea virens PATHOGENICITY conidial germination CONIDIATION
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