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  1. May 10, 2024 · This study supports the hypothesis that xylan modification generates intrinsic signals and evokes novel pathways regulating tree growth and secondary wall biosynthesis, including xylan glucuronidation and acetylation machinery.

  2. May 8, 2024 · Our findings reveal the crucial role of cell wall remodeling in promoting callus formation, laying the groundwork for innovative strategies in callus-based organ regeneration. This has significant implications for the development of plant regeneration technology, particularly for rare or economically valuable tree species.

    • Geng Zhang
  3. May 9, 2024 · cell cycle, the ordered sequence of events that occur in a cell in preparation for cell division. The cell cycle is a four-stage process in which the cell increases in size ( gap 1, or G1, stage), copies its DNA ( synthesis, or S, stage), prepares to divide ( gap 2, or G2, stage), and divides ( mitosis, or M, stage).

    • The Editors of Encyclopaedia Britannica
  4. May 20, 2024 · Biology document from Mardan College of Physical Education, Mardan, 8 pages, Chapter 5 - Cell Metabolism: Synthesis and Degradation of Biological Molecules - Study Guide for BIOL&160 Definitions 5.1 1. ATP (Adenosine triphosphate) - "Energy currency" molecule in cells. 2. Redox reaction - Redox reactions is a term used for oxidati

  5. May 2, 2024 · The cascade begins with l -lactate oxidation by the NAD + -dependent l -lactate dehydrogenase ( l -LDH) to produce pyruvate and NADH. NADH is then consumed in the reductive amination of α-ketoglutarate (externally added) by NADH-dependent glutamate dehydrogenase (GDH) using NH 4+ to yield Glu.

  6. May 3, 2024 · Here the authors show that DNA translesion synthesis affects primordial germ cell DNA demethylation and plays a role in the development of embryonic germ cells.

  7. May 20, 2024 · SCWs are largely composed of cellulose, lignin, and hemicellulose, the synthesis of which is regulated by various biological activities including transcriptional regulation, protein phosphorylation, and enzyme polymerization. Understanding the regulation of SCW biosynthesis is fundamental to understanding plant development and adaptation.

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