Abiotic stresses including various environmental factors adversely affect plant growth and limit agricultural production worldwide. Minimizing these losses is a major area of concern for all countries. Therefore, it is desirable to develop multi-stress tolerant varieties. Salinity, drought, and cold are among the major environmental stresses that greatly influence the growth, development, survival, and yield of plants. UV-B radiation of sunlight, which damages the cellular genomes, is another growth-retarding factor. Several genes are induced under the influence of various abiotic stresses. Among these are DNA repair genes, which are induced in response to the DNA damage. Since the stresses affect the cellular gene expression machinery, it ...
Drought, heat and other abiotic stresses negatively impact growth, development, yield and seed quali...
Abstract Background Despite increasing characterization of DEAD-box RNA helicases (RHs) in chloropla...
RNA helicases function as molecular motors that rearrange RNA secondary structure, potentially perfo...
) and its novel function in salinity stress tolerance in plant. under salinity stress conditions, as...
The DEAD-box helicases are required mostly in all aspects of RNA and DNA metabolism and they play a ...
© 2016 Dr. Aqsa TabasumAgricultural production encounters multifaceted environmental challenges such...
Previously, we reported that overexpression of AtRH17, an Arabidopsis DEAD-box RNA helicase gene, co...
Salinity stress is one of the major factors negatively affecting growth and productivity in living o...
Helicases are involved in the metabolism of nucleic acid; this is very sensitive to the abiotic stre...
Helicases are motor proteins that can transiently catalyze the unwinding of energetically stable dup...
Rapeseed (Brassica napus) is one of the most important vegetable oil crops worldwide. Abiotic stress...
The DEAD-box RNA helicases are involved in almost every aspect of RNA metabolism, associated with di...
<div><p>The DEAD-box RNA helicases are involved in almost every aspect of RNA metabolism, associated...
[EN] Increasing evidences highlight the importance of DEAD-box RNA helicases in plant development an...
Salt tolerance is an important trait that is required to overcome salinity-induced reduction in plan...
Drought, heat and other abiotic stresses negatively impact growth, development, yield and seed quali...
Abstract Background Despite increasing characterization of DEAD-box RNA helicases (RHs) in chloropla...
RNA helicases function as molecular motors that rearrange RNA secondary structure, potentially perfo...
) and its novel function in salinity stress tolerance in plant. under salinity stress conditions, as...
The DEAD-box helicases are required mostly in all aspects of RNA and DNA metabolism and they play a ...
© 2016 Dr. Aqsa TabasumAgricultural production encounters multifaceted environmental challenges such...
Previously, we reported that overexpression of AtRH17, an Arabidopsis DEAD-box RNA helicase gene, co...
Salinity stress is one of the major factors negatively affecting growth and productivity in living o...
Helicases are involved in the metabolism of nucleic acid; this is very sensitive to the abiotic stre...
Helicases are motor proteins that can transiently catalyze the unwinding of energetically stable dup...
Rapeseed (Brassica napus) is one of the most important vegetable oil crops worldwide. Abiotic stress...
The DEAD-box RNA helicases are involved in almost every aspect of RNA metabolism, associated with di...
<div><p>The DEAD-box RNA helicases are involved in almost every aspect of RNA metabolism, associated...
[EN] Increasing evidences highlight the importance of DEAD-box RNA helicases in plant development an...
Salt tolerance is an important trait that is required to overcome salinity-induced reduction in plan...
Drought, heat and other abiotic stresses negatively impact growth, development, yield and seed quali...
Abstract Background Despite increasing characterization of DEAD-box RNA helicases (RHs) in chloropla...
RNA helicases function as molecular motors that rearrange RNA secondary structure, potentially perfo...