Cite

Bakker E. , Dees R. , Bakker J. and Goverse A. 2006. Mechanisms involved in plant resistance to nematodes, in Tzun S. and Bent E. (Eds), Multigenic and induced systemic resistance in plants, Springer Science, New York, NY, 31434. Search in Google Scholar

Beniers A. , Mulder A. and Schouten H. J. 1995. Selection for virulence of Globodera pallida by potato cultivar. Fundamental and Applied Nematology 18:497500. Search in Google Scholar

Beniers J. E. , Nöllen Y. , van Eck H. J. and Schouten H. J. 2019. Increased virulences of Globodera pallida during repeated rearing on different resistant potato cultivars could be explained by a simple model. Plant Pathology 68:44553.10.1111/ppa.12969 Search in Google Scholar

Byrd D. W. , Kirkpatrick T. and Barker K. R. 1983. An improved technique for clearing and staining plant tissues for detection of nematodes. Journal of Nematology 15:1423. Search in Google Scholar

Castagnone-Sereno P. , Bongiovanni M. and Wajnberg E. 2007. Selection and parasite evolution: a reproductive fitness cost associated with virulence in the parthenogenetic nematode Meloidogyne incognita . Evolutionary Ecology 21:25970.10.1007/s10682-006-9003-5 Search in Google Scholar

da Conceiçao I. L. P. M. , dos Santos M. C. V. , da Cunha M. J. M. , Abrantes I. M. d. O. and Santos M. S. N. d. A. 2005. Selection of genetic lines of G. pallida with different levels of virulence to resistant potato genotypes. Nematologia Mediterranea 33:7585. Search in Google Scholar

Dalamu B. V. , Umamaheshwari R. , Sharma R. , Kaushik S. K. , Joseph T. A. and Gebhardt C. 2012. Potato Cyst Nematode (PCN) resistance: genes, genotypes and markets-an update. SABRAO Journal of Breeding and Genetics 44:20228. Search in Google Scholar

Dalton E. , Griffin D. , Gallagher T. F. , de Vetten N. and Milbourne D. 2013. The effect of pyramiding two potato cyst nematode resistance loci to Globodera pallida Pa2/3 in potato. Molecular Breeding 31:92130.10.1007/s11032-013-9845-9 Search in Google Scholar

Den Nijs L. J. M. F. and Lock C. A. M. 1992. Differential hatching of the potato cyst nematodes Globodera rostochiensis and G. pallida in root diffusates and water of differing ionic composition. Netherlands Journal of Plant Pathology 98:11728. Search in Google Scholar

EPPO 2006. Testing of potato varieties to assess resistance to Globodera rostochiensis and Globodera pallida . EPPO Bulletin 36:41920.10.1111/j.1365-2338.2006.01032.x Search in Google Scholar

EPPO. 2013. Nematode extraction. EPPO Bulletin 43:47195.10.1111/epp.12077 Search in Google Scholar

Ferenci T. 2016. Trade-off mechanisms shaping the diversity of bacteria. Trends in Microbiology 24:20923.10.1016/j.tim.2015.11.00926705697 Search in Google Scholar

Fournet S. , Eoche-Bosy D. , Renault L. , Hamelin F. M. and Montarry J. 2016. Adaptation to resistant hosts increases fitness on susceptible hosts in the plant parasitic nematode Globodera pallida . Ecology and Evolution 6:255968.10.1002/ece3.2079479716127066239 Search in Google Scholar

Fournet S. , Kerlan M. C. , Renault L. , Dantec J. P. , Rouaux C. and Montarry J. 2013. Selection of nematodes by resistant plants has implications for local adaptation and cross-virulence. Plant Pathology 62:18493.10.1111/j.1365-3059.2012.02617.x Search in Google Scholar

Greet D. N. 1974. The response of five round-cyst nematodes (Heteroderidae) to five artificial hatching agents. Nematologica 20:3634.10.1163/187529274X00410 Search in Google Scholar

Hutten R. C. B. and van Berloo R. 2001. An online potato pedigree database. Available at: www.plantbreeding.wur.nl/PotatoPedigree/ (accessed September 10, 2019) Search in Google Scholar

Jenner C. E. , Wang X. , Ponz F. and Walsh J. A. 2002. A fitness cost for Turnip mosaic virus to overcome host resistance. Virus Research 86:16.10.1016/S0168-1702(02)00031-X12076824 Search in Google Scholar

JKI. 2017. Julius Kühn-Institut Bundesforschungsinstitut für Kulturpflanzen Bekanntmachung. von Kartoffelsorten mit Resistenz gegen Kartoffelkrebs (Synchytrium endobioticum) und Kartoffelzystennematoden (Globodera rostochiensis und Globodera pallida), Bundesanzeiger, Quedlinburg, Germany, July 10. Search in Google Scholar

Kaloshian I. , Williamson V. M. , Miyao G. , Lawn D. A. and Westerdahl B. B. 1996. ‘Resistance breaking’ nematodes in California tomatoes. California Agriculture 50:189.10.3733/ca.v050n06p18 Search in Google Scholar

Kort J. , Rumpenhorst H. J. and Stone A. R. 1977. An international scheme for identification and classifying pathotypes of potato cyst nematodes Globodera rostochiensis and G. pallida. Nematologica 23:3339.10.1163/187529277X00057 Search in Google Scholar

Moens M , Perry R. N. and Jones J. T. 2018. Cyst nematodes-life cycle and economic importance, in Moens M. , Perry R. N. and Jones J. T. (Eds), Cyst nematodes, 2nd ed., CAB International, Wallingford, 16. Search in Google Scholar

Montarry J. , Hamelin F. M. , Glais I. , Corbi R. and Andrivon D. 2010. Fitness costs associated with unnecessary virulence factors and life history traits: evolutionary insights from the potato late blight pathogen Phytophthora infestans . BMC Evolutionary Biology 10 283:19.10.1186/1471-2148-10-283294987220846405 Search in Google Scholar

Müller J. and Rumpenhorst H. J. 2000. Die Prüfung von Pflanzen auf ihre Widerstandsfähigkeit gegen Schadorganismen in der Biologischen Bundesanstalt: Teil 1: Prüfung von Kulturpflanzen auf Resistenz gegen pflanzenparasitäre Nematoden. Mitteilungen aus der Biologischen Bundesanstalt für Land- und Forstwirtschaft, Band 372, Parey Buchverlag, Berlin. Search in Google Scholar

Mwangi J. M. , Niere B. , Daub M. , Finckh M. R. and Kiewnick S. 2019. Reproduction of Globodera pallida on tissue culture-derived potato plants and their potential use in resistance screening process. Nematology 21:61323.10.1163/15685411-00003239 Search in Google Scholar

Niere B. , Krüssel S. and Osmers K. 2014. Auftreten einer außergewöhnlich virulenten Population der Kartoffelzystennematoden. Journal für Kulturpflanzen 66:4237. Search in Google Scholar

Perry R. N. 1998. The physiology and sensory perception of potato cyst nematodes, Globodera species, in Marks J. B. and Brodie B. B. (Eds), Potato cyst nematodes biology, distribution and control, CAB International, Wallingford, 2749. Search in Google Scholar

Peyraud R. , Cottret L. , Marmiesse L. , Gouzy J. and Genin S. 2016. A resource allocation trade-off between virulence and proliferation drives metabolic versatility in the plant pathogen Ralstonia solanacearum . PLoS Pathogens 12 (10):125.10.1371/journal.ppat.1005939506143127732672 Search in Google Scholar

Rawsthorne D. and Brodie B. B. 1986. Relationship between root growth of potato, root diffusate production, and hatching of Globodera rostochiensis . Nematology 18:37984. Search in Google Scholar

REX Consortium. 2016. Combining selective pressures to enhance the durability of disease resistance genes. Frontiers in Plant Science 7 (1916):1-8.10.3389/fpls.2016.01916518019428066472 Search in Google Scholar

Rice S. L. , Leadbeater B. S. C. and Stone A. R. 1985. Changes in cell structure in roots of resistant potatoes parasitized by potato cyst-nematodes. I. Potatoes with resistance gene H1 derived from Solanum tuberosum ssp. andigena . Physiological Plant Pathology 27:21934. Search in Google Scholar

Rigney B. , Blok V. , Griffin D. , Dalton E. and Milbourne D. 2017. Consistent action of two partially effective loci conferring resistance to Globodera pallida Pa 2/3 across multiple nematode field populations. Plant Pathology 66:103140.10.1111/ppa.12640 Search in Google Scholar

Schouten H. J. 1993. Models of incomplete selection for virulence of potato cyst nematodes caused by sex determination that depends on host resistance. Netherlands Journal of Plant Pathology 99:191200.10.1007/BF03041409 Search in Google Scholar

Schouten H. J. and Beniers J. E. 1997. Durability of resistance to Globodera pallida. 1. changes in pathogenicity, virulence, and aggressiveness during reproduction on partially resistant potato cultivars. Phytopathology 87:8627. Search in Google Scholar

Seinhorst J. W. and Den-Ouden H. 1966. An improvement of Bijloo’s method for determining the egg content of Heterodera cysts. Nematologica 12:1701.10.1163/187529266X00185 Search in Google Scholar

Smant G. , Helder J. and Goverse A. 2018. Parallel adaptations and common host cell responses enabling feeding of obligate and facultative plant parasitic nematodes. The Plant Journal 93:686702.10.1111/tpj.1381129277939 Search in Google Scholar

Stone A. R. 1972. Heterodera pallida n. sp. (Nematoda: Heteroderidae), a second species of potato cyst nematode). Nematologica 18:591606. Search in Google Scholar

Thrall P. H. 2003. Evolution of virulence in a plant host-pathogen metapopulation. Science 299:17357.10.1126/science.108007012637745 Search in Google Scholar

Trudgill D. L. 1967. The effect of environment on sex determination in Heterodera rostochiensis . Nematologica 13:26372.10.1163/187529267X00120 Search in Google Scholar

Turner S. J. 1990. The identification and fitness of virulent potato cyst nematode populations Globodera pallida selected on resistant Solarium vernei hybrids for up to eleven generations. Annals of Applied Biology 117:38597.10.1111/j.1744-7348.1990.tb04225.x Search in Google Scholar

Turner S. J. and Fleming C. C. 2002. Multiple selection of potato cyst nematode Globodera pallida virulence on a range of potato species. I. Serial selection on Solanum-hybrids. European Journal of Plant Pathology 108:4672002. Search in Google Scholar

Turner S. J. , Stone A. R. and Perry J. N. 1983. Selection of potato cyst-nematodes on resistant Solanum vernei hybrids. Euphytica 32:9117.10.1007/BF00042173 Search in Google Scholar

van Berloo R. , Hutten R. C. B. , van Eck H. J. and Visser R. G. F. 2007. An online potato pedigree database resource. Potato Research 50:4557.10.1007/s11540-007-9028-3 Search in Google Scholar

van Bezooijen J. 2006. Methods and techniques for nematology. Nematology manual, Wageningen University, Wageningen. Search in Google Scholar

Vera Cruz C. M. , Bai J. , Ona I. , Leung H. , Nelson R. J. , Mew T.-W. and Leach J. E. 2000. Predicting durability of a disease resistance gene based on an assessment of the fitness loss and epidemiological consequences of avirulence gene mutation. Proceedings of the National Academy of Sciences, 97:135005.10.1073/pnas.2502719971760411095723 Search in Google Scholar

Williamson V. M. and Kumar A. 2006. Nematode resistance in plants: the battle underground. Trends in Genetics 22:396403.10.1016/j.tig.2006.05.00316723170 Search in Google Scholar

Wollenweber W. H. 1923. Krankheiten und Beschädigungen der Kartoffel. Arbeiten Forschungs Institut für Kartoffel 7:156. Search in Google Scholar

Wondafrash M. , Van Dam N. M. and Tytgat T. O. G. 2013. Plant systemic induced responses mediate interactions between root parasitic nematodes and above ground herbivorous insects. Frontiers in Plant Science 4:115. Search in Google Scholar

eISSN:
2640-396X
Idioma:
Inglés
Calendario de la edición:
Volume Open
Temas de la revista:
Life Sciences, other