Starch as a determinant of plant fitness under abiotic stress

被引:519
|
作者
Thalmann, Matthias [1 ]
Santelia, Diana [1 ]
机构
[1] Univ Zurich, Dept Plant & Microbial Biol, Zollikerstr 107, CH-8008 Zurich, Switzerland
基金
瑞士国家科学基金会;
关键词
abiotic stress; abscisic acid (ABA); alpha-amylase; beta-amylase; starch; sugars; OSMOTIC-STRESS; ARABIDOPSIS LEAVES; WATER-DEFICIT; GENE-EXPRESSION; BETA-AMYLASE; SALT STRESS; FREEZING TOLERANCE; CARBON METABOLISM; DROUGHT STRESS; SOLUBLE SUGARS;
D O I
10.1111/nph.14491
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Abiotic stresses, such as drought, high salinity and extreme temperatures, pose one of the most important constraints to plant growth and productivity in many regions of the world. A number of investigations have shown that plants, including several important crops, remobilize their starch reserve to release energy, sugars and derived metabolites to help mitigate the stress. This is an essential process for plant fitness with important implications for plant productivity under challenging environmental conditions. In this Tansley insight, we evaluate the current literature on starch metabolism in response to abiotic stresses, and discuss the key enzymes involved and how they are regulated.
引用
收藏
页码:943 / 951
页数:9
相关论文
共 50 条
  • [1] A Molecular Orchestration of Plant Translation under Abiotic Stress
    Suhorukova, Aleksandra V.
    Sobolev, Denis S.
    Milovskaya, Irina G.
    Fadeev, Vitaliy S.
    Goldenkova-Pavlova, Irina V.
    Tyurin, Alexander A.
    [J]. CELLS, 2023, 12 (20)
  • [2] Plant Abiotic Stress
    Huang, Ji
    Levine, Alexander
    Wang, Zhoufei
    [J]. SCIENTIFIC WORLD JOURNAL, 2013,
  • [3] Melatonin Role in Plant Growth and Physiology under Abiotic Stress
    Ahmad, Irshad
    Zhu, Guanglong
    Zhou, Guisheng
    Liu, Jiao
    Younas, Muhammad Usama
    Zhu, Yiming
    [J]. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (10)
  • [4] Plant sugars: Homeostasis and transport under abiotic stress in plants
    Saddhe, Ankush A.
    Manuka, Rakesh
    Penna, Suprasanna
    [J]. PHYSIOLOGIA PLANTARUM, 2021, 171 (04) : 739 - 755
  • [5] Plant Aquaporin Responses to Mycorrhizal Symbiosis under Abiotic Stress
    Cheng, Hui-Qian
    Ding, Yu-E
    Shu, Bo
    Zou, Ying-Ning
    Wu, Qiang-Sheng
    Kuca, Kamil
    [J]. INTERNATIONAL JOURNAL OF AGRICULTURE AND BIOLOGY, 2020, 23 (04) : 786 - 794
  • [6] Applications of metabolomics in the research of soybean plant under abiotic stress
    Feng, Zhe
    Ding, Chengqiao
    Li, Weihao
    Wang, Dachen
    Cui, Di
    [J]. FOOD CHEMISTRY, 2020, 310 (310)
  • [7] Root exudates impact plant performance under abiotic stress
    Chai, Yen Ning
    Schachtman, Daniel P.
    [J]. TRENDS IN PLANT SCIENCE, 2022, 27 (01) : 80 - 91
  • [8] Role of nanofertilization in plant nutrition under abiotic stress conditions
    Dai, Zhicong
    Huang, Zhiyun
    Hu, Die
    Naz, Misbah
    Afzal, Muhammad Rahil
    Raza, Muhammad Ammar
    Benavides-Mendoza, Adalberto
    Tariq, Muhammad
    Qi, Shanshan
    Du, Daolin
    [J]. Chemosphere, 2024, 366
  • [9] Plant proteome changes under abiotic stress - Contribution of proteomics studies to understanding plant stress response
    Kosova, Klara
    Vitamvas, Pavel
    Prasil, Ilja Tom
    Renaut, Jenny
    [J]. JOURNAL OF PROTEOMICS, 2011, 74 (08) : 1301 - 1322
  • [10] Plant responses to abiotic stress
    Boscaiu, Monica
    Bautista, Inmaculada
    Donat, Pilar
    Lidon, Antonio
    Llinares, Josep
    Lull, Cristina
    Mayoral, Olga
    Vicente, Oscar
    [J]. CURRENT OPINION IN BIOTECHNOLOGY, 2011, 22 : S130 - S130