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The RIFT-FABI Tree Protection Programme (RFTPP), is a cooperative venture programme established between the Research Institute of Fast-growing Trees (RIFT)  of the Chinese Academy of Forestry in China, and the Forestry and Agricultural Biotechnology Institute (FABI), at the University of Pretoria in South Africa. This Programme has arisen from a long term collaboration between the two institutions that was formally established in 2014. The relationship initially arose from joint funding to the two groups respectively by the Governments of the Peoples Republic of China and the Republic of South Africa as part of bi-lateral funding managed by the Department of Science and Technology (South Africa) and Ministry of Science and Technology in China. This funding has been sustained at various levels over a eight year period and it has resulted in many important outputs in terms of fundamental research, solutions to eucalypt disease problems and education of post graduate students (Human Capacity Development).

The precursor of the RFTPP was a the CERC-FABI Tree Protection Programme was a programme also previously known as the CERC-FABI Eucalyptus Pathology Programme (CFEPP). The overall objectives of that programme were to promote research and knowledge sharing concerning diseases of Eucalyptus. This objective was pursued very effectively but it has been recognized that the opporutnities and needs extend far beyond Eucalyptus and likewise beyond pathology. The need to include other tree crops and entomology has given ruise to an extended programme focused more broadly on TREE HEALTH. Thus, the primary goal of the RFTPP is to build further collaboration and associated opportunities in the field of on tree health research between RIFT and FABI.

Signing a Memorandum of Understanding by Mr. JieFeng Liu (Director of CERC) and Prof. Mike Wingfield (Director of FABI).

Forestry represents one of the most important industrial sectors in China and in South Africa. In China, native forest ecosystems have been strictly protected since 2000, for this reason, plantations of tree such as eucalypts, pines and poplars, have been established to meet the needs of the national economy. By the end of 2013, around 4.5 million hectares of eucalypts have been planted in South China, which makes up about 6% of the whole plantation area of the country. At present, more than 20% of timber in China is obtained from eucalypts. There is no doubt that there will be an ongoing increase in commercial plantations in China to meet the growing needs for timber, paper and pulp in the future. In South Africa, the forestry industry is, similar to China, based on commercially managed plantations of non-native trees such as pine, eucalypts and exotic acacias. These plantations cover in excess of 1.5 million hectares and industry is one of the most important sources of export capital and employment.

The China Eucalypt Research Centre (CERC) (http://www.chinaeuc.com/enDefault.aspx) is the primary organization working on eucalypt breeding in China and it plays an essential role in supporting the eucalypt plantation industry in China. CERC also serves as the headquarters of the China Eucalypt Society and China Eucalypt Breeding Alliance. The research team of the Centre holds first hand knowledge and information regarding eucalypt plantations in China, and has published a large number of papers nationally and internationally in this field.

Former president of the Chinese Academy of Forestry, Madam ZeHui Jiang's visit to SA where FABI linkage was also forged.

The Forestry and Agricultural Biotechnology Institute (FABI: http://www.fabinet.up.ac.za/) includes a research programme that represents the world's single largest team investigating pest and pathogen problems affecting plantation-grown forest trees, particularly those in the tropics and southern hemisphere. Since 1990, this research team in South Africa has been working extensively to support forestry companies in South Africa as well as those from other parts of the world. In addition to greatly contributing substantially to tree health and sustainable management of forestry through their research, a very substantial base of new knowledge has been generated on diseases and pests that damage forests and threaten the sustainability of forestry. Work has been published extensively in the international literature and students from many different parts of the world have benefited from post graduate education in the field of forest protection.

RIFT and FABI are both committed to promoting an enhanced understanding of the threat of pathogens and pests to forest plantations. They especially recognize the benefits that will come from collaboration and sharing knowledge pertaining to diseases and pests threatening the sustainability of plantations in China, South Africa and elsewhere in the world. Based on this realisation, the two institutions have agreed to established a programme known as the CERC-FABI Tree Protection Programme (CFTPP), now renamed the RFTPP. Funding for this collaborative venture comes from various sources including the South African and Chinese Governments, industrial companies, statutory and aid organisations.

People's Republic of China, Former Minister of Education, Madam ZiLi Chen's visit to FABI.

Objectives of the RFTPP
• Study diseases and pests that threaten forests and forest plantation development in China and South Africa
• Understand the diversity, ecology, pathology and spread of these pathogens and pests that damage trees
• Screen genetic stock used to establish plantationsplantation tree hybrids and clonal material for resistance to the most important diseases and insect pests
• Promote joint opportunities relating to the biological control of insect pests
• Train young researchers in the broad fields related to tree health biotechnology
• Establish and maintain an innovative a model for science and technology cooperation between scientists in China and South Africa

New Publications

Nadasen TR, Hein I, Berger DK. (2026) Structural phylogenetics identifies conserved effector families and cell death-inducing proteins from Cercospora zeina. Molecular Plant-Microbe Interactions First Look 10.1094/MPMI-05-26-0048-R
Mbamali SKS, Mohlomi N, Van Der Nest MA, Mchunu NP, Permaul K. (2026) Reciprocal Genome Projection Reveals Reference-Conditioned Functional Variation in Clinical Aspergillus Section Nigri Isolates. Pathogens 10.3390/pathogens15090941
Schertler A, Lenzner B, Dullinger S, Moser D, García-Rodríguez A, Krisai-Greilhuber I, Voglmayr H, Bufford JL, Santini A, Ghelardini L, Capinha C, Reino L, Wingfield MJ, Thines M, Talhinhas P, Dawson W, van Kleunen M, Kreft H, Pergl J, Pyšek P, Weigelt P, Winter M, Essl F. (2026) Are novel and co-xenic associations common in alien fungal and fungus-like plants pathogens?. New Phytologist 10.1111/nph.71455
Thango S, Nsibo DL, Berger DK, Visagie CM, Slippers B. (2026) Phenotypic variation in the in vitro and in planta aggressiveness traits among Exserohilum turcicum strains from South Africa. Plant Pathology 75(4):e70257. 10.1111/ppa.70257
Bradshaw MJ, Paul A, Villani S, Bensch K, Mitchell KJ, Pfister DH, Visagie CM, Garfinkel AR, Quesada-Ocampo L, Aime MC, Braun U. (2026) Modern taxonomy as the foundation for identifying and managing fungal and fungus like plant pathogens. Plant Disease 10.1094/PDIS-12-25-2537-FE
Balocchi F, Wingfield MJ, Paap T. (2026) Occurrence of Phytophthora cinnamomi in the rhizosphere of declining Leucadendron elimense subsp. salteri in South Africa. Forest Pathology 56(4):e70097. 10.1111/efp.70097 PDF
Pham NQ, Wingfield BD, Marincowitz S, Marpaung YMAN, Selebi AP, Tarigan M, Wingfield MJ. (2026) A novel Cryphonectria species (Cryphonectriaceae, Diaporthales) discovered on Eucalyptus, including insights into the mating biology of the genus. Fungal Biology 130:101831. 10.1016/j.funbio.2026.101831
Kim JS, Lee W, Seo CW, Lee JW, Perera RH, Rho SM, Visagie CM, Houbraken J, Lim YW. (2026) A comprehensive assessment of Penicillium diversity in marine environments. Studies in Mycology 115:1–57. 10.3114/sim.2026.115.01
Jami F, Truter M, Pavlic M, Chen SF, Roux J. (2026) Identification of Botryosphaeriaceae species in the South African National Collection of fungi, including a novel species of Oblongocollomyces. African Biodiversity & Conservation 56(1):1-13. PDF
Vettraino AM, Bose T. (2026) Urban green spaces as emerging hotspots for Phytophthora diversity: a global synthesis of host associations, distribution and management gaps. Frontiers in Forests and Global Change 9:1872981. 10.3389/ffgc.2026.1872981
Burgess TI, Wingfield MJ. (2026) Unveiling a hidden menace: Invasive tree pathogens, less known but increasingly threatening Southern hemisphere forests. Annual Review of Phytopathology 64 10.1146/annurev-phyto-011325-100959
Motete T, Solís M, Hammerbacher A, Naidoo S. (2026) Gene expression profiling in Eucalyptus associates Phenylpropanoid resistance to Teratosphaeria destructans. Plant Pathology 10.1111/ppa.70207
Aylward J, Atkins S, Roets F, Danti R, Della Rocca G, Emiliani G, Fraser S, Garbelotto MM, Herron DA, Scali E, Wingfield BD, Wingfield MJ. (2026) High genetic diversity in the Cypress canker pathogen Seiridium cardinale in the Southern Hemisphere. Plant Pathology 75 10.1111/ppa.70212
van Heerden A, Pham NQ, Duong TA, Wingfield MJ, Wingfield BD. (2026) Draft genome sequence of Ganoderma philippii, a serious root rot pathogen of Eucalyptus in Southeast Asia. Australasian Plant Pathology 55:81. 10.1007/s13313-026-01159-1
Schoeman C, Roodt D, Mc Menamin A, Bezuidt O, Dithugoe C, Pinard D, Mizrachi E. (2026) Conserved symbiosis-associated genes in the cycad Encephalartos natalensis suggest co-option for cyanobacterial symbiosis. New Phytologist 10.1111/nph.71311
Townsend G, Hill M, Hurley BP, Roets F. (2026) Native Scolytinae and Platypodinae beetle assemblages in indigenous South African forests and their co-occurrence with the invasive PSHB beetle. Journal of Insect Conservation 30 10.1007/s10841-026-00779-8
Botha I, Maduna SN, Hagen SB, Lall N, Berger DK. (2026) 3RAD-guided SNP discovery for species identification and conservation of the medicinal southern African tree Genus Greyia Hook. & Harv.. Ecology and Evolution 16(5):e73412, 1-29. 10.1002/ece3.73412
Balocchi F, Duncan G, Yilmaz N, Wingfield MJ, Paap T. (2026) The critically endangered geophyte Gladiolus aureus threatened by a wilt disease associated with Fusarium libertatis. Journal of Plant Pathology 10.1007/s42161-026-02227-7 PDF
Bose T, Wingfield MJ. (2026) Plantations are invasive pathogen bridgeheads—response to Li et al.. Trends in Ecology & Evolution 10.1016/j.tree.2026.05.006
Jamieson B-A, Paap T, Pegg GS, Carnegie AJ, Wingfield MJ, Roux J, Hardy GEStJ, Drenth A, Hammerbacher A, Bose T. (2026) Quambalaria spp.: Emerging Tree Pathogens of Concern. Current Forestry Reports 12:13. 10.1007/s40725-026-00274-y
Masuku SK, De Vos L, Thabiso TE, Steenkamp ET, Wingfield BD. (2026) Baseline sensitivity of South African Fusarium circinatum to tebuconazole. Journal of Plant Pathology 10.1007/s42161-026-02197-w
Fitawek W, Anjulo A, Healey M, Lawson SA, Hurley BP. (2026) The Moringa value chain in Ethiopia and the socio-economic impact of pests and diseases. CABI Agriculture and Bioscience 10.1079/ab.2026.00041 PDF
Lynn KMT, Wingfield MJ, Oliveira LSS, Alfenas AC, Ferreira Alfenas RF, Marincowitz S, Barnes I. (2026) Phylogenetic and population genetic analyses reveal patterns of divergence amongst isolates of Ceratocystis manginecans. Ecology and Evolution 16 10.1002/ece3.73652
Dlamini CM, Matongera TN, Lawson SA, Healey M, Tanga A, Regasa K, Kassie W, Hurley BP, Germishuizen I. (2026) Modelling spatiotemporal dynamics of wattle plantations in northwestern Ethiopia using harmonised PlanetScope and RapidEye imagery. Trees, Forests and People 25:101293. 10.1016/j.tfp.2026.101293 PDF
Ndou M, Potts WM, Duong TA, Teske PR, Childs AR, Henriques R. (2026) Conspecific scaffold-level genome assembly outperforms heterospecific chromosome-level assemblies for assessing genetic indicators in a threatened marine fish. Evolutionary Applications 19:e70247. 10.1111/eva.70247
Marx B, van Dijk A, Steenkamp ET, Wingfield MJ, Wingfield BD. (2026) Breaking the mould: Cellulose in the cell walls of the Ophiostomatales. Fungal Biology Reviews 57 10.1016/j.fbr.2026.100489
Wingfield BD, Coetzee MPA, Wingfield BJ, Groenewald M, Pohl C, Wingfield MJ. (2026) The genetic blueprint of Cyclohexamide resistance: Analysis of 816 yeast species. Research Square 10.21203/rs.3.rs-9313202/v1
Paap T, White D, Bose T, Burgess TI. (2026) Diversity and phylogeny of Phytophthora Clade 9, including descriptions of three novel species. Mycological Progress 25:29. 10.1007/s11557-026-02140-4
Kgatla MM, Barker C, Baxter JR, Bester-van der Merwe AE, Chaisi M, Chakona A, Cherry MI, Daniels SR, Du Preez LH, Haddad CR, Hawkes PG, Ho C, Hoareau TB, Jacobs A, Jacobs K, Janion-Scheepers C, Jansen van Vuuren B, Kabongo RM, Khoza TT, Khumalo NL, Mahlanza T, Makapela L, Makhubo BG, Maneveldt GW, Mashego K, Matcher G, Matthee CA, Mavhunga M, Midgley JM, Mlambo M, Monsanto DM, Mthombeni R, Murray SL, Mynhardt S, Nang-Mba B, Ndlovu M, Parbhu SP, Phetla V, Phukuntsi M, Pitcher TR, Samaai T, Sethusa MT, Simon CA, Sink K, Sole CL, Theron GL, van Asch B, van der Bank M, van Steenderen CJM, Villet MH, Visagie CM, Williams KA, Willows-Munro S, Da Silva JM, Mwale M. (2026) An overview of DNA barcoding of biodiversity in South Africa. PLOS ONE 21(4):e0345173. 10.1371/journal.pone.0345173
Li GQ, Slippers B, Wingfield MJ, Chen SF. (2026) Diversity, distribution and host range of Botryosphaeriaceae in China. Forest Pathology 10.1111/efp.70077