Supplementary Materials

Probing strigolactone receptors in Striga hermonthica with fluorescence

Yuichiro Tsuchiya, Masahiko Yoshimura, Yoshikatsu Sato, Keiko Kuwata, Shigeo Toh, Duncan Holbrook-Smith, Hua Zhang, Peter McCourt, Kenichiro Itami, Toshinori Kinoshita, Shinya Hagihara

Materials/Methods, Supplementary Text, Tables, Figures, and/or References

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  • Materials and Methods
  • Figs. S1 to S10
  • Table S1
  • Captions for Movies S1 to S8

Images, Video, and Other Other Media

Movie S1
Conditioned Striga seed treated with YLGW. Time after YLGW treatment is indicated at the upper left corner of the movie. Left; bright field, Center; fluorescence, Right; heat map representation with the scale of grey value. Selected frames and the kymograph image are shown in Figure 3A and 3B (DMSO), respectively. Bar = 100 μm.
Movie S2
Conditioned Striga seed treated with GR24. Time after GR24 treatment is indicated at the upper left corner of the movie. The kymograph image is shown in Supplemental figure 8C. Bar = 100 μm.
Movie S3
Non-conditioned Striga seed treated with YLGW. Time after YLGW treatment is indicated at the upper left corner of the movie. The kymograph image is shown in Supplemental figure 8D. Bar = 100 μm.
Movie S4
Arabidopsis seed treated with YLGW. Time after YLGW treatment is indicated at the upper left corner of the movie. Bar = 100 μm.
Movie S5
Phtheirospermum japonicum seed treated with YLGW. Time after YLGW treatment is indicated at the upper left corner of the movie. Bar = 100 μm.
Movie S6
Conditioned Striga seed treated with YLGW and AVG. Time after YLGW and AVG treatment is indicated at the upper left corner of the movie. The kymograph image is shown in Figure 3C (AVG). Bar = 100 μm.
Movie S7
Conditioned Striga seed treated with YLGW and AVG by high gain. Corresponding to Movie S4 with increased gain.
Movie S8
Conditioned Striga seed treated with YLGW and CHX. Time after YLGW and CHX treatment is indicated at the upper left corner of the movie. The kymograph image is shown in Figure 3C (CHX). Bar = 100 μm.