Page 69 - 《广西植物》2026年第5期
P. 69

5 期                  梁思佳等: 棉花 PRR 基因的功能分化与胁迫特异性表达分析                                         8 0 1

            KREPS J Aꎬ WU Y Jꎬ CHANG H Sꎬ et al.ꎬ 2002.          encodes a protein showing similarities to zinc finger
               Transcriptome changes for Arabidopsis in response to saltꎬ  transcription factors [J]. Cellꎬ 80(6): 847-857.
               osmoticꎬ and cold stress [J]. Plant Physiologyꎬ 130(4):  SALOMÉ P Aꎬ MCCLUNG C Rꎬ 2005. PSEUDO ̄RESPONSE
               2129-2141.                                        REGULATOR 7 and 9 are partially redundant genes essential
            LAI A Gꎬ DOHERTY C Jꎬ MUELLER ̄ROEBER Bꎬ et al.ꎬ      for the temperature responsiveness of the Arabidopsis
               2012. CIRCADIAN CLOCK ̄ASSOCIATED 1 regulates ROS  circadian clock [J]. The Plant Cellꎬ 17(3): 791-803.
               homeostasis and oxidative stress responses [J]. Proceedings  SONG Y Hꎬ SHIM J Sꎬ KINMONTH ̄SCHULTZ H Aꎬ et al.ꎬ
               of the National Academy of Sciences of the United States of  2015.  Photoperiodic  flowering:  time  measurement
               Americaꎬ 109(42): 17129-17134.                    mechanisms in leaves [J]. Annual Review of Plant Biologyꎬ
            LESCOT Mꎬ DÉHAIS Pꎬ THIJS Gꎬ et al.ꎬ 2002. PlantCAREꎬ  66(1): 441-464.
               a database of plant cis ̄acting regulatory elements and a portal  TANG H Bꎬ KRISHNAKUMAR Vꎬ ZENG X Fꎬ et al.ꎬ
               to tools for in silico analysis of promoter sequences [ J].  2024. JCVI: A versatile toolkit for comparative genomics
               Nucleic Acids Researchꎬ 30(1): 325-327.           analysis [J]. iMetaꎬ 3(4): e211.
            LETUNIC Iꎬ BORK Pꎬ 2007. Interactive Tree Of Life (iTOL):  WANG M Jꎬ TU L Lꎬ YUAN D Jꎬ et al.ꎬ 2019. Reference
               an online tool for phylogenetic tree display and annotation  genome sequences of two cultivated allotetraploid cottonsꎬ
               [J]. Bioinformaticsꎬ 23(1): 127-128.              Gossypium hirsutum and Gossypium barbadense [J]. Nature
            MAKINO Sꎬ KIBA Tꎬ IMAMURA Aꎬ et al.ꎬ 2000. Genes     Geneticsꎬ 51(2): 224-229.
               encoding pseudo ̄response regulators: insight into His ̄to ̄Asp  WANG Y Pꎬ TANG H Bꎬ DEBARRY J Dꎬ et al.ꎬ 2012.
               phosphorelay and circadian rhythm in Arabidopsis thaliana  MCScanX: a toolkit for detection and evolutionary analysis of
               [J]. Plant & Cell Physiologyꎬ 41(6): 791-803.     gene synteny and collinearity [J]. Nucleic Acids Researchꎬ
            MARCHLER ̄BAUER Aꎬ DERBYSHIRE M Kꎬ GONZALES N         40(7): e49.
               Rꎬ et al.ꎬ 2015. CDD: NCBIs conserved domain database  XU X Dꎬ YUAN Lꎬ XIE Q Gꎬ 2022a. The circadian clock ticks
               [J]. Nucleic Acids Researchꎬ 43(D1): D222-D226.   in plant stress responses [J]. Stress Biologyꎬ 2(1): 15.
            MISTRY Jꎬ CHUGURANSKY Sꎬ WILLIAMS Lꎬ et al.ꎬ       XU X Dꎬ YUAN Lꎬ YANG Xꎬ et al.ꎬ 2002b. Circadian clock
               2021. Pfam: the protein families database in 2021 [ J].  in plants: Linking timing to fitness [ J ]. Journal of
               Nucleic Acids Researchꎬ 49(D1): D412-D419.        Integrative Plant Biologyꎬ 64(4): 792-811.
            MIZUNO   Tꎬ  2005.  Two ̄component  phosphorelay  signal  YOUNG M Wꎬ KAY S Aꎬ 2001. Time zones: a comparative
               transduction systems in plants: from hormone responses to  genetics of circadian clocks [J]. Nature Reviews Geneticsꎬ
               circadian rhythms [ J ]. Bioscienceꎬ Biotechnologyꎬ and  2(9): 702-715.
               Biochemistryꎬ 69(12): 2263-2276.                YU Bꎬ HE X Mꎬ TANG Yꎬ et al.ꎬ 2023. Photoperiod controls
            MIZUNO Tꎬ NAKAMICHI Nꎬ 2005. Pseudo ̄response regulators  plant seed size in a CONSTANS ̄dependent manner [ J].
               (PRRs) or true oscillator components (TOCs) [J]. Plant &  Nature Plantsꎬ 9(2): 343-354.
               Cell Physiologyꎬ 46(5): 677-685.                YUAN Lꎬ YU Y Jꎬ LIU M Mꎬ et al.ꎬ 2021. BBX19 fine ̄tunes
            NAKAMICHI Nꎬ KIBA Tꎬ HENRIQUES Rꎬ et al.ꎬ 2010.      the circadian rhythm by interacting with PSEUDO ̄
               PSEUDO ̄RESPONSE REGULATORS 9ꎬ 7ꎬ and 5 are        RESPONSE REGULATOR proteins to facilitate their
               transcriptional repressors in the Arabidopsis circadian clock  repressive effect on morning ̄phased clock genes [ J]. The
               [J]. The Plant Cellꎬ 22(3): 594-605.              Plant Cellꎬ 33(8): 2602-2617.
            NAKAMICHI Nꎬ TAKAO Sꎬ KUDO Tꎬ et al.ꎬ 2016.        ZHANG Lꎬ LI Q Pꎬ DONG H Jꎬ et al.ꎬ 2015. Three CCT
               Improvement of Arabidopsis biomass and coldꎬ drought and  domain ̄containing genes were identified to regulate heading
               salinity stress tolerance by modified circadian clock ̄  date by candidate gene ̄based association mapping and
               associated PSEUDO ̄RESPONSE REGULATORs [ J ].      transformation in rice [J]. Scientific Reportsꎬ 5(1): 7663.
               Plant & Cell Physiologyꎬ 57(5): 1085-1097.      ZHANG T Zꎬ HU Yꎬ JIANG W Kꎬ et al.ꎬ 2015. Sequencing of
            PRUNEDA ̄PAZ J Lꎬ BRETON Gꎬ PARA Aꎬ et al.ꎬ 2009. A   allotetraploid cotton ( Gossypium hirsutum L. acc. TM ̄1)
               functional genomics approach reveals CHE as a component of  provides a resource for fiber improvement [ J ]. Nature
               the Arabidopsis circadian clock [J]. Scienceꎬ 323(5920):  Biotechnologyꎬ 33(5): 531-537.
               1481-1485.
            PUTTERILL Jꎬ ROBSON Fꎬ LEE Kꎬ et al.ꎬ 1995. The                          (责任编辑  李  莉  王登惠)
               CONSTANS gene of Arabidopsis promotes flowering and
   64   65   66   67   68   69   70   71   72   73   74