The objective of this study was to evaluate gene expression related to water deficit tolerance in maize lines. For this, lines previously classified as tolerant (91-T and 32-T) and non-tolerant (24-NT and 57-NT) to water deficit were used. The seeds of the four lines were evaluated for emergence and emergence speed index, and the seedlings were evaluated for root and shoot length under two conditions of water availability (70 and 10% substrate water retention capacity). In transcript analysis, the expression of several genes associated with water deficit tolerance, ZmDBP3, ZmALDH9, ZmAN13, and ZmDREB2A, was evaluated by qRT-PCR for the 91-T and 57-NT lines. It can be concluded that soil water deficiency did not reduce root development. Howe...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
ABSTRACT Knowing genes related to water deficit is a valuable tool to assist and accelerate the sele...
Drought stress is a significant abiotic factor influencing maize growth and development. Understandi...
<div><p>The worldwide production of maize (<i>Zea mays</i> L.) is frequently impacted by water scarc...
Drought is one of the major constraints for plant productivity worldwide. Different mechanisms of dr...
Drought is one of the major constraints for plant productivity worldwide. Different mechanisms of dr...
<p>(A) A heat map illustrating levels of gene expression level of the 18 <i>ZmDREB</i> genes in fift...
Drought has been recognized as a potential challenge to maize production around the world, particula...
In order to unravel the genetic architecture underlying plant response to drought, we adopted an int...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
ABSTRACT Knowing genes related to water deficit is a valuable tool to assist and accelerate the sele...
Drought stress is a significant abiotic factor influencing maize growth and development. Understandi...
<div><p>The worldwide production of maize (<i>Zea mays</i> L.) is frequently impacted by water scarc...
Drought is one of the major constraints for plant productivity worldwide. Different mechanisms of dr...
Drought is one of the major constraints for plant productivity worldwide. Different mechanisms of dr...
<p>(A) A heat map illustrating levels of gene expression level of the 18 <i>ZmDREB</i> genes in fift...
Drought has been recognized as a potential challenge to maize production around the world, particula...
In order to unravel the genetic architecture underlying plant response to drought, we adopted an int...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...