Drought Tolerance in Plants: Physiological and Molecular Responses

被引:15
作者
Haghpanah, Mostafa [1 ]
Hashemipetroudi, Seyyedhamidreza [2 ]
Arzani, Ahmad [3 ]
Araniti, Fabrizio [4 ]
机构
[1] AREEO, Kohgiluyeh & Boyer Ahmad Agr & Nat Resources Res &, Dryland Agr Res Inst, Gachsaran 7589172050, Iran
[2] Sari Agr Sci & Nat Resources Univ, Genet & Agr Biotechnol Inst Tabarestan GABIT, POB 578, Sari 4818166996, Iran
[3] Isfahan Univ Technol, Coll Agr, Dept Agron & Plant Breeding, Esfahan 8415683111, Iran
[4] Univ Milan, Dept Agr & Environm Sci Prod, Landscape, Agroenergy, I-20133 Milan, Italy
来源
PLANTS-BASEL | 2024年 / 13卷 / 21期
关键词
dehydration; drought stress; dry weather; osmotic stress; water deficit; STRESS TOLERANCE; OSMOTIC-STRESS; ABIOTIC STRESS; TRANSCRIPTION FACTORS; STOMATAL CLOSURE; GENE-EXPRESSION; WATER-USE; ARABIDOPSIS; RESISTANCE; DEHYDRATION;
D O I
10.3390/plants13212962
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Drought, a significant environmental challenge, presents a substantial risk to worldwide agriculture and the security of food supplies. In response, plants can perceive stimuli from their environment and activate defense pathways via various modulating networks to cope with stress. Drought tolerance, a multifaceted attribute, can be dissected into distinct contributing mechanisms and factors. Osmotic stress, dehydration stress, dysfunction of plasma and endosome membranes, loss of cellular turgidity, inhibition of metabolite synthesis, cellular energy depletion, impaired chloroplast function, and oxidative stress are among the most critical consequences of drought on plant cells. Understanding the intricate interplay of these physiological and molecular responses provides insights into the adaptive strategies plants employ to navigate through drought stress. Plant cells express various mechanisms to withstand and reverse the cellular effects of drought stress. These mechanisms include osmotic adjustment to preserve cellular turgor, synthesis of protective proteins like dehydrins, and triggering antioxidant systems to counterbalance oxidative stress. A better understanding of drought tolerance is crucial for devising specific methods to improve crop resilience and promote sustainable agricultural practices in environments with limited water resources. This review explores the physiological and molecular responses employed by plants to address the challenges of drought stress.
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页数:30
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共 202 条
  • [1] Plant dehydrins: shedding light on structure and expression patterns of dehydrin gene family in barley
    Abedini, Raha
    GhaneGolmohammadi, Farzan
    PishkamRad, Reihaneh
    Pourabed, Ehsan
    Jafarnezhad, Ahad
    Shobbar, Zahra-Sadat
    Shahbazi, Maryam
    [J]. JOURNAL OF PLANT RESEARCH, 2017, 130 (04) : 747 - 763
  • [2] Molecular and Physiological Perspectives of Abscisic Acid Mediated Drought Adjustment Strategies
    Abhilasha, Abhilasha
    Roy Choudhury, Swarup
    [J]. PLANTS-BASEL, 2021, 10 (12):
  • [3] Mechanism of Stomatal Closure in Plants Exposed to Drought and Cold Stress
    Agurla, Srinivas
    Gahir, Shashibhushan
    Munemasa, Shintaro
    Murata, Yoshiyuki
    Raghavendra, Agepati S.
    [J]. SURVIVAL STRATEGIES IN EXTREME COLD AND DESICCATION: ADAPTATION MECHANISMS AND THEIR APPLICATIONS, 2018, 1081 : 215 - 232
  • [4] Ahmad F., 2020, Protective chemical agents in the amelioration of plant abiotic stress: Biochemical and molecular perspectives, P53, DOI DOI 10.1002/9781119552154.CH3
  • [5] Recent advancement in OMICS approaches to enhance abiotic stress tolerance in legumes
    Ali, Amjad
    Altaf, Muhammad Tanveer
    Nadeem, Muhammad Azhar
    Karakoey, Tolga
    Shah, Adnan Noor
    Azeem, Hajra
    Baloch, Faheem Shehzad
    Baran, Nurettin
    Hussain, Tajamul
    Duangpan, Saowapa
    Aasim, Muhammad
    Boo, Kyung-Hwan
    Abdelsalam, Nader R.
    Hasan, Mohamed E.
    Chung, Yong Suk
    [J]. FRONTIERS IN PLANT SCIENCE, 2022, 13
  • [6] Microbe-induced drought tolerance by ABA-mediated root architecture and epigenetic reprogramming
    Alwutayd, Khairiah M.
    Rawat, Anamika A.
    Sheikh, Arsheed H.
    Almeida-Trapp, Marilia
    Veluchamy, Alaguraj
    Jalal, Rewaa
    Karampelias, Michael
    Froehlich, Katja
    Alzaed, Waad
    Tabassum, Naheed
    Schley, Thayssa Rabelo
    Schaeffner, Anton R.
    Daur, Ihsanullah
    Saad, Maged M.
    Hirt, Heribert
    [J]. EMBO REPORTS, 2023, 24 (08)
  • [7] Gene expression changes related to the production of phenolic compounds in potato tubers grown under drought stress
    Andre, Christelle M.
    Schafleitner, Roland
    Legay, Sylvain
    Lefevre, Isabelle
    Alvarado Aliaga, Carlos A.
    Nomberto, Giannina
    Hoffmann, Lucien
    Hausman, Jean-Francois
    Larondelle, Yvan
    Evers, Daniele
    [J]. PHYTOCHEMISTRY, 2009, 70 (09) : 1107 - 1116
  • [8] Current progress and challenges in crop genetic transformation
    Anjanappa, Ravi B.
    Gruissem, Wilhelm
    [J]. JOURNAL OF PLANT PHYSIOLOGY, 2021, 261
  • [9] Comprehensive Analysis of Calcium Sensor Families, CBL and CIPK, in Aeluropus littoralis and Their Expression Profile in Response to Salinity
    Arab, Mozhdeh
    Zarrini, Hamid Najafi
    Nematzadeh, Ghorbanali
    Heidari, Parviz
    Hashemipetroudi, Seyyed Hamidreza
    Kuhlmann, Markus
    [J]. GENES, 2023, 14 (03)
  • [10] Askari-Khorsgani O, 2018, Adv Plants Agric Res, V8, P290, DOI [10.15406/apar.2018.08.00329, DOI 10.15406/APAR.2018.08.00329]