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  1. Biomolecular condensates have emerged as one of the important focuses of recent research on plant biology. The study of these condensates often begins with evidence gathered from imaging or bioinformatics analyses.

  2. 23 Μαΐ 2024 · Plant cells share a number of biological condensates with cells from other eukaryotes. There are, however, a growing number of plant-specific condensates that support different cellular functions. Condensates operating in different plant tissues contribute to aspects of development and stress responses. To view this SnapShot, open or download ...

  3. 1 Οκτ 2024 · New cases for revealing condensates from the perspective of plant cell structure. •. Phase separation is a conserved mechanism in plant growth. •. Condensates organize networks that regulate plant behavior. •. Phase behavior interacting with the plasma membrane is of great research value. •.

  4. Plant cells contain biomolecular condensates that are common in all eukaryotes.3 These include the nucleoli, Cajal bodies, nuclear speckles, DNA damage foci, stress gran-ules, and processing bodies. The principles of assembly and constituents of these condensates were largely deduced from animals.

  5. 14 Οκτ 2024 · Plant roots, like animal intestines, provide extensive surfaces that facilitate active and selective nutrients accumulation 1.However, in plants, processes analogous to those occurring within ...

  6. A fermionic condensate (or Fermi–Dirac condensate) is a superfluid phase formed by fermionic particles at low temperatures. It is closely related to the Bose–Einstein condensate, a superfluid phase formed by bosonic atoms under similar conditions.

  7. 21 Σεπ 2020 · Abstract. The ground state of a fermionic condensate is well protected against perturbations in the presence of an isotropic gap. Regions of gap suppression, surfaces and vortex cores which...

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