As food crop, wheat is of prime importance for human society. Nevertheless, our understanding of the genetic and molecular mechanisms controlling wheat productivity conditions has been, so far, hampered by the lack of sufficient genomic resources. The present work describes the isolation and characterization of TdERF1, an ERF gene from durum wheat (Triticum turgidum L. subsp. durum). The structural features of TdERF1 supported the hypothesis that it is a novel member of the ERF family in durum wheat and, considering its close similarity to TaERF1 of Triticum aestivum, it probably plays a similar role in mediating responses to environmental stresses. TdERF1 displayed an expression pattern that discriminated between two durum wheat genotypes ...
Summary Characterization of the function of stress‐related genes helps to understand the mechanisms ...
Published versionBread wheat (AABBDD) originated from the diploid progenitor Triticum urartu (AA), a...
Networks of transcription factors regulate diverse physiological processes in plants to ensure that ...
Water deficit and increasing salinization reduce productivity of wheat, the leading crop for human d...
WRKY transcription factors are involved in multiple aspects of plant growth, development and respons...
Members of the AP2/ERF transcription factor family play critical roles in plant development, biosynt...
WRKY transcription factors are involved in multiple aspects of plant growth, development and respons...
The Mediterranean area is characterised by unfavorable environmental conditions such as heat stress ...
Some of the key genes and regulatory mechanisms controlling drought response in durum wheat have bee...
BACKGROUND: Wheat production is largely restricted by adverse environmental stresses. Under many und...
AP2/ERF (APETALA2/ethylene responsive factor) is a family of plant-specific transcription factors wh...
BACKGROUND: Wheat production is largely restricted by adverse environmental stresses. Under many und...
Abiotic stresses such as, drought, heat, salinity, and flooding threaten global food security. Crop ...
The APETALA 2/Ethylene-responsive element binding factor (AP2/ERF) transcription factor gene family ...
WRKY transcription factors are one of the largest families of transcriptional regulators and form an...
Summary Characterization of the function of stress‐related genes helps to understand the mechanisms ...
Published versionBread wheat (AABBDD) originated from the diploid progenitor Triticum urartu (AA), a...
Networks of transcription factors regulate diverse physiological processes in plants to ensure that ...
Water deficit and increasing salinization reduce productivity of wheat, the leading crop for human d...
WRKY transcription factors are involved in multiple aspects of plant growth, development and respons...
Members of the AP2/ERF transcription factor family play critical roles in plant development, biosynt...
WRKY transcription factors are involved in multiple aspects of plant growth, development and respons...
The Mediterranean area is characterised by unfavorable environmental conditions such as heat stress ...
Some of the key genes and regulatory mechanisms controlling drought response in durum wheat have bee...
BACKGROUND: Wheat production is largely restricted by adverse environmental stresses. Under many und...
AP2/ERF (APETALA2/ethylene responsive factor) is a family of plant-specific transcription factors wh...
BACKGROUND: Wheat production is largely restricted by adverse environmental stresses. Under many und...
Abiotic stresses such as, drought, heat, salinity, and flooding threaten global food security. Crop ...
The APETALA 2/Ethylene-responsive element binding factor (AP2/ERF) transcription factor gene family ...
WRKY transcription factors are one of the largest families of transcriptional regulators and form an...
Summary Characterization of the function of stress‐related genes helps to understand the mechanisms ...
Published versionBread wheat (AABBDD) originated from the diploid progenitor Triticum urartu (AA), a...
Networks of transcription factors regulate diverse physiological processes in plants to ensure that ...