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Horticulture Research|April 14, 2025
Citrus genomes: past, present and futureUpuli Nakandala, Agnelo Furtado, Robert J HenryBiology|December 5, 2020
Pathways of Photosynthesis in Non-Leaf TissuesRobert J Henry, Agnelo Furtado, Parimalan RanganThe Plant Genome|March 20, 2026
The genome of a low-seeded mandarin, Premier, displays major structural changes due to gamma irradiationUpuli Nakandala, Agnelo Furtado, Robert J HenryGigascience|October 20, 2017
Long-read sequencing of the coffee bean transcriptome reveals the diversity of full-length transcriptsBing Cheng, Agnelo Furtado, Robert J HenryBMC Genomics|October 13, 2017
The transcriptome of the developing grain: a resource for understanding seed development and the molecular control of the functional and nutritional properties of wheatParimalan Rangan, Agnelo Furtado, Robert J HenryPlant Biotechnology Journal|May 28, 2008
Comparison of promoters in transgenic riceAgnelo Furtado, Robert J Henry, Fumio TakaiwaScientific Reports|August 18, 2016
New evidence for grain specific C4 photosynthesis in wheatParimalan Rangan, Agnelo Furtado, Robert J HenryCurrent Opinion in Plant Biology|February 2, 2016
Functional cereals for production in new and variable climatesRobert J Henry, Parimalan Rangan, Agnelo FurtadoPlant Biotechnology Journal|August 28, 2015
Genomics of crop wild relatives: expanding the gene pool for crop improvementMarta Brozynska, Agnelo Furtado, Robert J HenryScientific Reports|August 1, 2018
The coffee bean transcriptome explains the accumulation of the major bean components through ripeningBing Cheng, Agnelo Furtado, Robert J HenryPageof 20