数字农科院2.0

The putative auxin efflux carrier OsPIN3t is involved in the drought stress response and drought tolerance

文献类型: 外文期刊

作者: Qian Zhang ; Jingjing Li ; Wenjiao Zhang ; Shuning Yan ; Rui Wang ; Junfeng Zhao ; Yujing Li ; Zhiguang Qi ; Zongxiu Sun ; Zhengge Zhu (2)*

作者机构:

关键词: OsPIN3t;auxin efflux carrier;drought stress;crown root;Oryza sativa

期刊名称: plant journal

ISSN: 0960-7412

年卷期: 2012 年 72 卷 5 期

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: The phytohormone auxin plays a critical role in plant growth and development, and its spatial distribution largely depends on the polar localization of the PIN-FORMED (PIN) auxin efflux carrier family members. In this study, we identify a putative auxin efflux carrier gene in rice, OsPIN3t, which acts in auxin polar transport but is also involved in the drought stress response in rice. We show that OsPIN3tGFP fusion proteins are localized in plasma membranes, and this subcellular localization changes under 1-N-naphthylphthalamic acid (NPA) treatment. The tissue-specific expression patterns of OsPIN3t were also investigated using a beta-glucuronidase (GUS) reporter, which showed that OsPIN3t was mainly expressed in vascular tissue. The GUS activity in OsPIN3tpro::GUS plants increased by NAA treatment and decreased by NPA treatment. Moreover, knockdown of OsPIN3t caused crown root abnormalities in the seedling stage that could be phenocopied by treatment of wild-type plants with NPA, which indicated that OsPIN3t is involved in the control of polar auxin transport. Overexpression of OsPIN3t led to improved drought tolerance, and GUS activity significantly increased when OsPIN3tpro::GUS plants were subjected to 20% polyethylene glycol stress. Taken together, these results suggest that OsPIN3t is involved in auxin transport and the drought stress response, which suggests that a polar auxin transport pathway is involved in the regulation of the response to water stress in plants.

分类号:

  • 相关文献

[1]CHOLINE TRANSPORTER-RELATED 4 (CTR4) Is Involved in Drought and Saline Tolerance in Rice. Yu Shicong,Luo Ruxian,Zheng Shuqin,Ning Jing,Shi Yuanzhu,Guo Daiming,Jia Liangmeng,Wang Sen,Xiao Guizong,Guo Pengwang,Li Yang,Ma Xiaoding. 2025

[2]Genetic Dissection for Leaf Correlative Traits of Rice (Oryza sativa L.)Under Drought Stress. Guo Longbiao,Qian Qian,Zeng Dali,Dong Guojun,Teng Sheng,Zhu Lihuang. 2004

[3]Identification and characterization of short crown root 8, a temperature-sensitive mutant associated with crown root development in rice. Peng Hu,Yi Wen,Yueying Wang,Hao Wu,Junge Wang,Kaixiong Wu,Bingze Chai,Lixin Zhu,Guangheng Zhang,Zhenyu Gao,Deyong Ren,Li Zhu,Longbiao Guo,Dali Zeng,Jing Xu,Song Yan,Qian Qian,Yuchun Rao,Jiang Hu. 2021

[4]Identification and characterization of short crown root 8, a temperature-sensitive mutant associated with crown root development in rice. Peng Hu,Yi Wen,Yueying Wang,Hao Wu,Junge Wang,Kaixiong Wu,Bingze Chai,Lixin Zhu,Guangheng Zhang,Zhenyu Gao,Deyong Ren,Li Zhu,Longbiao Guo,Dali Zeng,Jing Xu,Song Yan,Qian Qian,Yuchun Rao,Jiang Hu. 2021

[5]The wheat basic helix-loop-helix gene TabHLH123 positively modulates the formation of crown roots and is associated with plant height and 1000-grain weight under various conditions. Wang, Jinping,Li, Chaonan,Mao, Xinguo,Wang, Jingyi,Li, Long,Li, Jialu,Fan, Zipei,Zhu, Zhi,He, Liheng,Jing, Ruilian. 2023

[6]Involvement of reactive oxygen species in zinc-deficiency induced inhibition of crown root growth in maize plant. Zhang, Jinyao,Zhang, Yuwei,Song, Shuhui,Pan, Yinghong,Wang, Hong. 2024

[7]ASSOCIATION OF QUANTITATIVE TRAIT LOCI FOR PLANT HEIGHT WITH MAJOR DWARFING GENES IN RICE. Huang, N,Courtois, B,Khush, GS,Lin, HX,Wang, GL,Wu, P,Zheng, KL.

[8]Knocking Out The Gene Rls1 I.nduces Hypersensitivity To Oxidative S tress And Premature Leaf Senescence In Rice. Ren, Deyong,Hu, Jiang,Qian, Qian,He, Lei,Guo, Longbiao,Qiu, Zhennan,Zeng, Dali,Zhang, Sen,Chen, Guang,Wu, Chao,Zhang, Yu,Zhu, Li. 2018

[9]Use of asymmetric somatic hybridization for transfer of the bacterial blight resistance trait from Oryza meyeriana L. to O. sativa L. ssp japonica. Yan, CQ,Qian, KX,Yan, QS,Zhang, XQ,Xue, GP,Huangfu, WG,Wu, YF,Zhao, YZ,Xue, ZY,Huang, J,Xu, GZ,Wu, P. 2004

[10]PLANT-REGENERATION FROM RICE (ORYZA-SATIVA L.) EMBRYOGENIC SUSPENSION CELLS CRYOPRESERVED BY VITRIFICATION. HUANG, CN,WANG, JH,YAN, QS,ZHANG, XQ,YAN, QF. 1995

[11]Phenylacetic acid stimulation of direct shoot formation in anther and somatic tissue cultures of rice (Oryza sativa L). Zhuo, LS,Si, HM,Cheng, SH,Sun, ZX. 1996

[12]Characterization of a rice dwarf and narrow leaf 2 mutant. Adedze, Y. M. N.,Wei, X. J.,Sheng, Z. H.,Jiao, G. A.,Tang, S. Q.,Hu, P. S..

[13]Gene SGL, encoding a kinesin-like protein with transactivation activity, is involved in grain length and plant height in rice. Wu, Tao,Shen, Yingyue,Zheng, Ming,Yang, Chunyan,Chen, Yilin,Feng, Zhiming,Liu, Xi,Liu, Shijia,Jiang, Ling,Wan, Jianmin,Chen, Zhijun,Lei, Cailin,Wang, Jiulin,Wan, Jianmin. 2014

[14]FLOURY ENDOSPERM6 encodes a CBM48 domain-containing protein involved in compound granule formation and starch synthesis in rice endosperm. Peng, Cheng,Wang, Yihua,Zhou, Kunneng,Lv, Jia,Zheng, Ming,Zhao, Shaolu,Zhang, Long,Wang, Chunming,Jiang, Ling,Wan, Jianmin,Liu, Feng,Bao, Yiqun,Ren, Yulong,Zhang, Xin,Guo, Xiuping,Wan, Jianmin. 2014

[15]The effect of low water content on seed longevity. Hu, CL,Zhang, YL,Tao, M,Hu, XR,Jiang, CY. 1998

[16]Novel Insights into Rice Innate Immunity Against Bacterial and Fungal Pathogens. Wang, Guo-Liang,Liu, Jinling,Liu, Jinling,Triplett, Lindsay,Leach, Jan E.,Wang, Guo-Liang. 2014

[17]A large-scale field study of transgene flow from cultivated rice (Oryza sativa) to common wild rice (O-rufipogon) and barnyard grass (Echinochloa crusgalli). Yuan, Qian-Hua,Shi, Lei,Qian, Qian,Liu, Wu-Ge,Kuang, Ba-Geng,Zeng, Da-Li,Liao, Yi-Long,Cao, Bin,Jia, Shi-Rong. 2006

[18]Lethal albinic seedling, encoding a threonyl-tRNA synthetase, is involved in development of plastid protein synthesis system in rice. Zhang, Yuan-Yan,Hao, Yuan-Yuan,Wang, Yi-Hua,Wang, Chun-Ming,Wang, Yun-Long,Long, Wu-Hua,Wang, Di,Liu, Xi,Jiang, Ling,Wan, Jian-Min,Wan, Jian-Min.

[19]Disruption of the Rice Plastid Ribosomal Protein S20 Leads to Chloroplast Developmental Defects and Seedling Lethality. Gong, Xiaodi,Jiang, Quan,Zhang, Jianhui,Lin, Dongzhi,Dong, Yanjun,Xu, Jianlong,Teng, Sheng. 2013

[20]Genome-wide multilocus analysis of intraspecific differentiation in Oryza rufipogon Griff. from China and the influence of introgression from O. sativa L.. Li, F.,Pei, X. W.,Jia, S. R.,Wang, F.,Yuan, Q. H.,Wu, H. J.,Peng, Y. F.. 2013

作者其他论文 更多>>