How mechanical and biological processes are coordinated across cells, tissues, and organs to produce complex traits is a key question in biology. Cardamine hirsuta, a relative of Arabidopsis thaliana, uses an explosive mechanism to disperse its seeds. We show that this trait evolved through morphomechanical innovations at different spatial scales. At the organ scale, tension within the fruit wall generates the elastic energy required for explosion. This tension is produced by differential contraction of fruit wall tissues through an active mechanism involving turgor pressure, cell geometry, and wall properties of the epidermis. Explosive release of this tension is controlled at the cellular scale by asymmetric lignin deposition within endoc...
Adaptations for dispersal are ubiquitous in nature. Plants have evolved many and varied ways to disp...
The shape and function of plant cells are often highly interdependent. The puzzle-shaped cells that ...
The shape and function of plant cells are often highly interdependent. The puzzle-shaped cells that ...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
SummaryHow mechanical and biological processes are coordinated across cells, tissues, and organs to ...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
AbstractAn intricate arrangement of different cell types is required for the spring-loaded mechanism...
Abstract: Premise of the study: Seed dispersal performance is an essential component of plant fitne...
Dispersal is a key trait across biology. Within plants, a variety of explosive seed dispersal mechan...
Dispersal is a key trait across biology. Within plants, a variety of explosive seed dispersal mechan...
Plants have evolved different mechanisms to disperse from parent plants and improve germination to s...
Plants are dynamic. They adjust their shape for feeding, defence and reproduction. Such plant moveme...
Adaptations for dispersal are ubiquitous in nature. Plants have evolved many and varied ways to disp...
The shape and function of plant cells are often highly interdependent. The puzzle-shaped cells that ...
The shape and function of plant cells are often highly interdependent. The puzzle-shaped cells that ...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
SummaryHow mechanical and biological processes are coordinated across cells, tissues, and organs to ...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
How mechanical and biological processes are coordinated across cells, tissues, and organs to produce...
AbstractAn intricate arrangement of different cell types is required for the spring-loaded mechanism...
Abstract: Premise of the study: Seed dispersal performance is an essential component of plant fitne...
Dispersal is a key trait across biology. Within plants, a variety of explosive seed dispersal mechan...
Dispersal is a key trait across biology. Within plants, a variety of explosive seed dispersal mechan...
Plants have evolved different mechanisms to disperse from parent plants and improve germination to s...
Plants are dynamic. They adjust their shape for feeding, defence and reproduction. Such plant moveme...
Adaptations for dispersal are ubiquitous in nature. Plants have evolved many and varied ways to disp...
The shape and function of plant cells are often highly interdependent. The puzzle-shaped cells that ...
The shape and function of plant cells are often highly interdependent. The puzzle-shaped cells that ...