RETRACTED: Cytokinin and abiotic stress tolerance -What has been accomplished and the way forward?
More than a half-century has passed since it was discovered that phytohormone cytokinin (CK) is essential to drive cytokinesis and proliferation in plant tissue culture. Thereafter, cytokinin has emerged as the primary regulator of the plant cell cycle and numerous developmental processes. Lately, a...
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Frontiers Media S.A.
2022-08-01
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Online Access: | https://www.frontiersin.org/articles/10.3389/fgene.2022.943025/full |
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author | Sayanti Mandal Mimosa Ghorai Uttpal Anand Dipu Samanta Nishi Kant Tulika Mishra Md. Habibur Rahman Niraj Kumar Jha Niraj Kumar Jha Niraj Kumar Jha Saurabh Kumar Jha Saurabh Kumar Jha Saurabh Kumar Jha Milan Kumar Lal Rahul Kumar Tiwari Manoj Kumar Radha Dorairaj Arvind Prasanth Abhijit Bhagwan Mane Abilash Valsala Gopalakrishnan Protha Biswas Jarosław Proćków Abhijit Dey |
author_facet | Sayanti Mandal Mimosa Ghorai Uttpal Anand Dipu Samanta Nishi Kant Tulika Mishra Md. Habibur Rahman Niraj Kumar Jha Niraj Kumar Jha Niraj Kumar Jha Saurabh Kumar Jha Saurabh Kumar Jha Saurabh Kumar Jha Milan Kumar Lal Rahul Kumar Tiwari Manoj Kumar Radha Dorairaj Arvind Prasanth Abhijit Bhagwan Mane Abilash Valsala Gopalakrishnan Protha Biswas Jarosław Proćków Abhijit Dey |
author_sort | Sayanti Mandal |
collection | DOAJ |
description | More than a half-century has passed since it was discovered that phytohormone cytokinin (CK) is essential to drive cytokinesis and proliferation in plant tissue culture. Thereafter, cytokinin has emerged as the primary regulator of the plant cell cycle and numerous developmental processes. Lately, a growing body of evidence suggests that cytokinin has a role in mitigating both abiotic and biotic stress. Cytokinin is essential to defend plants against excessive light exposure and a unique kind of abiotic stress generated by an altered photoperiod. Secondly, cytokinin also exhibits multi-stress resilience under changing environments. Furthermore, cytokinin homeostasis is also affected by several forms of stress. Therefore, the diverse roles of cytokinin in reaction to stress, as well as its interactions with other hormones, are discussed in detail. When it comes to agriculture, understanding the functioning processes of cytokinins under changing environmental conditions can assist in utilizing the phytohormone, to increase productivity. Through this review, we briefly describe the biological role of cytokinin in enhancing the performance of plants growth under abiotic challenges as well as the probable mechanisms underpinning cytokinin-induced stress tolerance. In addition, the article lays forth a strategy for using biotechnological tools to modify genes in the cytokinin pathway to engineer abiotic stress tolerance in plants. The information presented here will assist in better understanding the function of cytokinin in plants and their effective investigation in the cropping system. |
first_indexed | 2024-03-08T13:23:55Z |
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language | English |
last_indexed | 2024-04-24T22:34:01Z |
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series | Frontiers in Genetics |
spelling | doaj.art-ba1ea6e5f7194beb975b9a16699ad6462024-03-19T13:44:04ZengFrontiers Media S.A.Frontiers in Genetics1664-80212022-08-011310.3389/fgene.2022.943025943025RETRACTED: Cytokinin and abiotic stress tolerance -What has been accomplished and the way forward?Sayanti Mandal0Mimosa Ghorai1Uttpal Anand2Dipu Samanta3Nishi Kant4Tulika Mishra5Md. Habibur Rahman6Niraj Kumar Jha7Niraj Kumar Jha8Niraj Kumar Jha9Saurabh Kumar Jha10Saurabh Kumar Jha11Saurabh Kumar Jha12Milan Kumar Lal13Rahul Kumar Tiwari14Manoj Kumar15 Radha16Dorairaj Arvind Prasanth17Abhijit Bhagwan Mane18Abilash Valsala Gopalakrishnan19Protha Biswas20Jarosław Proćków21Abhijit Dey22Institute of Bioinformatics and Biotechnology, Savitribai Phule Pune University, Pune, Maharashtra, IndiaDepartment of Life Sciences, Presidency University, Kolkata, West Bengal, IndiaCytoGene Research & Development LLP, Barabanki, Uttar Pradesh, IndiaDepartment of Botany, Dr. Kanailal Bhattacharyya College, Howrah, West Bengal, IndiaSchool of Health and Allied Science, ARKA Jain University, Jamshedpur, Jharkhand, IndiaDepartment of Botany, Deen Dayal Upadhyay Gorakhpur University, Gorakhpur, Uttar Pradesh, IndiaDepartment of Global Medical Science, Wonju College of Medicine, Yonsei University, Wonju, Gangwon-do, South KoreaDepartment of Biotechnology, School of Engineering and Technology, Sharda University, Greater Noida, Uttar Pradesh, IndiaDepartment of Biotechnology Engineering and Food Technology, Chandigarh University, Mohali, India0Department of Biotechnology, School of Applied and Life Sciences (SALS), Uttaranchal University, Dehradun, IndiaDepartment of Biotechnology, School of Engineering and Technology, Sharda University, Greater Noida, Uttar Pradesh, IndiaDepartment of Biotechnology Engineering and Food Technology, Chandigarh University, Mohali, India0Department of Biotechnology, School of Applied and Life Sciences (SALS), Uttaranchal University, Dehradun, India1Division of Crop Physiology, Biochemistry and Post Harvest Technology, ICAR-Central Potato Research Institute, Shimla, Himachal Pradesh, India1Division of Crop Physiology, Biochemistry and Post Harvest Technology, ICAR-Central Potato Research Institute, Shimla, Himachal Pradesh, India2Chemical and Biochemical Processing Division, ICAR-Central Institute for Research on Cotton Technology, Mumbai, Maharashtra, India3School of Biological and Environmental Sciences, Shoolini University of Biotechnology and Management Sciences, Solan, Himachal Pradesh, India4Department of Microbiology, School of Biosciences, Periyar University, Salem, Tamilnadu, India5Department of Zoology, Dr. Patangrao Kadam Mahavidhyalaya (affiliated to Shivaji University Kolhapur), Ramanandnagar (Burli), Sangli, Maharashtra, India6Department of Biomedical Sciences, School of Biosciences and Technology, Vellore Institute of Technology (VIT), Vellore, Tamil Nadu, IndiaDepartment of Life Sciences, Presidency University, Kolkata, West Bengal, India7Department of Plant Biology, Institute of Environmental Biology, Wrocław University of Environmental and Life Sciences, Wrocław, PolandDepartment of Life Sciences, Presidency University, Kolkata, West Bengal, IndiaMore than a half-century has passed since it was discovered that phytohormone cytokinin (CK) is essential to drive cytokinesis and proliferation in plant tissue culture. Thereafter, cytokinin has emerged as the primary regulator of the plant cell cycle and numerous developmental processes. Lately, a growing body of evidence suggests that cytokinin has a role in mitigating both abiotic and biotic stress. Cytokinin is essential to defend plants against excessive light exposure and a unique kind of abiotic stress generated by an altered photoperiod. Secondly, cytokinin also exhibits multi-stress resilience under changing environments. Furthermore, cytokinin homeostasis is also affected by several forms of stress. Therefore, the diverse roles of cytokinin in reaction to stress, as well as its interactions with other hormones, are discussed in detail. When it comes to agriculture, understanding the functioning processes of cytokinins under changing environmental conditions can assist in utilizing the phytohormone, to increase productivity. Through this review, we briefly describe the biological role of cytokinin in enhancing the performance of plants growth under abiotic challenges as well as the probable mechanisms underpinning cytokinin-induced stress tolerance. In addition, the article lays forth a strategy for using biotechnological tools to modify genes in the cytokinin pathway to engineer abiotic stress tolerance in plants. The information presented here will assist in better understanding the function of cytokinin in plants and their effective investigation in the cropping system.https://www.frontiersin.org/articles/10.3389/fgene.2022.943025/fullcytokinin (CK)CK metabolic genesCK signaling genesabiotic stresscrop resiliencegenome editing |
spellingShingle | Sayanti Mandal Mimosa Ghorai Uttpal Anand Dipu Samanta Nishi Kant Tulika Mishra Md. Habibur Rahman Niraj Kumar Jha Niraj Kumar Jha Niraj Kumar Jha Saurabh Kumar Jha Saurabh Kumar Jha Saurabh Kumar Jha Milan Kumar Lal Rahul Kumar Tiwari Manoj Kumar Radha Dorairaj Arvind Prasanth Abhijit Bhagwan Mane Abilash Valsala Gopalakrishnan Protha Biswas Jarosław Proćków Abhijit Dey RETRACTED: Cytokinin and abiotic stress tolerance -What has been accomplished and the way forward? Frontiers in Genetics cytokinin (CK) CK metabolic genes CK signaling genes abiotic stress crop resilience genome editing |
title | RETRACTED: Cytokinin and abiotic stress tolerance -What has been accomplished and the way forward? |
title_full | RETRACTED: Cytokinin and abiotic stress tolerance -What has been accomplished and the way forward? |
title_fullStr | RETRACTED: Cytokinin and abiotic stress tolerance -What has been accomplished and the way forward? |
title_full_unstemmed | RETRACTED: Cytokinin and abiotic stress tolerance -What has been accomplished and the way forward? |
title_short | RETRACTED: Cytokinin and abiotic stress tolerance -What has been accomplished and the way forward? |
title_sort | retracted cytokinin and abiotic stress tolerance what has been accomplished and the way forward |
topic | cytokinin (CK) CK metabolic genes CK signaling genes abiotic stress crop resilience genome editing |
url | https://www.frontiersin.org/articles/10.3389/fgene.2022.943025/full |
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