The inclusive spectrum of the charged particles, ππ0- and ηη-mesons produced in the pp collisions at LHC energies were analyzed by fitting them with exponential functions. It was found the spectra were composed of several pTT regions, which could be characterized by the length of the regions LcKLcK and two free fitting parameters acKacK and bcKbcK. The study of the LcKLcK dependences of the parameters acKacK and bcKbcK and of the energy dependencies of the LcKLcK, acKacK and bcKbcK showed that the regions can be classified into two groups depending on the values of the LcKLcK, acKacK and bcKbcK. The values of the LcKLcK and bcKbcK for the first group don’t depend on colliding energy and the type of the particles (though the values of acKacK increase linearly with energy) whereas the characteristics in the second group of regions show strong dependencies. It was found that the ratio of the length for the ηη-mesons to one for the ππ0-mesons is approximately equal to the ratio of their mass: 〈Lη〉:〈Lπ0〉≅mη:mπ0⟨Lη⟩:⟨Lπ0⟩≅mη:mπ0. Assuming that the values of the LcKLcK are directly proportional to the string tension the result could be considered as evidence in favor of parton string fragmentation dynamics. The increase in the lengths for the ηη-mesons’ regions is accompanied by an increase of the values for the parameter bckbck. It can mean that the ηη-mesons were produced at smaller values of αSαS compared with that for ππ0-mesons. The results show that for the first group of regions the lengths of the regions are ∼∼3–5 times greater than the lengths of neighboring, lower pTT regions. For the second group of regions the lengths of the regions are ∼∼1–2 times greater than the lengths of neighboring lower pTT region. In the framework of the string fragmentation and hadronization dynamics, this could mean that the particles in the group II of regions are produced through previous-generation strings decays into ∼∼3–5 strings while those in group IIII originate from previous-generation strings decays into ∼∼2 strings.