|
Beales J, Turner A, Griffiths S, Snape J W, Laurie D A. 2007. A Pseudo-Response Regulator is misexpressed in the photoperiod insensitive Ppd-D1a mutant of wheat (Triticum aestivum L.). Theoretical and Applied Genetics, 115, 721–733.
Boden S A, Cavanagh C, Cullis B R, Ramm K, Greenwood J, Jean Finnegan E, Trevaskis B, Swain S M. 2015. Ppd-1 is a key regulator of inflorescence architecture and paired spikelet development in wheat. Nature Plants, 1, 1–6.
Farré E M, Liu T. 2013. The PRR family of transcriptional regulators reflects the complexity and evolution of plant circadian clocks. Current Opinion in Plant Biology, 16, 621–629.
Fu M, Liu S, Che Y, Cui D, Deng Z, Li Y, Zou X, Kong X, Chen G, Zhang M, Liu Y, Wang X, Liu W, Liu D, Geng S, Li A, Mao L. 2024. Genome-editing of a circadian clock gene TaPRR95 facilitates wheat peduncle growth and heading date. Journal of Genetics and Genomics, 51, 1101–1110.
Hayama R, Sarid-Krebs L, Richter R, Fernández V, Jang S, Coupland G. 2017. PSEUDO RESPONSE REGULATORs stabilize CONSTANS protein to promote flowering in response to day length. The EMBO Journal, 36, 904–918.
Hu J, Wang X, Zhang G, Jiang P, Chen W, Hao Y, Ma X, Xu S, Jia J, Kong L, Wang H. 2020. QTL mapping for yield-related traits in wheat based on four RIL populations. Theoretical and Applied Genetics, 133, 917–933.
Hultgren A, Carleton T, Delgado M, Gergel D R, Greenstone M, Houser T, Hsiang S, Jina A, Kopp R E, Malevich S B, Mccusker K E, Mayer T, Nath I, Rising J, Rode A, Yuan J. 2025. Impacts of climate change on global agriculture accounting for adaptation. Nature, 642, 644–652.
Li N, Zhang Y, He Y, Wang Y, Wang L. 2020. Pseudo response regulators regulate photoperiodic hypocotyl growth by repressing PIF4/5 transcription. Plant Physiology, 183, 686–699.
Liu S, Li K, Dai X, Qin G, Lu D, Gao Z, Li X, Song B, Bian J, Ren D, Liu Y, Chen X, Xu Y, Liu W, Yang C, Liu X, Chen S, Li J, Li B, He H, et al. 2025. A telomere-to-telomere genome assembly coupled with multi-omic data provides insights into the evolution of hexaploid bread wheat. Nature Genetics, 57, 1008–1020.
Liu Z, Liu W, Wang Z, Xie Z, Qi K, Yue D, Li Y, Zhang S, Wu J, Wang P. 2024. Molecular characterization of PSEUDO RESPONSE REGULATOR family in Rosaceae and function of PbPRR59a and PbPRR59b in flowering regulation. BMC Genomics, 25, 794.
Matsushika A, Murakami M, Ito S, Nakamichi N, Yamashino T, Mizuno T. 2007. Characterization of circadian-associated pseudo-response regulators: I. Comparative studies on a series of transgenic lines misexpressing five distinctive PRR genes in Arabidopsis thaliana. Bioscience, Biotechnology, and Biochemistry, 71, 527–534.
Nakamichi N, Kiba T, Henriques R, Mizuno T, Chua N H, Sakakibara H. 2010. PSEUDO-RESPONSE REGULATORS 9, 7, and 5 are transcriptional repressors in the Arabidopsis circadian clock. The Plant Cell, 22, 594–605.
Niinuma K, Nakamichi N, Miyata K, Mizuno T, Kamada H, Mizoguchi T. 2008. Roles of Arabidopsis PSEUDO-RESPONSE REGULATOR (PRR) genes in the opposite controls of flowering time and organ elongation under long-day and continuous light conditions. Plant Biotechnology, 25, 165–172.
Ortiz-Bobea A, Ault T R, Carrillo C M, Chambers R G, Lobell D B. 2021. Anthropogenic climate change has slowed global agricultural productivity growth. Nature Climate Change, 11, 306–312.
Sharma K, Sharma P K. 2025. Wheat as a nutritional powerhouse: Shaping global food security. In: Meena V S, Jaiswal J P, Jinger D, Paramesh V, eds., Triticum-The Pillar of Global Food Security. Agricultural Sciences. IntechOpen Publishing, London, UK.
Turner A, Beales J, Faure S, Dunford R P, Laurie D A. 2005. The pseudo-response regulator Ppd-H1 provides adaptation to photoperiod in barley. Science, 310, 1031–1034.
Wang X, Dong L, Hu J, Pang Y, Hu L, Xiao G, Ma X, Kong X, Jia J, Wang H, Kong L. 2019. Dissecting genetic loci affecting grain morphological traits to improve grain weight via nested association mapping. Theoretical and Applied Genetics, 132, 3115–3128.
Wang X, Zhang J, Liu X, Kong Y, Han L. 2023. The roles of the PSEUDO-RESPONSE REGULATORs in circadian clock and flowering time in Medicago truncatula. International Journal of Molecular Sciences, 24, 16834.
Zhang X, Jia H, Li T, Wu J, Nagarajan R, Lei L, Powers C, Kan C C, Hua W, Liu Z, Chen C, Carver B F, Yan L. 2022. TaCol-B5 modifies spike architecture and enhances grain yield in wheat. Science, 376, 180–183.
|