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50 publications found

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Group #1

Matched potential author: Harminder Pal Singh - author of 7 items
TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Insights into the tolerance and phytoremediation potential of Coronopus didymus L. (Sm) grown under zinc stress[1]Gagan Preet Singh Sidhu, [2]Aditi Shreeya Bali, [3]Harminder Pal Singh, [4]Daizy R. Batish, [5]Ravinder Kumar Kohli [Full author list]Chemosphere [missing]DOI: 10.1016/J.CHEMOSPHERE.2019.125350 [ORCID]
PubMed: 31830642 [ORCID]
phytoremediation [missing]; Coronopus didymus [missing]2019-11-16Harminder Pal Singh (Q92021448; 7 items)
Comparative cyto- and genotoxicity of 900 MHz and 1800 MHz electromagnetic field radiations in root meristems of Allium cepa[1]Arvind Kumar, [2]Shalinder Kaur, [3]Shikha Chandel, [4]Harminder Pal Singh, [5]Daizy Rani Batish, [6]Ravinder Kumar Kohli [Full author list]Ecotoxicology and Environmental Safety [missing]DOI: 10.1016/J.ECOENV.2019.109786 [ORCID]
PubMed: 31698176 [ORCID]
Allium cepa [missing]; genotoxicity [missing]2019-11-04Harminder Pal Singh (Q92021448; 7 items)
Nitric oxide induced modulations in adventitious root growth, lignin content and lignin synthesizing enzymes in the hypocotyls of Vigna radiata[1]Sangeeta Sharma, [2]Harminder Pal Singh, [3]Daizy Rani Batish, [4]Ravinder Kumar Kohli [Full author list]Plant Physiology and Biochemistry [missing]DOI: 10.1016/J.PLAPHY.2019.05.028 [ORCID]
PubMed: 31185367 [ORCID]
Vigna radiata [missing]2019-05-29Harminder Pal Singh (Q92021448; 7 items)
Appraisal of immediate and late effects of mobile phone radiations at 2100 MHz on mitotic activity and DNA integrity in root meristems of Allium cepa[1]Shikha Chandel, [2]Shalinder Kaur, [3]Mohd Issa, [4]Harminder Pal Singh, [5]Daizy Rani Batish, [6]Ravinder Kumar Kohli [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-019-01386-Y [ORCID]
PubMed: 31115694 [ORCID]
Allium cepa [missing]2019-05-21Harminder Pal Singh (Q92021448; 7 items)
Phenotypic variations alter the ecological impact of invasive alien species: Lessons from Parthenium hysterophorus[1]Amarpreet Kaur, [2]Shalinder Kaur, [3]Harminder Pal Singh, [4]Daizy Rani Batish, [5]Ravinder Kumar Kohli [Full author list]Journal of Environmental Management [missing]DOI: 10.1016/J.JENVMAN.2019.03.129 [ORCID]
PubMed: 31003061 [ORCID]
invasive species [missing]; introduced species [missing]; Parthenium hysterophorus [missing]; invasion biology [missing]; invasion impact [missing]; invasion management [missing]; ecological impact [missing]2019-04-16Harminder Pal Singh (Q92021448; 7 items)
Chemical profiling, cytotoxicity and phytotoxicity of foliar volatiles of Hyptis suaveolens[1]Anita Sharma, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Ravinder Kumar Kohli [Full author list]Ecotoxicology and Environmental Safety [missing]DOI: 10.1016/J.ECOENV.2018.12.091 [ORCID]
PubMed: 30665103 [ORCID]
Hyptis suaveolens [missing]; phytotoxicity [missing]2019-01-18Harminder Pal Singh (Q92021448; 7 items)
Exposure to mobile phone radiations at 2350 MHz incites cyto- and genotoxic effects in root meristems of Allium cepa[1]Shikha Chandel, [2]Shalinder Kaur, [3]Mohd Issa, [4]Harminder Pal Singh, [5]Daizy Rani Batish, [6]Ravinder Kumar Kohli [Full author list]Journal of environmental health science & engineering [missing]DOI: 10.1007/S40201-018-00330-1 [ORCID]
PubMed: 31297205 [ORCID]
Allium cepa [missing]; genotoxicity [missing]2019-01-05Harminder Pal Singh (Q92021448; 7 items)
Ethylenediamine disuccinic acid enhanced phytoextraction of nickel from contaminated soils using Coronopus didymus (L.) Sm.[1]Gagan Preet Singh Sidhu, [2]Aditi Shreeya Bali, [3]Harminder Pal Singh, [4]Daizy R. Batish, [5]Ravinder Kumar Kohli [Full author list]Chemosphere [missing]DOI: 10.1016/J.CHEMOSPHERE.2018.04.106 [ORCID]
PubMed: 29702343 [ORCID]
nickel [missing]; Coronopus didymus [missing]; contaminated soil [missing]2018-04-18Harminder Pal Singh (Q92021448; 7 items)
Retraction notice to " Bioaccumulation and physiological responses to lead (Pb) in Chenopodium murale L."[YEESA(2018)83-90][1]Gagan Preet Singh Sidhu, [2]Aditi Shreeya Bali, [3]Renu Bhardwaj, [4]Harminder Pal Singh, [5]Daizy R. Batish, [6]Ravinder Kumar Kohli [Full author list]Ecotoxicology and Environmental Safety [missing]DOI: 10.1016/J.ECOENV.2018.02.019 [ORCID]
PubMed: 29482866 [ORCID]
bioaccumulation [missing]; Chenopodium murale [missing]2018-04-01Harminder Pal Singh (Q92021448; 7 items)
Bioaccumulation and physiological responses to lead (Pb) in Chenopodium murale L.[1]Gagan Preet Singh Sidhu, [2]Aditi Shreeya Bali, [3]Renu Bhardwaj, [4]Harminder Pal Singh, [5]Daizy R. Batish, [6]Ravinder Kumar Kohli [Full author list]Ecotoxicology and Environmental Safety [missing]DOI: 10.1016/J.ECOENV.2017.12.068 [ORCID]
PubMed: 29310013 [ORCID]
bioaccumulation [missing]; Chenopodium murale [missing]2018-01-05Harminder Pal Singh (Q92021448; 7 items)
Phytoremediation of lead by a wild, non-edible Pb accumulator Coronopus didymus (L.) Brassicaceae.[1]Gagan Preet Singh Sidhu, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Ravinder Kumar Kohli [Full author list]International Journal of Phytoremediation [missing]DOI: 10.1080/15226514.2017.1374331 [ORCID]
PubMed: 29020458 [ORCID]
Brassicaceae [missing]; phytoremediation [missing]; Coronopus didymus [missing]2017-10-11Harminder Pal Singh (Q92021448; 7 items)
Exposure to 2100 MHz electromagnetic field radiations induces reactive oxygen species generation in Allium cepa roots[1]Shikha Chandel, [2]Shalinder Kaur, [3]Harminder Pal Singh, [4]Daizy Rani Batish, [5]Ravinder Kumar Kohli [Full author list]Journal of Microscopy and Ultrastructure [missing]DOI: 10.1016/J.JMAU.2017.09.001 [ORCID]
PubMed: 30023258 [ORCID]
Allium cepa [missing]; reactive oxygen species [missing]2017-09-08Harminder Pal Singh (Q92021448; 7 items)
Appraising the role of environment friendly chelants in alleviating lead by Coronopus didymus from Pb-contaminated soils[1]Gagan Preet Singh Sidhu, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Ravinder Kumar Kohli [Full author list]Chemosphere [missing]DOI: 10.1016/J.CHEMOSPHERE.2017.05.026 [ORCID]
PubMed: 28494356 [ORCID]
Coronopus didymus [missing]; contaminated soil [missing]2017-05-04Harminder Pal Singh (Q92021448; 7 items)
Tolerance and hyperaccumulation of cadmium by a wild, unpalatable herb Coronopus didymus (L.) Sm. (Brassicaceae).[1]Gagan Preet Singh Sidhu, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Ravinder K. Kohli [Full author list]Ecotoxicology and Environmental Safety [missing]DOI: 10.1016/J.ECOENV.2016.10.001 [ORCID]
PubMed: 27744137 [ORCID]
Brassicaceae [missing]; Coronopus didymus [missing]2016-10-12Harminder Pal Singh (Q92021448; 7 items)
Effect of lead on oxidative status, antioxidative response and metal accumulation in Coronopus didymus[1]Gagan Preet Singh Sidhu, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Ravinder K. Kohli [Full author list]Plant Physiology and Biochemistry [missing]DOI: 10.1016/J.PLAPHY.2016.05.019 [ORCID]
PubMed: 27214085 [ORCID]
Coronopus didymus [missing]2016-05-14Harminder Pal Singh (Q92021448; 7 items)
Exogenous Nitric Oxide (NO) Interferes with Lead (Pb)-Induced Toxicity by Detoxifying Reactive Oxygen Species in Hydroponically Grown Wheat (Triticum aestivum) Roots[1]Gurpreet Kaur, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Priyanka Mahajan, [5]Ravinder K. Kohli, [6]Valbha Rishi [Full author list]PLOS One [missing]DOI: 10.1371/JOURNAL.PONE.0138713 [ORCID]
PubMed: 26402793 [ORCID]
Triticum aestivum [missing]; hydroponics [missing]; reactive oxygen species [missing]; wheat [missing]2015-09-24Harminder Pal Singh (Q92021448; 7 items)
EMF radiations (1800 MHz)-inhibited early seedling growth of maize (Zea mays) involves alterations in starch and sucrose metabolism[1]Arvind Kumar, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Shalinder Kaur, [5]Ravinder K. Kohli [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-015-0863-9 [ORCID]
PubMed: 26277350 [ORCID]
maize [missing]; seedling growth [missing]2015-08-16Harminder Pal Singh (Q92021448; 7 items)
Biochemical Adaptations in Zea mays Roots to Short-Term Pb(2+) Exposure: ROS Generation and Metabolism[1]Gurpreet Kaur, [2]Shubhpreet Kaur, [3]Harminder Pal Singh, [4]Daizy Rani Batish, [5]Ravinder K. Kohli, [6]Valbha Rishi [Full author list]Bulletin of Environmental Contamination and Toxicology [missing]DOI: 10.1007/S00128-015-1564-Y [ORCID]
PubMed: 26048438 [ORCID]
maize [missing]2015-06-06
Phytotoxicity of Major Constituents of the Volatile Oil from Leaves of Artemisia scoparia Waldst. & Kit.[1]Harminder Pal Singh, [2]Shalinder Kaur, [3]Sunil Mittal, [4]Daizy R. Batish, [5]Ravinder K. Kohli [Full author list]Zeitschrift für Naturforschung C [missing]DOI: 10.1515/ZNC-2008-9-1009 [ORCID]
(±)-limonene [missing]; p-cymene [missing]; Artemisia scoparia [missing]; Artemisia annua [missing]; phytotoxicity [missing]; Artemisia capillaris [missing]2015-02-04Harminder Pal Singh (Q92021448; 7 items)
Eugenol-inhibited root growth in Avena fatua involves ROS-mediated oxidative damage[1]Nitina Ahuja, [2]Harminder Pal Singh, [3]Daizy Rani Batish, [4]Ravinder K. Kohli [Full author list]Pesticide Biochemistry and Physiology [missing]DOI: 10.1016/J.PESTBP.2014.11.012 [ORCID]
PubMed: 25752432 [ORCID]
Avena fatua [missing]2014-12-03
Pb-inhibited mitotic activity in onion roots involves DNA damage and disruption of oxidative metabolism[1]Gurpreet Kaur, [2]Harminder Pal Singh, [3]Daizy Rani Batish, [4]Ravinder K. Kohli [Full author list]Ecotoxicology [missing]DOI: 10.1007/S10646-014-1272-0 [ORCID]
PubMed: 25023386 [ORCID]
2014-07-15
Morphological, anatomical, and ultrastructural changes (visualized through scanning electron microscopy) induced in Triticum aestivum by Pb²⁺ treatment[1]Gurpreet Kaur, [2]Harminder Pal Singh, [3]Daizy Rani Batish, [4]Ravinder K. Kohli [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-014-0642-Z [ORCID]
PubMed: 24810229 [ORCID]
Triticum [missing]; Triticum aestivum [missing]; visualization [missing]; wheat [missing]2014-05-09
Negative effect of litter of invasive weed Lantana camara on structure and composition of vegetation in the lower Siwalik Hills, northern India[1]Harminder Pal Singh, [2]Daizy R. Batish, [3]Kuldip Singh Dogra, [4]Shalinder Kaur, [5]Ravinder K. Kohli, [6]Anjana Negi [Full author list]Environmental Monitoring and Assessment [missing]DOI: 10.1007/S10661-014-3624-X [ORCID]
PubMed: 24477614 [ORCID]
India [missing]; invasive species [missing]; Lantana camara [missing]; invasive weed [missing]2014-01-30Harminder Pal Singh (Q92021448; 7 items)
Cr(VI) imposed toxicity in maize seedlings assessed in terms of disruption in carbohydrate metabolism.[1]Priyanka Mahajan, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Ravinder K. Kohli [Full author list]Biological Trace Element Research [missing]DOI: 10.1007/S12011-013-9806-5 [ORCID]
PubMed: 24104861 [ORCID]
2013-10-09Harminder Pal Singh (Q92021448; 7 items)
β-Pinene inhibited germination and early growth involves membrane peroxidation[1]Nadia Chowhan, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Shalinder Kaur, [5]Nitina Ahuja, [6]Ravinder K. Kohli [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-012-0446-Y [ORCID]
PubMed: 22936022 [ORCID]
2012-08-31Harminder Pal Singh (Q92021448; 7 items)
Growth, photosynthetic activity and oxidative stress in wheat (Triticum aestivum) after exposure of lead to soil[1]Gurpreet Kaur, [2]Harminder Pal Singh, [3]Daizy R. Batish, [4]Ravinder Kumar Kohli [Full author list]Journal of Environmental Biology [missing]PubMed: 23033692 [ORCID]
Triticum aestivum [missing]2012-03-01Harminder Pal Singh (Q92021448; 7 items)
Lead (Pb)-induced biochemical and ultrastructural changes in wheat (Triticum aestivum) roots[1]Gurpreet Kaur, [2]Harminder Pal Singh, [3]Daizy Rani Batish, [4]Ravinder K. Kohli [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-011-0372-4 [ORCID]
PubMed: 22231903 [ORCID]
Triticum aestivum [missing]; wheat [missing]2012-01-10
Phytotoxic effect of 2-benzoxazolinone (BOA) against some vegetable crops[1]Mukta Chum, [2]Daizy R. Batish, [3]Harminder Pal Singh, [4]Ravinder Kumar Kohli [Full author list]Journal of Environmental Biology [missing]PubMed: 23033638 [ORCID]
phytotoxicity [missing]2012-01-01Harminder Pal Singh (Q92021448; 7 items)
A time course assessment of changes in reactive oxygen species generation and antioxidant defense in hydroponically grown wheat in response to lead ions (Pb2+)[1]Gurpreet Kaur, [2]Harminder Pal Singh, [3]Daizy Rani Batish, [4]Ravinder K. Kohli [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-011-0353-7 [ORCID]
PubMed: 22134543 [ORCID]
hydroponics [missing]; reactive oxygen species [missing]2011-12-03Harminder Pal Singh (Q92021448; 7 items)
Arsenic (As) inhibits radicle emergence and elongation in Phaseolus aureus by altering starch-metabolizing enzymes vis-à-vis disruption of oxidative metabolism.[1]Shalinder Kaur, [2]Harminder Pal Singh, [3]Daizy Rani Batish, [4]Asha Negi, [5]Priyanka Mahajan, [6]Surabhi Rana, [7]Ravinder K. Kohli [Full author list]Biological Trace Element Research [missing]DOI: 10.1007/S12011-011-9258-8 [ORCID]
PubMed: 22124861 [ORCID]
2011-11-29Harminder Pal Singh (Q92021448; 7 items)
Lead (Pb)-inhibited radicle emergence in Brassica campestris involves alterations in starch-metabolizing enzymes[1]Harminder Pal Singh, [2]Gurpreet Kaur, [3]Daizy R. Batish, [4]Ravinder K. Kohli [Full author list]Biological Trace Element Research [missing]DOI: 10.1007/S12011-011-9129-3 [ORCID]
PubMed: 21735112 [ORCID]
Brassica campestris [missing]2011-07-07Harminder Pal Singh (Q92021448; 7 items)
Cell phone electromagnetic field radiations affect rhizogenesis through impairment of biochemical processes[1]Harminder Pal Singh, [2]Ved Parkash Sharma, [3]Daizy Rani Batish, [4]Ravinder K. Kohli [Full author list]Environmental Monitoring and Assessment [missing]DOI: 10.1007/S10661-011-2080-0 [ORCID]
PubMed: 21562792 [ORCID]
2011-05-12Harminder Pal Singh (Q92021448; 7 items)
Citronellol disrupts membrane integrity by inducing free radical generation[1]Shalinder Kaur, [2]Shivani Rana, [3]Harminder Pal Singh, [4]Daizy Rani Batish, [5]Ravinder Kumar Kohli [Full author list]Zeitschrift für Naturforschung C [missing]DOI: 10.1515/ZNC-2011-5-609 [ORCID]
PubMed: 21812343 [ORCID]
2011-05-01Harminder Pal Singh (Q92021448; 7 items)
In vitro screening of essential oil from young and mature leaves of Artemisia scoparia compared to its major constituents for free radical scavenging activity[1]Harminder Pal Singh, [2]Shalinder Kaur, [3]Sunil Mittal, [4]Daizy R. Batish, [5]Ravinder K. Kohli [Full author list]Food and Chemical Toxicology [missing]DOI: 10.1016/J.FCT.2010.01.017 [ORCID]
PubMed: 20096322 [ORCID]
essential oil [missing]; 2-phenylphenol [missing]; benzaldehyde [missing]; (+/-)-linalool [missing]; acenaphthylene [missing]; Artemisia scoparia [missing]; 3-pentanol [missing]; Artemisia capillaris [missing]; capillin [missing]; neral [missing]; precocene ii [missing]; precocene i [missing]; isopropyl tiglate [missing]; isocaryophyllene oxide [missing]; isomenthyl acetate [missing]; 4-Menthen-8-ol [missing]; (1Z)-hex-1-en-1-ol [missing]; 1-isopropyl-4-methylbicyclo[3.1.0]hex-2-en-2-ol [missing]; 1-(2-Hydroxy-3-methoxy-5-prop-1-enylphenyl)ethanone [missing]; (5R)-5,7-dimethylocta-1,6-diene [missing]2010-01-21Harminder Pal Singh (Q92021448; 7 items)
Cell phone radiations affect early growth of Vigna radiata (mung bean) through biochemical alterations[1]Ved Parkash Sharma, [2]Harminder Pal Singh, [3]Daizy Rani Batish, [4]Ravinder Kumar Kohli [Full author list]Zeitschrift für Naturforschung C [missing]DOI: 10.1515/ZNC-2010-1-212 [ORCID]
PubMed: 20355324 [ORCID]
Vigna radiata [missing]2010-01-01Harminder Pal Singh (Q92021448; 7 items)
Mobile phone radiation inhibits Vigna radiata (mung bean) root growth by inducing oxidative stress[1]Ved Parkash Sharma, [2]Harminder Pal Singh, [3]Ravinder K. Kohli, [4]Daizy Rani Batish [Full author list]Science of the Total Environment [missing]DOI: 10.1016/J.SCITOTENV.2009.07.006 [ORCID]
PubMed: 19682728 [ORCID]
Vigna radiata [missing]2009-08-13
Essential oil of Artemisia scoparia inhibits plant growth by generating reactive oxygen species and causing oxidative damage[1]Harminder Pal Singh, [2]Shalinder Kaur, [3]Sunil Mittal, [4]Daizy Rani Batish, [5]Ravinder K. Kohli [Full author list]Journal of Chemical Ecology [missing]DOI: 10.1007/S10886-009-9595-7 [ORCID]
PubMed: 19194753 [ORCID]
essential oil [missing]; reactive oxygen species [missing]; Artemisia scoparia [missing]2009-02-05Harminder Pal Singh (Q92021448; 7 items)
Eucalyptus essential oil as a natural pesticide[1]Daizy R. Batish, [2]Harminder Pal Singh, [3]Ravinder K. Kohli, [4]Shalinder Kaur [Full author list]Forest Ecology and Management [missing]DOI: 10.1016/J.FORECO.2008.08.008 [ORCID]
pesticide [missing]; essential oil [missing]2008-12-01Harminder Pal Singh (Q92021448; 7 items)
Phytotoxicity of major constituents of the volatile oil from leaves of Artemisia scoparia Waldst. & Kit.[1]Harminder Pal Singh, [2]Shalinder Kaur, [3]Sunil Mittal, [4]Daizy R. Batish, [5]Ravinder K. Kohli [Full author list]Zeitschrift für Naturforschung C [missing]PubMed: 19040104 [ORCID]
p-cymene [missing]; Artemisia scoparia [missing]; phytotoxicity [missing]2008-09-01Harminder Pal Singh (Q92021448; 7 items)
Caffeic acid affects early growth, and morphogenetic response of hypocotyl cuttings of mung bean (Phaseolus aureus)[1]Daizy R. Batish, [2]Harminder Pal Singh, [3]Shalinder Kaur, [4]Ravinder K. Kohli, [5]Surender Singh Yadav [Full author list]The Journal of Plant Physiology [missing]DOI: 10.1016/J.JPLPH.2007.05.003 [ORCID]
PubMed: 17643552 [ORCID]
2007-07-23Harminder Pal Singh (Q92021448; 7 items)
Assessment of phytotoxicity of parthenin[1]Daizy R. Batish, [2]Harminder Pal Singh, [3]Ravinder K. Kohli, [4]Shalinder Kaur, [5]Dinesh B Saxena, [6]Surender Yadav [Full author list]Zeitschrift für Naturforschung C [missing]DOI: 10.1515/ZNC-2007-5-609 [ORCID]
PubMed: 17708442 [ORCID]
phytotoxicity [missing]2007-05-01Harminder Pal Singh (Q92021448; 7 items)
Phytotoxicity of the volatile monoterpene citronellal against some weeds.[1]Harminder Pal Singh, [2]Daizy R. Batish, [3]Shalinder Kaur, [4]Ravinder K. Kohli, [5]Komal Arora [Full author list]Zeitschrift für Naturforschung C [missing]DOI: 10.1515/ZNC-2006-5-606 [ORCID]
PubMed: 16869489 [ORCID]
phytotoxicity [missing]2006-05-01Harminder Pal Singh (Q92021448; 7 items)
Chemical composition and inhibitory activity of essential oil from decaying leaves of Eucalyptus citriodora[1]Daizy R. Batish, [2]Harminder Pal Singh, [3]Nidhi Setia, [4]Shalinder Kaur, [5]Ravinder K. Kohli [Full author list]Zeitschrift für Naturforschung C [missing]DOI: 10.1515/ZNC-2006-1-210 [ORCID]
PubMed: 16610217 [ORCID]
essential oil [missing]; Eucalyptus citriodora [missing]2006-01-01Harminder Pal Singh (Q92021448; 7 items)

Group #2

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Alleviation of Salt Stress in Upland Rice (Oryza sativa L. ssp. indica cv. Leum Pua) Using Arbuscular Mycorrhizal Fungi Inoculation[1]Rujira Tisarum, [2]Cattarin Theerawitaya, [3]Thapanee Samphumphuang, [4]Kanyamin Polispitak, [5]Panarat Thongpoem, [6]Harminder Pal Singh, [7]Suriyan Cha-Um [Full author list]Frontiers in Plant Science [missing]DOI: 10.3389/FPLS.2020.00348 [ORCID]
PubMed: 32273880 [ORCID]
mycorrhiza [missing]; Oryza sativa [missing]; mycorrhizal fungus [missing]; salt stress [missing]2020-03-26
Expression levels of vacuolar ion homeostasis-related genes, Na+ enrichment, and their physiological responses to salt stress in sugarcane genotypes[1]Cattarin Theerawitaya, [2]Rujira Tisarum, [3]Thapanee Samphumphuang, [4]Harminder Pal Singh, [5]Teruhiro Takabe, [6]Suriyan Cha-Um [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-019-01450-7 [ORCID]
PubMed: 31807913 [ORCID]
salt stress [missing]2019-12-05
Foliar application of glycinebetaine regulates soluble sugars and modulates physiological adaptations in sweet potato (Ipomoea batatas) under water deficit[1]Rujira Tisarum, [2]Cattarin Theerawitaya, [3]Thapanee Samphumphuang, [4]Harminder Pal Singh, [5]Suriyan Cha-Um [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-019-01429-4 [ORCID]
PubMed: 31407117 [ORCID]
sweet potato [missing]2019-08-12
Promoting water deficit tolerance and anthocyanin fortification in pigmented rice cultivar (Oryza sativa L. subsp. indica) using arbuscular mycorrhizal fungi inoculation[1]Rujira Tisarum, [2]Cattarin Theerawitaya, [3]Thapanee Samphumphuang, [4]Muenduen Phisalaphong, [5]Harminder Pal Singh, [6]Suriyan Cha-Um [Full author list]Physiology and molecular biology of plants : an international journal of functional plant biology [missing]DOI: 10.1007/S12298-019-00658-4 [ORCID]
PubMed: 31402812 [ORCID]
mycorrhiza [missing]; Oryza sativa [missing]; mycorrhizal fungus [missing]2019-03-22
Isolation, expression, and functional analysis of developmentally regulated plasma membrane polypeptide 1 (DREPP1) in Sporobolus virginicus grown under alkali salt stress[1]Cattarin Theerawitaya, [2]Nana Yamada-Kato, [3]Harminder Pal Singh, [4]Suriyan Cha-Um, [5]Teruhiro Takabe [Full author list]Protoplasma [missing]DOI: 10.1007/S00709-018-1242-0 [ORCID]
PubMed: 29574487 [ORCID]
Sporobolus virginicus [missing]; salt stress [missing]2018-03-25

Potential author items

NameDescriptionAuthored itemsIdentifiersEmployer(s)
Harminder Singhresearcher (ORCID 0000-0002-9354-2356)9ORCID: 0000-0002-9354-2356
Faculty of Medicine – University of Manitoba [missing]
Harminder Pal Singhresearcher (ORCID 0000-0002-5358-0227)7ORCID: 0000-0002-5358-0227
Harminder Singhresearcher at Botanical Survey of India (Ministry of Environment & Forests, Government of India)2ORCID: 0000-0003-2079-8569
ResearchGate Profile: Harminder-Singh-16
Botanical Survey of India [missing]
Harminder Singhresearcher (ORCID 0000-0002-0024-5855)1ORCID: 0000-0002-0024-5855
Researcher ID: E-1848-2012
Harminder Singhacademic1ORCID: 0000-0001-8985-4018
Stanford University [missing]
Stanford University Neurosurgery Department [missing]
Harminder Singhresearcher in business information systems at AUT in New Zealand1ORCID: 0000-0001-7335-035X
Auckland University of Technology [missing]
Nanyang Technological University [missing]
Michigan State University [missing]
Harminder SinghIndian athletics competitor0VIAF ID: 73316104
Harminder SinghRecipient of Shaurya Chakra0
Harminder Pal SinghRecipient of Shaurya Chakra0
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