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Analysis of regulator of g protein signaling (RGS) function in growth, development and pathogenicity of magnaporthe grisea 4

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Figure 38 A -100 -75 a-MBP -50 a-GST B -100 -75 a-Rgs1 -50 -75 a-MBP -50 -37 Figure 39 WT rgs1D Figure 40 Figure 41 Figure 42 _ Figure 43 - Gd + Gd, 1h + Gd, 0h + Gd, 2h + Gd, 0.5h + Gd, 3h _ Figure 44 A WT rgs1D Solvent Solvent 10mM 8-Br-cAMP 10mM 8-Br-cAMP _ B WT rgs1D Figure 45 Appressorium formation on inductive membrane (%) Appressorium formation on Noninductive membrane (%) WT 89 1.5 mscL∆ 92 mscS1∆ 87 2.5 mscS2∆ 91 mscS3∆ 85 mscL∆mscS1∆ 86 mscL∆mscS2∆ 92 1.5 mscL∆mscS3∆ 88 mscS1∆mscS2∆ 84 mscS1∆mscS3∆ 85 mscS2∆mscS3∆ 89 . 39 rgs1D Figure 40 Figure 41 Figure 42 _ Figure 43 _ - Gd + Gd, 1h + Gd, 2h + Gd, 3h + Gd, 0h + Gd, 0.5h Solvent 10mM 8-Br-cAMP 10mM 8-Br-cAMP WT rgs1D _ A Figure 44 B WT rgs1D Solvent Figure 45 . 44 B WT rgs1D Solvent Figure 45 Appressorium formation on inductive membrane (%) Appressorium formation on Non- inductive membrane (%) WT 89 1.5 mscL∆ 92 3 mscS1∆ 87 2.5 mscS2∆. 91 2 mscS3∆ 85 2 mscL∆mscS1∆ 86 3 mscL∆mscS2∆ 92 1.5 mscL∆mscS3∆ 88 1 mscS1∆mscS2∆ 84 2 mscS1∆mscS3∆ 85 2 mscS2∆mscS3∆ 89 1

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