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電子書籍・電子雑誌Plant biotechnology
巻号31 (4)
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Regulation of xylanase elicitor-induced expression of defense-related genes involved in phytoalexin biosynthesis by a cation channel OsTPC1 in suspension-cultured rice cells

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Regulation of xylanase elicitor-induced expression of defense-related genes involved in phytoalexin biosynthesis by a cation channel OsTPC1 in suspension-cultured rice cells

国立国会図書館請求記号
Z54-J126
国立国会図書館書誌ID
026003764
国立国会図書館永続的識別子
info:ndljp/pid/11000379
資料種別
記事
著者
Haruyasu Hamadaほか
出版者
日本植物細胞分子生物学会
出版年
2014
資料形態
デジタル
掲載誌名
Plant biotechnology 31(4)
掲載ページ
-
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資料詳細

要約等:

Signal molecules derived from pathogens/microbes or plants (pathogen/microbe/damage-associated molecular patterns; PAMPs/MAMPs/DAMPs), elicitors, trig...

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デジタル

資料種別
記事
著者・編者
Haruyasu Hamada
Takamitsu Kurusu
Hiroshi Nokajima
出版年月日等
2014
出版年(W3CDTF)
2014
タイトル(掲載誌)
Plant biotechnology
巻号年月日等(掲載誌)
31(4)
掲載巻
31(4)
ISSN(掲載誌)
1347-6114
ISSN-L(掲載誌)
1342-4580
本文の言語コード
eng
国立国会図書館永続的識別子
info:ndljp/pid/11000379
コレクション(共通)
コレクション(障害者向け資料:レベル1)
コレクション(個別)
国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > 学術機関 > 学協会
収集根拠
インターネット資料収集保存事業(WARP)
受理日(W3CDTF)
2017-12-08T10:56:38+09:00
保存日(W3CDTF)
2015-08-15
記録形式(IMT)
application/pdf
オンライン閲覧公開範囲
インターネット公開
遠隔複写可否(NDL)
不可
掲載誌(国立国会図書館永続的識別子)
info:ndljp/pid/11000374
連携機関・データベース
国立国会図書館 : 国立国会図書館デジタルコレクション

デジタル

コレクション(個別)
国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > 学術機関 > 学協会
オンライン閲覧公開範囲
インターネット公開
遠隔複写可否(NDL)
不可
所蔵機関
国立国会図書館
請求記号
Z54-J126
関連情報(国立国会図書館永続的識別子)
info:ndljp/pid/11000379
連携機関・データベース
国立国会図書館 : 国立国会図書館雑誌記事索引
書誌ID(NDLBibID)
026003764
整理区分コード
632

デジタル

要約等
Signal molecules derived from pathogens/microbes or plants (pathogen/microbe/damage-associated molecular patterns; PAMPs/MAMPs/DAMPs), elicitors, trigger changes in cytosolic free Ca<sup>2+</sup> concentrations ([Ca<sup>2+</sup>]<sub>cyt</sub>) to activate plant immune responses. A rice two-pore channel 1 (OsTPC1) has been suggested to be involved in fungal xylanase elicitor (TvX)-induced defense responses including [Ca<sup>2+</sup>]<sub>cyt</sub> increase, phytoalexin production and hypersensitive cell death in suspension-cultured rice cells. However, little is known on the molecular links between [Ca<sup>2+</sup>]<sub>cyt</sub> rise and elicitor-induced gene expression. To gain insights on the possible roles of OsTPC1 in TvX-induced gene expression, we performed DNA microarray analysis using a rice 44K oligo-microarray system, and revealed that TvX induce expression of thousands of genes including WRKY-type transcription factors, a serine hydrolase involved in hypersensitive cell death, and diterpene cyclases required for phytoalexin biosynthesis, which are suppressed in the <i>Ostpc1</i> knockout mutant. TvX-induced expression of genes involved in the methylerythritol phosphate (MEP) pathway, which is located upstream of the phytoalexin biosynthesis pathway, was also suppressed in <i>Ostpc1</i> cells. Possible involvement of OsTPC1 in the regulation of gene expression and metabolism in cultured-rice cells is discussed.
DOI
10.5511/plantbiotechnology.14.0805b
オンライン閲覧公開範囲
インターネット公開
連携機関・データベース
科学技術振興機構 : J-STAGE

デジタル

要約等
Signal molecules derived from pathogens/microbes or plants (pathogen/microbe/damage-associated molecular patterns; PAMPs/MAMPs/DAMPs), elicitors, trigger changes in cytosolic free Ca<sup>2+</sup> concentrations ([Ca<sup>2+</sup>]<sub>cyt</sub>) to activate plant immune responses. A rice two-pore channel 1 (OsTPC1) has been suggested to be involved in fungal xylanase elicitor (TvX)-induced defense responses including [Ca<sup>2+</sup>]<sub>cyt</sub> increase, phytoalexin production and hypersensitive cell death in suspension-cultured rice cells. However, little is known on the molecular links between [Ca<sup>2+</sup>]<sub>cyt</sub> rise and elicitor-induced gene expression. To gain insights on the possible roles of OsTPC1 in TvX-induced gene expression, we performed DNA microarray analysis using a rice 44K oligo-microarray system, and revealed that TvX induce expression of thousands of genes including WRKY-type transcription factors, a serine hydrolase involved in hypersensitive cell death, and diterpene cyclases required for phytoalexin biosynthesis, which are suppressed in the <i>Ostpc1</i> knockout mutant. TvX-induced expression of genes involved in the methylerythritol phosphate (MEP) pathway, which is located upstream of the phytoalexin biosynthesis pathway, was also suppressed in <i>Ostpc1</i> cells. Possible involvement of OsTPC1 in the regulation of gene expression and metabolism in cultured-rice cells is discussed.
参照
Functional Analyses of the Two Distinctive Types of Two-Pore Channels and the Slow Vacuolar Channel in <i>Marchantia polymorpha</i>
参照
Quantitative Phosphoproteomics of Early Elicitor Signaling in Arabidopsis
Elicitor induced activation of the methylerythritol phosphate pathway toward phytoalexins biosynthesis in rice
A Novel Calcium Binding Site in the Slow Vacuolar Cation Channel TPC1 Senses Luminal Calcium Levels
The transcription factor OsNAC4 is a key positive regulator of plant hypersensitive cell death
Fungal elicitor-induced retardation and its restoration of root growth in tobacco seedlings
Regulation of a Proteinaceous Elicitor-induced Ca2+ Influx and Production of Phytoalexins by a Putative Voltage-gated Cation Channel, OsTPC1, in Cultured Rice Cells
On the cellular site of two‐pore channel <scp>TPC</scp>1 action in the Poaceae
Intracellular localization and physiological function of a rice Ca<sup>2+</sup>-permeable channel OsTPC1
Functional analysis of a putative Ca2+ channel gene TaTPC1 from wheat
A Putative Two Pore Channel AtTPC1 Mediates Ca2+ Flux in Arabidopsis Leaf Cells
OsWRKY71, a rice transcription factor, is involved in rice defense response
Activation of <i>hsr</i>203, a Plant Gene Expressed During Incompatible Plant-Pathogen Interactions, Is Correlated with Programmed Cell Death
Elicitor Activity of Cerebroside, a Sphingolipid Elicitor, in Cell Suspension Cultures of Rice
Identification of putative voltage-dependent Ca2+-permeable channels involved in cryptogein-induced Ca2+ transients and defense responses in tobacco BY-2 cells
Identification of a Putative Voltage-Gated Ca2+-permeable Channel (OsTPC1) Involved in Ca2+ Influx and Regulation of Growth and Development in Rice
The vacuolar Ca2+-activated channel TPC1 regulates germination and stomatal movement
Slow and Prolonged Activation of the p47 Protein Kinase during Hypersensitive Cell Death in a Culture of Tobacco Cells
Roles of AtTPC1, Vacuolar Two Pore Channel 1, in Arabidopsis Stomatal Closure
OsTGAP1, a bZIP Transcription Factor, Coordinately Regulates the Inductive Production of Diterpenoid Phytoalexins in Rice
Rice WRKY45 Plays a Crucial Role in Benzothiadiazole-Inducible Blast Resistance
Loss of the vacuolar cation channel, AtTPC1, does not impair Ca<sup>2+</sup> signals induced by abiotic and biotic stresses
Phytoalexins in defense against pathogens
Identification of a putative voltage‐gated Ca<sup>2+</sup> channel as a key regulator of elicitor‐induced hypersensitive cell death and mitogen‐activated protein kinase activation in rice
Induction of Ethylene Biosynthesis in Nicotiana tabacum by a Trichoderma viride Xylanase Is Correlated to the Accumulation of 1-Aminocyclopropane-1-Carboxylic Acid (ACC) Synthase and ACC Oxidase Transcripts
TPC1 – SV Channels Gain Shape
Cell-cycle-dependent regulation of oxidative stress responses and Ca2+ permeable channels NtTPC1A/B in tobacco BY-2 cells
Involvement of the elicitor-induced gene OsWRKY53 in the expression of defense-related genes in rice
An Ethylene Biosynthesis-Inducing Endoxylanase Elicits Electrolyte Leakage and Necrosis in <i>Nicotiana tabacum</i> cv Xanthi Leaves
Calcium‐permeable channels in plant cells
BAK1 is required for the attenuation of ethylene-inducing xylanase (Eix)-induced defense responses by the decoy receptor LeEix1
Evidence for the plasma membrane localization of a putative voltage-dependent Ca〔2+〕 channel, OsTPC1, in rice
Roles of the Putative Voltage-Gated Ca〔2+〕 Permeable Channels, the TPC1 Family, in Plant Stress Signaling
The biosynthesis of isoprenoids and the mechanism regulating it in plants
連携機関・データベース
国立情報学研究所 : CiNii Research
提供元機関・データベース
Japan Link Center
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NII論文ID
130004713022
40020313514