Crosstalk of Cytokinin with Ethylene and Auxin for Cell Elongation Inhibition and Boron Transport in Arabidopsis Primary Root under Boron Deficiency

被引:12
|
作者
Begona Herrera-Rodriguez, Maria [1 ]
Jose Camacho-Cristobal, Juan [1 ]
Barrero-Rodriguez, Rafael [1 ]
Rexach, Jesus [1 ]
Teresa Navarro-Gochicoa, Maria [1 ]
Gonzalez-Fontes, Agustin [1 ]
机构
[1] Univ Pablo de Olavide, Dept Fisiol Anat & Biol Celular, E-41013 Seville, Spain
来源
PLANTS-BASEL | 2022年 / 11卷 / 18期
关键词
ACS11; gene; AUX1; boron transporters; plant hormones; root elongation; RHAMNOGALACTURONAN-II; PHOSPHATE-STARVATION; 1-AMINOCYCLOPROPANE-1-CARBOXYLIC ACID; PROTEIN STABILITY; MERISTEM ACTIVITY; GENE FAMILY; PLANT-CELL; BORIC-ACID; EXPRESSION; PATHWAY;
D O I
10.3390/plants11182344
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Several studies have shown the role of phytohormones in the regulation of root growth of Arabidopsis plants under boron (B) deficiency. Ethylene and auxin play an important role in the control of Arabidopsis primary root cell elongation under short-term B deprivation, whereas cytokinins regulate root growth inhibition under B deficiency by controlling meristem cell proliferation. In this work, we study the possible interaction among cytokinin, ethylene, and auxin in the primary root response to B-deprivation treatment, as well as their possible role in B uptake and transport. Wild type (WT) and two mutants related to auxin and ethylene (aux1 and acs11) Arabidopsis plants were grown in control (10 mu M B) or B starvation (0 mu M B) treatment, in the absence or presence of trans-zeatin, and their primary root growth was analyzed. The possible interaction between these hormones was also studied by analyzing AUX1 gene expression in the acs11 mutant and ACS11 gene expression in the aux1 mutant. The GUS reporter lines ARR5::GUS, IAA2::GUS, and EBS::GUS were used to observe changes in cytokinin, auxin, and ethylene levels in the root, respectively. The results of this work suggest that cytokinin inhibits root cell elongation under B deficiency through two different mechanisms: (i) an ethylene-dependent mechanism through increased expression of the ACS11 gene, which would lead to increased ethylene in the root, and (ii) an ethylene-independent mechanism through decreased expression of the AUX1 gene, which alters auxin signaling in the meristematic and elongation zones and stele. We also report that changes in the expression of several B transporters occur in response to auxin, ethylene, and cytokinin that may affect the plant B content.
引用
收藏
页数:18
相关论文
共 36 条
  • [1] Boron deficiency inhibits root cell elongation via an ethylene/auxin/ROS-dependent pathway in Arabidopsis seedlings
    Camacho-Cristobal, Juan J.
    Martin-Rejano, Esperanza M.
    Begona Herrera-Rodriguez, M.
    Teresa Navarro-Gochicoa, M.
    Rexach, Jesus
    Gonzalez-Fontes, Agustin
    JOURNAL OF EXPERIMENTAL BOTANY, 2015, 66 (13) : 3831 - 3840
  • [2] Ethylene upregulates auxin biosynthesis in Arabidopsis seedlings to enhance inhibition of root cell elongation
    Swarup, Ranjan
    Perry, Paula
    Hagenbeek, Dik
    Van Der Straeten, Dominique
    Beemster, Gerrit T. S.
    Sandberg, Goran
    Bhalerao, Rishikesh
    Ljung, Karin
    Bennett, Malcolm J.
    PLANT CELL, 2007, 19 (07): : 2186 - 2196
  • [3] Arabidopsis BOR2, an efflux-type boron transporter, is essential for root elongation under boron deficiency
    Miwa, K
    Takano, J
    Seki, M
    Shinozaki, K
    Fujiwara, T
    PLANT AND CELL PHYSIOLOGY, 2005, 46 : S83 - S83
  • [4] Aluminium-induced inhibition of root elongation in Arabidopsis is mediated by ethylene and auxin
    Sun, Pei
    Tian, Qiu-Ying
    Chen, Jie
    Zhang, Wen-Hao
    JOURNAL OF EXPERIMENTAL BOTANY, 2010, 61 (02) : 347 - 356
  • [5] The Role of Auxin-Ethylene Crosstalk in Orchestrating Primary Root Elongation in Sugar Beet
    Abts, Willem
    Vandenbussche, Bert
    De Proft, Maurice P.
    Van de Poel, Bram
    FRONTIERS IN PLANT SCIENCE, 2017, 8
  • [6] Auxin and ethylene are involved in the responses of root system architecture to low boron supply in Arabidopsis seedlings
    Martin-Rejano, Esperanza M.
    Camacho-Cristobal, Juan J.
    Begona Herrera-Rodriguez, Maria
    Rexach, Jesus
    Teresa Navarro-Gochicoa, Maria
    Gonzalez-Fontes, Agustin
    PHYSIOLOGIA PLANTARUM, 2011, 142 (02) : 170 - 178
  • [7] Boron deficiency inhibits root growth by controlling meristem activity under cytokinin regulation
    Poza-Viejo, Laura
    Abreu, Isidro
    Paz Gonzalez-Garcia, Mary
    Allauca, Paul
    Bonilla, Ildefonso
    Bolanos, Luis
    Reguera, Maria
    PLANT SCIENCE, 2018, 270 : 176 - 189
  • [8] Crosstalk Complexities between Auxin, Cytokinin, and Ethylene in Arabidopsis Root Development: From Experiments to Systems Modeling, and Back Again
    Liu, Junli
    Moore, Simon
    Chen, Chunli
    Lindsey, Keith
    MOLECULAR PLANT, 2017, 10 (12) : 1480 - 1496
  • [9] Boron deficiency results in early repression of a cytokinin receptor gene and abnormal cell differentiation in the apical root meristem of Arabidopsis thaliana
    Abreu, Isidro
    Poza, Laura
    Bonilla, Ildefonso
    Bolanos, Luis
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2014, 77 : 117 - 121
  • [10] CYTOKININ ACTION IS COUPLED TO ETHYLENE IN ITS EFFECTS ON THE INHIBITION OF ROOT AND HYPOCOTYL ELONGATION IN ARABIDOPSIS-THALIANA SEEDLINGS
    CARY, AJ
    LIU, WN
    HOWELL, SH
    PLANT PHYSIOLOGY, 1995, 107 (04) : 1075 - 1082