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Germination Tests

The International Seed Testing Association (ISTA) has a set of rules pertaining to the testing of germination of a range of plant species. These are contained in the International Rules for Seed Testing which is updated annually. According to ISTA, germination is defined as "the emergence and development of the seedling to a stage where the aspect of its essential structures indicates whether or not it is able to develop further into a satisfactory plant under favourable conditions in the soil". All the information to conduct a germination test for a particular crop is given in detail. This includes what substrate to use to plant the seeds, what temperature/s to incubate the planted seeds, what days to evaluate the seedlings and how to evaluate the seedlings. For example, Pinus radiata should be planted on top paper and incubated at 20°C, the first count to be made at 7 days and the final count to be made at 28 days. Pinus taeda, although also planted on top paper, needs to be incubated at 20 °C for 16 hours and 30 °C for 8 hours. The counts are made on the same days. An additional recommendation is to use a no prechill and a prechill of 28 days at 3 to 5 °C (double test). It is evident then from the above examples that a germination test is not merely placing seeds on blotter paper and then counting how many have emerged. Rules of how to evaluate normal and abnormal seedlings, hard, fresh and dead seeds are given and a handbook on germination with diagrams is available to help with these evaluations.

Germination test on germination paper

Growing media for the germination test

ISTA distinguishes among the following:

Paper substrates

Top of Paper (TP)

Between paper (BP)

Pleated paper (PP)

Sand/Organic growing media

Top of sand (TS)

Top of growing medium (TO)

Sand (S)

Organic growing medium (O)

Paper and Sand

Top of paper covered with sand (TPS)


Vigour Tests

According to ISTA seed vigour is "the sum of those properties that determine the activity and performance of seed lots of acceptable germination in a wide range of environments".Thus a vigorous seed lot should perform well even if environmental conditions are not optimal for growth of that specific species.

Vigour tests include:

The tetrazolium (TTZ) test

The conductivity test

The accelerated ageing test

The cold test

Rapid and slow imbibition test

These tests provide additional information once the germination test has been done. These tests are usually not performed on seed that has a low germination potential. These tests also determine how seeds will perform if stored under sub-optimal conditions.

Seed Health Tests

Seeds may harbour pathogens both inside and on their surfaces. Seeds may be infected with viruses, bacteria, fungi and nematodes which may cause the seed to show various symptoms or may be dormant until the seedling emerges or until a certain plant age is reached. Some of these pathogens may be quarantine pests whilst others may give rise to epidemics. Most, however, are usually the cause of diseases being established in new fields or regions and/or may cause widespread disease to adjacent fields/crops when spores are dispersed from infected plants. ISTA has a range of tests that are used to test for seedborne pathogens. These tests have all been validated and are reviewed every 5 years. All new methods undergo an extensive validation procedure involving several laboratories worldwide before they are published in the ISTA Rules.

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