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ROS in tobacco stigma exudate affect pollen proteome and provoke membrane hyperpolarization

Breygina, M.; Klimenko, E.; Shilov, E.; Mamaeva, A.; Zgoda, V.; Fesenko, I.

2020-04-29 plant biology
10.1101/2020.04.28.065706 bioRxiv
Show abstract

1.ROS are known to be accumulated in stigmas of different species and can possibly perform different functions in plant reproduction. Here we confirm the assumption that they affect pollen by altering ion transport through the plasma membrane; as a more deferred effect, pollen proteome is modified. We detected ROS in stigma exudate, found hyperpolarization in exudate-treated growing pollen tubes and used flow cytometry of pollen protoplasts to compare the effects of fresh exudate and exogenous H2O2 on pollen tube plasmalemma. Exudate causes plasmalemma hyperpolarization similar to the one provoked by H2O2, which is abolished by catalase treatment and ROS quencher MnTMPP. Inhibitory analysis indicates the participation of Ca2+- and K+-conducting channels in the observed hyperpolarization, linking obtained data with previous patch-clamp studies in vitro. For a deeper understanding of pollen response to ROS we analyzed proteome alterations in H2O2-treated pollen grains. We found 50 unique proteins and 20 differently accumulated proteins that are mainly involved in cell metabolism, energetics, protein synthesis and folding. Thus, pollen is getting ready for effective resource usage, construction of cellular components and rapid growth. HighlightsO_LIThe active substance in stigma exudate is H2O2 C_LIO_LIH2O2 causes hyperpolarization mediated by the activation of cation channels. C_LIO_LIH2O2 affects pollen proteome; we found 50 unique proteins. C_LI

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