Phytohormones as well as temporal and spatial regulation of the cell cycle play a key role in plant development. Here, we investigated the function and regulation of an alfalfa (Medicago sativa) A2-type cyclin in three distinct root developmental programs: in primary and secondary root development, nodule development, and nematode-elicited gall formation. Using transgenic plants carrying the Medsa;cycA2;2 promoter-beta-glucuronidase gene fusion, in combination with other techniques, cycA2;2 expression was localized in meristems and proliferating cells in the lateral root and nodule primordia. Rapid induction of cycA2;2 by Nod factors demonstrated that this gene is implicated in cell cycle activation of differentiated cells developing to nod...
Root-knot nematodes (RKNs; Meloidogyne spp.) induce new post-embryogenic organs within the roots (ga...
Plants associate with a wide range of mutualistic and parasitic biotrophic organisms. Here, we inves...
The fact that auxin induces root formation has been known for more than half a century. However, des...
The associations of cyclins with highly conserved cyclin-dependent kinases are key events in the reg...
In multicellular organisms, morphogenesis relies on a strict coordination in time and space of cell ...
Cell division in eukaryotes is mediated by the action of the mitosis promoting factor, which is comp...
Cell division in eukaryotes is mediated by the action of the mitosis promoting factor, which is comp...
Cell division in eukaryotes is mediated by the action of the mitosis promoting factor, which is comp...
Cyclins are key regulators of the cell cycle in all eukaryotes. In alfalfa, we have previously isola...
Cyclins are key regulators of the cell cycle in all eukaryotes. In alfalfa, we have previously isola...
The essential role of auxin for cell proliferation in plants is well known. Both auxin signaling and...
Mitotic progression is timely regulated by the accumulation and degradation of A- and B-type cyclins...
Plant hormones, especially auxin, cytokinin, and ethylene, have long been implicated in nodule devel...
Research on the ontogeny of feeding sites induced by sedentary plant-endoparasitic nematodes has alr...
Sedentary plant endoparasitic (root-knot and cyst) nematodes induce the formation of their feeding s...
Root-knot nematodes (RKNs; Meloidogyne spp.) induce new post-embryogenic organs within the roots (ga...
Plants associate with a wide range of mutualistic and parasitic biotrophic organisms. Here, we inves...
The fact that auxin induces root formation has been known for more than half a century. However, des...
The associations of cyclins with highly conserved cyclin-dependent kinases are key events in the reg...
In multicellular organisms, morphogenesis relies on a strict coordination in time and space of cell ...
Cell division in eukaryotes is mediated by the action of the mitosis promoting factor, which is comp...
Cell division in eukaryotes is mediated by the action of the mitosis promoting factor, which is comp...
Cell division in eukaryotes is mediated by the action of the mitosis promoting factor, which is comp...
Cyclins are key regulators of the cell cycle in all eukaryotes. In alfalfa, we have previously isola...
Cyclins are key regulators of the cell cycle in all eukaryotes. In alfalfa, we have previously isola...
The essential role of auxin for cell proliferation in plants is well known. Both auxin signaling and...
Mitotic progression is timely regulated by the accumulation and degradation of A- and B-type cyclins...
Plant hormones, especially auxin, cytokinin, and ethylene, have long been implicated in nodule devel...
Research on the ontogeny of feeding sites induced by sedentary plant-endoparasitic nematodes has alr...
Sedentary plant endoparasitic (root-knot and cyst) nematodes induce the formation of their feeding s...
Root-knot nematodes (RKNs; Meloidogyne spp.) induce new post-embryogenic organs within the roots (ga...
Plants associate with a wide range of mutualistic and parasitic biotrophic organisms. Here, we inves...
The fact that auxin induces root formation has been known for more than half a century. However, des...