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  2. Membrane transport - Wikipedia

    en.wikipedia.org/wiki/Membrane_transport

    The discovery of the existence of this type of transporter protein came from the study of the kinetics of cross-membrane molecule transport. For certain solutes it was noted that the transport velocity reached a plateau at a particular concentration above which there was no significant increase in uptake rate, indicating a log curve type response.

  3. Xylem - Wikipedia

    en.wikipedia.org/wiki/Xylem

    Early plants sucked water between the walls of their cells, then evolved the ability to control water loss (and CO 2 acquisition) through the use of stomata. Specialized water transport tissues soon evolved in the form of hydroids, tracheids, then secondary xylem, followed by an endodermis and ultimately vessels. [33]

  4. Anion exchanger family - Wikipedia

    en.wikipedia.org/wiki/Anion_Exchanger_Family

    Plants and yeast have anion transporters that in both the pericycle cells of plants and the plasma membrane of yeast cells export borate or boric acid (pKa = 9.2). [5] In A. thaliana , boron is exported from pericycle cells into the root stellar apoplasm against a concentration gradient for uptake into the shoots.

  5. Cotransporter - Wikipedia

    en.wikipedia.org/wiki/Cotransporter

    In plants, sucrose transport is distributed throughout the plant by the proton-pump where the pump, as discussed above, creates a gradient of protons so that there are many more on one side of the membrane than the other. As the protons diffuse back across the membrane, the free energy liberated by this diffusion is used to co-transport sucrose ...

  6. Active transport - Wikipedia

    en.wikipedia.org/wiki/Active_transport

    Active transport often takes place in the internal lining of the small intestine. Plants need to absorb mineral salts from the soil or other sources, but these salts exist in very dilute solution. Active transport enables these cells to take up salts from this dilute solution against the direction of the concentration gradient.

  7. Polar auxin transport - Wikipedia

    en.wikipedia.org/wiki/Polar_auxin_transport

    Polar auxin transport (PAT) is directional and active flow of auxin molecules through the plant tissues. The flow of auxin molecules through the neighboring cells is driven by carriers (type of membrane transport protein) in the cell-to-cell fashion (from one cell to other cell and then to the next one) and the direction of the flow is determined by the localization of the carriers on the ...

  8. Symporter - Wikipedia

    en.wikipedia.org/wiki/Symporter

    Comparison of transport proteins. A symporter is an integral membrane protein that is involved in the transport of two (or more) different molecules across the cell membrane in the same direction. The symporter works in the plasma membrane and molecules are transported across the cell membrane at the same time, and is, therefore, a type of ...

  9. Magnesium transporter - Wikipedia

    en.wikipedia.org/wiki/Magnesium_transporter

    The current knowledge of the molecular mechanisms for Mg 2+ transport in plants is very limited, with only three publications reporting a molecular basis for Mg 2+ transport in plants. [13] [14] [15] However, the importance of Mg 2+ to plants has been well described, and physiological and ecophysiological studies about the effects of Mg 2+ are ...