Barley (Hordeum vulgare L.) is the most susceptible cereal species to excess moisture stress. Waterlogging-induced hypoxia causes major morphological, physiological, and metabolic changes, some of which are regulated by the action of plant growth regulators and signal molecules including nitric oxide. Recent studies have evidenced the participation of phytoglobins in attenuating hypoxic stress during conditions of excessive moisture through their ability to scavenge nitric oxide and influence the synthesis and response of growth regulators. This review will highlight major cellular changes linked to plant responses to waterlogging stress with emphasis on phytoglobins
Nitric oxide (NO) is a key messenger in plant stress responses but its exact role in drought respons...
Waterlogging occurs when soil is saturated with water, leading to anaerobic conditions in the root z...
Waterlogging, causing hypoxia stress and nitrogen depletion in the rhizosphere, has been an increasi...
Excess of water affects plant growth and metabolism dramatically. Limited oxygen availability and ch...
International audienceIncreased tolerance of crops to low oxygen (hypoxia) during flooding is a key ...
Waterlogging leads to major crop losses globally, particularly for waterlogging-sensitive crops such...
In response to environmental stress, plants activate complex signalling, including being dependent o...
Root growth into hypoxic or anoxic waterlogged soil relies on internal aeration in plants. The plant...
Waterlogging is a serious environmental threat worldwide that severely limits agricultural productio...
Drought is the single most important stress that reduces crop yield. Plants are particularly vulnera...
Root growth into hypoxic or anoxic waterlogged soil relies on internal aeration in plants. The plant...
The effects of waterlogging (WL) and WL plus nitric oxide (WL+NO) were investigated in seedlings of ...
Trabajo presentado en la 6th Plant Nitric Oxide International Meeting, celebrada en Granada del 14 a...
Waterlogging is a major environmental constraint severely limiting crop production both in Australi...
The term “waterlogging” is used to describe stressful conditions of root environment with excessive ...
Nitric oxide (NO) is a key messenger in plant stress responses but its exact role in drought respons...
Waterlogging occurs when soil is saturated with water, leading to anaerobic conditions in the root z...
Waterlogging, causing hypoxia stress and nitrogen depletion in the rhizosphere, has been an increasi...
Excess of water affects plant growth and metabolism dramatically. Limited oxygen availability and ch...
International audienceIncreased tolerance of crops to low oxygen (hypoxia) during flooding is a key ...
Waterlogging leads to major crop losses globally, particularly for waterlogging-sensitive crops such...
In response to environmental stress, plants activate complex signalling, including being dependent o...
Root growth into hypoxic or anoxic waterlogged soil relies on internal aeration in plants. The plant...
Waterlogging is a serious environmental threat worldwide that severely limits agricultural productio...
Drought is the single most important stress that reduces crop yield. Plants are particularly vulnera...
Root growth into hypoxic or anoxic waterlogged soil relies on internal aeration in plants. The plant...
The effects of waterlogging (WL) and WL plus nitric oxide (WL+NO) were investigated in seedlings of ...
Trabajo presentado en la 6th Plant Nitric Oxide International Meeting, celebrada en Granada del 14 a...
Waterlogging is a major environmental constraint severely limiting crop production both in Australi...
The term “waterlogging” is used to describe stressful conditions of root environment with excessive ...
Nitric oxide (NO) is a key messenger in plant stress responses but its exact role in drought respons...
Waterlogging occurs when soil is saturated with water, leading to anaerobic conditions in the root z...
Waterlogging, causing hypoxia stress and nitrogen depletion in the rhizosphere, has been an increasi...