Keragaman Spesies Colletotrichum yang Berasosiasi dengan Buah Jeruk Impor dan Potensinya Menginfeksi Tanaman Cabai, Karet, dan Kakao di Indonesia

Diversity of Colletotrichum Species Assosiated with Imported Citrus Fruits, and their Potential to Infect Chili, Rubber, and Cacao Trees in Indonesia

  • Joni Hidayat IPB University
  • Sri Hendrastuti Hidayat Department of Plant Protection, IPB University
  • Suryo Wiyono Department of Plant Protection, IPB University
  • Widodo Department of Plant Protection, IPB University
Keywords: host range, multilocus gene analysis, pathogenicity, species complex

Abstract

Diversity of Colletotrichum Species Assosiated with Imported Citrus Fruits, and their Potential to Infect Chili, Rubber, and Cacao Trees in Indonesia

Colletotrichum species have been widely reported as causative agents of anthracnose in citrus trees.  The importation of citrus fruits brings the risks of introducing introducing species of Colletotrichum new to Indonesian territory. This research was conducted to identify species of Colletotrichum from imported citrus fruits and to evaluate their potential to infect important horticultural and plantation crops in Indonesia. A total of 7 Colletotrichum isolates were isolated from imported citrus fruit from China, Pakistan, and Indonesian local citrus fruit.  The Colletotrichum isolates were observed for their morphological and molecular characteristics as well as their pathogenicity on citrus fruit, chili, rubber and cocoa trees.  Phylogenetic analysis was carried out using the MLSA (multilocus sequence analysis) method which combines the ITS, ACT, TUB2 and GAPDH gene loci.  Identification of Colletotrichum isolates resulted in one species of the C. boninense complex species (C. karstii) and 3 species of the C. gloeosporioides complex species (C. fructicola, C. gloeosporioides sensu stricto, and C. siamense).  The Colletotrichum isolate from Indonesian citrus was identified as C. gloeosporioides sensu stricto.  The C. fructicola strain could infect chilies, while the C. karstii strain could infect chili and cocoa.  Strain of C. gloeosporioides s.s. and C. siamense have a wider host range, namely chili, rubber, and cocoa.  Several species of Colletotrichum carried by imported citrus fruits could become pathogens in several important crops in Indonesia, including chili, rubber, and cocoa.

Downloads

Download data is not yet available.

References

Anggrahini DS, Wibowo A, Subandiyah S. 2020. Morphological and molecular identification of Colletotrichum spp. associated with chili anthracnose disease in Yogyakarta region. Jurnal Perlindungan Tanaman Indonesia. 24(2):161–174. DOI: https://doi.org/10.22146/jpti.58955.

Cai ZY, Liu YX, Shi YP, Mu HJ, Li GH. 2016. First report of leaf anthracnose caused by Colletotrichum karstii of rubber tree in China. Plant disease. 100(12):2528. DOI: https://doi.org/10.1094/PDIS-04-16-0577-PDN.

Carbone I, Kohn LM. 1999. A method for designing primer sets for speciation studies in filamentous ascomycetes. Mycologia. 91:553–556. DOI: https://doi.org/10.1080/00275514.1999.12061051.

Damm U, Cannon PF, Woudenberg JHC, et al. 2012. The Colletotrichum boninense species complex. Studies in Mycology. 73: 1–36.

Damm U, Woudenberg JHC, Cannon PF, et al. 2009. Colletotrichum species with curved conidia from herbaceous hosts. Fungal Diversity 39:45–87.

De Silva DD, Groenewald JZ, Crous PW, Ades PK, Nasruddin A, Mongkolporn O, Taylor PW. 2019. Identification, prevalence, and pathogenicity of Colletotrichum species causing anthracnose of Capsicum annuum in Asia. IMA Fungus. 10:1–32. DOI: https://doi.org/10.1186/s43008-019-0001-y.

Douanla-Meli C, Unger JG. 2017. Phylogenetic study of the Colletotrichum species on imported citrus fruits uncovers a low diversity and a new species in the C. gigasporum complex. Fungal Biology. 121(10):858–868. DOI: https://doi.org/10.1016/j.funbio.2017.06.003.

Fayyaz A, Sahi ST, Nawaz-ul-Rehman MS, Amrao L. 2020. Molecular characterization of fungal pathogens associated with citrus withertip/dieback from major citrus growing areas of Punjab, Pakistan. International Journal of Agriculture and Biology. 23(6):1165‒1170.

Freeman S, Katan T, Shabi E. 1998. Characterization of Colletotrichum species responsible for anthracnose diseases of various fruits. Plant Disease. 82:596–605.DOI: https://doi.org/10.1094/PDIS.1998.82.6.596.

Glass NL, Donaldson G. 1995. Development of primer sets designed for use with PCR to amplify conserved genes from filamentous ascomycetes. Applied Enviromental Microbiology. 61:1323–1330. DOI: https://doi.org/10.1128/aem.61.4.1323-1330.1995.

Guerber JC, Liu B, Correll JC, Johnston PR. 2003. Characterisation of the diversity of Colletotrichum acutatum sensu lato by sequence analysis of two gene introns, mtDNA and intron RFLP’s and mating compatibility. Mycologia. 95:872–895. DOI: https://doi.org/10.1080/15572536.2004.11833047.

Huang F, Chen GQ, Hou X, et al. 2013. Colletotrichum species associated with cultivated citrus in China. Fungal Diversity. 61:61–74. DOI: https://doi.org/10.1007/s13225-013-0232-y.

James RS, Ray J, Tan YP, Shivas RG. 2014. Colletotrichum siamense, C. theobromicola and C. queenslandicum from several plant species and the identification of C. asianum in the northern territory, Australia. Australasian Plant Disease Notes. 9:1–6. DOI: https://doi.org/10.1007/s13314-014-0138-x.

Kementerian Pertanian. 2020. Analisis Kinerja Perdagangan Jeruk. Pusat Data dan Informasi Kemeterian Pertanian, Jakarta. Hlm 1-51

Kim H, Lim TH, Kim J, Kim YH, Kim HT. 2009. Potential of cross-infection of Colletotrichum species causing anthracnose in persimmon and pepper. The Plant Pathology Journal. 25(1):13–20. DOI: https://doi.org/10.5423/PPJ.2009.25.1.013.

Liu X, Li B, Cai J, Zheng X, Feng Y, Huang G. 2018. Colletotrichum species causing anthracnose of rubber trees in China. Scientific Reports. 8(1):1–14. DOI: https://doi.org/10.1038/s41598-018-28166-7.

Montri P, Taylor PWJ, Mongkolporn O. 2009. Pathotypes of Colletotrichum capsici, the causal agent of chili anthracnose, in Thailand. Plant Disease. 93:17–20. DOI: https://doi.org/10.1094/PDIS-93-1-0017.

Nurholis, Hidayat SH, Mutaqin KH, Widodo S, Widodo. 2023. Morphological, molecular, and pathogenic characterization of Colletotrichum gloeosporioides sensu stricto associated with imported citrus fruits. Agronomy Research. 21:1499–1518.

Lijuan P, Youlian Y, Bahkali AH, Zuoyi L. 2012. Colletotrichum species on Citrus leaves in Guizhou and Yunnan provinces, China. Cryptogamie. Mycologie. 33(3): 267–283.

Peres NA, MacKenzie SJ, Peever TL, Timmer LW. 2008. Postbloom fruit drop of citrus and key lime anthracnose arecaused by distinct phylogenetic lineages of Colletotrichum acutatum. Phytopathology. 98(3):345–352. DOI: https://doi.org/10.1094/PHYTO-98-3-0345.

Photita W, Lumyong S, Lumyong P, McKenzie EHC, Hyde KD. 2004. Are some endophytes of Musa acuminata latent pathogens? Fungal Diversity. 16:131–140.

Phoulivong S, Cai L, Chen H, McKenzie EHC, Abdelsalam K, Chukeatirote E, Hyde KD. 2010. Colletotrichum gloeosporioides is not a common pathogen on tropical fruits. Fungal Diversity. 44:33–43. DOI: https://doi.org/10.1007/s13225-010-0046-0.

Phoulivong S, McKenzie EHC, Hyde KD 2012. Cross infection of Colletotrichum species; a case study with tropical fruits. Current Research in Environmental & Applied Mycology. 2(2):99–111. DOI: https://doi.org/10.5943/cream/2/2/2.

Prihastuti H, Cai L, Chen H, McKenzie EHC, Hyde KD. 2009. Characterization of Colletotrichum species associated with coffee berries in northern Thailand. Fungal Diversity. 39:89-109.

Rehner SA, Gazis R, Doyle VP, Vieira WAS, Campos PM, Shao J. 2023. Genome resources for the Colletotrichum gloeosporioides species complex: 13 tree endophytes from the neotropics and paleotropics. Microbiology Resource Announcements. 12(4):e01040-22. doi: 10.1128/mra.01040-22.

Sanders GM, Korsten L. 2003. A comparative morphology of South African avocado and mango isolates of Colletotrichum gloeosporioides. Canadian Journal of Botany. 81:877– 885. DOI: https://doi.org/10.1139/b03-073.

Shidiq MAA, Widyaningsih S, Wibowo A, Widiastuti A. 2024. First report of Colletotrichum quuenslandicm and Colletotrichum endophyticum causing citrus anthracnose in Indonesia. Journal of the Saudi Society of Agricultural Sciences. (Article In Press: 30 March 2024).

Than PP, Jeewon R, Hyde KD, Pongsupasamit S, Mongkolporn O, Taylor PWJ. 2008. Characterization and pathogenicity of Colletotrichum species associated with anthracnose disease on chili (Capsicum spp.) in Thailand. Plant Pathology. 57:562–572. DOI: https://doi.org/10.1111/j.1365-3059.2007.01782.x.

Weir BS, Johnston PR, Damm U. 2012. The Colletotrichum gloeosporioides species complex. Studies in Mycology. 73:115–180.

White TJ, Bruns T, Lee S, Taylor J. 1990. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. Dalam: Innis MA, Gelfand DH, Sninsky JH, White TJ. PCR Protocols. San Diego (US): Academic Press. hlm. 315–322.

Zhafarina S, Wibowo A, Widiastuti A. 2021. Multi-genetic analysis of Colletotrichum spp. associated with post harvest disease of fruit anthracnose in Special Region of Yogyakarta, Indonesia. Pakistan Journal of Biological Sciences. 24(1):53–65. DOI: https://doi.org/10.3923/pjbs.2021.53.65.

Published
2024-06-27
How to Cite
HidayatJ., HidayatS. H., WiyonoS., & Widodo. (2024). Keragaman Spesies Colletotrichum yang Berasosiasi dengan Buah Jeruk Impor dan Potensinya Menginfeksi Tanaman Cabai, Karet, dan Kakao di Indonesia: Diversity of Colletotrichum Species Assosiated with Imported Citrus Fruits, and their Potential to Infect Chili, Rubber, and Cacao Trees in Indonesia. Jurnal Fitopatologi Indonesia, 20(3), 140-153. https://doi.org/10.14692/jfi.20.3.140-153