Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Abscisic acid is correlated with the leaf growth inhibition of four genotypes of maize differing in their response to salinity

Grant R. Cramer and Steve A. Quarrie
29(1) pp.111 - 115


90 articles found in Crossref database.

Ecophysiology and Responses of Plants under Salt Stress (2013)
Hasanuzzaman Mirza, Nahar Kamrun, Fujita Masayuki
Salinity stress in date palm (Phoenix dactylifera L.): tolerance, mechanisms and mitigation
Al-Absi Khalid M.
Horticulture, Environment, and Biotechnology. 2023 64(5). p.695
Linking oxidative and salinity stress tolerance in barley: can root antioxidant enzyme activity be used as a measure of stress tolerance?
Maksimović Jelena Dragišić, Zhang Jingyi, Zeng Fanrong, Živanović Branka D., Shabala Lana, Zhou Meixue, Shabala Sergey
Plant and Soil. 2013 365(1-2). p.141
Alterations of Endogenous Hormonal Levels in Plants under Drought and Salinity
Llanes Analía, Andrade Andrea, Alemano Sergio, Luna Virginia
American Journal of Plant Sciences. 2016 07(09). p.1357
Role of ABA in integrating plant responses to drought and salt stresses
Zhang Jianhua, Jia Wensuo, Yang Jianchang, Ismail Abdelbagi M.
Field Crops Research. 2006 97(1). p.111
Scion and Rootstock Effects on ABA-mediated Plant Growth Regulation and Salt Tolerance of Acclimated and Unacclimated Potato Genotypes
Etehadnia Masoomeh, Waterer Doug, De Jong Hielke, Tanino Karen K.
Journal of Plant Growth Regulation. 2008 27(2). p.125
Advances in Molecular Breeding Toward Drought and Salt Tolerant Crops (2007)
Li Chengdao, Zhang Guoping, Lance Reg
Physiological Mechanisms and Adaptation Strategies in Plants Under Changing Environment (2014)
Morkunas Iwona, Mai Van Chung, Waśkiewicz Agnieszka, Formela Magda, Goliński Piotr
Variations in response of CaPAO and CaATG8c genes, hormone, photosynthesis and antioxidative system in pepper genotypes under salinity stress
Shams Mostafakamal, Yildirim Ertan
Scientia Horticulturae. 2021 282 p.110041
The Effects of NaCl Treatment on Water Relations, Growth, and ABA Content in Barley Cultivars Differing in Drought Tolerance
Veselov D. S., Sharipova G. V., Veselov S. U., Kudoyarova G. R.
Journal of Plant Growth Regulation. 2008 27(4). p.380
Multi-Omics and Integrative Approach towards Understanding Salinity Tolerance in Rice: A Review
Muthuramalingam Pandiyan, Jeyasri Rajendran, Rakkammal Kasinathan, Satish Lakkakula, Shamili Sasanala, Karthikeyan Adhimoolam, Valliammai Alaguvel, Priya Arumugam, Selvaraj Anthonymuthu, Gowri Pandiyan, Wu Qiang-Sheng, Karutha Pandian Shunmugiah, Shin Hyunsuk, Chen Jen-Tsung, Baskar Venkidasamy, Thiruvengadam Muthu, Akilan Manoharan, Ramesh Manikandan
Biology. 2022 11(7). p.1022
Photosynthesis. Energy from the Sun (2008)
Sharma Prabhat Kumar, Vaz Janet
Water deficit and abscisic acid production ofSalicornia bigeloviiunder salinity stress
Ohori Teppei, Fujiyama Hideyasu
Soil Science and Plant Nutrition. 2011 57(4). p.566
Variation in Salt Tolerance of Wheat Cultivars: Role of Glycinebetaine and Ethylene
KHAN M.I.R., IQBAL N., MASOOD A., KHAN N.A.
Pedosphere. 2012 22(6). p.746
Increasing abscisic acid levels by immunomodulation in barley grains induces precocious maturation without changing grain composition
Staroske Nicole, Conrad Udo, Kumlehn Jochen, Hensel Götz, Radchuk Ruslana, Erban Alexander, Kopka Joachim, Weschke Winfriede, Weber Hans
Journal of Experimental Botany. 2016 67(9). p.2675
Physiology of Salt Stress in Plants (2021)
Tiwari Santwana, Verma Nidhi, Singh Shikha, Gupta Shivam, Singh Madhulika, Singh Pratibha, Pandey Jitendra, Prasad Sheo Mohan
Inoculation of abscisic acid-producing endophytic bacteria enhances salinity stress tolerance in Oryza sativa
Shahzad Raheem, Khan Abdul Latif, Bilal Saqib, Waqas Muhammad, Kang Sang-Mo, Lee In-Jung
Environmental and Experimental Botany. 2017 136 p.68
Microarray-based expression analysis of phytohormone-related genes in rice seedlings during cyanide metabolism
Yu Xiao-Zhang, Lin Yu-Juan, Lu Chun-Jiao, Gupta Dharmendra K.
Environmental Science and Pollution Research. 2018 25(20). p.19701
Halotolerant bacteria mitigate the effects of salinity stress on soybean growth by regulating secondary metabolites and molecular responses
Khan Muhammad Aaqil, Sahile Atlaw Anbelu, Jan Rahmatullah, Asaf Sajjad, Hamayun Muhammad, Imran Muhammad, Adhikari Arjun, Kang Sang-Mo, Kim Kyung-Min, Lee In-Jung
BMC Plant Biology. 2021 21(1).
Invertase activity limits grain yield of maize under salt stress
Hütsch Birgit W., Saqib Muhammad, Osthushenrich Tanja, Schubert Sven
Journal of Plant Nutrition and Soil Science. 2014 177(2). p.278
The Combined Effects of Salinity and Foliar Spray of Different Hormones on Some Biological Aspects, Dry Matter Accumulation and Yield in Two Varieties of Indica Rice Differing in Their Level of Salt Tolerance
Saeedipour Saeed
Proceedings of the National Academy of Sciences, India Section B: Biological Sciences. 2014 84(3). p.721
Some morphological and anatomical observations during alleviation of salinity (NaCI) stress on seed germination and seedling growth of barley by polyamines
Çavuşoğlu Kürşat, Kılıç Semra, Kabar Kudret
Acta Physiologiae Plantarum. 2007 29(6). p.551
Crop Physiology Case Histories for Major Crops (2021)
Otegui María E., Cirilo Alfredo G., Uhart Sergio A., Andrade Fernando H.
Abiotic Stress in Plants - Adaptations to Climate Change (2023)
Rasool Nazima
Gibberellins Producing Endophytic Fungus Porostereum spadiceum AGH786 Rescues Growth of Salt Affected Soybean
Hamayun Muhammad, Hussain Anwar, Khan Sumera A., Kim Ho-Youn, Khan Abdul L., Waqas Muhammad, Irshad Muhammad, Iqbal Amjad, Rehman Gauhar, Jan Samin, Lee In-Jung
Frontiers in Microbiology. 2017 8
Salinity and Water Stress (2009)
Kaya C., Tuna A. L., Yokaş I.
A rapid dehydration leaf assay reveals stomatal response differences in grapevine genotypes
Hopper Daniel W, Ghan Ryan, Cramer Grant R
Horticulture Research. 2014 1(1).
Effect of 6-benzyladenine on soybean seed germination under salt stress and establishment of stress grade prediction model
Gu Ying, Li Jiachao, Zhang He, Pan Dayu, Wang Cheng, Song Ping, Luo Bin
Plant Stress. 2024 11 p.100388
Spatial and Temporal Quantitative Analysis of Cell Division and Elongation Rate in Growing Wheat Leaves under Saline Conditions
Hu Yuncai, Schmidhalter Urs
Journal of Integrative Plant Biology. 2008 50(1). p.76
Comparison of Salt and Drought‐Stress Effects on Maize Growth and Yield Formation with Regard to Acid Invertase Activity in the Kernels
Hütsch B. W., Jung S., Schubert S.
Journal of Agronomy and Crop Science. 2015 201(5). p.353
The xanthophyll cycle activity in kidney bean and cabbage leaves under salinity stress
Misra A. N., Latowski D., Strzalka K.
Russian Journal of Plant Physiology. 2006 53(1). p.102
Combining Ability of Salinity Tolerance on the Basis of NaCl‐Induced K+ Flux from Roots of Barley
Chen Zhonghua, Shabala Sergey, Mendham Neville, Newman Ian, Zhang Guoping, Zhou Meixue
Crop Science. 2008 48(4). p.1382
Germination response of black and yellow seed coated canola (Brassica napus) lines to chemical treatments under cold temperature conditions
Zhang Wentao, Gusta Lawrence V.
Plant Growth Regulation. 2010 60(2). p.105
Salinity Responses and Tolerance in Plants, Volume 1 (2018)
Hoque Tahsina Sharmin, Burritt David J., Hossain Mohammad Anwar
To Stimulate or Inhibit? That Is the Question for the Function of Abscisic Acid
Humplík Jan F., Bergougnoux Véronique, Van Volkenburgh Elizabeth
Trends in Plant Science. 2017 22(10). p.830
Potential Role of Plant Growth Regulators in Administering Crucial Processes Against Abiotic Stresses
Sabagh Ayman EL, Mbarki Sonia, Hossain Akbar, Iqbal Muhammad Aamir, Islam Mohammad Sohidul, Raza Ali, Llanes Analía, Reginato Mariana, Rahman Md Atikur, Mahboob Wajid, Singhal Rajesh Kumar, Kumari Arpna, Rajendran Karthika, Wasaya Allah, Javed Talha, Shabbir Rubab, Rahim Junaid, Barutçular Celaleddin, Habib Ur Rahman Muhammad, Raza Muhammad Ali, Ratnasekera Disna, Konuskan l Ömer, Hossain Mohammad Anwar, Meena Vijay Singh, Ahmed Sharif, Ahmad Zahoor, Mubeen Muhammad, Singh Kulvir, Skalicky Milan, Brestic Marian, Sytar Oksana, Karademir Emine, Karademir Cetin, Erman Murat, Farooq Muhammad
Frontiers in Agronomy. 2021 3
Salinity and the growth of non-halophytic grass leaves: the role of mineral nutrient distribution
Hu Yuncai, Fricke Wieland, Schmidhalter Urs
Functional Plant Biology. 2005 32(11). p.973
The protective action of cytokinins on the photosynthetic machinery and productivity of plants under stress (review)
Chernyad’ev I. I.
Applied Biochemistry and Microbiology. 2009 45(4). p.351
The Method of ABA Application Affects Salt Stress Responses in Resistant and Sensitive Potato Lines
Etehadnia Masoomeh, Waterer Doug R., Tanino Karen K.
Journal of Plant Growth Regulation. 2008 27(4). p.331
Sodium Influx and Accumulation in Arabidopsis
Essah Pauline A., Davenport Romola, Tester Mark
Plant Physiology. 2003 133(1). p.307
Plant hormones in salt stress tolerance
Ryu Hojin, Cho Yong-Gu
Journal of Plant Biology. 2015 58(3). p.147
Plant Signaling Molecules (2019)
Massa Daniele, Melito Sara
Identification of the Functional Modules of SlPP2C.D—SlSAUR and Their Roles in Abscisic Acid-Mediated Inhibition of Tomato Hypocotyl Elongation
Zheng Xiaolin, Fei Shihong, Wang Shajun, He Yong, Zhu Zhujun, Liu Yuanyuan
Agronomy. 2022 12(10). p.2542
Exogenous application of abscisic acid to root systems of grapevines with or without salinity influences water relations and ion allocation
Degaris K. A., Walker R.R., Loveys B.R., Tyerman S.D.
Australian Journal of Grape and Wine Research. 2017 23(1). p.66
Effects of Salt Stress on Photosynthesis and Water in Plants
周 丹
Botanical Research. 2021 10(03). p.231
Plant Salt Stress: Adaptive Responses, Tolerance Mechanism and Bioengineering for Salt Tolerance
Muchate Niramaya S., Nikalje Ganesh C., Rajurkar Nilima S., Suprasanna P., Nikam Tukaram D.
The Botanical Review. 2016 82(4). p.371
Hormonal changes in relation to biomass partitioning and shoot growth impairment in salinized tomato (Solanum lycopersicum L.) plants
Albacete A., Ghanem M. E., Martinez-Andujar C., Acosta M., Sanchez-Bravo J., Martinez V., Lutts S., Dodd I. C., Perez-Alfocea F.
Journal of Experimental Botany. 2008 59(15). p.4119
Re-visiting the Rhizosphere Eco-system for Agricultural Sustainability (2022)
Chouhan Gowardhan Kumar, Singh Saurabh, Mukherjee Arpan, Gaurav Anand Kumar, Lepcha Ayush, Kumari Sudeepa, Verma Jay Prakash
Efficient leaf ion partitioning, an overriding condition for abscisic acid‐controlled stomatal and leaf growth responses to NaCl salinization in two legumes
Sibole John V., Cabot Catalina, Poschenrieder Charlotte, Barceló Juan
Journal of Experimental Botany. 2003 54(390). p.2111
Bacterial Metabolites in Sustainable Agroecosystem (2015)
Egamberdieva Dilfuza, Hashem Abeer, Alqarawi Abdulaziz A.
Can ABA mediate responses of salinity stressed tomato
Mulholland Barry J, Taylor Ian B, Jackson Alison C, Thompson Andrew J
Environmental and Experimental Botany. 2003 50(1). p.17
Response of grape rootstocks to salinity: changes in root growth, polyamines and abscisic acid
Upreti K. K., Murti G. S. R.
Biologia plantarum. 2010 54(4). p.730
Exogenous Abscisic Acid Alleviates Harmful Effect of Salt and Alkali Stresses on Wheat Seedlings
Li Xiaoyu, Li Shuxin, Wang Jinghong, Lin Jixiang
International Journal of Environmental Research and Public Health. 2020 17(11). p.3770
Growth of tomato and an ABA‐deficient mutant (sitiens) under saline conditions
Mäkelä Pirjo, Munns Rana, Colmer Timothy D., Peltonen‐Sainio Pirjo
Physiologia Plantarum. 2003 117(1). p.58
Effect of Salinity on the Composition, Number and Size of Epidermal Cells along the Mature Blade of Wheat Leaves
Hu Yuncai, Schmidhalter Urs
Journal of Integrative Plant Biology. 2007 49(7). p.1016
Control of leaf growth by abscisic acid: hydraulic or non‐hydraulic processes?
TARDIEU FRANÇOIS, PARENT BORIS, SIMONNEAU THIERRY
Plant, Cell & Environment. 2010 33(4). p.636
Nitrogen nutritional status of young maize plants (Zea mays) is not limited by NaCl stress
Hütsch Birgit W., He Wenting, Schubert Sven
Journal of Plant Nutrition and Soil Science. 2016 179(6). p.775
Plant growth promoting bacteria as an alternative strategy for salt tolerance in plants: A review
Numan Muhammad, Bashir Samina, Khan Yasmin, Mumtaz Roqayya, Shinwari Zabta Khan, Khan Abdul Latif, Khan Ajmal, AL-Harrasi Ahmed
Microbiological Research. 2018 209 p.21
Effects of pretreatments of some growth regulators on the stomata movements of barley seedlings grown under saline (NaCl) conditions
ÇAVUŞOGLU K., Kiliç S., Kabar K.
Plant, Soil and Environment. 2007 53(12). p.524
The influence of salt stress on ABA and auxin concentrations in two maize cultivars differing in salt resistance
Zörb Christian, Geilfus Christoph-Martin, Mühling Karl H., Ludwig-Müller Jutta
Journal of Plant Physiology. 2013 170(2). p.220
Mechanism of Salinity Tolerance in Plants: Physiological, Biochemical, and Molecular Characterization
Gupta Bhaskar, Huang Bingru
International Journal of Genomics. 2014 2014 p.1
Sustainable Agriculture in the Era of Climate Change (2020)
Kabiraj Ashutosh, Majhi Krishnendu, Halder Urmi, Let Moitri, Bandopadhyay Rajib
Mitigation of Plant Abiotic Stress by Microorganisms (2022)
Taria Sukumar, Kumar Mahesh, Alam Badre, Kumar Sudhir, Kumar Sushil, Roy Suman, Kumar Sudhir, Rane Jagadish
Arbuscular mycorrhizal fungi for salinity stress: Anti-stress role and mechanisms
DAR Muzafar H., RAZVI Syed M., SINGH Narender, MUSHTAQ Ahmad, DAR Shahnawaz, HUSSAIN Shabber
Pedosphere. 2023 33(1). p.212
Model Ecosystems in Extreme Environments (2019)
Bernstein Nirit
Screening plants for salt tolerance by measuring K+ flux: a case study for barley
CHEN Z., NEWMAN I., ZHOU M., MENDHAM N., ZHANG G., SHABALA S.
Plant, Cell & Environment. 2005 28(10). p.1230
Metabolomics reveals the response of hydroprimed maize to mitigate the impact of soil salinization
Zhang Enying, Zhu Xingjian, Wang Wenli, Sun Yue, Tian Xiaomin, Chen Ziyi, Mou Xinshang, Zhang Yanli, Wei Yueheng, Fang Zhixuan, Ravenscroft Neil, O’Connor David, Chang Xianmin, Yan Min
Frontiers in Plant Science. 2023 14
Halotolerant plant growth–promoting bacteria: Prospects for alleviating salinity stress in plants
Etesami Hassan, Glick Bernard R.
Environmental and Experimental Botany. 2020 178 p.104124
Sodium chloride–ABA interaction in two common bean (Phaseolus vulgaris) cultivars differing in salinity tolerance
Khadri M., Tejera N.A., Lluch C.
Environmental and Experimental Botany. 2007 60(2). p.211
Effects of salicylic acid pretreatment on the seed germination, seedling growth and leaf anatomy of barley under saline conditions
Çavuşoğlu K., Tepe B., Kiliç S.
Cereal Research Communications. 2014 42(2). p.229
Salt Stress, Microbes, and Plant Interactions: Mechanisms and Molecular Approaches (2019)
Jalil Syed Uzma, Ansari Mohammad Israil
The Chemical Dialogue Between Plants and Beneficial Microorganisms (2023)
Vaishnav Monika, Patel Zalak M.
Salt and Drought Stress Tolerance in Plants (2020)
Abobatta Waleed Fouad
Roles of xanthophylls and exogenous ABA in protection against NaCl-induced photodamage in rice (Oryza sativa L) and cabbage (Brassica campestris)
Zhu S.-Q., Chen M.-W., Ji B.-H., Jiao D.-M., Liang J.-S.
Journal of Experimental Botany. 2011 62(13). p.4617
Integrated physiological, biochemical and transcriptomic analyses reveal the mechanism of salt tolerance induced by a halotolerant Serratia sp. NTN6 in maize
Guo Lifeng, Han Chuang, Liu Ting, Wang Yumeng, Sun Peng, Pang Qiuying, Zhang Xucheng, Xiang Wensheng, Zhao Junwei
Environmental and Experimental Botany. 2024 221 p.105724
Stomatal and non-stomatal limitations are responsible in down-regulation of photosynthesis in melon plants grown under the saline condition: Application of carbon isotope discrimination as a reliable proxy
Sarabi Behrooz, Fresneau Chantal, Ghaderi Nasser, Bolandnazar Sahebali, Streb Peter, Badeck Franz-Werner, Citerne Sylvie, Tangama Maëva, David Andoniaina, Ghashghaie Jaleh
Plant Physiology and Biochemistry. 2019 141 p.1
Modulation of antioxidant defense and PSII components by exogenously applied acetate mitigates salinity stress in Avena sativa
Kappachery Sajeesh, AlHosani Mohamed, Khan Tanveer Alam, AlKharoossi Sara Nouh, AlMansoori Nemah, AlShehhi Sara Ali Saeed, AlMansoori Hamda, AlKarbi Maha, Sasi Shina, Karumannil Sameera, Elangovan Sampath Kumar, Shah Iltaf, Gururani Mayank Anand
Scientific Reports. 2024 14(1).
The growth impairment of salinized fenugreek (Trigonella foenum-graecum L.) plants is associated to changes in the hormonal balance
Belmecheri-Cherifi Hayet, Albacete Alfonso, Martínez-Andújar Cristina, Pérez-Alfocea Francisco, Abrous-Belbachir Ouzna
Journal of Plant Physiology. 2019 232 p.311
Impacts of salinity stress on crop plants: improving salt tolerance through genetic and molecular dissection
Atta Kousik, Mondal Saptarshi, Gorai Shouvik, Singh Aditya Pratap, Kumari Amrita, Ghosh Tuhina, Roy Arkaprava, Hembram Suryakant, Gaikwad Dinkar Jagannath, Mondal Subhasis, Bhattacharya Sudip, Jha Uday Chand, Jespersen David
Frontiers in Plant Science. 2023 14
Photosynthesis, antioxidant activities and transcriptional responses in two sugarcane (Saccharum officinarum L.) cultivars under salt stress
Medeiros Camila D., Ferreira Neto José R. C., Oliveira Marciel T., Rivas Rebeca, Pandolfi Valesca, Kido Éderson A., Baldani José. I., Santos Mauro G.
Acta Physiologiae Plantarum. 2014 36(2). p.447
Responses of leaf growth and gas exchanges to salt stress during reproductive stage in wild wheat relative Aegilops geniculata Roth. and wheat (Triticum durum Desf.)
Mguis Khaled, Albouchi Ali, Abassi Mejda, Khadhri Ayda, Ykoubi-Tej Mbarka, Mahjoub Asma, Brahim Nadia Ben, Ouerghi Zeineb
Acta Physiologiae Plantarum. 2013 35(5). p.1453
Salt resistance is determined by osmotic adjustment and abscisic acid in newly developed maize hybrids in the first phase of salt stress
De Costa Weerathunga, Zörb Christian, Hartung Wolfram, Schubert Sven
Physiologia Plantarum. 2007 131(2). p.311
Changes in gene expression in Camelina sativa roots and vegetative tissues in response to salinity stress
Heydarian Zohreh, Yu Min, Gruber Margaret, Coutu Cathy, Robinson Stephen J., Hegedus Dwayne D.
Scientific Reports. 2018 8(1).
Legumes under Environmental Stress (2015)
Llanes Analia, Devinar Genoveva, Luna Virginia
Selection and mechanism exploration for salt-tolerant genes in tomato
Kou Xiaohong, Chen Xiuyu, Mao Cuiyu, He Yulong, Feng Yanchun, Wu Caie, Xue Zhaohui
The Journal of Horticultural Science and Biotechnology. 2019 94(2). p.171
Salinity tolerance of Arabidopsis: a good model for cereals?
Møller Inge Skrumsager, Tester Mark
Trends in Plant Science. 2007 12(12). p.534
Phenotypic responses of the wild wheat relative Aegilops geniculata Roth and wheat (Triticum durum Desf.) to experimentally imposed salt stress
Mguis Khaled, Ben Brahim Nadia, Albouchi Ali, Yakkoubi-Tej Mbarka, Mahjoub Asma, Ouerghi Zeineb
Genetic Resources and Crop Evolution. 2008 55(5). p.665
Reduced Sink Activity in Growing Shoot Tissues of Maize under Salt Stress of the First Phase may be Compensated by Increased PEP‐Carboxylase Activity
Hütsch B. W., Osthushenrich T., Faust F., Kumar A., Schubert S.
Journal of Agronomy and Crop Science. 2016 202(5). p.384
Salinity stress induces the production of 2-(2-phenylethyl)chromones and regulates novel classes of responsive genes involved in signal transduction in Aquilaria sinensis calli
Wang Xiaohui, Gao Bowen, Liu Xiao, Dong Xianjuan, Zhang Zhongxiu, Fan Huiyan, Zhang Le, Wang Juan, Shi Shepo, Tu Pengfei
BMC Plant Biology. 2016 16(1).
Endophytes (2021)
Cosoveanu Andreea, Chowdhary Kanika, Cabrera Raimundo, Sharma Satyawati

Committee on Publication Ethics


Abstract Export Citation Get Permission