Literature DB >> 21972902

Bcl-2 suppresses hydrogen peroxide-induced programmed cell death via OsVPE2 and OsVPE3, but not via OsVPE1 and OsVPE4, in rice.

Minjuan Deng1, Hongwu Bian, Yakun Xie, Yongho Kim, Wenzhe Wang, Erpei Lin, Zhanghui Zeng, Fu Guo, Jianwei Pan, Ning Han, Junhui Wang, Qian Qian, Muyuan Zhu.   

Abstract

Hydrogen peroxide (H(2)O(2)) is known to be a key player in apoptosis in animals. The components and pathways regulating H(2)O(2)-induced programmed cell death in plants, however, remain largely unknown. In the present study, rice transgenic lines overexpressing Bcl-2, a human apoptotic suppressor, were obtained. These transgenic lines showed increased tolerance to high levels of H(2)O(2), resulting in increased seed germination rates, root elongation, root tip cell viability and chlorophyll retention compared to control lines. In the control lines, treatment with H(2)O(2) resulted in DNA laddering and a clear terminal transferase dUTP nick end labeling signal, which are the hallmarks of programmed cell death. However, this effect was not detected in the Bcl-2-overexpressing transgenic lines. Further investigations indicated that Bcl-2 suppressed H(2)O(2)-induced programmed cell death but did not inhibit stress-elicited reactive oxygen species production in rice. RT-PCR revealed that the expression of the two vacuolar processing enzyme genes (i.e. OsVPE2 and OsVPE3) was dramatically induced by H(2)O(2) in the wild-type line but not in the Bcl-2-overexpressing line. Moreover, treatment with H(2)O(2) resulted in the disruption of the vacuolar membrane in the wild-type line. The expression levels of OsVPE1 and OsVPE4 did not significantly differ between the wild-type line and the transgenic line that was treated or untreated with H(2)O(2). The similar roles of Bcl-2 and OsVPEs during endogenous reactive oxygen species-triggered programmed cell death were also confirmed by NaCl stress in rice. To our knowledge, the present study is the first to demonsatrate that Bcl-2 overexpression inhibits H(2)O(2)-induced programmed cell death and enhances H(2)O(2) tolerance. We propose that Bcl-2 overexpression in rice suppresses the transcriptional activation of OsVPE2 and OsVPE3, but not of OsVPE1 or OsVPE4.
© 2011 The Authors Journal compilation © 2011 FEBS.

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Year:  2011        PMID: 21972902     DOI: 10.1111/j.1742-4658.2011.08380.x

Source DB:  PubMed          Journal:  FEBS J        ISSN: 1742-464X            Impact factor:   5.542


  15 in total

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Journal:  Protoplasma       Date:  2022-01-07       Impact factor: 3.186

2.  OsALMT7 Maintains Panicle Size and Grain Yield in Rice by Mediating Malate Transport.

Authors:  Yueqin Heng; Chuanyin Wu; Yu Long; Sheng Luo; Jin Ma; Jun Chen; Jiafan Liu; Huan Zhang; Yulong Ren; Min Wang; Junjie Tan; Shanshan Zhu; Jiulin Wang; Cailin Lei; Xin Zhang; Xiuping Guo; Haiyang Wang; Zhijun Cheng; Jianmin Wan
Journal:  Plant Cell       Date:  2018-04-02       Impact factor: 11.277

3.  Overexpression of miR529a confers enhanced resistance to oxidative stress in rice (Oryza sativa L.).

Authors:  Erkui Yue; Zhen Liu; Chao Li; Yu Li; Qiuxiang Liu; Jian-Hong Xu
Journal:  Plant Cell Rep       Date:  2017-04-27       Impact factor: 4.570

4.  Interaction between endogenous H2O2 and OsVPE3 in the GA-induced PCD of rice aleurone layers.

Authors:  Yu Xiao; Lulu Zhang; Heting Zhang; Hongyu Feng; Zhe Li; Huiping Chen
Journal:  Plant Cell Rep       Date:  2021-02-09       Impact factor: 4.570

5.  Suppression of OsVPE3 Enhances Salt Tolerance by Attenuating Vacuole Rupture during Programmed Cell Death and Affects Stomata Development in Rice.

Authors:  Wenyun Lu; Minjuan Deng; Fu Guo; Mingqiang Wang; Zhanghui Zeng; Ning Han; Yinong Yang; Muyuan Zhu; Hongwu Bian
Journal:  Rice (N Y)       Date:  2016-11-29       Impact factor: 4.783

6.  OsCNGC13 promotes seed-setting rate by facilitating pollen tube growth in stylar tissues.

Authors:  Yang Xu; Jie Yang; Yihua Wang; Jiachang Wang; Yang Yu; Yu Long; Yunlong Wang; Huan Zhang; Yulong Ren; Jun Chen; Ying Wang; Xin Zhang; Xiuping Guo; Fuqing Wu; Shanshan Zhu; Qibing Lin; Ling Jiang; Chuanyin Wu; Haiyang Wang; Jianmin Wan
Journal:  PLoS Genet       Date:  2017-07-14       Impact factor: 5.917

7.  Disruption of the Interfacial Membrane Leads to Magnaporthe oryzae Effector Re-location and Lifestyle Switch During Rice Blast Disease.

Authors:  Kiersun Jones; Jie Zhu; Cory B Jenkinson; Dong Won Kim; Mariel A Pfeifer; Chang Hyun Khang
Journal:  Front Cell Dev Biol       Date:  2021-06-17

8.  Panicle Apical Abortion 3 Controls Panicle Development and Seed Size in Rice.

Authors:  Fayu Yang; Mao Xiong; Mingjiang Huang; Zhongcheng Li; Ziyi Wang; Honghui Zhu; Rui Chen; Lu Lu; Qinglan Cheng; Yan Wang; Jun Tang; Hui Zhuang; Yunfeng Li
Journal:  Rice (N Y)       Date:  2021-07-15       Impact factor: 4.783

9.  Live and let die - the B(sister) MADS-box gene OsMADS29 controls the degeneration of cells in maternal tissues during seed development of rice (Oryza sativa).

Authors:  Xuelian Yang; Feng Wu; Xuelei Lin; Xiaoqiu Du; Kang Chong; Lydia Gramzow; Susanne Schilling; Annette Becker; Günter Theißen; Zheng Meng
Journal:  PLoS One       Date:  2012-12-12       Impact factor: 3.240

Review 10.  Vacuolar processing enzyme in plant programmed cell death.

Authors:  Noriyuki Hatsugai; Kenji Yamada; Shino Goto-Yamada; Ikuko Hara-Nishimura
Journal:  Front Plant Sci       Date:  2015-04-09       Impact factor: 5.753

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