[1]

Yu Y. 2020. CYCLOIDEA3 is targeted by disparate transcription factors in patterning flowers in Gerbera. Plant Physiology 184:1214−1216

doi: 10.1104/pp.20.01315
[2]

Zhang T, Cieslak M, Owens A, Wang F, Broholm SK, et al. 2021. Phyllotactic patterning of Gerbera flower heads. Proceedings of the National Academy of Sciences of the United States of America 118(13):e2016304118

doi: 10.1073/pnas.2016304118
[3]

Munir N, Cheng C, Xia C, Xu X, Nawaz MA, et al. 2019. RNA-Seq analysis reveals an essential role of tyrosine metabolism pathway in response to root-rot infection in Gerbera hybrida. PLoS One 14(10):e0223519

doi: 10.1371/journal.pone.0223519
[4]

Zhao D, Yang X, Wu S, He H, Tan Q, et al. 2020. First report of Fusarium proliferatum causing root rot of Gerbera in China. Journal of Plant Diseases and Protection 127:279−282

doi: 10.1007/s41348-019-00281-1
[5]

Garibaldi A, Minuto A, Uchimura MS, Gullino ML. 2008. Fusarium wilt of Gerbera caused by a Fusarium sp. in Brazil. Plant Disease 92:655

doi: 10.1094/pdis-92-4-0655b
[6]

Garibaldi A, Minuto A, Prados-Ligero AM, Melero-Vara JM, Gullino ML. 2007. Fusarium wilt of Gerbera in Spain in soilless crops. Plant Disease 91:638

doi: 10.1094/pdis-91-5-0638c
[7]

Kaewruang W, Sivasithamparam K, Hardy GE. 1987. Fungal root rot of Gerbera in Western Australia. Plant Disease 71:1146

doi: 10.1094/pd-71-1146a
[8]

Van Der Gaag DJ, Kerssies A, Lanser C. 2001. Spread of Phytophthora root and crown rot in Saintpaulia, Gerbera and Spathiphyllum pot plants in ebb-and-flow-systems. European Journal of Plant Pathology 107:535−542

doi: 10.1023/A:1011208824620
[9]

Hao XY, Lin M, Sun XL, Jiao YC, Yang CX, et al. 2018. Isolation and identification of pathogen of Gerbera root rot disease in Fujian. Fujian Journal of Agricultural Sciences 33:391−395 (in Chinese)

doi: 10.19303/j.issn.1008-0384.2018.04.011
[10]

Li Y, Li F, Liu YL, Li L, Chen JL, et al. 2008. Identification of the pathogens causing root rot of Gerbera jamesonii in Yunnan. Journal of South China Agricultural University 29:21−24+28

doi: 10.7671/j.issn.1001-411X.2008.03.005
[11]

Benson DM, Parker KC. 2011. Efficacy of fungicides and biopesticides for management of Phytophthora Crown and root rot of gerber daisy. Plant Health Progress 12:13

doi: 10.1094/PHP-2011-0512-01-RS
[12]

Özkan Kahraman Ç, Yıldız F. 2019. The effect of chemical and biological treatment on root and crown rot disease caused by Phytophthora cryptogea Pethybr & Lafferty in gerbera. Journal of Phytopathology 167:240−247

doi: 10.1111/jph.12791
[13]

Wu H, Wang B, Hao X, Zhang Y, Wang T, et al. 2022. Piriformospora indica promotes the growth and enhances the root rot disease resistance of gerbera. Scientia Horticulturae 297:110946

doi: 10.1016/j.scienta.2022.110946
[14]

Tao M, Zhao Y, Hu T, Zhang Q, Feng H, et al. 2023. Screening of alfalfa varieties resistant to Phytophthora cactorum and related resistance mechanism. Plants 12:702

doi: 10.3390/plants12040702
[15]

Xia C, Cao Y, Chen W, Gan W, Lin F, et al. 2024. EST-SSR marker-based analysis for determinations of genetic diversity and relation of Gerbera jamesonii varieties. Fujian Journal of Agricultural Sciences 39:1120−1129 (in Chinese)

doi: 10.19303/j.issn.1008-0384.2024.10.002
[16]

Liu Y, Sun M, Jiang Z, Wang X, Xiao B, et al. 2022. Screening of tobacco genotypes for Phytophthora nicotianae resistance. Journal of Visualized Experiments 182:e63054

doi: 10.3791/63054-v
[17]

Minerdi D, Moretti M, Li Y, Gaggero L, Garibaldi A, et al. 2008. Conventional PCR and real time quantitative PCR detection of Phytophthora cryptogea on Gerbera jamesonii. European Journal of Plant Pathology 122:227−237

doi: 10.1007/s10658-008-9276-3
[18]

Han Y, Sun T, Tang Y, Yang M, Gao W, et al. 2025. Root rot in medicinal plants: a review of extensive research progress. Frontiers in Plant Science 15:1504370

doi: 10.3389/fpls.2024.1504370
[19]

Guan YM, Ma YY, Jin Q, Wang QX, Liu N, et al. 2020. Multi-locus phylogeny and taxonomy of the fungal complex associated with rusty root rot of Panax ginseng in China. Frontiers in Microbiology 11:618942

doi: 10.3389/fmicb.2020.618942
[20]

Paradiković N, Ćosić J, Jurković D. 2000. Control of F. oxysporum on gerbera by a biological product. Agriculture Scientific and Professional Review 6:58−61

[21]

Beal EJ, Waghorn IAG, Perry JN, Clover GRG, Cromey MG. 2021. Susceptibility of garden plants to Phytophthora root rot. Plant Disease 105:1610−1620

doi: 10.1094/PDIS-04-20-0765-RE
[22]

Kahraman Ç, Yıldız FJPD. 2019. First report of crown and root rot disease caused by Phytophthora cryptogea on Gerbera in Izmir province in Turkey. Plant Disease 103:589

doi: 10.1094/pdis-04-18-0559-pdn
[23]

Koike ST, Stanghellini H, Burkhardt A. 2021. First report of Phytophthora root rot caused by Phytophthora cryptogea on field-grown lettuce in California. Plant Disease 105:2257

doi: 10.1094/pdis-01-21-0076-pdn
[24]

Koike ST, Stanghellini H, Mauzey SJ, Burkhardt A, Stanghellini MS. 2019. First report of Phytophthora root and bulb rot caused by Phytophthora cryptogea on shallot in the United States. Plant Disease 103:1436

doi: 10.1094/pdis-11-18-2085-pdn
[25]

Li Y, Liu Y, Li F, Tang X, Chen J, Chen H. 2008. Identification of the disease resistance of Gerbera jamesonii cultivars to root rot and pathogenicity differentiation of Phytophthora cryptogea. Journal of Yunnan Agricultural University (Natural Science) 2008:33−35+41 (in Chinese)

doi: 10.16211/j.issn.1004-390x(n).2008.01.022