Results 211 to 220 of about 198,768 (248)
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Molecular Biology, 2020
A brief review of current data on the molecular biology of stem cells forming meristems and differentiating into various organs of angiosperms is presented. Different primary and secondary meristems are compared. The interactions of some hormones, regulatory gene networks, and signaling pathways in different types of meristems are described.
A S, Voronina, E S, Pshennikova
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A brief review of current data on the molecular biology of stem cells forming meristems and differentiating into various organs of angiosperms is presented. Different primary and secondary meristems are compared. The interactions of some hormones, regulatory gene networks, and signaling pathways in different types of meristems are described.
A S, Voronina, E S, Pshennikova
+5 more sources
Function and Regulation of microRNA171 in Plant Stem Cell Homeostasis and Developmental Programing [PDF]
Yun Zhou, Han Han
exaly +2 more sources
Initiation and maintenance of plant stem cells in root and shoot apical meristems [PDF]
Xian Sheng Zhang +2 more
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Structural basis for the complex DNA binding behavior of the plant stem cell regulator WUSCHEL [PDF]
Irmgard Sinning +2 more
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Regulation of Division and Differentiation of Plant Stem Cells [PDF]
Philip Benfey, Edith Pierre-Jerome
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Evolution of buffering in a genetic circuit controlling plant stem cell proliferation [PDF]
Zachary Lippman +2 more
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Redox regulation of plant stem cell fate [PDF]
Zhong Zhao +2 more
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Plant stem cells and their applications: special emphasis on their marketed products [PDF]
Srishti Aggarwal +2 more
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Plant Stem Cells in Cosmetics: Current Trends and Future Directions [PDF]
Bozena Michniak-Kohn, Kavita Beri
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Annual Review of Plant Biology, 2012
Multicellular organisms possess pluripotent stem cells to form new organs, replenish the daily loss of cells, or regenerate organs after injury. Stem cells are maintained in specific environments, the stem cell niches, that provide signals to block differentiation.
Aichinger, Ernst +3 more
openaire +3 more sources
Multicellular organisms possess pluripotent stem cells to form new organs, replenish the daily loss of cells, or regenerate organs after injury. Stem cells are maintained in specific environments, the stem cell niches, that provide signals to block differentiation.
Aichinger, Ernst +3 more
openaire +3 more sources

