Abstract Background Abiotic stresses negatively affect plant growth and flower production. In plants, P5CS proteins are key enzymes that catalyzed the rate-limiting steps of proline synthesis, and proline is a well-known osmoprotectant that is closely related to abiotic stress tolerance. However, information about the P5CS genes, their effects on proline accumulation, and their role in abiotic stress tolerance in Lilium is still lacking. Results We isolated and characterized a novel gene ( LhSorP5CS ) from Oriental hybrid lily cultivar Sorbonne. Phylogenetic analysis indicated that LhSorP5CS is a me...
Proline accumulation is a common response to salt stress in many plants. Salt stress also increased ...
Plants have to adapt their metabolism to constantly changing environmental conditions, among which t...
Proline accumulation in plants is a well-documented physiological response to osmotic stress caused ...
Proline accumulation is a widespread response of plants to salt stress as well as drought and cold s...
Plants are subjected to various kinds of abiotic and biotic stresses throughout their life cycles wh...
Proline has been reported to accumulate during osmotic stress in many plant species and has been pro...
Osmotic stress-induced accumulation of proline, an important protective osmolyte in higher plants, i...
Osmotic stress-induced accumulation of proline, an important protective osmolyte in higher plants, i...
Proline accumulation occurs in a large range of plant species in retaliation to the numerous abiotic...
Osmotic stress-induced accumulation of proline, an important protective osmolyte in higher plants, i...
AbstractMany organisms, including higher plants, accumulate free proline under osmotic stress. P5CR ...
Proline accumulation is an important mechanism for osmotic regulation under salt stress. In this stu...
In many plants, osmotic stress induces a rapid accumulation of proline through de novo synthesis fro...
A high accumulation of proline due to increased synthesis and decreased degradation under a variety ...
In many plants, osmotic stress induces a rapid accumulation of proline through de novo synthesis fro...
Proline accumulation is a common response to salt stress in many plants. Salt stress also increased ...
Plants have to adapt their metabolism to constantly changing environmental conditions, among which t...
Proline accumulation in plants is a well-documented physiological response to osmotic stress caused ...
Proline accumulation is a widespread response of plants to salt stress as well as drought and cold s...
Plants are subjected to various kinds of abiotic and biotic stresses throughout their life cycles wh...
Proline has been reported to accumulate during osmotic stress in many plant species and has been pro...
Osmotic stress-induced accumulation of proline, an important protective osmolyte in higher plants, i...
Osmotic stress-induced accumulation of proline, an important protective osmolyte in higher plants, i...
Proline accumulation occurs in a large range of plant species in retaliation to the numerous abiotic...
Osmotic stress-induced accumulation of proline, an important protective osmolyte in higher plants, i...
AbstractMany organisms, including higher plants, accumulate free proline under osmotic stress. P5CR ...
Proline accumulation is an important mechanism for osmotic regulation under salt stress. In this stu...
In many plants, osmotic stress induces a rapid accumulation of proline through de novo synthesis fro...
A high accumulation of proline due to increased synthesis and decreased degradation under a variety ...
In many plants, osmotic stress induces a rapid accumulation of proline through de novo synthesis fro...
Proline accumulation is a common response to salt stress in many plants. Salt stress also increased ...
Plants have to adapt their metabolism to constantly changing environmental conditions, among which t...
Proline accumulation in plants is a well-documented physiological response to osmotic stress caused ...