#NEXUS [!This data set was downloaded from TreeBASE, a relational database of phylogenetic knowledge. TreeBASE has been supported by the NSF, Harvard University, Yale University, SDSC and UC Davis. Please do not remove this acknowledgment from the Nexus file. Generated on April 19, 2024; 14:18 GMT TreeBASE (cc) 1994-2008 Study reference: Simões F.L., Ferrari A., & Grazia J. 2012. Is Elsiella Froeschner, 1981 a valid genus? (Hemiptera: Heteroptera: Pentatomidae: Pentatominae). Zootaxa, . TreeBASE Study URI: http://purl.org/phylo/treebase/phylows/study/TB2:S12443] BEGIN TAXA; TITLE Taxa1; DIMENSIONS NTAX=22; TAXLABELS Elsiella_plana Neotibilis Serdia_apicicornis Serdia_beckerae Serdia_bicolor Serdia_bihamulata Serdia_calligera Serdia_concolor Serdia_costalis Serdia_delphis Serdia_indistincta Serdia_inspersipes Serdia_limbatipennis Serdia_lobata Serdia_maculata Serdia_maxima Serdia_quadridens Serdia_robusta Serdia_rotundicornis Serdia_ruckesi Similliserdia Tibilis ; END; BEGIN CHARACTERS; [! TreeBASE Matrix URI: http://purl.org/phylo/treebase/phylows/matrix/TB2:M11906] TITLE Elsiella_Morphology; LINK TAXA = Taxa1; DIMENSIONS NCHAR=40; FORMAT DATATYPE=Standard SYMBOLS= "0 1 2 3" MISSING=? GAP= -; CHARSTATELABELS 1 Head_before_eyes / triangular quadrangular, 2 Apex_of_juga_before_clypeus / slightly_overlapping juxtaposed, 3 Second_antennal_segment / '1/2 (or more) of third segments length' '1/3 (or less) of third segments length', 4 Longitudinal_dorsal_sulcus_of_the_third_antennal_segment / absent present_, 5 Fourth_antennal_segment / cylindrical flattened, 6 First_segment_of_rostrum / not_entirely_contained_in_bucculae entirely_contained_in_bucculae, 7 Anterolateral_margins_of_pronotum / smooth crenulated, 8 Humeral_angles / not_produced produced, 9 Callus_behind_the_fovea_of_scutellar_basal_angles / absent present, 10 Margins_of_scutellar_apex / not_reflected reflected, 11 Scutellar_apex / without_black_maculae with_black_maculae, 12 Peritreme / not_in_a_spout in_a_spout, 13 Black_spots_on_connexival_segments / absent present_, 14 Median_spine_on_third_abdominal_segment / acute_angle right_or_obtuse_angle, 15 Ventral_abdominal_calloused_maculae / absent present, 16 Black_spots_on_median_seventh_urosternites_in_male / absent present, 17 Body_shape / round oblong, 18 Bristles_on_ventral_wall_near_to_posterolateral_angles_of_pygophore / absent present, 19 Apical_processes_of_dorsal_rim_of_pygophore / absent present, 20 Median_third_processes_of_dorsal_rim_of_pygophore / absent present, 21 Superior_processes_of_dorsal_rim_of_pygophore / absent present, 22 Ventral_rim_of_pygophore / not_dorsally_projected dorsally_projected, 23 Superior_ridge_of_ventral_rim_of_pygophore / without_projection with_1_projection 'with 1+1 projections', 24 Dorsal_rim_of_pygophore / without_grooves with_grooves, 25 Parameres / 'Pattern 1, small parameres, subquadrangular with one or two finger like projections facing the same direction' 'Pattern 2, thin parameres with a long and curved projection' 'Pattern 3, longer, subcylindrical parameres with one or two projections facing each other or in opposite directions' 'Pattern 4, thicker parameres, laterally depressed with a perpendicular projection in its apex', 26 Lateral_expansions_of_phallotheca / present absent, 27 Opening_of_phallotheca / posterior dorsal, 28 Vesica / long_tube short_tube_or_obsolete, 29 Vesica_processes / 'flat, expanded' subcylindrical, 30 Ductus_seminis_distalis_opening / circular_or_oblong bifid_or_in_a_spout, 31 Posterior_margins_of_laterotergites_8 / almost_straight__with_a_small_spine 'acute, posteriorly projected', 32 Laterotergites_9 / reaching_or_slightly_surpassing_the_dorsal_band_uniting_laterotergites_8 well_surpassing_the_dorsal_band, 33 Apex_of_laterotergites_9 / ogival truncate, 34 Maximum_length_of_gonocoxites_8 / with_double_the_size_of_laterotergites_9 subequal_to_laterotergites_9, 35 Lateral_angles_of_gonocoxites_8 / without_spine with_spine, 36 Chitinellipsen_placement_in_relation_to_the_thickening_of_the_vaginal_intima / lateral posterior, 37 Thickening_of_the_vaginal_intima / anteriorly_projected ventrally_projected, 38 Thickening_of_the_vaginal_intima / partially_sclerotized entirely_sclerotized, 39 Pars_intermedialis / thin globose, 40 Capsula_seminalis / globose ogival, ; MATRIX [ 10 20 30 40] [ . . . .] Elsiella_plana 010000000001010?100001201?????00010????? Neotibilis 0000000010000000000000000000000000000000 Serdia_apicicornis 0110011101111101100010010111010001001011 Serdia_beckerae 0110010000110000010110201111111101001000 Serdia_bicolor 0111011000110100100110012111010001001010 Serdia_bihamulata 0110110000110000000011202111010001001000 Serdia_calligera 1011110011110010001110013111011111101010 Serdia_concolor 0010010000110000001011100010000000011100 Serdia_costalis 1011110011110010100110013?????11010????? Serdia_delphis 01100100000100001101102011111111010????? Serdia_indistincta 0010010000110000001011100010000000011100 Serdia_inspersipes 0110011001110100000110012111000000001010 Serdia_limbatipennis 0110110000110100100111012111010001001010 Serdia_lobata 0111111101110100100010012111011101001010 Serdia_maculata 1011110011110010101110013111011111101010 Serdia_maxima 0110011101111101100110012111011101001011 Serdia_quadridens 0110011000110000110110201111111101001000 Serdia_robusta 0110011001110100000110012?????0000001010 Serdia_rotundicornis 0110110100110000100010012111010000001011 Serdia_ruckesi 0110010000010000110110001111111101001000 Similliserdia 0010010000010000010000200010000000000000 Tibilis 0100000000000000100000000100001101000000 ; END; BEGIN TREES; TITLE Results; LINK TAXA = Taxa1; TRANSLATE 1 Tibilis, 2 Neotibilis, 3 Similliserdia, 4 Serdia_concolor, 5 Serdia_indistincta, 6 Serdia_beckerae, 7 Serdia_quadridens, 8 Serdia_delphis, 9 Serdia_ruckesi, 10 Serdia_bihamulata, 11 Serdia_rotundicornis, 12 Serdia_limbatipennis, 13 Serdia_bicolor, 14 Serdia_inspersipes, 15 Serdia_robusta, 16 Serdia_apicicornis, 17 Serdia_maxima, 18 Serdia_lobata, 19 Serdia_costalis, 20 Serdia_calligera, 21 Serdia_maculata, 22 Elsiella_plana; TREE MPT_1 = [&R] (1,(22,(2,(3,((4,5),((6,(7,(8,9))),(10,(11,((18,(19,(20,21))),(12,(13,((14,15),(16,17))))))))))))); TREE Consensus = [&R] (1,(22,(2,(3,((4,5),((6,(7,(8,9))),(10,(11,12,13,(14,15),(16,17),(18,(19,(20,21))))))))))); TREE MPT_7 = [&R] (1,(22,(2,(3,((4,5),((6,(7,(8,9))),(10,((18,(19,(20,21))),(11,(12,(13,((14,15),(16,17))))))))))))); TREE MPT_6 = [&R] (1,(22,(2,(3,((4,5),((6,(7,(8,9))),(10,(11,(12,((18,(19,(20,21))),(13,((14,15),(16,17))))))))))))); TREE MPT_5 = [&R] (1,(22,(2,(3,((4,5),((6,(7,(8,9))),(10,(11,((13,((14,15),(16,17))),(12,(18,(19,(20,21))))))))))))); TREE MPT_4 = [&R] (1,(22,(2,(3,((4,5),((6,(7,(8,9))),(10,(11,(12,((13,(18,(19,(20,21)))),((14,15),(16,17)))))))))))); TREE MPT_3 = [&R] (1,(22,(2,(3,((4,5),((6,(7,(8,9))),(10,(11,(12,(13,((18,(19,(20,21))),((14,15),(16,17))))))))))))); TREE MPT_2 = [&R] (1,(22,(2,(3,((4,5),((6,(7,(8,9))),(10,(11,(12,((18,(19,(20,21))),((16,17),(13,(14,15))))))))))))); END;