Results 221 to 230 of about 20,306 (251)
Some of the next articles are maybe not open access.
Botanical Gazette, 1936
In the members of the monocotyledons investigated there exists a so-called "persistent" hirsuteness of practically the whole root system. The constituent cutinized hairs have been found to be of secondary cortical origin, superseding the primary epidermal ones. It seems logical that this condition may be associated with the lack of secondary thickening,
openaire +1 more source
In the members of the monocotyledons investigated there exists a so-called "persistent" hirsuteness of practically the whole root system. The constituent cutinized hairs have been found to be of secondary cortical origin, superseding the primary epidermal ones. It seems logical that this condition may be associated with the lack of secondary thickening,
openaire +1 more source
Regulation and functional diversification of root hairs
Seminars in Cell & Developmental Biology, 2018Root hairs result from the polar outgrowth of root epidermis cells in vascular plants. Root hair development processes are regulated by intrinsic genetic programs, which are flexibly modulated by environmental conditions, such as nutrient availability. Basic programs for root hair development were present in early land plants. Subsequently, some plants
Songkui, Cui +3 more
openaire +2 more sources
Science, 2008
DEVELOPMENT Adult hair follicles sustain repeated cycles of hair loss and regrowth. Stem cells reside within a small niche, called the bulge, located in the upper part of the hair follicle. These stem cells are responsible for driving this cycle of growth and can repopulate follicles and surrounding epidermis damaged by wounding.
openaire +1 more source
DEVELOPMENT Adult hair follicles sustain repeated cycles of hair loss and regrowth. Stem cells reside within a small niche, called the bulge, located in the upper part of the hair follicle. These stem cells are responsible for driving this cycle of growth and can repopulate follicles and surrounding epidermis damaged by wounding.
openaire +1 more source
The secret of increased (root) hair density
Nature Reviews Molecular Cell Biology, 2020A signalling pathway comprising TMO5–LHW and cytokinin controls plant adaptation to low-phosphate levels in the soil by increasing root hair density.
openaire +2 more sources
2008
In this review, the value of root hairs as a model system for a broad range of electrophysiological experiments is highlighted by an introductory case study of their use for in situ measurements of vacuolar electrophysiology. Then, the basic tenets of electrophysiological measurements are presented: the electrical properties of the cell and how they ...
openaire +1 more source
In this review, the value of root hairs as a model system for a broad range of electrophysiological experiments is highlighted by an introductory case study of their use for in situ measurements of vacuolar electrophysiology. Then, the basic tenets of electrophysiological measurements are presented: the electrical properties of the cell and how they ...
openaire +1 more source
2000
During growth and development of the plant root, root hairs often play a key role in nodulation, and water and ion uptake. Root hairs are not an obligatory cell type on the root surface. However, when present, they have highly active respiration (Connoly and Berlyn 1996), and are known to preferentially express a number of transport proteins, such as ...
openaire +1 more source
During growth and development of the plant root, root hairs often play a key role in nodulation, and water and ion uptake. Root hairs are not an obligatory cell type on the root surface. However, when present, they have highly active respiration (Connoly and Berlyn 1996), and are known to preferentially express a number of transport proteins, such as ...
openaire +1 more source
Root hairs vs. trichomes: Not everyone is straight!
Current Opinion in Plant Biology, 2021Alexander Bucksch, Ankita Roy
exaly
2004
The cytoskeleton is a dynamic filamentous structure composed of at least actin and microtubule networks. Actin and microtubules are no different structurally from their animal and fungal counterparts. However, the strategies of cell differentiation and development in plants require this network to respond appropriately to plant-specific developmental ...
Grierson, C., Ketelaar, T.
openaire +1 more source
The cytoskeleton is a dynamic filamentous structure composed of at least actin and microtubule networks. Actin and microtubules are no different structurally from their animal and fungal counterparts. However, the strategies of cell differentiation and development in plants require this network to respond appropriately to plant-specific developmental ...
Grierson, C., Ketelaar, T.
openaire +1 more source

