Serotonin attenuates biotic stress and leads to lesion browning caused by a hypersensitive response to Magnaporthe oryzae penetration in rice

scientific article published on 25 November 2015

Serotonin attenuates biotic stress and leads to lesion browning caused by a hypersensitive response to Magnaporthe oryzae penetration in rice is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1111/TPJ.13083
P698PubMed publication ID26603141

P2093author name stringFumihiko Suzuki
Yoshiaki Nagamura
Keiko Hayashi
Yuriko Hayano-Saito
Taketo Ashizawa
Yoshikatsu Fujita
P2860cites workControl of Ascorbate Peroxidase 2 expression by hydrogen peroxide and leaf water status during excess light stress reveals a functional organisation of Arabidopsis leaves.Q44331926
Nitric oxide counteracts the senescence of rice leaves induced by abscisic acidQ44578900
Increased tryptophan decarboxylase and monoamine oxidase activities induce Sekiguchi lesion formation in rice infected with Magnaporthe griseaQ44612013
In vitro reconstitution of rice anthranilate synthase: distinct functional properties of the alpha subunits OASA1 and OASA2.Q44908078
Senescence-induced serotonin biosynthesis and its role in delaying senescence in rice leaves.Q46013946
A multifaceted genomics approach allows the isolation of the rice Pia-blast resistance gene consisting of two adjacent NBS-LRR protein genesQ46080718
The tryptophan pathway is involved in the defense responses of rice against pathogenic infection via serotonin productionQ46759681
Refunctionalization of the ancient rice blast disease resistance gene Pit by the recruitment of a retrotransposon as a promoterQ47655033
5,5'-Dihydroxy-4,4'-bitryptamine: a potentially aberrant, neurotoxic metabolite of serotoninQ48427747
Intra-leaf gradients of photoinhibition induced by different color lights: implications for the dual mechanisms of photoinhibition and for the application of conventional chlorophyll fluorometers.Q50279804
Elevated production of melatonin in transgenic rice seeds expressing rice tryptophan decarboxylase.Q53299867
Methanol is an endogenous elicitor molecule for the synthesis of tryptophan and tryptophan-derived secondary metabolites upon senescence of detached rice leaves.Q53444250
Integrated metabolomic and transcriptomic analyses of high-tryptophan rice expressing a mutant anthranilate synthase alpha subunit.Q53465414
Characterization of rice tryptophan decarboxylases and their direct involvement in serotonin biosynthesis in transgenic rice.Q54435241
The Physiological Function of Melatonin in PlantsQ22305431
Hypersensitive response-related deathQ28200993
Characterization of rice anthranilate synthase alpha-subunit genes OASA1 and OASA2. Tryptophan accumulation in transgenic rice expressing a feedback-insensitive mutant of OASA1Q28345888
A genome scale metabolic network for rice and accompanying analysis of tryptophan, auxin and serotonin biosynthesis regulation under biotic stressQ28833187
Reactive oxygen species: metabolism, oxidative stress, and signal transductionQ29547615
Oxidative stress, antioxidants and stress toleranceQ29617617
MOSAIC FLORAL ORGANS1, an AGL6-like MADS box gene, regulates floral organ identity and meristem fate in riceQ33347986
Sekiguchi lesion gene encodes a cytochrome P450 monooxygenase that catalyzes conversion of tryptamine to serotonin in rice.Q33799702
Latest on enzymology of serotonin biosynthesis in walnut seedsQ33893612
Serotonin accumulation in transgenic rice by over-expressing tryptophan decarboxylase results in a dark brown phenotype and stunted growthQ34148641
Expression level of a flavonoid 3'-hydroxylase gene determines pathogen-induced color variation in sorghumQ34447243
RiceXPro version 3.0: expanding the informatics resource for rice transcriptomeQ36491356
Crosstalk between abiotic and biotic stress responses: a current view from the points of convergence in the stress signaling networksQ36499476
Leaf senescenceQ36687365
Plant physiology meets phytopathology: plant primary metabolism and plant-pathogen interactionsQ37053325
Enzymatic features of serotonin biosynthetic enzymes and serotonin biosynthesis in plantsQ37080305
Resistance gene-dependent plant defense responsesQ41207506
Abscisic acid interacts antagonistically with salicylic acid signaling pathway in rice-Magnaporthe grisea interactionQ43066592
Effect of abscisic acid on active oxygen species, antioxidative defence system and oxidative damage in leaves of maize seedlingsQ43811249
P433issue1
P921main subjectMagnaporthe oryzaeQ16661995
P304page(s)46-56
P577publication date2015-11-25
P1433published inThe Plant JournalQ15766987
P1476titleSerotonin attenuates biotic stress and leads to lesion browning caused by a hypersensitive response to Magnaporthe oryzae penetration in rice
P478volume85

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cites work (P2860)
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Q58764660The Gene From Regulate the Resistance Against Cereal Cyst Nematode by Altering the Downstream Secondary Metabolite Contents Rather Than Auxin Synthesis