4.7 Article

Mechanisms of plant saline-alkaline tolerance

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Plant Sciences

Hydrogen sulfide-mediated mitigation and its integrated signaling crosstalk during salinity stress

Vikas Srivastava et al.

Summary: Environmental stresses have a negative impact on plant development and global agricultural productivity. Soil salinity-induced growth suppression involves multiple stress factors, including osmotic stress, ion toxicity, nutritional imbalance, and oxidative stress. Hydrogen sulfide (H2S) has been found to alleviate salinity stress and improve photosynthesis and ROS homeostasis in plants.

PHYSIOLOGIA PLANTARUM (2022)

Article Biochemistry & Molecular Biology

Acidic and Alkaline Conditions Affect the Growth of Tree Peony Plants via Altering Photosynthetic Characteristics, Limiting Nutrient Assimilation, and Impairing ROS Balance

Theint Thinzar Aung et al.

Summary: Exposure to acidic and alkaline conditions leads to excessive accumulation of reactive oxygen species in tree peony, causing damage and inhibiting plant growth. Antioxidant enzyme activities are up-regulated, especially under alkaline conditions, indicating better adaptation to alkaline conditions. 144 differentially expressed genes associated with plant growth, photosynthesis, and stress were identified through comparisons. Genes related to stress were up-regulated, while others were down-regulated, inhibiting nutrient assimilation and chlorophyll synthesis and affecting stomata and chloroplast development. Photosynthesis-related genes showed suppressed expression and reduced light-harvesting capacity, leading to a decrease in net photosynthetic rate. Carbohydrate accumulation and plant biomass were also reduced.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2022)

Article Biotechnology & Applied Microbiology

The genome sequence provides insights into salt tolerance of Achnatherum splendens (Gramineae), a constructive species of alkaline grassland

Guangpeng Ren et al.

Summary: The chromosome-level genome of Achnatherum splendens was determined through a combination of technologies, revealing a significant whole-genome duplication event in the species' evolutionary history that contributed to its strong resistance to salt stress and widespread arid adaptation.

PLANT BIOTECHNOLOGY JOURNAL (2022)

Article Plant Sciences

Role of the type-B authentic response regulator gene family in fragrant rice under alkaline salt stress

Obaid Ur Rehman et al.

Summary: This study characterized the OsARR-B genes in fragrant rice under alkaline salt stress and revealed their involvement in abiotic stress tolerance and plant development. The study provided insights into the genome-wide characterization, gene expression changes, and molecular mechanisms of alkaline salt tolerance in fragrant rice.

PHYSIOLOGIA PLANTARUM (2022)

Article Plant Sciences

Unravelling salt tolerance mechanisms in plants: From lab to field

Parvaiz Ahmad et al.

PLANT PHYSIOLOGY AND BIOCHEMISTRY (2022)

Article Plant Sciences

Abscisic acid alleviates harmful effect of saline-alkaline stress on tomato seedlings

Zijian Xu et al.

Summary: This study investigated the mechanisms of ABA accumulation and resistance improvement in tomato seedlings under saline-alkaline stress. Results showed that ABA synthesis and signal transduction were induced by saline-alkaline stress. Exogenous ABA treatment alleviated the negative effects of saline-alkaline stress on tomato seedlings by promoting accumulation of proline and soluble sugars, reducing ROS content, and improving the antioxidant enzyme system.

PLANT PHYSIOLOGY AND BIOCHEMISTRY (2022)

Article Plant Sciences

Alpha Lipoic Acid as a Protective Mediator for Regulating the Defensive Responses of Wheat Plants against Sodic Alkaline Stress: Physiological, Biochemical and Molecular Aspects

Khaled M. A. Ramadan et al.

Summary: Exogenous alpha-Lipoic acid (ALA) improves the tolerance of wheat plants to sodic alkaline stress by promoting growth and chlorophyll content, enhancing water and nutrient uptake, reducing oxidative damage, and modulating gene expression.

PLANTS-BASEL (2022)

Review Biochemistry & Molecular Biology

Plant Nutrition: An Effective Way to Alleviate Abiotic Stress in Agricultural Crops

Venugopalan Visha Kumari et al.

Summary: By 2050, the global population is expected to reach 9-10 billion, leading to an increased demand for food in many countries. Various abiotic stresses such as temperature, soil salinity, and moisture have negative effects on plant growth and development at different levels. Plant nutrition proves to be an effective strategy to mitigate abiotic stresses in crops. This article discusses the effectiveness of different nutrients in alleviating abiotic stress.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2022)

Article Plant Sciences

Exogenous melatonin enhances soybean (Glycine max (L.) Merr.) seedling tolerance to saline-alkali stress by regulating antioxidant response and DNA damage repair

Qiang Zhao et al.

Summary: Melatonin treatment enhances soybean seedling tolerance to saline-alkali stress by reducing reactive oxygen species (ROS) accumulation and DNA oxidative damage. The treatment also upregulates DNA damage repair genes, promoting the repair of DNA oxidative damage. Additionally, melatonin treatment alleviates the SA-induced cell cycle arrest and improves soybean seedling tolerance to saline-alkali stress.

PHYSIOLOGIA PLANTARUM (2022)

Article Environmental Sciences

Functional carbon nanodots improve soil quality and tomato tolerance in saline-alkali soils

Qiong Chen et al.

Summary: Functional carbon nanodots (FCNs) can alleviate the adverse effects of saline-alkali on tomato plants by up-regulating soil properties and plant physiological processes. They enhance plant tolerance to saline-alkali and disease resistance, improve nutrient uptake and photosynthesis, and contribute to the improvement of soil properties and fertilities.

SCIENCE OF THE TOTAL ENVIRONMENT (2022)

Article Biochemistry & Molecular Biology

Extracellular pH sensing by plant cell-surface peptide-receptor complexes

Li Liu et al.

Summary: This study reveals that plant cell-surface peptide-receptor complexes can function as extracellular pH sensors, regulating plant growth and immunity. Acidic environment inhibits root meristem growth, while alkaline environment promotes immune response.
Article Cell Biology

A Ca2+-sensor switch for tolerance to elevated salt stress in Arabidopsis

Leonie Steinhorst et al.

Summary: Excessive Na+ in soils inhibits plant growth. This study found that Na+ stress triggers primary calcium signals in a specific cell group within the root differentiation zone of Arabidopsis, forming a sodium-sensing niche. The amplitude and speed of these calcium signals increase with rising Na+ concentrations, providing quantitative information about the stress intensity. The researchers also identified a Ca2+-sensing mechanism that measures the stress intensity and activates appropriate salt detoxification responses.

DEVELOPMENTAL CELL (2022)

Article Plant Sciences

The high pH value of alkaline salt destroys the root membrane permeability of Reaumuria trigyna and leads to its serious physiological decline

Jianye Wang et al.

Summary: This study investigated the abiotic resistance of Reaumuria trigyna, a salt-secreting xerophytic shrub, to different environmental stresses. The results showed that R. trigyna exhibited higher tolerance to neutral salts compared to alkaline salts. Alkaline salt stress resulted in decreased root activity, impaired membrane permeability, and ion transfer system, which led to an imbalance between Na+ and K+, excessive accumulation of reactive oxygen species, and decreased plant stress resistance.

JOURNAL OF PLANT RESEARCH (2022)

Article Plant Sciences

The gene LpBCP increased NaHCO3 resistance by enhancing lignin or ROS scavenging in the Nicotiana benthamiana

S. Jin et al.

Summary: Studying the salinity resistance of Lilium pumilum can provide valuable insights for breeding, environmental protection, and soil improvement. This study identified LpBCP as a key gene involved in salinity tolerance in L. pumilum and demonstrated its potential for improving salt tolerance in this species.

PLANT BIOLOGY (2022)

Review Plant Sciences

Chemical priming enhances plant tolerance to salt stress

Faisal Zulfiqar et al.

Summary: Salt stress severely limits crop productivity globally, and its effects are worsened by climate change. Plant priming, using specific chemical agents, has shown promise in enhancing plant tolerance to salt stress. This review summarizes the current knowledge on various molecules/compounds that can potentially enhance the salinity tolerance of crop plants.

FRONTIERS IN PLANT SCIENCE (2022)

Article Plant Sciences

A soybean sodium/hydrogen exchanger GmNHX6 confers plant alkaline salt tolerance by regulating Na+/K+ homeostasis

Ting Jin et al.

Summary: This study found that the soybean NHX6 gene plays an important role in plant tolerance to alkaline salt stress by maintaining high K+ content and low Na+/K+ ratio.

FRONTIERS IN PLANT SCIENCE (2022)

Review Agronomy

Saline-Alkali Tolerance in Rice: Physiological Response, Molecular Mechanism, and QTL Identification and Application to Breeding

Ratan Kumar Ganapati et al.

Summary: Salinity-alkalinity is a non-biological stress that negatively affects the growth and development of rice plants. Understanding the molecular and physiological mechanisms of saline-alkali tolerance is crucial for improving rice's tolerance and breeding progress. This review discusses the physiological consequences, molecular mechanisms, and ways of improving saline-alkali tolerance in rice, including the utilization of QTLs.

RICE SCIENCE (2022)

Article Biochemistry & Molecular Biology

Transcription Factor SlAREB1 Is Involved in the Antioxidant Regulation under Saline-Alkaline Stress in Tomato

Zijian Xu et al.

Summary: SlAREB1, a bZIP transcription factor, responds strongly to both ABA and saline-alkaline stress in tomato. Overexpression of SlAREB1 in tomato plants reduces malondialdehyde content, increases relative water content, and alleviates chlorophyll degradation under saline-alkaline stress. SlAREB1 directly physically interacts with SlMn-SOD, enhancing antioxidant enzyme activity and scavenging of reactive oxygen species.

ANTIOXIDANTS (2022)

Article Agronomy

RNAi-mediated suppression of the abscisic acid catabolism gene OsABA8ox1 increases abscisic acid content and tolerance to saline-alkaline stress in rice (Oryza sativa L.)

Xiaolong Liu et al.

Summary: By suppressing the OsABA8ox1 gene and increasing endogenous abscisic acid (ABA) levels, rice plants show increased tolerance to saline-alkaline stress and improved yield.

CROP JOURNAL (2022)

Article Engineering, Environmental

A comparative metabolomics analysis of the halophyte Suaeda salsa and Salicornia europaea

Xin Wang et al.

Summary: In this study, widely-targeted metabolomics was used to analyze Suaeda salsa and Salicornia europaea, revealing their rich metabolic components with high medical value and different sensitivity to certain compounds under salt stress. The findings provide new insights into important second metabolism pathways related to salt tolerance in these two plants.

ENVIRONMENTAL GEOCHEMISTRY AND HEALTH (2021)

Article Biochemistry & Molecular Biology

Ectopic Expression of CrPIP2;3, a Plasma Membrane Intrinsic Protein Gene from the Halophyte Canavalia rosea, Enhances Drought and Salt-Alkali Stress Tolerance in Arabidopsis

Jiexuan Zheng et al.

Summary: The CrPIP2;3 gene plays a significant role in response to high salt-alkaline and high osmotic stress by regulating water homeostasis, rather than serving as an ROS transporter, influencing various physiological processes in plant cells.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2021)

Article Plant Sciences

Silicon mediated improvement in the growth and ion homeostasis by decreasing Na+ uptake in maize (Zea mays L.) cultivars exposed to salinity stress

Muhammad Ali et al.

Summary: The addition of silicon can alleviate the negative effects of salt stress on maize growth by increasing relative water content, membrane stability index, and antioxidant enzyme activities. The mechanism of silicon's action involves reducing the Na+/K+ ratio, decreasing Na+ uptake and accumulation.

PLANT PHYSIOLOGY AND BIOCHEMISTRY (2021)

Review Plant Sciences

Plant mineral transport systems and the potential for crop improvement

Bindu Yadav et al.

Summary: Nutrient transporter genes have the potential to improve crop yield by enhancing nutrient uptake and providing tolerance against different biotic and abiotic stresses. Understanding the mechanisms of nutrient transport in crop plants could lead to the development of engineered plant crops with increased yield and improved nutrient quality.

PLANTA (2021)

Review Biochemistry & Molecular Biology

Regulation of Cytosolic pH: The Contributions of Plant Plasma Membrane H+-ATPases and Multiple Transporters

Jin-Yan Zhou et al.

Summary: This review focuses on seven types of proteins crucial for cytosolic pH homeostasis in plants, detailing their functions, regulation, and impact on cellular pH balance. Different protein types play distinct roles in regulating cytosolic pH, contributing to overall cellular homeostasis.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2021)

Article Plant Sciences

A rice R2R3-MYB (OsC1) transcriptional regulator improves oxidative stress tolerance by modulating anthocyanin biosynthesis

Gouranga Upadhyaya et al.

Summary: The R2R3 type MYB transcription factors play a crucial role in controlling flavonoid production in plants, such as anthocyanin and proanthocyanin. By studying the relationship between OsC1 and anthocyanin biosynthesis as well as oxidative stress tolerance in rice, it was found that OsC1 may act as a transcriptional regulator of ABP genes, enhancing plant tolerance to oxidative stresses.

PHYSIOLOGIA PLANTARUM (2021)

Article Plant Sciences

Hydrogen sulfide priming can enhance the tolerance of artichoke seedlings to individual and combined saline-alkaline and aniline stresses

Mona F. A. Dawood et al.

Summary: The study found that H2S priming can protect artichoke plants under saline-alkaline and/or aniline stress, mitigate the detrimental effects of stress, and enhance stress tolerance by improving the antioxidant system.

PLANT PHYSIOLOGY AND BIOCHEMISTRY (2021)

Article Plant Sciences

Supplemental Selenium and Boron Mitigate Salt-Induced Oxidative Damages in Glycine max L.

Mira Rahman et al.

Summary: The results of the study demonstrated that exogenous selenium, boron, and selenium+bromine promoted enzymatic activities of the antioxidant defense system and glyoxalase system, thereby alleviating oxidative stress induced by different levels of salt stress.

PLANTS-BASEL (2021)

Editorial Material Genetics & Heredity

PURPLE TOMATOES, BLACK RICE AND FOOD SECURITY

Qifa Zhang

NATURE REVIEWS GENETICS (2021)

Article Plant Sciences

Exogenous melatonin improves the salt tolerance of cotton by removing active oxygen and protecting photosynthetic organs

Dan Jiang et al.

Summary: This study demonstrates that exogenous melatonin (MT) can enhance salt tolerance in cotton seedlings by regulating the photosynthetic system, osmotic modulators, chloroplast, and anatomical structure. Treatment with MT alleviates oxidative damage and ion imbalance caused by salt stress, leading to improved growth and biomass production in plants.

BMC PLANT BIOLOGY (2021)

Article Plant Sciences

Genome-wide identification and expression analysis of aquaporin family in Canavalia rosea and their roles in the adaptation to saline-alkaline soils and drought stress

Ruoyi Lin et al.

Summary: Canavalia rosea, a extremophile halophyte, contains 37 AQPs that play an important role in response to saline-alkaline soils and drought stress. The study reveals the diverse roles of AQPs in mediating C. rosea adaptation to extreme environments, while also providing insights into plant aquaporin evolution.

BMC PLANT BIOLOGY (2021)

Article Plant Sciences

Graphene ameliorates saline-alkaline stress-induced damage and improves growth and tolerance in alfalfa (Medicago sativa L.)

Zhao Chen et al.

Summary: The study revealed that 5 g kg(-1) Nano-C treatment significantly promoted plant growth, while 10-20 g kg(-1) Nano-C harmed physiological and morphological characteristics. Under salt and alkali stresses, the effects of Nano-C on dry weight, fresh weight, seedling length, and antioxidant enzyme activities were significant at the 5 g kg(-1) treatment.

PLANT PHYSIOLOGY AND BIOCHEMISTRY (2021)

Article Plant Sciences

RBOH1-dependent H2O2 mediates spermine-induced antioxidant enzyme system to enhance tomato seedling tolerance to salinity-alkalinity stress

Jiwen Xu et al.

Summary: This study revealed that exogenous spermine induces RBOH1 and H2O2 signaling in tomato seedlings under salinity-alkalinity stress. Additionally, exogenous H2O2 boosts the expression levels and activities of antioxidant enzymes in tomato seedlings under stress conditions.

PLANT PHYSIOLOGY AND BIOCHEMISTRY (2021)

Article Plant Sciences

Genome-wide analysis of the bZIP gene lineage in apple and functional analysis of MhABF in Malushalliana

Shuangcheng Wang et al.

Summary: Through analyzing 51 MdbZIP genes in the apple genome, it was found that MhABF plays a crucial role in plant resistance to saline-alkali stress. This lays the foundation for further research on the functions of apple in response to stress.

PLANTA (2021)

Review Plant Sciences

Response Mechanisms of Plants Under Saline-Alkali Stress

Shumei Fang et al.

Summary: Studies on plant resistance mechanisms under salt-alkali mixed stress are relatively scarce compared to those on salt stress alone. However, the synergistic effects of high concentrations of salt and high pH can be more harmful to plant growth, making it crucial to research plant response to saline-alkali stress for sustainable agricultural development.

FRONTIERS IN PLANT SCIENCE (2021)

Review Plant Sciences

Plant Proton Pumps and Cytosolic pH-Homeostasis

Maike Cosse et al.

Summary: This article discusses the main proton pumps in plant cells and their role in regulating cytosolic pH, emphasizing the coordination of pump activity through 14-3-3 proteins, phosphorylation events, ion concentrations, and redox conditions to maintain cellular homeostasis.

FRONTIERS IN PLANT SCIENCE (2021)

Review Biochemistry & Molecular Biology

Interplay between hydrogen sulfide and other signaling molecules in the regulation of guard cell signaling and abiotic/biotic stress response

Hai Liu et al.

Summary: Stomatal aperture plays a critical role in regulating water loss and CO2 uptake in plants, with hydrogen sulfide (H2S) identified as a signaling molecule that modulates stomatal movement. This review highlights the significance of H2S in regulating stomatal movement through interactions with phytohormones, ion homeostasis, and cell structural components, as well as its cross talk with other signaling molecules in guard cells. Future research directions and unresolved issues are also proposed based on current evidence.

PLANT COMMUNICATIONS (2021)

Article Plant Sciences

The enigma of environmental pH sensing in plants

Huei-Hsuan Tsai et al.

Summary: Environmental pH is crucial for various chemical reactions, biological processes, and all forms of life. The mechanisms underlying the perception of external pH in plants are not well understood, but it is hypothesized that plants sense pH to prioritize responses to different environmental stimuli.

NATURE PLANTS (2021)

Review Biotechnology & Applied Microbiology

Hydrogen sulfide (H2S) signaling in plant development and stress responses

Hai Liu et al.

Summary: Hydrogen sulfide, initially known as a toxic gas, has been found to have important biological functions in both mammalian and plant cells, especially in plant growth, development, and stress responses. It has complex relationships with nitric oxide and hydrogen peroxide in plant signaling, mediating protein post-translational modifications through attacking cysteine residues.

ABIOTECH (2021)

Article Plant Sciences

The protein kinase complex CBL10-CIPK8-SOS1 functions in Arabidopsis to regulate salt tolerance

Xiaochang Yin et al.

JOURNAL OF EXPERIMENTAL BOTANY (2020)

Review Plant Sciences

Salt Tolerance Mechanisms of Plants

Eva van Zelm et al.

ANNUAL REVIEW OF PLANT BIOLOGY, VOL 71, 2020 (2020)

Article Biotechnology & Applied Microbiology

Genome of extreme halophyte Puccinellia tenuiflora

Rui Guo et al.

BMC GENOMICS (2020)

Article Plant Sciences

Role ofTaALMT1 malate-GABAtransporter in alkalinepHtolerance of wheat

Muhammad Kamran et al.

PLANT CELL AND ENVIRONMENT (2020)

Article Biochemistry & Molecular Biology

Calcium/calmodulin-dependent protein kinase OsDMI3 positively regulates saline-alkaline tolerance in rice roots

Lan Ni et al.

PLANT SIGNALING & BEHAVIOR (2020)

Review Food Science & Technology

The Roles of Plant Growth Promoting Microbes in Enhancing Plant Tolerance to Acidity and Alkalinity Stresses

Levini A. Msimbira et al.

FRONTIERS IN SUSTAINABLE FOOD SYSTEMS (2020)

Article Computer Science, Information Systems

The generic technology identification of saline-alkali land management and improvement based on social network analysis

Li Liu et al.

CLUSTER COMPUTING-THE JOURNAL OF NETWORKS SOFTWARE TOOLS AND APPLICATIONS (2019)

Article Engineering, Environmental

The combined and single effect of salinity and copper stress on growth and quality of Mentha spicata plants

Antonios Chrysargyris et al.

JOURNAL OF HAZARDOUS MATERIALS (2019)

Article Multidisciplinary Sciences

Plant cell-surface GIPC sphingolipids sense salt to trigger Ca2+ influx

Zhonghao Jiang et al.

NATURE (2019)

Review Plant Sciences

Boron toxicity in higher plants: an update

Marco Landi et al.

PLANTA (2019)

Article Biochemistry & Molecular Biology

Characterization of Na+ exclusion mechanism in rice under saline-alkaline stress conditions

Sumana Chuamnakthong et al.

PLANT SCIENCE (2019)

Review Biochemistry & Molecular Biology

Unraveling salt stress signaling in plants

Yongqing Yang et al.

JOURNAL OF INTEGRATIVE PLANT BIOLOGY (2018)

Article Biochemistry & Molecular Biology

A potential efflux boron transporter gene GsBOR2, positively regulates Arabidopsis bicarbonate tolerance

Xiangbo Duan et al.

PLANT SCIENCE (2018)

Review Biochemistry & Molecular Biology

The pH of the Apoplast: Dynamic Factor with Functional Impact Under Stress

Christoph-Martin Geilfus

MOLECULAR PLANT (2017)

Article Engineering, Environmental

Research on saline-alkali soil amelioration with FGD gypsum

S. J. Wang et al.

RESOURCES CONSERVATION AND RECYCLING (2017)

Article Biochemistry & Molecular Biology

Involvement of abscisic acid in microbe-induced saline-alkaline resistance in plants

Cheng Zhou et al.

PLANT SIGNALING & BEHAVIOR (2017)

Review Endocrinology & Metabolism

Recent advances on bioactivities of black rice

Aecio L. de S. Dias et al.

CURRENT OPINION IN CLINICAL NUTRITION AND METABOLIC CARE (2017)

Review Plant Sciences

New Insights on Plant Salt Tolerance Mechanisms and Their Potential Use for Breeding

Moez Hanin et al.

FRONTIERS IN PLANT SCIENCE (2016)

Article Plant Sciences

Impacts of Priming with Silicon on the Growth and Tolerance of Maize Plants to Alkaline Stress

Arafat A. Abdel Latef et al.

FRONTIERS IN PLANT SCIENCE (2016)

Review Plant Sciences

Plant salt-tolerance mechanisms

Ulrich Deinlein et al.

TRENDS IN PLANT SCIENCE (2014)

Review Plant Sciences

Tolerance to drought and salt stress in plants: unraveling the signaling networks

Dortje Golldack et al.

FRONTIERS IN PLANT SCIENCE (2014)

Article Biochemistry & Molecular Biology

Physiological and Molecular Features of Puccinellia tenuiflora Tolerating Salt and Alkaline-Salt Stress

Xia Zhang et al.

JOURNAL OF INTEGRATIVE PLANT BIOLOGY (2013)

Article Plant Sciences

Bicarbonate blocks iron translocation from cotyledons inducing iron stress responses in Citrus roots

Mary-Rus Martinez-Cuenca et al.

JOURNAL OF PLANT PHYSIOLOGY (2013)

Review Biochemistry & Molecular Biology

The Salt Overly Sensitive (SOS) Pathway: Established and Emerging Roles

Hongtao Ji et al.

MOLECULAR PLANT (2013)

Review Plant Sciences

Physiological and molecular mechanisms of plant salt tolerance

Jin-Lin Zhang et al.

PHOTOSYNTHESIS RESEARCH (2013)

Article Biochemistry & Molecular Biology

Ectopic Expression of a Bacterium NhaD-type Na+/H+ Antiporter Leads to Increased Tolerance to Combined Salt/Alkali Stresses

Nai-Qin Zhong et al.

JOURNAL OF INTEGRATIVE PLANT BIOLOGY (2012)

Review Plant Sciences

ROS signaling: the new wave?

Ron Mittler et al.

TRENDS IN PLANT SCIENCE (2011)

Review Plant Sciences

Mechanisms of salinity tolerance

Rana Munns et al.

ANNUAL REVIEW OF PLANT BIOLOGY (2008)

Article Multidisciplinary Sciences

Oscillations in extracellular pH and reactive oxygen species modulate tip growth of Arabidopsis root haris

G. B. Monshausen et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2007)

Review Biochemistry & Molecular Biology

Plant proton pumps

Roberto A. Gaxiola et al.

FEBS LETTERS (2007)

Article Plant Sciences

Alkali cation exchangers: roles in cellular homeostasis and stress tolerance

JM Pardo et al.

JOURNAL OF EXPERIMENTAL BOTANY (2006)

Article Plant Sciences

Molecular genetic perspectives on cross-talk and specificity in abiotic stress signalling in plants

V Chinnusamy et al.

JOURNAL OF EXPERIMENTAL BOTANY (2004)

Article Plant Sciences

A critical analysis of the causes of boron toxicity in plants

RJ Reid et al.

PLANT CELL AND ENVIRONMENT (2004)

Review Plant Sciences

Plant salt tolerance

JK Zhu

TRENDS IN PLANT SCIENCE (2001)

Article Multidisciplinary Sciences

The Arabidopsis thaliana salt tolerance gene SOS1 encodes a putative Na+/H+ antiporter

HZ Shi et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2000)