• This record comes from PubMed

A survey of triploid block inconsistency: potential mechanisms and evolutionary implications on polyploid speciation

. 2025 May 27 ; 76 (8) : 2096-2111.

Language English Country England, Great Britain Media print

Document type Journal Article, Meta-Analysis, Review

Grant support
20-22783S Czech Science Foundation
22-20240S Czech Science Foundation
321222 Charles University Grant Agency

The triploid block, primarily caused by endosperm developmental issues, is known as a significant barrier to interploidy hybridization among flowering plants and, thereby, polyploid speciation. However, its strength varies across taxa, with some instances of leakiness, questioning its universal role as a barrier. We conducted a literature survey to explore the causes of the variation in the strength of the triploid block across 11 angiosperm families. We assessed the impact of interploidy cross direction, types of endosperm development, endosperm persistence at seed maturity, and divergence between cytotypes using a Bayesian meta-analysis. We found a significant influence of the type of endosperm in shaping variation in triploid block strength. Other factors tested had no impact on triploid seed viability, probably due to limited data and inconsistencies in estimation methods across the literature. In addition, triploid seed viability in experimental crosses was sometimes correlated to the occurrence of triploid hybrids in nature, sometimes not, suggesting a mixed role for the triploid block in shaping interspecies gene flow. Altogether, our study highlights the need for unified approaches in future studies on the triploid block to advance our understanding of its variation and evolutionary implications.

See more in PubMed

Abbott R, Albach D, Ansell S, et al.2013. Hybridization and speciation. Journal of Evolutionary Biology 26, 229–246. PubMed

Arnegard ME, McGee MD, Matthews B, et al.2014. Genetics of ecological divergence during speciation. Nature 511, 307–311. PubMed PMC

Awika JM. 2011. Major cereal grains production and use around the world. In: Awika JM, Piironen V, Bean S, eds. Advances in cereal science: implications to food processing and health promotion. Washington, DC: American Chemical Society, 1–13.

Baroux C, Spillane C, Grossniklaus U.. 2002. Evolutionary origins of the endosperm in flowering plants. Genome Biology 3, reviews1026.1–1026.5. PubMed PMC

Batista RA, Köhler C.. 2020. Genomic imprinting in plants—revisiting existing models. Genes & Development 34, 24–36. PubMed PMC

Becraft PW, Brown RC, Lemmon BE, Olsen O-A, Ferstad HGO.. 2001. Endosperm development. In: Bhojwani SS, Soh W-Y, eds. Current trends in the embryology of angiosperms. Dordrecht: Springer Netherlands, 353–374.

Behrend A, Gluschak A, Przybyla A, Hohe A.. 2015. Interploid crosses in heather (Calluna vulgaris). Scientia Horticulturae 181, 162–167.

Bente H, Köhler C.. 2024. Molecular basis and evolutionary drivers of endosperm-based hybridization barriers. Plant Physiology 195, 155–169. PubMed PMC

Birchler JA. 2014. Interploidy hybridization barrier of endosperm as a dosage interaction. Frontiers in Plant Science 5, 281. PubMed PMC

Brandvain Y, Haig D.. 2005. Divergent mating systems and parental conflict as a barrier to hybridization in flowering plants. The American Naturalist 166, 330–338. PubMed

Brown RC, Lemmon BE, Nguyen H, Olsen O-A.. 1999. Development of endosperm in Arabidopsis thaliana. Sexual Plant Reproduction 12, 32–42.

Buggs RJA, Doust AN, Tate JA, Koh J, Soltis K, Feltus FA, Paterson AH, Soltis PS, Soltis DE.. 2009. Gene loss and silencing in Tragopogon miscellus (Asteraceae): comparison of natural and synthetic allotetraploids. Heredity 103, 73–81. PubMed

Burton TL, Husband BC.. 1999. Population cytotype structure in the polyploid Galax urceolata (Diapensiaceae). Heredity 82, 381–390. PubMed

Burton TL, Husband BC.. 2000. Fitness differences among diploids, tetraploids, and their triploid progeny in Chamerion angustifolium: mechanisms of inviability and implications for polyploid evolution. Evolution 54, 1182–1191. PubMed

Chaudhury AM, Berger F.. 2001. Maternal control of seed development. Seminars in Cell & Developmental Biology 12, 381–386. PubMed

Chrtek J, Herben T, Rosenbaumová R, Münzbergová Z, Dočkalová Z, Zahradníček J, Krejčíková J, Trávníček P.. 2017. Cytotype coexistence in the field cannot be explained by inter-cytotype hybridization alone: linking experiments and computer simulations in the sexual species Pilosella echioides (Asteraceae). BMC Evolutionary Biology 17, 87. PubMed PMC

Cooper DC, Brink RA.. 1945. Seed collapse following matings between diploid and tetraploid races of Lycopersicon pimpinellifolium. Genetics 30, 376–401. PubMed PMC

Coughlan JM, Matute DR.. 2020. The importance of intrinsic postzygotic barriers throughout the speciation process. Philosophical Transactions of the Royal Society B: Biological Sciences 375, 20190533. PubMed PMC

Cui L, Wall PK, Leebens-Mack JH, et al.2006. Widespread genome duplications throughout the history of flowering plants. Genome Research 16, 738–749. PubMed PMC

Dilkes BP, Spielman M, Weizbauer R, Watson B, Burkart-Waco D, Scott RJ, Comai L.. 2008. The maternally expressed WRKY transcription factor TTG2 controls lethality in interploidy crosses of Arabidopsis. PLoS Biology 6, 2707–2720. PubMed PMC

Dinu II, Hayes RJ, Kynast RG, Phillips RL, Thill CA.. 2005. Novel inter-series hybrids in Solanum, section Petota. Theoretical and Applied Genetics 110, 403–415. PubMed

Feil R, Berger F.. 2007. Convergent evolution of genomic imprinting in plants and mammals. Trends in Genetics 23, 192–199. PubMed

Floyd SK, Friedman WE.. 2000. Evolution of endosperm developmental patterns among basal flowering plants. International Journal of Plant Sciences 161, S57–S81.

Fox DT, Soltis DE, Soltis PS, Ashman T-L, Van De Peer Y.. 2020. Polyploidy: a biological force from cells to ecosystems. Trends in Cell Biology 30, 688–694. PubMed PMC

Geeta R. 2003. The origin and maintenance of nuclear endosperms: viewing development through a phylogenetic lens. Proceedings of the Royal Society B: Biological Sciences 270, 29–35. PubMed PMC

Georgiady MS, Whitkus RW, Lord EM.. 2002. Genetic analysis of traits distinguishing outcrossing and self-pollinating forms of currant tomato, Lycopersicon pimpinellifolium (Jusl.) Mill. Genetics 161, 333–344. PubMed PMC

Greiner R, Oberprieler C.. 2012. The role of inter-ploidy block for reproductive isolation of the diploid Leucanthemum pluriflorum Pau (Compositae, Anthemideae) and its tetra- and hexaploid relatives. Flora 207, 629–635.

Hadfield JD. 2010. MCMC methods for multi-response generalized linear mixed models: the MCMCglmm R package. Journal of Statistical Software 33, 1–22. PubMed PMC

Haig D, Westoby M.. 1991. Genomic imprinting in endosperm: its effect on seed development in crosses between species, and its implications for the evolution of apomixis. Philosophical Transactions of the Royal Society B: Biological Sciences 333, 1–13.

Hákansson A. 1952. Seed development after 2x, 4x crosses in Galeopsis pubescens. Hereditas 38, 425–448.

Håkansson A, Ellerström S.. 1950. Seed development after reciprocal crosses between diploid and tetraploid rye. Hereditas 36, 256–296.

Hatorangan MR, Laenen B, Steige KA, Slotte T, Köhler C.. 2016. Rapid evolution of genomic imprinting in two species of the Brassicaceae. The Plant Cell 28, 1815–1827. PubMed PMC

Hehenberger E, Kradolfer D, Köhler C.. 2012. Endosperm cellularization defines an important developmental transition for embryo development. Development 139, 2031–2039. PubMed

Husband BC. 2004. The role of triploid hybrids in the evolutionary dynamics of mixed-ploidy populations. Biological Journal of the Linnean Society 82, 537–546.

Husband BC, Schemske DW.. 1998. Cytotype distribution at a diploid–tetraploid contact zone in Chamerion (Epilobium) angustifolium (Onagraceae). American Journal of Botany 85, 1688–1694. PubMed

Johnston SA, Den Nijs TPM, Peloquin SJ, Hanneman RE.. 1980. The significance of genic balance to endosperm development in interspecific crosses. Theoretical and Applied Genetics 57, 5–9. PubMed

Köhler C, Mittelsten Scheid O, Erilova A.. 2010. The impact of the triploid block on the origin and evolution of polyploid plants. Trends in Genetics 26, 142–148. PubMed

Kolář F, Čertner M, Suda J, Schönswetter P, Husband BC.. 2017. Mixed-ploidy species: progress and opportunities in polyploid research. Trends in Plant Science 22, 1041–1055. PubMed

Kordyum E, Mosyakin S.. 2020. Endosperm of angiosperms and genomic imprinting. Life (Basel) 10, 104. PubMed PMC

Kradolfer D, Wolff P, Jiang H, Siretskiy A, Köhler C.. 2013. An imprinted gene underlies postzygotic reproductive isolation in Arabidopsis thaliana. Developmental Cell 26, 525–535. PubMed

Lafon-Placette C, Köhler C.. 2014. Embryo and endosperm, partners in seed development. Current Opinion in Plant Biology 17, 64–69. PubMed

Lafon-Placette C, Köhler C.. 2015. Epigenetic mechanisms of postzygotic reproductive isolation in plants. Current Opinion in Plant Biology 23, 39–44. PubMed

Lopes MA, Larkins BA.. 1993. Endosperm origin, development, and function. The Plant Cell 5, 1383–1399. PubMed PMC

Lowry DB, Modliszewski JL, Wright KM, Wu CA, Willis JH.. 2008. The strength and genetic basis of reproductive isolating barriers in flowering plants. Philosophical Transactions of the Royal Society B: Biological Sciences 363, 3009–3021. PubMed PMC

Lynch M, Force AG.. 2000. The origin of interspecific genomic incompatibility via gene duplication. The American Naturalist 156, 590–605. PubMed

Marks GE. 1966. The origin and significance of intraspecific polyploidy: experimental evidence from Solanum chacoense. Evolution 20, 552–557. PubMed

Meeus S, Šemberová K, De Storme N, Geelen D, Vallejo-Marín M.. 2020. Effect of whole-genome duplication on the evolutionary rescue of sterile hybrid monkeyflowers. Plant Communications 1, 100093. PubMed PMC

Melkus G, Rolletschek H, Radchuk R, Fuchs J, Rutten T, Wobus U, Altmann T, Jakob P, Borisjuk L.. 2009. The metabolic role of the legume endosperm: a noninvasive imaging study. Plant Physiology 151, 1139–1154. PubMed PMC

Morgan EJ, Čertner M, Lučanová M, Deniz U, Kubíková K, Venon A, Kovářík O, Lafon Placette C, Kolář F.. 2021. Disentangling the components of triploid block and its fitness consequences in natural diploid–tetraploid contact zones of Arabidopsis arenosa. New Phytologist 232, 1449–1462. PubMed

Morgan EJ, Čertner M, Lučanová M, Kubíková K, Marhold K, Kolář F.. 2020. Niche similarity in diploid–autotetraploid contact zones of Arabidopsis arenosa across spatial scales. American Journal of Botany 107, 1375–1388. PubMed

Morley-Smith ER, Pike MJ, Findlay K, Köckenberger W, Hill LM, Smith AM, Rawsthorne S.. 2008. The transport of sugars to developing embryos is not via the bulk endosperm in oilseed rape seeds. Plant Physiology 147, 2121–2130. PubMed PMC

Needham DC, Erickson HT.. 1992. Fecundity of tetraploid × diploid crosses and fertility of the resultant triploids in Salpiglossis sinuata. HortScience 27, 835–837.

Nieto Feliner G, Álvarez I, Fuertes-Aguilar J, et al.2017. Is homoploid hybrid speciation that rare? An empiricist’s view. Heredity 118, 513–516. PubMed PMC

Olsen O-A. 2004. Nuclear endosperm development in cereals and Arabidopsis thaliana. The Plant Cell 16, S214–S227. PubMed PMC

Ozimec B, Husband BC.. 2011. Effect of recurrent selfing on inbreeding depression and mating system evolution in an autopolyploid plant. Evolution 65, 2038–2049. PubMed

Pennington PD, Costa LM, Gutierrez-Marcos JF, Greenland AJ, Dickinson HG.. 2008. When genomes collide: aberrant seed development following maize interploidy crosses. Annals of Botany 101, 833–843. PubMed PMC

Pérez de la Vega M, Allard RW.. 1984. Mating system and genetic polymorphism in populations of Secale cereale and S. vavilovii. Canadian Journal of Genetics and Cytology 26, 308–317.

Pignatta D, Erdmann RM, Scheer E, Picard CL, Bell GW, Gehring M.. 2014. Natural epigenetic polymorphisms lead to intraspecific variation in Arabidopsis gene imprinting. eLife 4, e03198. PubMed PMC

Ramsey J, Bradshaw HD, Schemske DW.. 2003. Components of reproductive isolation between the monkeyflowers Mimulus lewisii and M. cardinalis (Phrymaceae). Evolution 57, 1520–1534. PubMed

Ramsey J, Schemske DW.. 1998. Pathways, mechanisms, and rates of polyploid formation in flowering plants. Annual Review of Ecology and Systematics 29, 467–501.

Renny-Byfield S, Wendel JF.. 2014. Doubling down on genomes: polyploidy and crop plants. American Journal of Botany 101, 1711–1725. PubMed

Rieseberg LH, Willis JH.. 2007. Plant speciation. Science 317, 910–914. PubMed PMC

Roccaforte K, Russo SE, Pilson D.. 2015. Hybridization and reproductive isolation between diploid Erythronium mesochoreum and its tetraploid congener E. albidum (Liliaceae): hybridization and reproductive isolation. Evolution 69, 1375–1389. PubMed

Roth M, Florez-Rueda AM, Paris M, Städler T.. 2018. Wild tomato endosperm transcriptomes reveal common roles of genomic imprinting in both nuclear and cellular endosperm. The Plant Journal 95, 1084–1101. PubMed

Sabara HA, Kron P, Husband BC.. 2013. Cytotype coexistence leads to triploid hybrid production in a diploid–tetraploid contact zone of Chamerion angustifolium (Onagraceae). American Journal of Botany 100, 962–970. PubMed

Salman-Minkov A, Sabath N, Mayrose I.. 2016. Whole-genome duplication as a key factor in crop domestication. Nature Plants 2, 16115. PubMed

Salony S, Clo J, Vallejo-Marín M, Kolář F.. 2024. Establishment of polyploidy in natural populations of Mimulus guttatus. Plant Systematics and Evolution 310, 30.

Sansome ER, Satina S, Blakeslee AF.. 1942. Disintegration of ovules in tetraploid–diploid and in incompatible species crosses in Datura. Bulletin of the Torrey Botanical Club 69, 405.

Schatlowski N, Kohler C.. 2012. Tearing down barriers: understanding the molecular mechanisms of interploidy hybridizations. Journal of Experimental Botany 63, 6059–6067. PubMed

Schneider CA, Rasband WS, Eliceiri KW.. 2012. NIH Image to ImageJ: 25 years of image analysis. Nature Methods 9, 671–675. PubMed PMC

Scott RJ, Spielman M, Bailey J, Dickinson HG.. 1998. Parent-of-origin effects on seed development in Arabidopsis thaliana. Development 125, 3329–3341. PubMed

Seehausen O, Butlin RK, Keller I, et al.2014. Genomics and the origin of species. Nature Reviews. Genetics 15, 176–192. PubMed

Sekine D, Ohnishi T, Furuumi H, Ono A, Yamada T, Kurata N, Kinoshita T.. 2013. Dissection of two major components of the post-zygotic hybridization barrier in rice endosperm. The Plant Journal 76, 792–799. PubMed

Servedio MR, Sætre G-P.. 2003. Speciation as a positive feedback loop between postzygotic and prezygotic barriers to gene flow. Proceedings of the Royal Society B: Biological Sciences 270, 1473–1479. PubMed PMC

Sicard A, Lenhard M.. 2011. The selfing syndrome: a model for studying the genetic and evolutionary basis of morphological adaptation in plants. Annals of Botany 107, 1433–1443. PubMed PMC

Simpson MG. 2010. Plant embryology. In: Plant systematics. Academic Press, 545–560.

Šingliarová B, Hodálová I, Mráz P.. 2011. Biosystematic study of the diploid–polyploid Pilosella alpicola group with variation in breeding system: patterns and processes. Taxon 60, 450–470.

Sobel JM, Chen GF.. 2014. Unification of methods for estimating the strength of reproductive isolation: estimating the strength of isolation. Evolution 68, 1511–1522. PubMed

Städler T, Florez-Rueda AM, Roth M.. 2021. A revival of effective ploidy: the asymmetry of parental roles in endosperm-based hybridization barriers. Current Opinion in Plant Biology 61, 102015. PubMed

Stoute AI, Varenko V, King GJ, Scott RJ, Kurup S.. 2012. Parental genome imbalance in Brassica oleracea causes asymmetric triploid block: parent-of-origin effects in Brassica oleracea. The Plant Journal 71, 503–516. PubMed

Takamura T, Miyajima I.. 1996. Colchicine induced tetraploids in yellow-flowered cyclamens and their characteristics. Scientia Horticulturae 65, 305–312.

Trávníček P, Dočkalová Z, Rosenbaumová R, Kubátová B, Szeląg Z, Chrtek J.. 2011. Bridging global and microregional scales: ploidy distribution in Pilosella echioides (Asteraceae) in central Europe. Annals of Botany 107, 443–454. PubMed PMC

Vallejo-Marín M, Cooley AM, Lee MY, Folmer M, McKain MR, Puzey JR.. 2016. Strongly asymmetric hybridization barriers shape the origin of a new polyploid species and its hybrid ancestor. American Journal of Botany 103, 1272–1288. PubMed

Van Dijk P, Hartog M, Van Delden W.. 1992. Single cytotype areas in autopolyploid Plantago media L.. Biological Journal of the Linnean Society 46, 315–331.

Van Dijkt P, Van Delden W.. 1990. Evidence for autotetraploidy in Plantago media and comparisons between natural and artificial cytotypes concerning cell size and fertility. Heredity 65, 349–357.

Vijayaraghavan MR, Prabhakar K.. 1984. The endosperm. In: Johri BM, ed. Embryology of angiosperms. Berlin, Heidelberg: Springer Berlin Heidelberg, 319–376.

Von Bothmer R, Jacobsen N.. 1986. Interspecific crosses in Hordeum (Poaceae). Plant Systematics and Evolution 153, 49–64.

von Wangenheim K-H. 1957. Untersuchungen über Den Zusammenhang Zwischen Chromosomenzahl Und Kreuzbarkeit Bei Solanum-Arten. Zeitschrift für Induktive Abstammungs- und Vererbungslehre 88, 21–37.

von Wangenheim K-H. 1962. Zur Ursache Der Abortion Von Samenanlagen In Diploid–Polyploid-Kreuzungen: II. Unterschiedliche Differenzierung von Endospermen Mit Gleichem Genom. Zeitschrift für Vererbungslehre 93, 319–334.

von Wangenheim K-H, Peterson HP.. 2004. Aberrant endosperm development in interploidy crosses reveals a timer of differentiation. Developmental Biology 270, 277–289. PubMed

Wendel JF, Lisch D, Hu G, Mason AS.. 2018. The long and short of doubling down: polyploidy, epigenetics, and the temporal dynamics of genome fractionation. Current Opinion in Genetics & Development 49, 1–7. PubMed

Wolff P, Jiang H, Wang G, Santos-González J, Köhler C.. 2015. Paternally expressed imprinted genes establish postzygotic hybridization barriers in Arabidopsis thaliana. eLife 4, e10074. PubMed PMC

Yakimowski SB, Rieseberg LH.. 2014. The role of homoploid hybridization in evolution: a century of studies synthesizing genetics and ecology. American Journal of Botany 101, 1247–1258. PubMed

Yan D, Duermeyer L, Leoveanu C, Nambara E.. 2014. The functions of the endosperm during seed germination. Plant and Cell Physiology 55, 1521–1533. PubMed

Zumajo-Cardona C, Aguirre M, Castillo-Bravo R, Mizzotti C, Di Marzo M, Banfi C, Mendes MA, Spillane C, Colombo L, Ezquer I.. 2023. Maternal control of triploid seed development by the TRANSPARENT TESTA 8 (TT8) transcription factor in Arabidopsis thaliana. Scientific Reports 13, 1316. PubMed PMC

Find record

Citation metrics

Loading data ...

Archiving options

Loading data ...