taxonID	type	format	identifier	references	title	description	created	creator	contributor	publisher	audience	source	license	rightsHolder	datasetID
09428AF036655F5D99682C87DD4066DE.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560238	https://doi.org/10.3897/mycokeys.129.174720.figure3	Figure 3. Basidiomata of Leucoinocybe danxiashanensis. A. Collection GDGM 80114 (holotype); B. Collection GDGM 80184. Scale bars: 10 mm (A, B).	Figure 3. Basidiomata of Leucoinocybe danxiashanensis. A. Collection GDGM 80114 (holotype); B. Collection GDGM 80184. Scale bars: 10 mm (A, B).	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
09428AF036655F5D99682C87DD4066DE.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560239	https://doi.org/10.3897/mycokeys.129.174720.figure4	Figure 4. Microscopic features of Leucoinocybe danxiashanensis (GDGM 80114). A. Basidiospores; B. Basidia; C, D. Cheilocystidia; E. Pileocystidia of pileipellis; F. Caulocystidia. The arrows indicate the cystidia. Scale bars: 10 μm (A, B); 20 μm (C – F).	Figure 4. Microscopic features of Leucoinocybe danxiashanensis (GDGM 80114). A. Basidiospores; B. Basidia; C, D. Cheilocystidia; E. Pileocystidia of pileipellis; F. Caulocystidia. The arrows indicate the cystidia. Scale bars: 10 μm (A, B); 20 μm (C – F).	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
09428AF036655F5D99682C87DD4066DE.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560240	https://doi.org/10.3897/mycokeys.129.174720.figure5	Figure 5. Line drawings of Leucoinocybe danxiashanensis (GDGM 80114). A. Basidiospores; B. Basidia; C. Cheilocystidia; D. Pileipellis; E. Stipitipelli. Scale bars: 10 μm (A, B); 20 μm (C – E).	Figure 5. Line drawings of Leucoinocybe danxiashanensis (GDGM 80114). A. Basidiospores; B. Basidia; C. Cheilocystidia; D. Pileipellis; E. Stipitipelli. Scale bars: 10 μm (A, B); 20 μm (C – E).	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
09428AF036655F5D99682C87DD4066DE.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560236	https://doi.org/10.3897/mycokeys.129.174720.figure1	Figure 1. Maximum Likelihood analysis of the genus Leucoinocybe based on concatenated nrITS-LSU sequences. Sequences of Mycena purpureofusca were selected as outgroups. Nodes were annotated with ML bootstrap ≥ 75 % and BPP ≥ 0.95. Holotypes are indicated as HT, and epitypes as ET. New sequences generated in this study were shown in bold.	Figure 1. Maximum Likelihood analysis of the genus Leucoinocybe based on concatenated nrITS-LSU sequences. Sequences of Mycena purpureofusca were selected as outgroups. Nodes were annotated with ML bootstrap ≥ 75 % and BPP ≥ 0.95. Holotypes are indicated as HT, and epitypes as ET. New sequences generated in this study were shown in bold.	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
09428AF036655F5D99682C87DD4066DE.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560237	https://doi.org/10.3897/mycokeys.129.174720.figure2	Figure 2. Maximum Likelihood analysis of the genus Leucoinocybe based on nrITS sequences. Sequences of Mycena purpureofusca were selected as outgroup. Nodes were annotated with ML bootstrap ≥ 75 % and BPP ≥ 0.95. Holotypes are indicated as HT, and epitypes as ET. New sequences generated in this study were shown in bold.	Figure 2. Maximum Likelihood analysis of the genus Leucoinocybe based on nrITS sequences. Sequences of Mycena purpureofusca were selected as outgroup. Nodes were annotated with ML bootstrap ≥ 75 % and BPP ≥ 0.95. Holotypes are indicated as HT, and epitypes as ET. New sequences generated in this study were shown in bold.	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
38BDA634E8B351139996526ACAC2CE1A.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560241	https://doi.org/10.3897/mycokeys.129.174720.figure6	Figure 6. Basidiomata of Leucoinocybe haizhuensis. A, B. Collection GDGM 102360 (holotype); C. Collection GDGM 95340; D. Collection GDGM 99420. Scale bars: 10 mm (A – D).	Figure 6. Basidiomata of Leucoinocybe haizhuensis. A, B. Collection GDGM 102360 (holotype); C. Collection GDGM 95340; D. Collection GDGM 99420. Scale bars: 10 mm (A – D).	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
38BDA634E8B351139996526ACAC2CE1A.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560242	https://doi.org/10.3897/mycokeys.129.174720.figure7	Figure 7. Microscopic features of Leucoinocybe haizhuensis (GDGM 102360). A. Basidiospores; B. Basidia; C, D. Cheilocystidia; E. Pileocystidia of pileipellis; F. Caulocystidia. The arrows indicate cystidia. Scale bars: 10 μm (A – F).	Figure 7. Microscopic features of Leucoinocybe haizhuensis (GDGM 102360). A. Basidiospores; B. Basidia; C, D. Cheilocystidia; E. Pileocystidia of pileipellis; F. Caulocystidia. The arrows indicate cystidia. Scale bars: 10 μm (A – F).	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
38BDA634E8B351139996526ACAC2CE1A.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560243	https://doi.org/10.3897/mycokeys.129.174720.figure8	Figure 8. Line drawings of Leucoinocybe haizhuensis (GDGM 102360). A. Basidiospores; B. Basidia; C. Cheilocystidia; D. Pileipellis; E. Stipitipellis. Scale bars: 10 µm (A – E).	Figure 8. Line drawings of Leucoinocybe haizhuensis (GDGM 102360). A. Basidiospores; B. Basidia; C. Cheilocystidia; D. Pileipellis; E. Stipitipellis. Scale bars: 10 µm (A – E).	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
38BDA634E8B351139996526ACAC2CE1A.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560236	https://doi.org/10.3897/mycokeys.129.174720.figure1	Figure 1. Maximum Likelihood analysis of the genus Leucoinocybe based on concatenated nrITS-LSU sequences. Sequences of Mycena purpureofusca were selected as outgroups. Nodes were annotated with ML bootstrap ≥ 75 % and BPP ≥ 0.95. Holotypes are indicated as HT, and epitypes as ET. New sequences generated in this study were shown in bold.	Figure 1. Maximum Likelihood analysis of the genus Leucoinocybe based on concatenated nrITS-LSU sequences. Sequences of Mycena purpureofusca were selected as outgroups. Nodes were annotated with ML bootstrap ≥ 75 % and BPP ≥ 0.95. Holotypes are indicated as HT, and epitypes as ET. New sequences generated in this study were shown in bold.	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
38BDA634E8B351139996526ACAC2CE1A.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1560237	https://doi.org/10.3897/mycokeys.129.174720.figure2	Figure 2. Maximum Likelihood analysis of the genus Leucoinocybe based on nrITS sequences. Sequences of Mycena purpureofusca were selected as outgroup. Nodes were annotated with ML bootstrap ≥ 75 % and BPP ≥ 0.95. Holotypes are indicated as HT, and epitypes as ET. New sequences generated in this study were shown in bold.	Figure 2. Maximum Likelihood analysis of the genus Leucoinocybe based on nrITS sequences. Sequences of Mycena purpureofusca were selected as outgroup. Nodes were annotated with ML bootstrap ≥ 75 % and BPP ≥ 0.95. Holotypes are indicated as HT, and epitypes as ET. New sequences generated in this study were shown in bold.	2026-03-12	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming		Zenodo	biologists	Xia, Wen-Xiao;Wang, Chao-Qun;Chen, Xiang-Lian;Sun, Rui-Hua;Fan, Cun-Xiang;Li, Tai-Hui;Deng, Wang-Qiu;Yue, Hai-Mei;Zhang, Ming			
