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1. The E3 ligase OsPUB15 interacts with the receptor-like kinase PID2 and regulates plant cell death and innate immunity
作者:Jing Wang (1) (2)
Baoyuan Qu (3)
Shijuan Dou (4)
Liyun Li (4)
Dedong Yin (1)
Zhiqian Pang (1) (5)
Zhuangzhi Zhou (1)
Miaomiao Tian (1)
Guozhen Liu (4)
Qi Xie (1)
Dingzhong Tang (3)
Xuewei Chen (2)
Lihuang Zhu (1)

1. State Key Laboratory of Plant Genomics and National Center for Plant Gene Research
; Institute of Genetics and Developmental Biology ; Chinese Academy of Sciences ; Beijing ; 100101 ; China
2. Rice Research Institute
; Sichuan Agricultural University ; Chengdu ; Sichuan ; 611130 ; China
3. State Key Laboratory for Plant Cell and Chromosome Engineering
; Institute of Genetics and Developmental Biology ; Chinese Academy of Sciences ; Beijing ; 100101 ; China
4. College of Life Sciences
; Hebei Agricultural University ; Baoding ; Hebei ; 071001 ; China
5. CAS Key Laboratory of Genome Sciences and Information
; Beijing Institute of Genomics ; Chinese Academy of Sciences ; Beijing ; 100029 ; China
刊名:BMC Plant Biology
出版年:2015
2. Knock-down of stress inducible OsSRFP1 encoding an E3 ubiquitin ligase with transcriptional activation activity confers abiotic stress tolerance through enhancing antioxidant protection in rice
4. RNA-seq analysis reveals the role of red light in resistance against Pseudomonas syringae pv. tomato DC3000 in tomato plants
5. Proteomics of methyl jasmonate induced defense response in maize leaves against Asian corn borer
作者:Yi Tong Zhang (1) (3)
Yu Liang Zhang (2)
Si Xue Chen (1) (4)
Guo Hua Yin (2) (5)
Ze Zhong Yang (1) (6)
Samantha Lee (5)
Chun Guang Liu (1) (7)
Dan Dan Zhao (1) (7)
Yu Kun Ma (1) (7)
Fu Qiang Song (1) (7)
Joan W Bennett (5)
Feng Shan Yang (1) (7)

1. Key Laboratory of Molecular Biology of Heilongjiang Province
; College of Life Sciences ; Heilongjiang University ; Harbin ; 150080 ; China
3. Majorbio Pharm Technology Co.
; Ltd. ; Shanghai ; 201203 ; China
2. Key Laboratory of Biology and Genetic Resources of Tropical Crops
; Ministry of Agriculture ; Institute of Tropical Bioscience and Biotechnology ; Chinese Academy of Tropical Agricultural Sciences ; Haikou ; Hainan ; 571101 ; China
4. Department of Biology
; Genetics Institute ; Plant Molecular and Cellular Biology Program ; Interdisciplinary Center for Biotechnology Research ; University of Florida ; Gainesville ; Florida ; 32610 ; USA
5. Department of Plant Biology and Pathology
; Rutgers ; The State University of New Jersey ; New Brunswick ; NJ ; 08901 ; USA
6. Institute of Pesticide Science
; Hunan Agricultural University ; Changsha ; China
7. Engineering Research Center of Agricultural Microbiology Technology
; Ministry of Education ; Heilongjiang University ; Harbin ; 150500 ; China
刊名:BMC Genomics
出版年:2015
6. Genomic and transcriptomic analysis of the endophytic fungus Pestalotiopsis fici reveals its lifestyle and high potential for synthesis of natural products
作者:Xiuna Wang (1) (2)
Xiaoling Zhang (1)
Ling Liu (1)
Meichun Xiang (1)
Wenzhao Wang (1)
Xiang Sun (1)
Yongsheng Che (3)
Liangdong Guo (1)
Gang Liu (1)
Liyun Guo (2)
Chengshu Wang (4)
Wen-Bing Yin (1)
Marc Stadler (5)
Xinyu Zhang (1)
Xingzhong Liu (1)

1. State Key Laboratory of Mycology
; Institute of Microbiology ; Chinese Academy of Sciences ; Beijing ; China
2. Department of Plant Pathology
; China Agricultural University ; Beijing ; China
3. Department of Natural Products Chemistry
; Beijing Institute of Pharmacology & Toxicology ; Beijing ; China
4. Key Laboratory of Insect Development and Evolutionary Biology
; Institute of Plant Physiology and Ecology ; Shanghai Institutes for Biological Sciences ; Chinese Academy of Sciences ; Shanghai ; China
5. Department Microbial Drugs
; Helmholtz Centre for Infection Research ; Braunschweig ; Germany
刊名:BMC Genomics
出版年:2015
7. Transcriptome characterization of three wild Chinese Vitis uncovers a large number of distinct disease related genes
8. Identification of novel and salt-responsive miRNAs to explore miRNA-mediated regulatory network of salt stress response in radish (Raphanus sativus L.)
9. Comprehensive analysis of CCCH-type zinc finger family genes facilitates functional gene discovery and reflects recent allopolyploidization event in tetraploid switchgrass
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