Agri-History: Recent Episodes

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Plant History

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Dale, A., Moore, P. P., McNicol, R. J., Sjulin, T. M., &Burmistrov, L. A. (1993). Genetic Diversity of Red Raspberry Varietiesthroughout the-World. Journal of the AmericanSociety for Horticultural Science jashs, 118(1), 119-129. Retrieved Mar 18,2024, from https://doi.org/10.21273/JASHS.118.1.119

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Sedra, My Hassan, et al. "Identification and genetic diversity analysis of date palm (Phoenix dactylifera L.) varieties from Morocco using RAPD markers." Euphytica 103.1 (1998): 75-82.

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Cupic, Tihomir, et al. "Genetic diversity of pea (Pisum sativum L.) genotypes assessed by pedigree, morphological and molecular data." J. Food Agric. Environ 7.3 (2009): 4.

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Guérin, Fabien, and Bruno Le Cam. "Breakdown of the scab resistance gene Vf in apple leads to a founder effect in populations of the fungal pathogen Venturia inaequalis." Phytopathology 94.4 (2004): 364-369.

Rajcan, I. (2022). Personal Communications.

Oil Palm Breeding: Genetics and Genomics. (2021). ROUTLEDGE

Morgan, J., Richards, A., & Dowle, E. (2002). The New Book of Apples: The Definitive Guide to apples including over 2,000 varieties. Ebury Press.

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J. Wilner. 1965. THE INFLUENCE OF MATERNAL PARENT ON FROST-HARDINESS OF APPLE PROGENIES. Canadian Journal of Plant Science. 45(1): 67-71. https://doi.org/10.4141/cjps65-008

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Rozhmina, T.A. & Loshakova, N.I.. (2016). New sources of effective resistance genes to Fusarium wilt in flax (Linum usitatissimum L.) depending on temperature. Sel'skokhozyaistvennaya Biologiya. 51. 310-317. 10.15389/agrobiology.2016.3.310eng.

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Srivastava, Avinash & Chaturvedi, Sushil & Singh, N.. (2016). Genetic base of Indian chickpea (Cicer arietinum L.) varieties revealed by pedigree analysis. Legume Research - An International Journal. 40. 10.18805/lr.v0iOF.3550.

Istvan Rajcan

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Li-xia WANG, Xu-zhen CHENG, Su-hua WANG, Jing TIAN, Analysis of an Applied Core Collection of Adzuki Bean Germplasm by Using SSR Markers, Journal of Integrative Agriculture, Volume 11, Issue 10, 2012, Pages 1601-1609, ISSN 2095-3119, https://doi.org/10.1016/S2095-3119(12)60163-4.

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Badr, A., El-Shazly, H. H., & Watson, L. E. (2008). Origin and ancestry of Egyptian clover (Trifolium alexandrinum L.) As revealed by AFLP markers. Genetic Resources and Crop Evolution, 55(1), 21–31. https://doi.org/10.1007/s10722-007-9210-0Kjærgaard, T. (2003). A plant that changed the world: The rise and fall of clover 1000-2000. Landscape Research, 28(1), 41–49. https://doi.org/10.1080/01426390306531Speer, G. S., & Allinson, D. W. (1985). Kura clover (Trifolium ambiguum): Legume for forage and soil conservation. Economic Botany, 39(2), 165–176. https://doi.org/10.1007/BF02907841

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https://www.country-guide.ca/daily/feds-as-for-feedback-on-potato-wart-plans/
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Rugienius, R., Stanienė, G., Gelvonauskienė, D., Stepulaitienė, I, Haimi, P., Baniulis, D. and Stanys, V. (2017). Assessment of cold hardiness of apple and pear in vitro. Acta Hortic. 1172, 381-384
DOI: 10.17660/ActaHortic.2017.1172.72
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https://www.cbc.ca/news/canada/london/london-ontario-andriani-pasta-factory-investment-1.7084247
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Howard, N. P., Peace, C., Silverstein, K. A. T., Poets, A., Luby, J. J., Vanderzande, S., … van de Weg, E. (2021). The use of shared haplotype length information for pedigree reconstruction in asexually propagated outbreeding crops, demonstrated for apple and sweet cherry. Horticulture Research, 8(1). https://doi.org/10.1038/s41438-021-00637-5
Luby, J. J., Howard, N. P., Tillman, J. R., & Bedford, D. S. (2022). Extended Pedigrees of Apple Cultivars from the University of Minnesota Breeding Program Elucidated Using SNP Array Markers. HortScience, 57(3), 472–477. https://doi.org/10.21273/HORTSCI16354-21
Noiton, D. A. M., & Alspach, P. A. (1996). Founding clones, inbreeding, coancestry, and status number of modern apple cultivars. Journal of the American Society for Horticultural Science, 121(5), 773–782. https://doi.org/10.21273/jashs.121.5.773
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Howard, N. P., Van De Weg, E., Bedford, D. S., Peace, C. P., Vanderzande, S., Clark, M. D., … Luby, J. J. (2017). Elucidation of the Honeycrisp’ pedigree through haplotype analysis with a multi-family integrated SNP linkage map and a large apple (Malus×domestica) pedigree-connected SNP data set. Horticulture Research, 4(January), 1–7. https://doi.org/10.1038/hortres.2017.3
Luby, J. J., Howard, N. P., Tillman, J. R., & Bedford, D. S. (2022). Extended Pedigrees of Apple Cultivars from the University of Minnesota Breeding Program Elucidated Using SNP Array Markers. HortScience, 57(3), 472–477. https://doi.org/10.21273/HORTSCI16354-21
Muranty, H., Denancé, C., Feugey, L., Crépin, J. L., Barbier, Y., Tartarini, S., … Durel, C. E. (2020). Using whole-genome SNP data to reconstruct a large multi-generation pedigree in apple germplasm. BMC Plant Biology, 20(1), 1–18. https://doi.org/10.1186/s12870-019-2171-6

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Flandez-Galvez,H., Ades, P. K., Ford, R., Pang, E. C., & Taylor, P. W. (2003). QTLanalysis for Ascochyta blight resistance in an intraspecific population ofchickpea (Cicer arietinum L.). Theoretical and Applied Genetics, 107(7),1257–1265. https://doi.org/10.1007/s00122-003-1371-4

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Stafecka, I., Grauda, D., & Stramkale, V. (2019). The evaluation of disease resistance of flax genotypes in relation to environmental factors. Zemdirbyste-Agriculture, 106(4), 367–376. https://doi.org/10.13080/z-a.2019.106.047

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Corbineau, R., Ruas, M. P., Barbier-Pain, D., Fornaciari, G., Dupont, H., & Colleter, R. (2018). Plants and aromatics for embalming in Late Middle Ages and modern period: a synthesis of written sources and archaeobotanical data (France, Italy). Vegetation History and Archaeobotany, 27(1), 151–164. https://doi.org/10.1007/s00334-017-0620-4

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Hancock, J. F., & Lobos, G. A. (2008). Temperate fruit Crop Breeding. https://doi.org/10.1007/978-1-4020-69...

Chandler, C. K., Santos, B. M., Peres, N. A., Jouquand, C., & Plotto, A. (2009). “Florida Elyana” strawberry. HortScience, 44(6), 1775–1776. https://doi.org/10.21273/hortsci.44.6.1775

Graham, J., McNicol, R. J., & McNicol, J. W. (1996). A comparison of methods for the estimation of genetic diversity in strawberry cultivars. Theoretical and Applied Genetics, 93(3), 402–406. https://doi.org/10.1007/BF00223182

Hardigan, M. A., Lorant, A., Pincot, D. D. A., Feldmann, M. J., Famula, R. A., Acharya, C. B., … Knapp, S. J. (2021). Unraveling the Complex Hybrid Ancestry and Domestication History of Cultivated Strawberry. Molecular Biology and Evolution, 38(6), 2285–2305. https://doi.org/10.1093/molbev/msab024

Hardigan, M. A., Poorten, T. J., Acharya, C. B., Cole, G. S., Hummer, K. E., Bassil, N., … Knapp, S. J. (2018). Domestication of Temperate and Coastal Hybrids with Distinct Ancestral Gene Selection in Octoploid Strawberry. The Plant Genome, 11(3), 180049. https://doi.org/10.3835/plantgenome2018.07.0049

Horvath, A., Sánchez-Sevilla, J. F., Punelli, F., Richard, L., Sesmero-Carrasco, R., Leone, A., … Denoyes, B. (2011). Structured diversity in octoploid strawberry cultivars: Importance of the old European germplasm. Annals of Applied Biology, 159(3), 358–371. https://doi.org/10.1111/j.1744-7348.2011.00503.x

Lyzhin, A. S., Luk’Yanchuk, I. V., & Zhbanova, E. V. (2020). Polymorphism of the FaOMT and FaFAD1 genes for fruit flavor volatiles in strawberry varieties and wild species from the genetic collection of the Michurin Federal Research Center. Vavilovskii Zhurnal Genetiki i Selektsii, 24(1), 5–11. https://doi.org/10.18699/VJ20.588

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https://www.sciencefriday.com/articles/why-dont-banana-candies-taste-like-real-bananas/

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Pincot, D. D. A., Ledda, M., Feldmann, M. J., Hardigan, M. A., Poorten, T. J., Runcie, D. E., … Knapp, S. J. (2021). Social network analysis of the genealogy of strawberry: Retracing the wild roots of heirloom and modern cultivars. G3: Genes, Genomes, Genetics, 11(3). https://doi.org/10.1093/G3JOURNAL/JKAB015 Hadadinejad, M., Ebadi, A., Naghavi, M. R., & Nikkhah, R. (2011). Genealogy and molecular diversity of Iranian grapevine progenies. Journal of Agricultural Science and Technology, 13(SUPPL.), 1147–1161.

https://www.hort.purdue.edu/newcrop/pri/coop38-3.html https://www.saltspringapplecompany.com/nonpareil https://pomiferous.com/ https://smallbiztrends.com/2014/06/psychology-of-colors.html Cliff, M. A., Sanford, K., & Johnston, E. (1999). Evaluation of hedonic scores and R-indices for visual, flavour and texture preferences of apple cultivars by British Columbian and Nova Scotian consumers. Canadian Journal of Plant Science, 79(3), 395–399. https://doi.org/10.4141/P98-101 Cornille, A., Antolín, F., Garcia, E., Vernesi, C., Fietta, A., Brinkkemper, O., … Roldán-Ruiz, I. (2019). A Multifaceted Overview of Apple Tree Domestication. Trends in Plant Science, 24(8), 770–782. https://doi.org/10.1016/j.tplants.2019.05.007 Gharghania, A., Zamani, Z., Talaie, A., Fattahi, R., Hajnajari, H., Oraguzie, N. C., … Gardiner, S. E. (2010). The role of Iran (Persia) in apple (Malus × domestica Borkh.) domestication, evolution and migration via the Silk Trade Route. Acta Horticulturae, 859(April), 229–236. https://doi.org/10.17660/actahortic.2010.859.26 Gritsenko, D., Pozharskiy, A., Dolgikh, S., Aubakirova, K., Kenzhebekova, R., Galiakparov, N., … Sadykov, S. (2022). Apple varieties from Kazakhstan and their relation to foreign cultivars assessed with RosBREED 10K SNP array. European Journal of Horticultural Science, 87(1), 1–8. https://doi.org/10.17660/eJHS.2022/006 Howard, N. P., Micheletti, D., Luby, J. J., Durel, C. E., Denancé, C., Muranty, H., … Albach, D. C. (2022). Pedigree reconstruction for triploid apple cultivars using single nucleotide polymorphism array data. Plants People Planet, (March), 1–14. https://doi.org/10.1002/ppp3.10313 Howard, N. P., Van De Weg, E., Bedford, D. S., Peace, C. P., Vanderzande, S., Clark, M. D., … Luby, J. J. (2017). Elucidation of the Honeycrisp’ pedigree through haplotype analysis with a multi-family integrated SNP linkage map and a large apple (Malus×domestica) pedigree-connected SNP data set. Horticulture Research, 4(January), 1–7. https://doi.org/10.1038/hortres.2017.3 Luby, J. J., Howard, N. P., Tillman, J. R., & Bedford, D. S. (2022). Extended Pedigrees of Apple Cultivars from the University of Minnesota Breeding Program Elucidated Using SNP Array Markers. HortScience, 57(3), 472–477. https://doi.org/10.21273/HORTSCI16354-21 Noiton, D. A. M., & Alspach, P. A. (1996). Founding Clones , Inbreeding , Coancestry , and Status Number of Modern Apple Cultivars, 121(5), 773–782. Ordidge, M., Kirdwichai, P., Fazil Baksh, M., Venison, E. P., George Gibbings, J., & Dunwell, J. M. (2018). Genetic analysis of a major international collection of cultivated apple varieties reveals previously unknown historic heteroploid and inbred relationships. PLoS ONE, 13(9), 1–26. https://doi.org/10.1371/journal.pone.0202405 Spence, C. (2015). On the psychological impact of food colour. Flavour, 4(1), 1–16. https://doi.org/10.1186/s13411-015-0031-3

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Howard, N. P., Micheletti, D., Luby, J. J., Durel, C. E., Denancé, C., Muranty, H., … Albach, D. C. (2022). Pedigree reconstruction for triploid apple cultivars using single nucleotide polymorphism array data. Plants People Planet, (March), 1–14. https://doi.org/10.1002/ppp3.10313

Khan Lab. (2021). Khan Lab : Mechanisms of Fruit Diseases and Resistance Fire blight Susceptibility of Common Apple Varieties Fire blight Susceptibility of Common Apple Varieties. Retrieved from https://blogs.cornell.edu/khanlab/extension/fire-blight-susceptibility-of-common-apple-cultivars/

Muranty, H., Denancé, C., Feugey, L., Crépin, J. L., Barbier, Y., Tartarini, S., … Durel, C. E. (2020). Using whole-genome SNP data to reconstruct a large multi-generation pedigree in apple germplasm. BMC Plant Biology, 20(1), 1–18. https://doi.org/10.1186/s12870-019-2171-6

Noiton, D. A. M., & Alspach, P. A. (1996). Founding clones, inbreeding, coancestry, and status number of modern apple cultivars. Journal of the American Society for Horticultural Science, 121(5), 773–782. https://doi.org/10.21273/jashs.121.5.773

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https://omafra.gov.on.ca/IPM/english/apples/diseases-and-disorders/moldy-core.html#advanced

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Li, P., Shen, J., Wang, Z., Liu, S., Liu, Q., Li, Y., … Xiao, P. (2021). Genus Paeonia: A comprehensive review on traditional uses, phytochemistry, pharmacological activities, clinical application, and toxicology. Journal of Ethnopharmacology, 269(August 2020), 113708. https://doi.org/10.1016/j.jep.2020.11...https://archive.org/details/in.ernet....http://www.naturalmedicinalherbs.net/...https://www.homeopathycenter.org/medi...https://www.nlm.nih.gov/hmd/greek/gre...https://www.worldhistory.org/article/...https://www.reference.com/history/cou...https://madeinturkeytours.com/history...https://www.bitchute.com/channel/m7Sw...

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Collard, B. C.Y., Jahufer, M. Z. Z., Brouwer, J. B., & Pang, E. C. K. (2005). Anintroduction to markers , quantitative trait loci ( QTL ) mapping andmarker-assisted selection for crop improvement : The basic concepts, 169–196.https://doi.org/10.1007/s10681-005-1681-5

Khan, M. A.,Durel, C. E., Duffy, B., Drouet, D., Kellerhals, M., Gessler, C., &Patocchi, A. (2007). Development of molecular markers linked to the “Fiesta”linkage group 7 major QTL for fire blight resistance and their application formarker-assisted selection. Genome, 50(6), 568–577.https://doi.org/10.1139/G07-033

Muranty, H.,Denancé, C., Feugey, L., Crépin, J. L., Barbier, Y., Tartarini, S., … Durel, C.E. (2020). Using whole-genome SNP data to reconstruct a large multi-generationpedigree in apple germplasm. BMC Plant Biology, 20(1), 1–18.https://doi.org/10.1186/s12870-019-2171-6

Soomro, T.,Jordan, M., Watts, S., Migicovsky, Z., Forney, C. F., Song, J., & Myles, S.(2023). Genomic insights into apple aroma diversity. Fruit Research, 3(1),0–0. https://doi.org/10.48130/frures-2023-0027

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Аrbаin, D.,Saputri, G. A., Syahputra, G. S., Widiyastuti, Y., Susanti, D., & Taher, M.(2021). Genus Pterocarpus: A review of ethnopharmacology, phytochemistry,biological activities, and clinical evidence. Journal of Ethnopharmacology,278(March). https://doi.org/10.1016/j.jep.2021.114316

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Booth, J. K., Yuen, M. M. S., Jancsik, S., Madilao, L. L., & Page, A. J. E. (2020). Terpene synthases and terpene variation in cannabis sativa1[OPEN]. Plant Physiology, 184(1), 130–147. https://doi.org/10.1104/PP.20.00593
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Henry, P.(2015). Genome-wide analyses reveal clustering in Cannabis cultivars: theancient trilogy of a panacea. PeerJ PrePrints, 3, e1935.

Henry, P.(2019). Cannabis chemovar classification : terpenes hyper-classes and, (October2017). https://doi.org/10.7287/peerj.preprints.3307v1

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Howard, N. P., Peace, C., Silverstein, K. A. T., Poets, A., Luby, J. J., Vanderzande, S., … van de Weg, E. (2021). The use of shared haplotype length information for pedigree reconstruction in asexually propagated outbreeding crops, demonstrated for apple and sweet cherry. Horticulture Research, 8(1). https://doi.org/10.1038/s41438-021-00637-5
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Ntatsi, G., Karkanis, A., Yfantopoulos, D., Pappa, V., Konosonoka, I. H., Travlos, I., … Savvas, D. (2019). Evaluation of the field performance, nitrogen fixation efficiency and competitive ability of pea landraces grown under organic and conventional farming systems. Archives of Agronomy and Soil Science, 65(3), 294–307. https://doi.org/10.1080/03650340.2018.1501155Rubiales, D., Fondevilla, S., & Fernández-Aparicio, M. (2021). Development of pea breeding lines with resistance to orobanche crenata derived from pea landraces and wild Pisum spp. Agronomy, 11(1). https://doi.org/10.3390/agronomy11010036Sun, S., Fu, H., Wang, Z., Duan, C., Zong, X., & Zhu, Z. (2016). Discovery of a novel er1 allele conferring powdery mildew resistance in Chinese Pea (Pisum sativum L.) landraces. PLoS ONE, 11(1), 1–17. https://doi.org/10.1371/journal.pone.0147624

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Khan Lab. (2021). Khan Lab : Mechanisms of Fruit Diseases and Resistance Fire blight Susceptibility of Common Apple Varieties Fire blight Susceptibility of Common Apple Varieties. Retrieved from https://blogs.cornell.edu/khanlab/extension/fire-blight-susceptibility-of-common-apple-cultivars/

RHS. (2022). Apple and Pear Scab. Retrieved from https://www.rhs.org.uk/disease/apple-and-pear-scab

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https://extension.psu.edu/2023-disease-update-scout-for-fire-blight-and-apple-scab-infections
Luby, J. J., Alspach, P. A., Bus, V. G. M., & Oraguzie, N. C. (2002). Field resistance to fire blight in a diverse apple (Malus sp.) germplasm collection. Journal of the American Society for Horticultural Science, 127(2), 245–253. https://doi.org/10.21273/jashs.127.2.245

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Roy E Coombs Violets: The History & Cultivation of Scented Violets

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The New Book of Apples: The Definitive Guide to Over 2,000 Varieties Hardcover Joan Morgan, Alison Richards, Elisabeth Dowle

The Book of Pears: The Definitive History and Guide to Over 500 Varieties Hardcover by Joan Morgan

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Edwards, A. W. F. (2000). Anectodal, historical and critical commentaries on genetics. Genetics, 154(4), 1419–1426.

Gaion, L. A., Braz, L. T., & Carvalho, R. F. (2018). Grafting in Vegetable Crops: A Great Technique for Agriculture. International Journal of Vegetable Science, 24(1), 85–102. https://doi.org/10.1080/19315260.2017.1357062

Hao, M., Zhang, L., Ning, S., Huang, L., Yuan, Z., Wu, B., … Liu, D. (2020). The Resurgence of Introgression Breeding, as Exemplified in Wheat Improvement. Frontiers in Plant Science, 11(March), 1–11. https://doi.org/10.3389/fpls.2020.00252

Jarvis, D. I., & Hodgkin, T. (1999). Wild relatives and crop cultivars: Detecting natural introgression and farmer selection of new genetic combinations in agroecosystems. Molecular Ecology, 8(12 SUPPL. 1), 159–174. https://doi.org/10.1046/j.1365-294x.1999.00799.x

Mwangangi, I. M., Kiilu Muli, J., & Neondo, J. O. (2019). Plant Hybridization as an Alternative Technique in Plant Breeding Improvement. Asian Journal of Research in Crop Science, 4(1), 1–11. https://doi.org/10.9734/ajrcs/2019/v4i130059

Pelletier, G., Primard, C., Vedel, F., Chetrit, P., Remy, R., Rousselle, & Renard, M. (1983). Intergeneric cytoplasmic hybridization in cruciferae by protoplast fusion. MGG Molecular & General Genetics, 191(2), 244–250. https://doi.org/10.1007/BF00334821

Dr Istvan Rajcan

https://www.bitchute.com/video/zdQfFRfNR77M/

https://www.bitchute.com/video/2Bc7hJaOPE7j/

Music - Cassette Tape by Blue Moon

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Amato, L. D., López-Anido, F. S., Zayas, A., & Martin, E. A. (2021). Genetic resources in asparagus: diversity and relationships in a collection from different origins and breeding status. New Zealand Journal of Crop and Horticultural Science, 0(0), 1–12. https://doi.org/10.1080/01140671.2021.1940217

Bruce, R. W., Torkamaneh, D., Grainger, C., Belzile, F., Eskandari, M., & Rajcan, I. (2019). Genome-wide genetic diversity is maintained through decades of soybean breeding in Canada. Theoretical and Applied Genetics, 132(11), 3089–3100. https://doi.org/10.1007/s00122-019-03408-y

Delannay, X., Rodgers, D. M., & Palmer, R. G. (1983). Relative Genetic Contributions Among Ancestral Lines to North American Soybean Cultivars 1 . Crop Science, 23(5), 944–949. https://doi.org/10.2135/cropsci1983.0011183x002300050031x

Knaflewski, M. (n.d.). Genealogy of asparagus cultivars.

Lammerts van Bueren, E. T., & Myers, J. R. (2011). Organic Crop Breeding. Organic Crop Breeding. https://doi.org/10.1002/9781119945932

Rauf, S., & Silva, J. Da. (2010). Consequences of plant breeding on genetic diversity. Int J Plant Breed, 4(Troyer 1996), 1–21. Retrieved from http://globalsciencebooks.info/JournalsSup/images/Sample/IJPB_4(1)1-21o.pdf

Dr David Wolyn

Dr Istvan Rajcan

Music - Cassette Tape by Blue Moon

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Morgan, Joan. The New Book of Apples. Ebury Digital, 2013.

http://www.suttonelms.org.uk/apple102.html

https://awgsalesservices.com/2016/04/21/color-psychology-in-food-marketing/

https://www.groceteria.com/about/a-quick-history-of-the-supermarket/

Deen, W., Martin, R. C., Hooker, D. C., & Gaudin, A. (1950). BENEFITS AND DRIVERS, 1–16.

Gaudin,  A. C. M., Westra, S., Loucks, C. E. S., Janovicek, K., Martin, R. C.,  & Deen, W. (2013). Improving resilience of northern field crop  systems using inter-seeded red clover: A review. Agronomy, 3(1),  148–180. https://doi.org/10.3390/agronomy3010148

Noiton,  D. A. M., & Alspach, P. A. (1996). Founding Clones , Inbreeding ,  Coancestry , and Status Number of Modern Apple Cultivars, 121(5),  773–782.

Music - Cassette Tape by Blue Moon

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An experiment figuring out how resistant a panel of soybeans are in terms of white mold resistance.

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All the Odds and Ends videos in one video

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sources see here: https://www.bitchute.com/video/kfqDiEs9EXDX/

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https://www.plant.uoguelph.ca/hjearl

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https://www.lynfredwinery.com/

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The Combination of all the Pesticide videos

Matthews, G. A. (1960). Insecticides Post-1950.

Matthews, G. A. (2018a). Fungicides, 115–134.

Matthews, G. A. (2018b). Herbicides, 99–114.

Matthews, G. A. (2018). Pesticides in the early part of the 20th century. A History of Pesticides, 1–27. https://doi.org/10.1079/9781786394873.0001

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https://horticulture.wisc.edu/directory/philipp-simon/

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The combination of all my videos on cultural interactions with plants

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A combination of all my Ethnobotany videos

https://www.bitchute.com/channel/m7SwT7viOQDa/

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caw34@cornell.edu

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All Archaeobotany videos Combined.

See: https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ?view_as=subscriber

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A combination of all my tropical crop domestication videos

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https://www.cpc-ccp.com/egan-brockhoff

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Professor and Director of the Honey Bee Research Centre/ Pinchin Fam. Chair in Honey Bee Health

Email:

eguzman@uoguelph.ca

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https://theplanthunter.garden/

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Email  mbohn@illinois.edu 

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Email:

mrmcdona@uoguelph.ca

Phone:

(519) 824-4120 x52791

Fax:

(519) 763-8933

Education:

B.Sc. (Agr.) University of Guelph, Major: Plant Protection;

M.Sc. University of Guelph in Plant Pathology;

Ph.D. University of Guelph in Plant Pathology

Location:

Crop Science Building

Muck Crops Research Station

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https://khalifagenetics.com/

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Office: 1251 Fifield Hall

Phone: (352) 273-4350

E-mail: kfolta@ufl.edu

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https://ebymanor.ca/

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It is the fusion of all my Herb videos on YouTube

sources

see my YouTube or BitChute channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ/videos

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It is the fusion of all my remaining main series videos on YouTube

sources

see my YouTube or BitChute channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ/videos

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It is the fusion of all my Vegetable videos on YouTube

sources

see my YouTube or BitChute channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ/videos

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It is the fusion of all my protein and oil seed videos on YouTube

sources

see my YouTube or BitChute channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ/videos

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Contact Info 

Email:

bhusband@uoguelph.ca

Phone number:

519-824-4120 x54790

Office:

SSC 1469, 1477

Lab:

SSC 1409/1410

Website links:

Husband Lab

BitChute Channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

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It is the fusion of all my grain videos on YouTube

sources

see my YouTube or BitChute channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ/videos

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My first attempt at an interview and it had heavy glitches I am not able to edit out in the first half but it is still not that bad and the information is still quite good. I have corrected the problems that happened for the next round. Thank you for watching.

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It is the fusion of all my forage and animal videos on YouTube

sources

see my YouTube or BitChute channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ/videos

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It is the fusion of revisted videos on YouTube

sources

see my YouTube or BitChute channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ/videos

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It is the fusion of all my fruit videos on YouTube

sources

see my YouTube or BitChute channel

https://www.bitchute.com/channel/m7SwT7viOQDa/

https://www.youtube.com/channel/UCT-yHieL5KiZkb5kvMGYOlQ/videos