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Two candidate mechanisms for growth-induced oscillations are proposed: the transition of tip membrane into shank membrane, and growth-induced changes in kinetic parameters of ion transporters.
Further analysis of the model relating to the coupling between pollen tube growth rate and ion dynamics reveals two possible mechanisms for the growth-induced oscillations: one is due to the transition of tip membrane into shank membrane; the other is due to the effects of growth rate on the kinetic parameters of the transporters.
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This phase is characterized by the early-stage slow outgrowth from the bulge to form a swelling of up to about 20 40 µm in length (transition to tip growth) and the subsequent rapid elongation of hairs (tip growth).
Here, we follow this parallel in a consideration of five partially overlapping aspects: (1) the transition from tip growth of an aerial hypha to sporulation septation; (2) the FtsZ-centred divisome; (3) partitioning of chromosomes into spores; (4) cell wall remodelling and thickening; and (5) spore germination.
The length of the villi was measured on well-oriented sections from the point of crypt-villus transition to the tip of the villus.
These are resulted from plastic deformation mode transition of the ferrite at the tip of the crack induced by the graphite debonding: slip band at 25 °C and 400 °C to grain boundary sliding at 500 °C.
We clearly showed that TIP selectively enhances emission peaks related to vibronic transitions that are energy-matched to the resonance wavelength of TIP.
It moved towards the distal end of the old flagellum during transitions to base-to-tip movement of the new flagellum and towards the proximal end during transitions to tip-to-base movement (Movie S3).
This observation was further substantiated by the sharp differences in transition of divisional phases, determined by phase indices between MC and mutant leaf-tip cells.
(C) Force to the power of 2/3 versus separation approach curve, showing distinct transition from the tip only sensing the fibril (part I) to the part where the tip is sensing the mica under the fibril (part II) until the part where the tip is only pressing on the mica (part III).
An armed transition of power?
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