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Horticulture Research|July 1, 2021
Sex biased expression of hormone related genes at early stage of sex differentiation in papaya flowersJuan Liu, Li-Yu Chen, Ping Zhou, et al.Scientific Reports|March 15, 2018
Transcriptomic analysis of transgressive segregants revealed the central role of photosynthetic capacity and efficiency in biomass accumulation in sugarcaneRatnesh Singh, Tyler Jones, Ching Man Wai, et al.Horticulture Research|September 25, 2018
PGD: Pineapple Genomics DatabaseHuimin Xu, Qingyi Yu, Yan Shi, et al.Frontiers in Plant Science|March 15, 2018
Development and Applications of Chromosome-Specific Cytogenetic BAC-FISH Probes in <i>S. spontaneum</i>Guangrui Dong, Jiao Shen, Qing Zhang, et al.Nature|January 23, 2004
A primitive Y chromosome in papaya marks incipient sex chromosome evolutionZhiyong Liu, Paul H Moore, Hao Ma, et al.Molecular Genetics and Genomics : MGG|May 17, 2006
Analysis of papaya BAC end sequences reveals first insights into the organization of a fruit tree genomeChun Wan J Lai, Qingyi Yu, Shaobin Hou, et al.BMC Genomics|May 10, 2012
Construction of physical maps for the sex-specific regions of papaya sex chromosomesJong-Kuk Na, Jianping Wang, Jan E Murray, et al.Genome|November 6, 2002
Comparative analysis of QTLs affecting plant height and flowering among closely-related diploid and polyploid genomesRay Ming, Terrye A Del Monte, Eduardo Hernandez, et al.BMC Genomics|August 12, 2009
A physical map of the papaya genome with integrated genetic map and genome sequenceQingyi Yu, Eric Tong, Rachel L Skelton, et al.Frontiers in Plant Science|October 16, 2018
Comparative Analysis of Homologous Sequences of <i>Saccharum officinarum</i> and <i>Saccharum spontaneum</i> Reveals Independent Polyploidization EventsAnupma Sharma, Jinjin Song, Qingfan Lin, et al.Pageof 28