Stocktake Sale on now: wide range of books at up to 70% off!
Register      Login
Crop and Pasture Science Crop and Pasture Science Society
Plant sciences, sustainable farming systems and food quality

Articles citing this paper

High temperature tolerance in chickpea and its implications for plant improvement

V. Devasirvatham A B C , D. K. Y. Tan A , P. M. Gaur B , T. N. Raju A and R. M. Trethowan A
+ Author Affiliations
- Author Affiliations

A Plant Breeding Institute, Faculty of Agriculture and Environment, University of Sydney, Cobbitty, NSW 2570, Australia.

B International Crops Research Institute for Semi-Arid Tropics, Patancheru 502324, Andhra Pradesh, India.

C Corresponding author. Email: viola.devasirvatham@sydney.edu.au

Crop and Pasture Science 63(5) 419-428 https://doi.org/10.1071/CP11218
Submitted: 19 August 2011  Accepted: 7 June 2012   Published: 9 July 2012



80 articles found in Crossref database.

Discerning molecular diversity and association mapping for phenological, physiological and yield traits under high temperature stress in chickpea (Cicer arietinum L.)
Jha Uday Chand, Jha Rintu, Thakro Virevol, Kumar Anurag, Gupta Sanjeev, Nayyar Harsh, Basu Parthasarathi, Parida Swarup K., Singh Narendra Pratap
Journal of Genetics. 2021 100(1).
Effect of Photo-Selective Shade Nets on Pollination Process and Nut Development of Corylus avellana L.
Guastella Devid, Sigwebela Mbuyseli, Suarez Eloy, Stubbs Oscar, Acevedo Jorge, Engelbrecht Gerhard
Frontiers in Plant Science. 2020 11
Physiology Based Approaches for Breeding of Next-Generation Food Legumes
Shunmugam Arun S. K., Kannan Udhaya, Jiang Yunfei, Daba Ketema A., Gorim Linda Y.
Plants. 2018 7(3). p.72
Climate-Resilient Agriculture, Vol 1 (2023)
Pandita Deepu
Nitrogen use efficiency—a key to enhance crop productivity under a changing climate
Govindasamy Prabhu, Muthusamy Senthilkumar K., Bagavathiannan Muthukumar, Mowrer Jake, Jagannadham Prasanth Tej Kumar, Maity Aniruddha, Halli Hanamant M., G. K. Sujayananad, Vadivel Rajagopal, T. K. Das, Raj Rishi, Pooniya Vijay, Babu Subhash, Rathore Sanjay Singh, L. Muralikrishnan, Tiwari Gopal
Frontiers in Plant Science. 2023 14
A Comprehensive Review on Chickpea (Cicer arietinum L.) Breeding for Abiotic Stress Tolerance and Climate Change Resilience
Arriagada Osvin, Cacciuttolo Felipe, Cabeza Ricardo A., Carrasco Basilio, Schwember Andrés R.
International Journal of Molecular Sciences. 2022 23(12). p.6794
Climate Change and Agriculture (2022)
Imran , Amanullah , Al‐Tawaha Abdel Rahman Mohammad Said
Intermittent moisture supply induces drought priming responses in some heat‐tolerant chickpea genotypes
Makonya Givemore M., Ogola John B.O., Muasya A. Muthama, Crespo Olivier, Maseko Sipho, Valentine Alex J., Ottosen Carl‐Otto, Rosenqvist Eva, Chimphango Samson B.M.
Crop Science. 2020 60(5). p.2527
Adaptation of wheat, barley, canola, field pea and chickpea to the thermal environments of Australia
Sadras Victor, Dreccer M. Fernanda
Crop and Pasture Science. 2015 66(11). p.1137
Management of Fungal Pathogens in Pulses (2020)
Vandana Udaya Kumar, Singha P. Bijoya, Chakraborthy Sharmista, Mazumder P. B.
Thermotolerance in plants: Potential physio-biochemical and molecular markers for crop improvement
Ashraf M.
Environmental and Experimental Botany. 2021 186 p.104454
Heat-stress-induced reproductive failures in chickpea (Cicer arietinum) are associated with impaired sucrose metabolism in leaves and anthers
Kaushal Neeru, Awasthi Rashmi, Gupta Kriti, Gaur Pooran, Siddique Kadambot H. M., Nayyar Harsh
Functional Plant Biology. 2013 40(12). p.1334
Use of in-situ field chambers to quantify the influence of heat stress in chickpea (Cicer arientinum)
Pattison Angela L., Uddin Mohammad Nazim, Trethowan Richard M.
Field Crops Research. 2021 270 p.108215
Heat Stress in Legume Seed Setting: Effects, Causes, and Future Prospects
Liu Yonghua, Li Jiajia, Zhu Yulei, Jones Ashley, Rose Ray J., Song Youhong
Frontiers in Plant Science. 2019 10
Investigating the influence of elevated temperature on nutritional and yield characteristics of mung bean (Vigna radiata L.) genotypes during seed filling in a controlled environment
Priya Manu, Bhardwaj Anjali, Jha Uday Chand, HanumanthaRao Bindumadhava, Prasad P. V. Vara, Sharma Kamal Dev, Siddique Kadambot H.M., Nayyar Harsh
Frontiers in Plant Science. 2023 14
Comparison of sensitive stages of wheat, barley, canola, chickpea and field pea to temperature and water stress across Australia
Dreccer M. Fernanda, Fainges Justin, Whish Jeremy, Ogbonnaya Francis C., Sadras Victor O.
Agricultural and Forest Meteorology. 2018 248 p.275
Integrated breeding approaches for improving drought and heat adaptation in chickpea (Cicer arietinum L.)
Gaur Pooran M., Samineni Srinivasan, Thudi Mahendar, Tripathi Shailesh, Sajja Sobhan B., Jayalakshmi Veera, Mannur Durdundappa M., Vijayakumar Adiveppa G., Ganga Rao Nadigatla V. P. R., Ojiewo Chris, Fikre Asnake, Kimurto Paul, Kileo Robert O., Girma Nigusie, Chaturvedi Sushil K., Varshney Rajeev K., Dixit Girish P., Link Wolfgang
Plant Breeding. 2019 138(4). p.389
Comparison of Growth Traits and Yields Components of five Chickpeas Genotypes (Cicer arietinum L.) at Bakrajo/ Sulaymaniyah Conditions
Ahmed Jalal Omer, Yara Mohammad Dara, Rashid Abdulla Anwar, Hama Noori Meerza Chnar
Kurdistan Journal of Applied Research. 2018 3(2). p.1
Molecular Breeding and Drought Tolerance in Chickpea
Asati Ruchi, Tripathi Manoj Kumar, Tiwari Sushma, Yadav Rakesh Kumar, Tripathi Niraj
Life. 2022 12(11). p.1846
Possible involvement of xanthophyll cycle pigments in heat tolerance of chickpea (Cicer arietinum L.)
Kumar Pramod, Yadav Sanjay, Singh Madan Pal
Physiology and Molecular Biology of Plants. 2020 26(9). p.1773
Evaluation of chickpea (Cicer arietinum L.) genotypes for heat tolerance: a physiological assessment
Kumar Pramod, Shah Divya, Singh Madan Pal
Indian Journal of Plant Physiology. 2017 22(2). p.164
Physiological Responses of Chickpea Genotypes to Cold and Heat Stress in Flowering Stage
Zeitelhofer Mareen, Zhou Rong, Ottosen Carl-Otto
Agronomy. 2022 12(11). p.2755
Evaluation of aerated subsurface drip irrigation on yield, dry weight partitioning and water use efficiency of a broad-acre chickpea (Cicer arietinum, L.) in a vertosol
Pendergast L., Bhattarai S.P., Midmore D.J.
Agricultural Water Management. 2019 217 p.38
Impact of Sowing Time on Chickpea (Cicer arietinum L.) Biomass Accumulation and Yield
Richards Mark F., Maphosa Lancelot, Preston Aaron L.
Agronomy. 2022 12(1). p.160
Drought tolerance mechanisms in chickpea (Cicer arietinum L.) investigated by physiological and transcriptomic analysis
Negussu Miriam, Karalija Erna, Vergata Chiara, Buti Matteo, Subašić Mirel, Pollastri Susanna, Loreto Francesco, Martinelli Federico
Environmental and Experimental Botany. 2023 215 p.105488
Food Legumes and Rising Temperatures: Effects, Adaptive Functional Mechanisms Specific to Reproductive Growth Stage and Strategies to Improve Heat Tolerance
Sita Kumari, Sehgal Akanksha, HanumanthaRao Bindumadhava, Nair Ramakrishnan M., Vara Prasad P. V., Kumar Shiv, Gaur Pooran M., Farooq Muhammad, Siddique Kadambot H. M., Varshney Rajeev K., Nayyar Harsh
Frontiers in Plant Science. 2017 8
Identification and Characterization of Contrasting Genotypes/Cultivars for Developing Heat Tolerance in Agricultural Crops: Current Status and Prospects
Chaudhary Shikha, Devi Poonam, Bhardwaj Anjali, Jha Uday Chand, Sharma Kamal Dev, Prasad P. V. Vara, Siddique Kadambot H. M., Bindumadhava H., Kumar Shiv, Nayyar Harsh
Frontiers in Plant Science. 2020 11
Food crops face rising temperatures: An overview of responses, adaptive mechanisms, and approaches to improve heat tolerance
Kaushal Neeru, Bhandari Kalpna, Siddique Kadambot H.M., Nayyar Harsh, Tejada Moral Manuel
Cogent Food & Agriculture. 2016 2(1).
Field response of chickpea (Cicer arietinum L.) to high temperature
Devasirvatham V., Gaur P.M., Raju T.N., Trethowan R.M., Tan D.K.Y.
Field Crops Research. 2015 172 p.59
Field crops and the fear of heat stress—Opportunities, challenges and future directions
Prasad P.V. Vara, Bheemanahalli R., Jagadish S.V. Krishna
Field Crops Research. 2017 200 p.114
Increased Night Temperature Negatively Affects Grain Yield, Biomass and Grain Number in Chilean Quinoa
Lesjak Jurka, Calderini Daniel F.
Frontiers in Plant Science. 2017 8
Integrated “omics” approaches to sustain global productivity of major grain legumes under heat stress
Jha Uday Chand, Bohra Abhishek, Parida Swarup Kumar, Jha Rintu, Varshney R.
Plant Breeding. 2017 136(4). p.437
Effect of High Temperature on Crop Productivity and Metabolism of Macro Molecules (2019)
Bhattacharya Amitav
Fundamentals of Field Crop Breeding (2022)
Dixit G. P., Srivastava A. K., Jayalakshmi V., Bindra Shayla, Singh Sarvjeet
Association of plant growth-promoting Serratia spp. with the root nodules of chickpea
Zaheer Ahmad, Mirza Babur S., Mclean Joan E., Yasmin Sumera, Shah Tariq Mahmud, Malik Kauser A., Mirza M. Sajjad
Research in Microbiology. 2016 167(6). p.510
Chickpea tolerance to temperature stress: Status and opportunity for improvement
Jeffrey Cara, Trethowan Richard, Kaiser Brent
Journal of Plant Physiology. 2021 267 p.153555
Understanding the impact of combined heat and drought stress on the reproductive process of chickpea (Cicer arietinum L.)
Gurumurthy S., Sanjay U. N., Amaregouda A., Apoorva A., Kruthika S., Durga G., Jha U. C., Sadiah S., Reddy K. S., Rane J.
Plant Physiology Reports. 2024 29(1). p.76
Cross priming with drought improves heat-tolerance in chickpea (Cicer arietinum L.) by stimulating small heat shock proteins and antioxidative defense
Yadav Renu, Juneja Sumandeep, Kumar Sanjeev
Environmental Sustainability. 2021 4(1). p.171
Chlorophyll fluorescence and carbohydrate concentration as field selection traits for heat tolerant chickpea genotypes
Makonya Givemore M., Ogola John B.O., Muthama Muasya A., Crespo Olivier, Maseko Sipho, Valentine Alex J., Ottosen Carl-Otto, Rosenqvist Eva, Chimphango Samson B.M.
Plant Physiology and Biochemistry. 2019 141 p.172
Can partial reduction of shoot biomass during early vegetative phase of chickpea save subsoil water for reproductive and pod filling?
Rachaputi Rao C.N., Sands Doug, McKenzie Kerry, Chauhan Yash, Bell Kerry, Seyoum Solomon, Agius Peter, Krosch Stephen, Lehane John
Agricultural Water Management. 2021 247 p.106704
Proteome changes and associated physiological roles in chickpea (
Makonya Givemore M., Ogola John B. O., Gabier Hawwa, Rafudeen Mohammed S., Muasya A. Muthama, Crespo Olivier, Maseko Sipho, Valentine Alex J., Ottosen Carl-Otto, Rosenqvist Eva, Chimphango Samson B. M., Chaves Manuela
Functional Plant Biology. 2021 49(1). p.13
Thermotolerance in Crop Plants (2022)
Aneja Prakshi, Dwivedi Aditi, Ranjan Aashish
Wild Germplasm for Genetic Improvement in Crop Plants (2021)
Bakir Melike, Sari Duygu, Sari Hatice, Waqas Muhammad, Atif Rana Muhammad
Heat Stress Tolerance in Plants (2020)
Surabhi Giridara Kumar, Seth Jatindra Kumar
Heat sensitivity on physiological and biochemical traits in chickpea (Cicer arietinum)
Jain Amit Kumar
Advances in environmental research. 2014 3(4). p.307
Integrated physiological and molecular approaches to improvement of abiotic stress tolerance in two pulse crops of the semi-arid tropics
Choudhary Arbind K., Sultana Rafat, Vales M. Isabel, Saxena Kul Bhushan, Kumar Ravi Ranjan, Ratnakumar Pasala
The Crop Journal. 2018 6(2). p.99
Agronomic Performance of Chickpea Affected by Drought Stress at Different Growth Stages
Sachdeva Supriya, Bharadwaj Chellapilla, Patil Basavanagouda Siddanagouda, Pal Madan, Roorkiwal Manish, Varshney Rajeev K.
Agronomy. 2022 12(5). p.995
Pulse Improvement (2018)
Mehra Poonam, Singh Ajit Pal, Bhadouria Jyoti, Verma Lokesh, Panchal Poonam, Giri Jitender
Plant Tolerance to Individual and Concurrent Stresses (2017)
Yadav Renu, Juneja Sumandeep, Singh Priyanka, Kumar Sanjeev
Plant Stress Biology (2020)
Gajghate Rahul, Chourasiya Dipanti, Harikrishna , Sharma Ram Kumar
The effect of high temperature stress on male and female reproduction in plants
Sage Tammy L., Bagha Shaheen, Lundsgaard-Nielsen Vanessa, Branch Haley A., Sultmanis Stefanie, Sage Rowan F.
Field Crops Research. 2015 182 p.30
Climate Change and Plant Abiotic Stress Tolerance (2013)
Gaur Pooran M., Jukanti Aravind K., Samineni Srinivasan, Chaturvedi Sushil K., Basu Partha S., Babbar Anita, Jayalakshmi Veera, Nayyar Harsh, Devasirvatham Viola, Mallikarjuna Nalini, Krishnamurthy Laxmanan, Laxmipathi Gowda C.L.
Characterisation of chickpea cropping systems in Australia for major abiotic production constraints
Chauhan Yashvir, Allard Samantha, Williams Rex, Williams Brett, Mundree Sagadevan, Chenu Karine, Rachaputi N.C.
Field Crops Research. 2017 204 p.120
Evaluation of microsatellite-based genetic diversity, protein and mineral content in chickpea accessions grown in Kyrgyzstan
Torutaeva Elnura, Asanaliev Abdybek, Prieto-Linde Maria Luisa, Zborowska Anna, Ortiz Rodomiro, Bryngelsson Tomas, Garkava-Gustavsson Larisa
Hereditas. 2014 151(4-5). p.81
Unscrambling confounded effects of sowing date trials to screen for crop adaptation to high temperature
Sadras Victor O., Vadez Vincent, Purushothaman R., Lake Lachlan, Marrou Helen
Field Crops Research. 2015 177 p.1
Effect of High Temperature Stress on Pollen Grains in Sunflower (Helianthus annuus L.) Inbred Lines
Mehmood Momna, Qamar Rizwana, Joyia Faiz Ahmad
Brazilian Archives of Biology and Technology. 2023 66
Warm temperature conditions restrict the sexual reproduction and vegetative growth of the spring ephemeral Gagea lutea (Liliaceae)
Sunmonu Ninuola, Kudo Gaku
Plant Ecology. 2015 216(10). p.1419
Designing chickpea for a hotter drier world
Akinlade Oluwaseun J., Voss-Fels Kai, Costilla Roy, Kholova Jana, Choudhary Sunita, Varshney Rajeev K., Hickey Lee T., Smith Millicent R.
Euphytica. 2022 218(7).
Sustainable Solutions for Food Security (2019)
Najeeb Ullah, Tan Daniel K. Y., Sarwar Muhammad, Ali Shafaqat
The Effect of Seed Priming to Improve Germination Parameters and Early Growth of Chickpea (Cicer arietnum L)
Charachimwe Reason R., Chandiposha Misheck, Manjeru Pepukai, Abdelhamid Magdi
International Journal of Agronomy. 2023 2023 p.1
Potential and limits of exploitation of crop wild relatives for pea, lentil, and chickpea improvement
Coyne Clarice J., Kumar Shiv, von Wettberg Eric J.B., Marques Edward, Berger Jens D., Redden Robert J., Ellis T.H. Noel, Brus Jan, Zablatzká Lenka, Smýkal Petr
Legume Science. 2020 2(2).
Vegetal protein hydrolysates reduce the yield losses in off-season crops under combined heat and drought stress
Mamatha B. C., Rudresh K., Karthikeyan N., Kumar M., Das Ranjan, Taware P. B., Khapte P. S., Soren K. R., Rane J., Gurumurthy S.
Physiology and Molecular Biology of Plants. 2023 29(7). p.1049
Genetic Dissection of Drought and Heat Tolerance in Chickpea through Genome-Wide and Candidate Gene-Based Association Mapping Approaches
Thudi Mahendar, Upadhyaya Hari D., Rathore Abhishek, Gaur Pooran Mal, Krishnamurthy Lakshmanan, Roorkiwal Manish, Nayak Spurthi N., Chaturvedi Sushil Kumar, Basu Partha Sarathi, Gangarao N. V. P. R., Fikre Asnake, Kimurto Paul, Sharma Prakash C., Sheshashayee M. S., Tobita Satoshi, Kashiwagi Junichi, Ito Osamu, Killian Andrzej, Varshney Rajeev Kumar, Hernandez Pilar
PLoS ONE. 2014 9(5). p.e96758
Advanced Crop Improvement, Volume 2 (2023)
Misra G., Joshi-Saha Archana
Genetic basis and adaptive implications of temperature-dependent and temperature-independent effects of drought on chickpea reproductive phenology
Li Yongle, Lake Lachlan, Chauhan Yashvir S, Taylor Julian, Sadras Victor O, Rebetzke Greg
Journal of Experimental Botany. 2022 73(14). p.4981
Impact of elevated temperatures on growth and yield of chickpea (Cicer arietinum L.)
Jumrani Kanchan, Bhatia Virender Singh
Field Crops Research. 2014 164 p.90
Modeling sensitivity of grain yield to elevated temperature in the DSSAT crop models for peanut, soybean, dry bean, chickpea, sorghum, and millet
Boote K.J., Prasad Vara, Allen L.H., Singh P., Jones J.W.
European Journal of Agronomy. 2018 100 p.99
Heat responsive proteome changes reveal molecular mechanisms underlying heat tolerance in chickpea
Parankusam Santisree, Bhatnagar-Mathur Pooja, Sharma Kiran K.
Environmental and Experimental Botany. 2017 141 p.132
Efficient Partitioning of Assimilates in Stress-Tolerant Groundnut Genotypes under High-Temperature Stress
Akbar Ashna, Singh Manohar Surendra, Tottekkaad Variath Murali, Kurapati Sadaiah, Pasupuleti Janila
Agronomy. 2017 7(2). p.30
Legumes: Physiology and Molecular Biology of Abiotic Stress Tolerance (2023)
Devi Poonam, Chaudhary Shikha, Bhardwaj Anjali, Priya Manu, Jha Uday, Pratap Aditya, Kumar Shiv, Bindumadahva HanumanthaRao, Singh Inderjit, Singh Sarvjeet, Vara Prasad P. V., Siddique Kadambot H. M., Nayyar Harsh
Effect of soil water on flowering and pod-set in chickpea: implications for modelling and managing frost and heat stress
Chauhan Yashvir S., Anwar Muhuddin Rajin, Richards Mark F., Lake Lachlan, Sadras Victor O., Luckett David J., Raman Rosy, Krosch Stephen, Graham Neroli
Agronomy for Sustainable Development. 2023 43(4).
Legumes under Environmental Stress (2015)
Devasirvatham Viola, Tan Daniel K.Y., Gaur Pooran M., Trethowan Richard M.
An insight of chickpea production potential, utilization and their challenges among smallholder farmers in Malawi – A review
Phiri C.K., Njira K., Chitedze G.
Journal of Agriculture and Food Research. 2023 14 p.100713
Climate change impacts and potential benefits of drought and heat tolerance in chickpea in South Asia and East Africa
Singh Piara, Nedumaran S., Boote K.J., Gaur P.M., Srinivas K., Bantilan M.C.S.
European Journal of Agronomy. 2014 52 p.123
Agronomic Crops (2019)
Maji Srijani, Das Arpita, Nath Rajib, Bandopadhyay P., Das Raju, Gupta Sanjeev
Bioregulators application improved heat tolerance and yield in chickpea (Cicer arietinum L.) by modulating zeaxanthin cycle
Kumar Pramod, Yadav Sanjay, Singh Madan P.
Plant Physiology Reports. 2020 25(4). p.677
Two phases of response to long-term moderate heat: Variation in thermotolerance between Arabidopsis thaliana and its relative Arabis paniculata
Tang Ting, Liu Peile, Zheng Guowei, Li Weiqi
Phytochemistry. 2016 122 p.81
Image-Based Phenotyping of Flowering Intensity in Cool-Season Crops
Zhang Chongyuan, Craine Wilson, McGee Rebecca, Vandemark George, Davis James, Brown Jack, Hulbert Scot, Sankaran Sindhuja
Sensors. 2020 20(5). p.1450
Down-Regulation of Carbohydrate Metabolic Pathway Genes Lowers Sucrose and Starch Content in Chickpea Leaves Under High Temperature Stress
Chandel Surender Singh, Sharma Kamal Dev
National Academy Science Letters. 2023 46(5). p.445
Drought stress resistance indicators of chickpea varieties grown under deficit irrigation conditions
Ucak Ali Beyhan, Arslan Hüseyin
PeerJ. 2023 11 p.e14818

Committee on Publication Ethics


Abstract Export Citation Get Permission