Land plants evolved more than 450 million years ago from a lineage of freshwater charophyte green algae(1). The extent to which plant signalling systems existed before the evolutionary transition to land is unknown. Although charophytes occupy a key phylogenetic position for elucidating the origins of such signalling systems(2-4), there is a paucity of sequence data for these organisms(5,6). Here we carry out de novo transcriptomics of five representative charophyte species, and find putative homologues for the biosynthesis, transport, perception and signalling of major plant hormones. Focusing on the plant hormone ethylene, we provide evidence that the filamentous charophyte Spirogyra pratensis possesses an ethylene hormone system homologo...
Abstract. The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major d...
The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major determinant...
The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major determinant...
Land plants evolved more than 450 million years ago from a lineage of freshwater charophyte green al...
Land plants evolved more than 450 million years ago from a lineage of freshwater charophyte green al...
It is well known that ethylene regulates a diverse set of developmental and stress-related processes...
It is well known that ethylene regulates a diverse set of developmental and stress-related processes...
Ethylene is an important phytohormone that regulates growth, development and stress responses in lan...
It is well known that ethylene regulates a diverse set of developmental and stress-related processes...
Auxin signaling is central to plant growth and development, yet hardly anything is known about its e...
The evolution of auxin homeostasis mechanisms Ph.D. thesis Roman Skokan, 2021 Abstract The streptoph...
Auxin signaling is central to plant growth and development, yet hardly anything is known about its e...
The patterns of phytohormones distribution, their native function and possible origin of hormonal re...
Ethylene is a key hormone in plant development, mediating plant responses to abiotic environmental s...
Ethylene is a key hormone in plant development, mediating plant responses to abiotic environmental s...
Abstract. The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major d...
The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major determinant...
The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major determinant...
Land plants evolved more than 450 million years ago from a lineage of freshwater charophyte green al...
Land plants evolved more than 450 million years ago from a lineage of freshwater charophyte green al...
It is well known that ethylene regulates a diverse set of developmental and stress-related processes...
It is well known that ethylene regulates a diverse set of developmental and stress-related processes...
Ethylene is an important phytohormone that regulates growth, development and stress responses in lan...
It is well known that ethylene regulates a diverse set of developmental and stress-related processes...
Auxin signaling is central to plant growth and development, yet hardly anything is known about its e...
The evolution of auxin homeostasis mechanisms Ph.D. thesis Roman Skokan, 2021 Abstract The streptoph...
Auxin signaling is central to plant growth and development, yet hardly anything is known about its e...
The patterns of phytohormones distribution, their native function and possible origin of hormonal re...
Ethylene is a key hormone in plant development, mediating plant responses to abiotic environmental s...
Ethylene is a key hormone in plant development, mediating plant responses to abiotic environmental s...
Abstract. The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major d...
The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major determinant...
The plant growth hormones auxin, gibberellins (GAs) and brassinosteroids (BRs) are major determinant...