During the late maturation stage of seed development, water content decreases greatly. One of the most striking characteristics of mature orthodox seeds is their ability to withstand severe desiccation. Mechanisms of plant drought/desiccation tolerance have been studied by numerous groups, and a broad range of molecules have been identified to play some roles. Examples are proline, oligosaccharide, and late embryogenesis abundant (LEA) proteins, and so on. LEA proteins were first-described from mature cotton seeds decades ago. Since then, many LEA proteins were identified from vascular and nonvascular plants, fungi, algae, and microbes, as well as anhydrobiotic animals such as protozoa, nematodes, insects, and crustaceans, and so on. The ex...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
International audienceLate-embryogenesis abundant (LEA) proteins are hydrophilic proteins that accum...
Group 1 (Dur-19, PF00477, LEA_5) Late Embryogenesis Abundant (LEA) proteins are present in organisms...
During the late maturation stage of seed development, water content decreases greatly. One of the mo...
Late embryogenesis abundant (LEA) proteins are extremely hydrophilic proteins that were first identi...
Late embryogenesis abundant (LEA) proteins are extremely hydrophilic proteins that were first identi...
When plants colonized land they developed a wide range of adaptations to cope with life in a drier e...
International audienceFew organisms are able to withstand desiccation stress; however, desiccation t...
To deal with increasingly severe periods of dehydration related to global climate change, it becomes...
Abstract Research into late embryogenesis abundant (LEA) proteins has been ongoing for more than 20 ...
Not AvailableGroup 1 late embryogenesis-abundant (LEA) proteins are highly hydrophilic group of prot...
Abstract LEA (late embryogenesis abundant) proteins were originally described almost 30 years ago as...
Late embryogenesis abundant (LEA) proteins are essential to the ability of resurrection plants and o...
LEA proteins are a family of intrinsically disordered proteins that are expressed in various life st...
Although few organisms are desiccation tolerant, this remarkable property is widespread among plant ...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
International audienceLate-embryogenesis abundant (LEA) proteins are hydrophilic proteins that accum...
Group 1 (Dur-19, PF00477, LEA_5) Late Embryogenesis Abundant (LEA) proteins are present in organisms...
During the late maturation stage of seed development, water content decreases greatly. One of the mo...
Late embryogenesis abundant (LEA) proteins are extremely hydrophilic proteins that were first identi...
Late embryogenesis abundant (LEA) proteins are extremely hydrophilic proteins that were first identi...
When plants colonized land they developed a wide range of adaptations to cope with life in a drier e...
International audienceFew organisms are able to withstand desiccation stress; however, desiccation t...
To deal with increasingly severe periods of dehydration related to global climate change, it becomes...
Abstract Research into late embryogenesis abundant (LEA) proteins has been ongoing for more than 20 ...
Not AvailableGroup 1 late embryogenesis-abundant (LEA) proteins are highly hydrophilic group of prot...
Abstract LEA (late embryogenesis abundant) proteins were originally described almost 30 years ago as...
Late embryogenesis abundant (LEA) proteins are essential to the ability of resurrection plants and o...
LEA proteins are a family of intrinsically disordered proteins that are expressed in various life st...
Although few organisms are desiccation tolerant, this remarkable property is widespread among plant ...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
International audienceLate-embryogenesis abundant (LEA) proteins are hydrophilic proteins that accum...
Group 1 (Dur-19, PF00477, LEA_5) Late Embryogenesis Abundant (LEA) proteins are present in organisms...