LGG_2024v15n4

Legume Genomics and Genetics 2024, Vol.15, No.4, 152-162 http://cropscipublisher.com/index.php/lgg 162 Martins L., Bustamante F., Oliveira A., Costa A., Feitoza L., Liang Q., Zhao H., Benko-Iseppon A., Muñoz‐Amatriaín M., Pedrosa‐Harand A., Jiang J., and Brasileiro-Vidal A., 2021, BAC- and oligo-FISH mapping reveals chromosome evolution among Vigna angularis, V. unguiculata, and Phaseolus vulgaris, Chromosoma, 130: 133-147. https://doi.org/10.1007/s00412-021-00758-9 Moghaddam M., and Kazempour-Osaloo S., 2020, Extensive survey of the ycf4 plastid gene throughout the IRLC legumes: robust evidence of its locus and lineage specific accelerated rate of evolution, pseudogenization and gene loss in the tribe Fabeae, PLoS One, 15(3): e0229846. https://doi.org/10.1371/journal.pone.0229846 Nelson M., Jabbari J., Turakulov R., Pradhan A., Pazos-Navarro M., Stai J., Cannon S., and Real D., 2020, The first genetic map for a psoraleoid legume (Bituminaria bituminosa) reveals highly conserved synteny with phaseoloid legumes, Plants, 9(8): 973. https://doi.org/10.3390/plants9080973 Ostevik K., Samuk K., and Rieseberg L., 2020, Ancestral reconstruction of karyotypes reveals an exceptional rate of nonrandom chromosomal evolution in sunflower, Genetics, 214: 1031-1045. https://doi.org/10.1534/genetics.120.303026 Parey E., Louis A., Cabau C., Guiguen Y., Crollius H., and Berthelot C., 2020, Synteny-guided resolution of gene trees clarifies the functional impact of whole genome duplications, Molecular Biology and Evolution, 37(11): 3324-3337. https://doi.org/10.1093/molbev/msaa149 Pratap A., Das A., Kumar S., and Gupta S., 2021, Current perspectives on introgression breeding in food legumes, Frontiers in Plant Science, 11: 589189. https://doi.org/10.3389/fpls.2020.589189 Ren L., Huang W., and Cannon S., 2019, Reconstruction of ancestral genome reveals chromosome evolution history for selected legume species, The New Phytologist, 223(4): 2090-2103. https://doi.org/10.1111/nph.15770 Restrepo-Montoya D., McClean P., and Osorno J., 2021, Orthology and synteny analysis of receptor-like kinases “RLK” and receptor-like proteins “RLP” in legumes, BMC Genomics, 22: 1-17. https://doi.org/10.1186/s12864-021-07384-w Simakov O., Bredeson J., Berkoff K., Marletaz F., Mitros T., Schultz D., O’Connell B., Dear P., Martinez D., Steele R., Green R., David C., and Rokhsar D., 2022, Deeply conserved synteny and the evolution of metazoan chromosomes, Science Advances, 8(5): eabi5884. https://doi.org/10.1126/sciadv.abi5884 Smýkal P., Coyne C., Ambrose M., Maxted N., Schaefer H., Blair M., Berger J., Greene S., Nelson M., Besharat N., Vymyslický T., Toker C., Saxena R., Roorkiwal M., Pandey M., Hu J., Li Y., Wang L., Guo Y., Qiu L., Redden R., and Varshney R., 2015, Legume crops phylogeny and genetic diversity for science and breeding, Critical Reviews in Plant Sciences, 34: 104-143. https://doi.org/10.1080/07352689.2014.897904 Smýkal P., Wettberg E., and Mcphee K., 2020, Legume genetics and biology: from mendel’s pea to legume genomics, International Journal of Molecular Sciences, 21(9): 3336. https://doi.org/10.3390/ijms21093336 Stai J., Yadav A., Sinou C., Bruneau A., Doyle J., Fernández-Baca D., and Cannon S., 2019, Cercis: a non-polyploid genomic relic within the generally polyploid legume family, Frontiers in Plant Science, 10: 345. https://doi.org/10.3389/fpls.2019.00345 Young N., and Bharti A., 2012, Genome-enabled insights into legume biology, Annual Review of Plant Biology, 63: 283-305. https://doi.org/10.1146/annurev-arplant-042110-103754 Zhuang W., Chen H., Yang M., Wang J., Pandey M., Zhang C., Chang W., Zhang L., Zhang X., Tang R., Garg V., Wang X., Tang H., Chow C., Wang J., Deng Y., Wang D., Khan A., Yang Q., Cai T., Bajaj P., Wu K., Guo B., Zhang X., Li J., Liang F., Hu J., Liao B., Liu S., Chitikineni A., Yan H., Zheng Y., Shan S., Liu Q., Xie D., Wang Z., Khan S., Ali N., Zhao C., Li X., Luo Z., Zhang S., Zhuang R., Peng Z., Wang S., Mamadou G., Zhuang Y., Zhao Z., Yu W., Xiong F., Quan W., Yuan M., Li Y., Zou H., Xia H., Zha L., Fan J., Yu J., Xie W., Yuan J., Chen K., Zhao S., Chu W., Chen Y., Sun P., Meng F., Zhuo T., Zhao Y., Li C., He G., Zhao Y., Wang C., Kavikishor P., Pan R., Paterson A., Wang X., Ming R., and Varshney R., 2019, The genome of cultivated peanut provides insight into legume karyotypes, polyploid evolution and crop domestication, Nature Genetics, 51: 865-876. https://doi.org/10.1038/s41588-019-0402-2

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