Differential Contribution of P5CS Isoforms to Stress Tolerance in Arabidopsis

被引:84
|
作者
Funck, Dietmar [1 ]
Baumgarten, Lukas [1 ]
Stift, Marc [1 ]
von Wiren, Nicolaus [2 ]
Schoenemann, Luise [1 ]
机构
[1] Univ Konstanz, Dept Biol, Constance, Germany
[2] Leibniz Inst Plant Genet & Crop Plant Res, Mol Plant Nutr, Gatersleben, Germany
来源
FRONTIERS IN PLANT SCIENCE | 2020年 / 11卷
关键词
proline biosynthesis; pyrroline-5-carboxylate synthetase; salt stress; compatible solutes; subcellular localization; seedling development; Pseudomonas syringae; INDUCED PROLINE ACCUMULATION; DELTA(1)-PYRROLINE-5-CARBOXYLATE REDUCTASE; SALINITY TOLERANCE; EXOGENOUS PROLINE; GENE; MECHANISMS; PLANTS; DEHYDROGENASE; INHIBITION; GROWTH;
D O I
10.3389/fpls.2020.565134
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Proline accumulation is a widespread response of plants to salt stress as well as drought and cold stress. In most plant species, two isoforms of pyrroline-5-carboxylate synthetase (P5CS) catalyze the first step in proline biosynthesis from glutamate. In Arabidopsis, these isoforms differ in their spatial and temporal expression patterns, suggesting sub-functionalization. P5CS1 has been identified as the major contributor to stress-induced proline accumulation, whereas P5CS2 has been considered important for embryo development and growth. In contrast to previous results, our analysis of P5CS1- and P5CS2-GFP fusion proteins indicates that both enzymes were exclusively localized in the cytosol. The comparison of the susceptibility ofp5cs1andp5cs2mutants to infection withPseudomonas syringaeand salt stress provided novel information on the contribution of the two P5CS isoforms to proline accumulation and stress tolerance. In agreement with previous studies, salt-stressedp5cs1mutants accumulated very little proline, indicating that P5CS1 contributed more to stress-induced proline accumulation, whereas its impact on stress tolerance was rather weak. Germination and establishment ofp5cs2mutants were impaired under ambient conditions, further supporting that P5CS2 is most important for growth and development, whereas its contribution to stress-induced proline accumulation was smaller than that of P5CS1. In contrast top5cs1mutants or wildtype plants,p5cs2mutants were only weakly affected by sudden exposure to a high NaCl concentration. These findings show that proline content, which was intermediate in leaves ofp5cs2mutants, was not directly correlated with stress tolerance in our experiments. In rosettes of NaCl-exposedp5cs2mutants, nearly no accumulation of Na(+)was observed, and the plants showed neither chlorosis nor reduction of photosynthesis. Based on these data, we suggest a function of P5CS2 or P5CS2-mediated proline synthesis in regulating Na(+)accumulation in leaves and thereby salt stress tolerance.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Two P5CS genes from common bean exhibiting different tolerance to salt stress in transgenic Arabidopsis
    Chen, Ji Bao
    Yang, Jian Wei
    Zhang, Zhao Yuan
    Feng, Xiao Fan
    Wang, Shu Min
    JOURNAL OF GENETICS, 2013, 92 (03) : 461 - 469
  • [2] Two P5CS genes from common bean exhibiting different tolerance to salt stress in transgenic Arabidopsis
    JI BAO CHEN
    JIAN WEI YANG
    ZHAO YUAN ZHANG
    XIAO FAN FENG
    SHU MIN WANG
    Journal of Genetics, 2013, 92 : 461 - 469
  • [3] Dynamic Arabidopsis P5CS filament facilitates substrate channelling
    Guo, Chen-Jun
    Zhang, Tianyi
    Leng, Qingqing
    Zhou, Xian
    Zhong, Jiale
    Liu, Ji-Long
    NATURE PLANTS, 2024, 10 (06) : 880 - 889
  • [4] Duplicated P5CS genes of Arabidopsis play distinct roles in stress regulation and developmental control of proline biosynthesis
    Szekely, Gyongyi
    Abraham, Edit
    Cseplo, Agnes
    Rigo, Gabor
    Zsigmond, Laura
    Csiszar, Jolan
    Ayaydin, Ferhan
    Strizhov, Nicolai
    Jasik, Jan
    Schmelzer, Elmon
    Koncz, Csaba
    Szabados, Laszlo
    PLANT JOURNAL, 2008, 53 (01): : 11 - 28
  • [5] Stress-induced Δ1-pyrroline-5-carboxylate synthetase (P5CS) gene confers tolerance to salt stress in transgenic sugarcane
    Julia Tufino Silva Guerzoni
    Nathalia Geraldo Belintani
    Rosangela Maria Pinto Moreira
    Andrea Akemi Hoshino
    Douglas Silva Domingues
    João Carlos Bespalhok Filho
    Luiz Gonzaga Esteves Vieira
    Acta Physiologiae Plantarum, 2014, 36 : 2309 - 2319
  • [6] Unveiling the Role of GhP5CS1 in Cotton Salt Stress Tolerance: A Comprehensive Genomic and Functional Analysis of P5CS Genes
    Fang, Hui
    Gao, Xin
    Wu, Yunhao
    Zhang, Ke
    Wu, Ying
    Li, Junyi
    Qian, Dongmei
    Li, Ruochen
    Gu, Haijing
    Mehari, Teame Gereziher
    Shen, Xinlian
    Wang, Baohua
    PLANTS-BASEL, 2025, 14 (02):
  • [7] Stress-induced Δ1-pyrroline-5-carboxylate synthetase (P5CS) gene confers tolerance to salt stress in transgenic sugarcane
    Silva Guerzoni, Julia Tufino
    Belintani, Nathalia Geraldo
    Pinto Moreira, Rosangela Maria
    Hoshino, Andrea Akemi
    Domingues, Douglas Silva
    Bespalhok Filho, Joo Carlos
    Esteves Vieira, Luiz Gonzaga
    ACTA PHYSIOLOGIAE PLANTARUM, 2014, 36 (09) : 2309 - 2319
  • [8] Functional Characterization of the Paeonia ostii P5CS Gene under Drought Stress
    Luan, Yuting
    An, Honglei
    Chen, Zijie
    Zhao, Daqiu
    Tao, Jun
    PLANTS-BASEL, 2024, 13 (15):
  • [9] Structural basis of dynamic P5CS filaments
    Zhong, Jiale
    Guo, Chen-Jun
    Zhou, Xian
    Chang, Chia-Chun
    Yin, Boqi
    Zhang, Tianyi
    Hu, Huan-Huan
    Lu, Guang-Ming
    Liu, Ji-Long
    ELIFE, 2022, 11
  • [10] Regulation of proline accumulation and P5CS gene expression in a salt-hypersensitive Arabidopsis mutant
    Liu, JP
    Ding, L
    Stevenson, B
    Zhu, JK
    PLANT PHYSIOLOGY, 1996, 111 (02) : 725 - 725