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2010 Fiscal Year Final Research Report

Calcium signal transduction network in plant innate immunity

Research Project

  • PDF
Project/Area Number 20200060
Research Category

Grant-in-Aid for Scientific Research on Innovative Areas (Research a proposed research project)

Allocation TypeSingle-year Grants
Research Field Plant molecular biology/Plant physiology
Plant pathology
Research InstitutionKyoto Prefectural University

Principal Investigator

NAKAHIRA Yoichi  Kyoto Prefectural University, 大学院・生命環境科学研究科, 特任講師 (40423868)

Co-Investigator(Kenkyū-buntansha) YUKAWA Yasushi  名古屋大学, システム自然科学研究科, 講師 (70381902)
Co-Investigator(Renkei-kenkyūsha) SHIINA Takashi  京都府立大学, 生命環境科学研究科, 教授 (10206039)
YOSHIOKA Hirofumi  名古屋大学, 生命農学研究科, 准教授 (30240245)
SUGIURA Masahiro  名古屋大学, 特別教授 (80027044)
TOZAWA Yuzuru  愛媛大学, 教授 (90363267)
KUCHITU Kazuyuki  東京理科大学, 理工学部・応用生物科学科, 教授 (50211884)
Project Period (FY) 2008 – 2010
Keywords葉緑体 / Ca^<2+> / 過敏感細胞死 / 植物・病原体相互作用 / PR-1
Research Abstract

Mitochondria and chloroplasts are not only energy source for eukaryotic cells, but also play additional important roles to modulate cellular functions. For example, mammal mitochondria contribute to the initiation of apoptosis, diseases and aging. Plant chloroplast also serves several important functions in plant immunity, including biosynthesis of salicylic acid (SA) and the generation of reactive oxygen species (ROS), key signaling molecules in plant immune response. Interestingly, previous studies have shown that chloroplasts contain proteins involved in plant immune responses. Furthermore, several pathogen effectors target chloroplasts to suppress chloroplast-derived defense signals. Therefore, it is anticipated that chloroplasts play a role in plant innate immunity. However, how chloroplasts sense pathogen signals and control immune signaling network remains unclear. This study illustrates a previously unknown crosstalk between chloroplasts and innate immunity through chloroplast … More Ca^<2+> signaling in plants.
Mitochondrial Ca^<2+> homeostasis plays a key role in apoptosis by switching Ca^<2+>-induced release of cytochrome C (caspase cofactor). However, very little is known about Ca^<2+> homeostasis in chloroplasts. Here, we report that pathogen associated molecular pattern (PAMP) signals induce a rapid increase in the stromal Ca^<2+> concentration. Pharmacological studies demonstrate that the cytoplasmic Ca^<2+> signal is transferred to the chloroplasts and induces the stromal Ca^<2+> transient. We further demonstrate that chloroplast-localized putative Ca^<2+> binding protein, CAS is involved in the generation of stromal Ca^<2+> signals. These studies suggest a novel mechanism relaying PAMP signals into chloroplasts at the beginning of the immune process.
The PAMP-induced stromal Ca^<2+> signaling may control or activate the innate immune response. Thus, we examined the role of CAS in plant innate immunity. Remarkably, CAS deficient plants (cas-1) are compromised in broad range of innate immune responses including PAMP-induced basal defense and R-gene mediated hypersensitive cell death. It is unlikely that the compromised immunity of cas-1 plants is caused by limited cellular resources, since CAS deficient mutant lines exhibit normal phenotype and photosynthetically competent. Furthermore, a comprehensive analysis of plant hormone dynamics demonstrated that CAS is specifically required for PAMP-induced accumulation of SA, a key signal molecule in plant immune responses. These results suggest that chloroplast protein CAS acts as a positive regulator of plant innate immunity through SA-dependent signaling.
CAS regulates SA biosynthesis most likely at transcriptional level. It is therefore anticipated that chloroplasts release retrograde signals that control defense gene expression during immune responses. PAMP induces expression of numerous defense related genes in nucleus. Using a genome wide transcriptome analysis we show that CAS is indispensable for the global induction of defense gene expression before SA biosynthesis starts, suggesting that CAS is involved in the chloroplast-to-nucleus retrograde signaling and mediates chloroplast control of plant innate immunity. Chloroplast-derived ^1O_2^- signaling has been implicated with the control of stress defense-related gene expression. Here we show that most genes downregulated in CAS deficient plants were enriched for ^1O_2^- responsive genes, providing evidence for a role of CAS in ^1O_2^- signaling to control nuclear-encoded defense genes.
Collectively this study illustrates previously unknown mechanisms that coordinate chloroplast functions with nuclear-encoded defense gene expression. Upon infection, PAMP signals are relayed to chloroplasts through the cytoplasmic Ca^<2+>-induced stromal Ca^<2+> signaling pathway. This study further implicates a role of ^1O_2^- retrograde signaling as underlying mechanisms of chloroplast control of plant innate immunity. Chloroplast protein CAS plays a critical role in both processes. Identification of the chloroplast-dependent immune pathway may provide a novel strategy for the disease control of plants. Less

  • Research Products

    (19 results)

All 2011 2010 2009 2008

All Journal Article (6 results) (of which Peer Reviewed: 6 results) Presentation (13 results)

  • [Journal Article] Nuclear/nucleolar GTPase 2 proteins as a subfamily of YlqF/YawG GTPases function in pre-60S ribosomal subunit maturation of mono- and dicotyledonous plants.2011

    • Author(s)
      Im CH, Hwang SM, Son YS, Heo JB, Bang WY, Suwastika IN, Shiina T, Bahk JD.
    • Journal Title

      J Biol Chem. 286

      Pages: 8620-8632

    • Peer Reviewed
  • [Journal Article] Selective excitation of photosystems in chloroplasts inside plant leaves observed by near-infrared laser-based fluorescence spectral microscopy.2010

    • Author(s)
      Hasegawa M, Shiina T, Terazima M, Kumazaki S.
    • Journal Title

      Plant Cell Physiol. 51

      Pages: 225-238

    • Peer Reviewed
  • [Journal Article] Function and evolution of plastid sigma factors.2009

    • Author(s)
      Shiina T, Ishizaki, Y, Yagi, Y, Nakahira Y.
    • Journal Title

      J Biotech. 7

      Pages: 105-113

    • Peer Reviewed
  • [Journal Article] AtObgC, a plant ortholog of bacterial Obg, is a chloroplast-targeting GTPase essential for early embryogenesis.2009

    • Author(s)
      Bang WY, Hata A, Jeong IS, Umeda T, Masuda T, Chen J, Yoko I, Suwastika IN, Kim DW, Im CH, Lee BH, Lee Y, Lee KW, Shiina T, Bahk JD.
    • Journal Title

      Plant Mol Biol. 71

      Pages: 379-390

    • Peer Reviewed
  • [Journal Article] Role of Arabidopsis CHL27 protein for photosynthesis, chloroplast development and gene expression profiling.2008

    • Author(s)
      Bang WY, Jeong IS, Kim DW, Im CH, Ji C, Hwang SM, Kim SW, Son YS, Jeong J, Shiina T, Bahk JD.
    • Journal Title

      Plant Cell Physiol. 49

      Pages: 1350-1363

    • Peer Reviewed
  • [Journal Article] Termination codon-dependent translation of partially overlapping ndhC-ndhK transcripts in chloroplasts.2008

    • Author(s)
      Yukawa M, Sugiura M.
    • Journal Title

      Proc Natl Acad Sci USA. 105

      Pages: 19550-19554

    • Peer Reviewed
  • [Presentation] 植物の感染防御応答におけるサリチル酸誘導と葉緑体チラコイド膜タンパク質CAS2011

    • Author(s)
      椎名隆、中平洋一, 他
    • Organizer
      第52回植物生理学会年会
    • Place of Presentation
      仙台
    • Year and Date
      20110320-20110322
  • [Presentation] CHIP法を用いたコムギ葉緑体RNAポリメラーゼPEP複合体の動態解析2011

    • Author(s)
      八木祐介、中平洋一, 他
    • Organizer
      第52回植物生理学会年会
    • Place of Presentation
      仙台
    • Year and Date
      20110320-20110322
  • [Presentation] タバコ葉緑体psbD-psbCにみられる翻訳共益2011

    • Author(s)
      足立由佳、湯川泰, 他
    • Organizer
      第52回植物生理学会年会
    • Place of Presentation
      仙台
    • Year and Date
      20110320-20110322
  • [Presentation] 葉緑体stpB-stpE mRNAの翻訳2011

    • Author(s)
      鈴木晴香、湯川泰, 他
    • Organizer
      第52回植物生理学会年会
    • Place of Presentation
      仙台
    • Year and Date
      20110320-20110322
  • [Presentation] 葉緑体タンパク質CASはPAMP誘導の気孔閉鎖運動に関与する2010

    • Author(s)
      植村周平, 他
    • Organizer
      第51回日本植物生理学会年会
    • Place of Presentation
      熊本
    • Year and Date
      20100318-20100321
  • [Presentation] 植物の免疫応答における葉緑体タンパク質CASの関与について2010

    • Author(s)
      野村裕也, 他
    • Organizer
      第51回日本植物生理学会年会
    • Place of Presentation
      熊本
    • Year and Date
      20100318-20100321
  • [Presentation] Biotic and abiotic stress-induced transient increase in stromal Ca^<2+> in chloroplasts : How chloroplast can sense the extracellular environment and biotic signals?2009

    • Author(s)
      Shiina, T, et al.
    • Organizer
      LEOPOLDINA-SYMPOSIUM 2009
    • Place of Presentation
      ベルリン
    • Year and Date
      2009-09-22
  • [Presentation] CAS is Chloroplast Protein Implicated in flg22-Induced Stomatal Closure and Defense Response in Plant2009

    • Author(s)
      Uemura S., et al
    • Organizer
      LEOPOLDINA-SYMPOSIUM 2009
    • Place of Presentation
      ベルリン
    • Year and Date
      2009-09-22
  • [Presentation] 病害・ストレス応答における葉緑体タンパク質CASの役割2009

    • Author(s)
      野村裕也, 他
    • Organizer
      2009年度植物生理学会
    • Place of Presentation
      名古屋
    • Year and Date
      2009-03-24
  • [Presentation] CAS変異体における病害応答遺伝子群の発現解析2009

    • Author(s)
      植村周平, 他
    • Organizer
      2009年度植物生理学会
    • Place of Presentation
      名古屋
    • Year and Date
      2009-03-24
  • [Presentation] 植物の病害、環境ストレス応答と葉緑体Ca2+シグナル2009

    • Author(s)
      小森禎子, 他
    • Organizer
      2009年度植物生理学会
    • Place of Presentation
      名古屋
    • Year and Date
      2009-03-23
  • [Presentation] Chloroplasts and Ca^<2+> : from stress responses to stomatal movement IPR Seminar 20082008

    • Author(s)
      Shiina, T.
    • Organizer
      The Ins and Outs of Chloroplasts.
    • Place of Presentation
      大阪
    • Year and Date
      2008-10-14
  • [Presentation] 葉緑体と細胞内Ca2+シグナル2008年度植物学会シンポジウム2008

    • Author(s)
      野村裕也, 他
    • Organizer
      Ca2+シグナルから見た植物細胞の新しい姿
    • Place of Presentation
      高知
    • Year and Date
      2008-09-27

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Published: 2012-02-13   Modified: 2016-04-21  

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