Abstract Leaf rolling is one of the most significant symptoms of drought stress in plant. Previously, we identified a dominant negative mutant, termed rolled and erect 1 (hereafter referred to rel1-D), regulating leaf rolling and erectness in rice. However, the role of REL1 in drought response is still poorly understood. Here, our results indicated that rel1-D displayed higher tolerance to drought relative to wild type, and the activity of superoxide dismutase (SOD) and drought responsive genes were significantly up-regulated in rel1-D. Moreover, our results revealed that rel1-D was hypersensitive to ABA and the expression of ABA associated genes was significantly increased in rel1-D, suggesting that REL1 likely coordinates ABA to regulate ...
Understanding the molecular basis of plant performance under water-limiting conditions will help to ...
Long noncoding RNAs (lncRNAs) act as transcriptional regulators in plants and animals. To date, they...
The impacts of drought on plant growth and development limit cereal crop production worldwide. Rice ...
Figure S5. Verification of the iTRAQ. Modes for qPCR were cDNA of WT and the rel1-D leaves in tiller...
Background: Plant roots are important organs to uptake soil water and nutrients, perceiving and tran...
Expressions of ABA biosynthesis genes and catabolism genes are generally co-regulated in plant devel...
HIGHLIGHTSOverexpressing and RNA interfering OsDRAP1 transgenic rice plants exhibited significantly ...
Rice (Oryza sativa L.) is more sensitive to drought stress than other cereals. To dissect molecular ...
To elucidate genome-level responses to drought and high-salinity stress in rice, a 70mer oligomer mi...
Late embryogenesis abundant (LEA) proteins are primarily found in plants stem, roots, and other orga...
Understanding the molecular mechanisms that underlie plant responses to drought stress is challengin...
DoctorGlobal climate changes cause abiotic stresses, which are the greatest threat to cereal product...
Understanding the molecular basis of plant performance under water-limiting conditions will help to ...
<div><p>Understanding the molecular mechanisms that underlie plant responses to drought stress is ch...
Rice (Oryza sativa L.) is more sensitive to drought stress than other cereals. Particularly during r...
Understanding the molecular basis of plant performance under water-limiting conditions will help to ...
Long noncoding RNAs (lncRNAs) act as transcriptional regulators in plants and animals. To date, they...
The impacts of drought on plant growth and development limit cereal crop production worldwide. Rice ...
Figure S5. Verification of the iTRAQ. Modes for qPCR were cDNA of WT and the rel1-D leaves in tiller...
Background: Plant roots are important organs to uptake soil water and nutrients, perceiving and tran...
Expressions of ABA biosynthesis genes and catabolism genes are generally co-regulated in plant devel...
HIGHLIGHTSOverexpressing and RNA interfering OsDRAP1 transgenic rice plants exhibited significantly ...
Rice (Oryza sativa L.) is more sensitive to drought stress than other cereals. To dissect molecular ...
To elucidate genome-level responses to drought and high-salinity stress in rice, a 70mer oligomer mi...
Late embryogenesis abundant (LEA) proteins are primarily found in plants stem, roots, and other orga...
Understanding the molecular mechanisms that underlie plant responses to drought stress is challengin...
DoctorGlobal climate changes cause abiotic stresses, which are the greatest threat to cereal product...
Understanding the molecular basis of plant performance under water-limiting conditions will help to ...
<div><p>Understanding the molecular mechanisms that underlie plant responses to drought stress is ch...
Rice (Oryza sativa L.) is more sensitive to drought stress than other cereals. Particularly during r...
Understanding the molecular basis of plant performance under water-limiting conditions will help to ...
Long noncoding RNAs (lncRNAs) act as transcriptional regulators in plants and animals. To date, they...
The impacts of drought on plant growth and development limit cereal crop production worldwide. Rice ...