TGG_2024v15n1

Triticeae Genomics and Genetics, 2024, Vol.15, No.1, 44-55 http://cropscipublisher.com/index.php/tgg 54 Barkworth M., 2008, Taxonomy of the Triticeae: a historical perspective*, Hereditas, 116: 1-14. https://doi.org/10.1111/j.1601-5223.1992.tb00792.x Bernhardt N., 2015, Taxonomic treatments of Triticeae and the wheat genus triticum, In: Molnár-Láng M., Ceoloni C., Doležel J., (eds), Alien introgression in wheat, Springer, Cham, pp.1-19. https://doi.org/10.1007/978-3-319-23494-6_1 Bischof M., Eichmann R., and Hückelhoven R., 2011, Pathogenesis-associated transcriptional patterns in Triticeae, Journal of plant physiology, 168(1): 9-19. https://doi.org/10.1016/j.jplph.2010.06.013 PMid:20674077 Cheng S., Feng C., Wingen L., Cheng H., Riche A., Jiang M., Leverington-Waite M., Huang Z., Collier S., Orford S., Wang X., Awal R., Barker G., O’HaraT., Lister C., Siluveru A., Quiroz-Chávez J., Ramírez-González R., Bryant R., Berry S., Bansal U., Bariana H., Bennett M., Bicego B., Bilham L., Brown J., Burridge A., Burt C., Buurman M., Castle M., Chartrain L., Chen B., Denbel W., Elkot A., Fenwick P., Feuerhelm D., Foulkes J., Gaju O., Gauley A., Gaurav K., Hafeez A., Han R., Horler R., Hou J., Iqbal M., Kerton M., Kondic-Spica A., Kowalski A., Lage J., Li X., Liu H., Liu S., Lovegrove A., Ma L., Mumford C., Parmar S., Philp C., Playford D., Przewieslik-Allen A., Sarfraz Z., Schafer D., Shewry P., Shi Y., Slafer G., Song B., Song B., Steele D., Steuernagel B., Tailby P., Tyrrell S., Waheed A., Wamalwa M., Wang X., Wei Y., Winfield M., Wu S., Wu Y., Wulff B., Xian W., Xu Y., Xu Y., Yuan Q., Zhang X., Edwards K., Dixon L., Nicholson P., Chayut N., Hawkesford M., Uauy C., Sanders D., Huang S., and Griffiths S., 2023, Harnessing landrace diversity empowers wheat breeding for climate resilience, bioRxiv, 2023-10. https://doi.org/10.1101/2023.10.04.560903 Chouhan G., Verma J., Jaiswal D., Mukherjee A., Singh S., Pereira A., Liu H., Allah E., and Singh B., 2021, Phytomicrobiome for promoting sustainable agriculture and food security: Opportunities, challenges, and solutions, Microbiological research, 248: 126763. https://doi.org/10.1016/j.micres.2021.126763 PMid:33892241 Dong Y., Zhou R., Xu S., Li L., Cauderon Y., and Wang R., 2008, Desirable characteristics in perennial Triticeae collected in China for wheat improvement, Hereditas, 116: 175-178. https://doi.org/10.1111/j.1601-5223.1992.tb00819.x Feledyn-Szewczyk B., Nakielska M., Jończyk K., Berbeć A., and Kopiński J., 2020, Assessment of the suitability of 10 winter Triticale cultivars (x Triticosecale Wittm. ex A. Camus) for organic agriculture: polish case study, Agronomy. 10(8): 1144. https://doi.org/10.3390/agronomy10081144 Goncharov N., 2011, Genus TriticumL. taxonomy: the present and the future, Plant Systematics and Evolution, 295: 1-11. https://doi.org/10.1007/s00606-011-0480-9 Hajj A., 2023, Current and future of plant breeding strategies to cope with climate change: a review, Open Access Journal of Agricultural Research., 8(4): 000338. https://doi.org/10.23880/oajar-16000338 Harman G., Doni F., Khadka R., and Uphoff N., 2019, Endophytic strains of Trichoderma increase plants’ photosynthetic capability, Journal of Applied Microbiology, 130(2): 529-546. https://doi.org/10.1111/jam.14368 PMid:31271695 Harper A., He Z., Langer S., Havlickova L., Wang L., Fellgett A., Gupta V., Pradhan A., and Bancroft I., 2020, Validation of an Associative Transcriptomics platform in the polyploid crop species Brassica juncea by dissection of the genetic architecture of agronomic and quality traits, The Plant Journal: for Cell and Molecular Biology. 103(5): 1885-1893. https://doi.org/10.1111/tpj.14876 PMid:32530074 Kawahara T., 2009, Molecular phylogeny among Triticum-Aegilops species and of the tribe Triticeae, Breeding Science, 59: 499-504. https://doi.org/10.1270/jsbbs.59.499 Kole C., Muthamilarasan M., Henry R., Edwards D., Sharma R., Abberton M., Batley J., Bentley A., Blakeney M., Bryant J., Cai H., Çakır M., Cseke L., Cockram J., Oliveira A., Pace C., Dempewolf H., Ellison S., Gepts P., Greenland A., Hall A., Hori K., Hughes S., Humphreys M., Iorizzo M., Ismail A., Marshall A., Mayes S., Nguyen H., Ogbonnaya F., Ortiz R., Paterson A., Simon P., Tohme J., Tuberosa R., Valliyodan B., Varshney R., Wullschleger S., Yano M., and Prasad M., 2015, Application of genomics-assisted breeding for generation of climate resilient crops: progress and prospects, Frontiers in Plant Science, 6: 563. https://doi.org/10.3389/fpls.2015.00563 PMid:26322050 PMCid:PMC4531421 Kulkarni K., Tayade R., Asekova S., Song J., Shannon J., and Lee J., 2018, Harnessing the potential of forage legumes, alfalfa, soybean, and cowpea for sustainable agriculture and global food security, Frontiers in Plant Science, 9: 1314. https://doi.org/10.3389/fpls.2018.01314 Lu B., and Ellstrand N., 2014, World food security and the tribe Triticeae (Poaceae): Genetic resources of cultivated, wild, and weedy taxa for crop improvement, Journal of Systematics and Evolution, 52(6): 661-666. https://doi.org/10.1111/jse.12131

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