Silencing of copine genes confers common wheat enhanced resistance to powdery mildew

scientific article published on 23 September 2017

Silencing of copine genes confers common wheat enhanced resistance to powdery mildew is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1111/MPP.12617
P932PMC publication ID6638117
P698PubMed publication ID28941084

P2093author name stringHe Liu
Yuan Ding
Jian Hua
Baohong Zou
P2860cites workThe copines, a novel class of C2 domain-containing, calcium-dependent, phospholipid-binding proteins conserved from Paramecium to humansQ24321243
The plant immune systemQ28131801
Barley stripe mosaic virus-induced gene silencing in a monocot plantQ29394687
Plant immunity triggered by microbial molecular signaturesQ34131515
Agriculture: Feeding the futureQ34792800
Plant growth homeostasis is controlled by the Arabidopsis BON1 and BAP1 genesQ35081164
Two members of TaRLK family confer powdery mildew resistance in common wheatQ35904533
Identification and characterization of a fusarium head blight resistance gene TaACT in wheat QTL-2DL.Q37716889
TaDIR1-2, a Wheat Ortholog of Lipid Transfer Protein AtDIR1 Contributes to Negative Regulation of Wheat Resistance against Puccinia striiformis f. sp. triticiQ37747260
Activation of plant pattern-recognition receptors by bacteria.Q37826863
New insights in plant immunity signaling activation.Q37896859
Reactive oxygen species and plant resistance to fungal pathogens.Q38255158
The Wheat Mediator Subunit TaMED25 Interacts with the Transcription Factor TaEIL1 to Negatively Regulate Disease Resistance against Powdery Mildew.Q40058405
Opposing Effects on Two Phases of Defense Responses from Concerted Actions of HEAT SHOCK COGNATE70 and BONZAI1 in ArabidopsisQ40980726
Virus-induced gene silencing (VIGS) of genes expressed in root, leaf, and meiotic tissues of wheatQ44129133
A haplotype-specific Resistance gene regulated by BONZAI1 mediates temperature-dependent growth control in ArabidopsisQ44805666
The hypersensitive response and the induction of cell death in plantsQ44849777
Development of a virus-induced gene-silencing system for hexaploid wheat and its use in functional analysis of the Lr21-mediated leaf rust resistance pathwayQ45435683
Identification and analysis of copine/BONZAI proteins among evolutionarily diverse plant speciesQ46507191
Plastidial glutathione reductase from Haynaldia villosa is an enhancer of powdery mildew resistance in wheat (Triticum aestivum).Q46942374
Molecular analysis of three new receptor-like kinase genes from hexaploid wheat and evidence for their participation in the wheat hypersensitive response to stripe rust fungus infectionQ48077898
Chloroplasts of Arabidopsis are the source and a primary target of a plant-specific programmed cell death signaling pathwayQ48643802
The BON/CPN gene family represses cell death and promotes cell growth in Arabidopsis.Q52030802
Two wheat (Triticum aestivum) pathogenesis-related 10 (PR-10) transcripts with distinct patterns of abundance in different organs.Q54355592
Inducible cell death in plant immunityQ57748250
Reactive oxygen species signaling in response to pathogensQ57748274
Callose Deposition: A Multifaceted Plant Defense ResponseQ62058089
Genetic mapping of two powdery mildew resistance genes in einkorn (Triticum monococcum L.) accessionsQ79338097
Multiple R-like genes are negatively regulated by BON1 and BON3 in arabidopsisQ84064491
P433issue6
P921main subjectgene silencingQ1431332
wheatQ15645384
P304page(s)1343-1352
P577publication date2017-09-23
P1433published inMolecular Plant PathologyQ11937220
P1476titleSilencing of copine genes confers common wheat enhanced resistance to powdery mildew
P478volume19