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From canonical to new model systems: The future of plant development

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IDTitleSection/TopicAuthorsKeywords
357Examining the genetic basis of fruit diversity in the tribe Brassiceae (Brassicaceae)
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From canonical to new model systems: The future of plant developmentHall, Jocelyn; Avino, Mariano; Mankowski, Peter; Sullivan, Sierra; Bernard, Kelsey.
27From canonical to new model systems: The future of plant development
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From canonical to new model systems: The future of plant developmentGunawardena, Arunika; Lacroix , Christian .Non-model species
454More Mutations From Sperm Than Egg in Plants: The Roles of Selection and Development at the Gametophyte Stage
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From canonical to new model systems: The future of plant developmentJohnston, Mark.
530Myriophyllum aquaticum: a system for comparative developmental studies of leaves, from genes to morphology
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From canonical to new model systems: The future of plant developmentLacroix , Christian ; Shafiullah, M. D.; Bourque, Laura.leaf development
KN1
comparative development
151Norway spruce:A colossal organism to study fine processes
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From canonical to new model systems: The future of plant developmentBozhkov, Peter.Norway spruce
Embryogenesis
Programmed cell death
143The Lace plant as an emerging novel system to study programmed cell death
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From canonical to new model systems: The future of plant developmentGunawardena, Arunika; Lord, Christina; Rantong, Gaolathe; Dauphinee, Adrian.Programmed cell death
Non-model species
Leaf development
830Vacuolar granules in the root tips of Zea mays var. amylacea: new puzzle, classical solutions
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From canonical to new model systems: The future of plant developmentGladish, Daniel; Saito, Susumu; Niki, Teruo.Zea mays var amylacea
primary root apical meristem
vacuolar granule
698Visual Characters in Floral Development
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From canonical to new model systems: The future of plant developmentKirchoff, Bruce.Flower
inflorescence
character
character state
Development

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