Search Results - "Huda, Kazi Md. Kamrul"
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Pea p68, a DEAD-box helicase, provides salinity stress tolerance in transgenic tobacco by reducing oxidative stress and improving photosynthesis machinery
Published in PloS one (30-05-2014)“…The DEAD-box helicases are required mostly in all aspects of RNA and DNA metabolism and they play a significant role in various abiotic stresses, including…”
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2
Genome-wide analysis of plant-type II Ca2+ATPases gene family from rice and Arabidopsis: Potential role in abiotic stresses
Published in Plant physiology and biochemistry (01-04-2013)“…The Plant Ca2+ATPases are members of the P-type ATPase superfamily and play essential roles in pollen tube growth, vegetative development, inflorescence…”
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3
OsBAT1 Augments Salinity Stress Tolerance by Enhancing Detoxification of ROS and Expression of Stress-Responsive Genes in Transgenic Rice
Published in Plant molecular biology reporter (01-10-2015)“…Coping with salinity-induced reduction in crop yield is essential for food security. Human leukocyte antigen-B associated transcript 1 (BAT1) also called as…”
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4
Pea p68 Imparts Salinity Stress Tolerance in Rice by Scavenging of ROS-Mediated H2O2 and Interacts with Argonaute
Published in Plant molecular biology reporter (01-04-2015)“…The p68, a prototypic member of DEAD-box protein family, is involved in pre-mRNA splicing, RNA-induced silencing and transcription regulation. However, the…”
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5
Global calcium transducer P-type Ca2+-ATPases open new avenues for agriculture by regulating stress signalling
Published in Journal of experimental botany (01-08-2013)“…Food security is in danger under the continuous growing threat of various stresses including climate change and global warming, which ultimately leads to a…”
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Journal Article -
6
Reproductive organ and vascular specific promoter of the rice plasma membrane Ca2+ATPase mediates environmental stress responses in plants
Published in PloS one (01-03-2013)“…Plasma membrane Ca(2+)ATPase is a transport protein in the plasma membrane of cells and helps in removal of calcium (Ca(2+)) from the cell, hence regulating…”
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7
A DEAD box helicase Psp68 positively regulates salt stress responses in marker-free transgenic rice plants
Published in Transgenic research (01-08-2023)“…Helicases are the motor proteins not only involved in transcriptional and post-transcription process but also provide abiotic stress tolerance in many crops…”
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8
Phenotypic and microarray analysis reveals salinity stress-induced oxidative tolerance in transgenic rice expressing a DEAD-box RNA helicase, OsDB10
Published in Plant molecular biology (01-10-2023)“…Helicases are the motor proteins not only involved in the process of mRNA metabolism but also played a significant role in providing abiotic stresses…”
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9
OsACA6, a P-type 2B Ca²⁺ ATPase functions in cadmium stress tolerance in tobacco by reducing the oxidative stress load
Published in Planta (01-10-2014)“…MAIN CONCLUSION : The present study demonstrates the first direct evidence of the novel role of OsACA6 in providing Cd ²⁺ stress tolerance in transgenic…”
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10
Salinity and drought tolerant OsACA6 enhances cold tolerance in transgenic tobacco by interacting with stress-inducible proteins
Published in Plant physiology and biochemistry (01-09-2014)“…Plant Ca2+ATPases regulate many signalling pathways which are important for plant growth, development and abiotic stress responses. Our previous work…”
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11
An efficient and rapid regeneration via multiple shoot induction from mature seed derived embryogenic and organogenic callus of Indian maize (Zea mays L.)
Published in Plant signaling & behavior (01-10-2013)“…An efficient method for in vitro micro propagation and genetic transformation of plants are crucial for both basic and applied research. Maize is one of the…”
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12
OsACA6, a P-type 2B Ca(2+) ATPase functions in cadmium stress tolerance in tobacco by reducing the oxidative stress load
Published in Planta (01-10-2014)“…The present study demonstrates the first direct evidence of the novel role of OsACA6 in providing Cd (2+) stress tolerance in transgenic tobacco by maintaining…”
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13
Isolation and functional characterization of the promoter of a DEAD-box helicase Psp68 using Agrobacterium-mediated transient assay
Published in Plant signaling & behavior (30-04-2014)“…Helicases are molecular motor proteins that perform a variety of cellular functions including transcription, translation, DNA replication and repair, RNA…”
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14
Global calcium transducer P-type Ca super(2+)-ATPases open new avenues for agriculture by regulating stress signalling
Published in Journal of experimental botany (01-08-2013)“…Food security is in danger under the continuous growing threat of various stresses including climate change and global warming, which ultimately leads to a…”
Get full text
Journal Article -
15
Erratum to: OsACA6, a P-type 2B Ca^sup 2+^ ATPase functions in cadmium stress tolerance in tobacco by reducing the oxidative stress load
Published in Planta (01-10-2014)Get full text
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16
Erratum to: OsACA6, a P-type 2B Ca2+ ATPase functions in cadmium stress tolerance in tobacco by reducing the oxidative stress load
Published in Planta (01-10-2014)Get full text
Journal Article -
17
OsACA6, a P-type 2B Ca^sup 2+^ ATPase functions in cadmium stress tolerance in tobacco by reducing the oxidative stress load
Published in Planta (01-10-2014)“…The present study demonstrates the first direct evidence of the novel role of OsACA6 in providing Cd ^sup 2+^ stress tolerance in transgenic tobacco by…”
Get full text
Journal Article -
18
Reproductive Organ and Vascular Specific Promoter of the Rice Plasma Membrane Ca.sup.2+ATPase Mediates Environmental Stress Responses in Plants
Published in PloS one (01-03-2013)“…Background Plasma membrane Ca.sup.2+ ATPase is a transport protein in the plasma membrane of cells and helps in removal of calcium (Ca.sup.2+) from the cell,…”
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Journal Article -
19
Genome-wide analysis of plant-type II Ca(2+)ATPases gene family from rice and Arabidopsis: potential role in abiotic stresses
Published in Plant physiology and biochemistry (01-04-2013)“…The Plant Ca(2+)ATPases are members of the P-type ATPase superfamily and play essential roles in pollen tube growth, vegetative development, inflorescence…”
Get full text
Journal Article