Chinese Bulletin of Botany ›› 2026, Vol. 61 ›› Issue (1): 37-52.DOI: 10.11983/CBB25005 cstr: 32102.14.CBB25005
Previous Articles Next Articles
Xinrui Han1,2, Xin Yuan2, Jie Gao2, Liangsheng Wang3, Xiaohui Wang4, Wenqing Jia1, Zhenzhu Fu2, Hechen Zhang2
Received:2025-01-15
Accepted:2025-03-18
Online:2026-01-10
Published:2025-03-18
About author:* Authors for correspondence. E-mail: jiawq2012@126.com;
The authors declare that there is no conflict of interests
CLC Number:
Xinrui Han, Xin Yuan, Jie Gao, Liangsheng Wang, Xiaohui Wang, Wenqing Jia, Zhenzhu Fu, Hechen Zhang. Identification of TCP Gene Family and Functional Analysis of TCP15a of Tree Peony[J]. Chinese Bulletin of Botany, 2026, 61(1): 37-52.
| Gene | Forward primer sequence(5′–3′) | Reverse primer sequence(5′–3′) |
|---|---|---|
| CHSa | CAACTAGTGGTGTGGACATGCC | CACCAGCAAAGCAACCTTGTT |
| CHI | TCTCCTCCAGTGTCCGTTACTAAA | ACTTCCCTTCTATCTCCAGACCTC |
| F3′H | AGCTGGACGTAGGATTTGTG | ATGGATCAGCCCGTTGTAAG |
| F3′5′H | ATAGGCGTTTACTCGAATCCG | TGGTGTAGAAGGGTGTTTTCG |
| DFR | CCCCTAGTTTAATCACTGCCC | GACCATCTTAGCCACATCGTAG |
| ANS | TCTTCCATTGTGCTTTCCCTG | GTTGCTGGAGTGTAGTCAGTAG |
| RT | CAGGGCTTCCTTTCTTTCTTGTCT | TCCCCTTGTCTTTCACTCTTTCC |
| MT2 | GCAGCGAGCTTTATGGGTCTT | TGAGCTTTAGGAACATCGATAGAAAC |
| MF1+MF2 | CTTTTGGCTACTGCTCTTGCATT | CTCTGTCCGGATCAATCGCTAT |
| GST | GGTGACCAAGAGAAAGTGTTTGC | GCTGGGATAGACACTGCTTCA |
| actin | AGCCAACAGAGAGAAGATGACCCA | ACACCATCACCAGAGTCCAACACA |
Table. 1 Primers for qRT-PCR testing
| Gene | Forward primer sequence(5′–3′) | Reverse primer sequence(5′–3′) |
|---|---|---|
| CHSa | CAACTAGTGGTGTGGACATGCC | CACCAGCAAAGCAACCTTGTT |
| CHI | TCTCCTCCAGTGTCCGTTACTAAA | ACTTCCCTTCTATCTCCAGACCTC |
| F3′H | AGCTGGACGTAGGATTTGTG | ATGGATCAGCCCGTTGTAAG |
| F3′5′H | ATAGGCGTTTACTCGAATCCG | TGGTGTAGAAGGGTGTTTTCG |
| DFR | CCCCTAGTTTAATCACTGCCC | GACCATCTTAGCCACATCGTAG |
| ANS | TCTTCCATTGTGCTTTCCCTG | GTTGCTGGAGTGTAGTCAGTAG |
| RT | CAGGGCTTCCTTTCTTTCTTGTCT | TCCCCTTGTCTTTCACTCTTTCC |
| MT2 | GCAGCGAGCTTTATGGGTCTT | TGAGCTTTAGGAACATCGATAGAAAC |
| MF1+MF2 | CTTTTGGCTACTGCTCTTGCATT | CTCTGTCCGGATCAATCGCTAT |
| GST | GGTGACCAAGAGAAAGTGTTTGC | GCTGGGATAGACACTGCTTCA |
| actin | AGCCAACAGAGAGAAGATGACCCA | ACACCATCACCAGAGTCCAACACA |
| Gene name | Gene ID | Gene ID | Gene ID | Protein length(aa) | pI | Molecular weight(kDa) | Conserved domains |
|---|---|---|---|---|---|---|---|
| TCP1 | Pos.gene11379 | PL-2G122130.1 | Psu.T.00000087.1 | 339,339,307 | 9.02,8.92,9.59 | 37.75,37.89,33.98 | TCP superfamily |
| TCP2 | Pos.gene53232 | PL-4G132790.1 | Psu.T.00000478.1 | 503,465,464 | 9.02,7.16,7.14 | 54.83,50.50,50.20 | TCP2 |
| TCP3 | Pos.gene72619 | PL-2G273790.1 | Psu.T.00034421.1 | 473,473,530 | 5.83,5.78,7.2 | 51.69,51.73,58.39 | TCP superfamily |
| TCP5a | Pos.gene3141 | / | / | 134,/,/ | 9.51,/,/ | 15.49,/,/ | TCP2 superfamily |
| TCP5b | Pos.gene3142 | / | / | 83,/,/ | 10.06,/,/ | 9.79,/,/ | TCP2 superfamily |
| TCP7a | Pos.gene49570 | / | / | 267,/,/ | 9.64,/,/ | 29.89,/,/ | TCP superfamily |
| TCP7b | / | / | Psu.T.00012308.1 | /,/,107 | /,/,9.88 | /,/,12.16 | TCP superfamily |
| TCP8 | Pos.gene73497 | PL-5G111400.1 | / | 203,217,/ | 8.33,7.66,/ | 21.94,23.23,/ | TCP superfamily |
| TCP9a | Pos.gene42145 | PL-3G121530.1 | / | 352,346,/ | 7.84,8.55,/ | 37.60,37.16,/ | TCP superfamily |
| TCP9b | / | / | Psu.T.00008119.1 | /,/,282 | /,/,9.37 | /,/,29.99 | TCP superfamily |
| TCP10 | / | / | Psu.T.00004485.1 | /,/,325 | /,/,6.89 | /,/,36.38 | TCP superfamily |
| TCP12a | Pos.gene45291 | / | / | 562,/,/ | 9.38,/,/ | 65.01,/,/ | TCP |
| TCP12b | Pos.gene7348 | PL-5G147810.1 | / | 403,270,/ | 8.08,9.35,/ | 45.22,30.17,/ | TCP |
| TCP13 | Pos.gene72744 | PL-2G116620.1 | / | 729,357,/ | 6.25,6.9,/ | 80.39,39.63,/ | TCP2 superfamily |
| TCP14a | / | / | Psu.T.00014829.1 | /,/,198 | /,/,10.12 | /,/,22.30 | TCP superfamily |
| TCP14b | Pos.gene82182 | / | / | 220,/,/ | 9.78,/,/ | 24.15,/,/ | TCP superfamily |
| TCP15a | Pos.gene36892 | / | Psu.T.00029341.1 | 371,/,371 | 6.67,/,6.67 | 39.83,/,39.83 | TCP |
| TCP15b | Pos.gene43777 | / | / | 333,/,/ | 9.62,/,/ | 37.23,/,/ | TCP |
| TCP15c | Pos.gene61444 | / | Psu.T.00005566.1 | 543,/,128 | 5.88,/,11.2 | 60.73,/,14.38 | TCP |
| TCP15d | Pos.gene27661 | PL-1G208530.1 | / | 356,354,/ | 7.82,7.82,/ | 38.31,38.00,/ | TCP superfamily |
| TCP17 | Pos.gene78687 | PL-UG256570.1 | / | 440,378,/ | 9.12,9.36,/ | 49.28,42.08,/ | TCP2 superfamily |
| TCP18 | Pos.gene72830 | PL-5G126440.1 | Psu.T.00026341.1 | 507,701,200 | 6.29,7.55,9.6 | 55.75,78.12,21.96 | TCP superfamily |
| TCP19 | Pos.gene75864 | PL-1G133380.1 | / | 377,377,/ | 5.26,5.26,/ | 39.82,39.82,/ | TCP superfamily |
| TCP20 | Pos.gene22067 | PL-2G301650.1 | Psu.T.00007142.1 | 307,306,309 | 8.68,8.68,8.68 | 32.98,32.88,33.24 | TCP superfamily |
| TCP21 | pos.gene79130 | PL-2G150160.1 | Psu.T.00026535.1 | 261,261,261 | 9.45,9.45,9.45 | 27.42,27.36,27.42 | TCP superfamily |
| TCP23 | Pos.gene34937 | PL-5G204500.1 | / | 356,356,/ | 7.91,7.91,/ | 37.92,37.91,/ | TCP |
Table 2 Analysis of physical and chemical properties of TCP family members in tree peony
| Gene name | Gene ID | Gene ID | Gene ID | Protein length(aa) | pI | Molecular weight(kDa) | Conserved domains |
|---|---|---|---|---|---|---|---|
| TCP1 | Pos.gene11379 | PL-2G122130.1 | Psu.T.00000087.1 | 339,339,307 | 9.02,8.92,9.59 | 37.75,37.89,33.98 | TCP superfamily |
| TCP2 | Pos.gene53232 | PL-4G132790.1 | Psu.T.00000478.1 | 503,465,464 | 9.02,7.16,7.14 | 54.83,50.50,50.20 | TCP2 |
| TCP3 | Pos.gene72619 | PL-2G273790.1 | Psu.T.00034421.1 | 473,473,530 | 5.83,5.78,7.2 | 51.69,51.73,58.39 | TCP superfamily |
| TCP5a | Pos.gene3141 | / | / | 134,/,/ | 9.51,/,/ | 15.49,/,/ | TCP2 superfamily |
| TCP5b | Pos.gene3142 | / | / | 83,/,/ | 10.06,/,/ | 9.79,/,/ | TCP2 superfamily |
| TCP7a | Pos.gene49570 | / | / | 267,/,/ | 9.64,/,/ | 29.89,/,/ | TCP superfamily |
| TCP7b | / | / | Psu.T.00012308.1 | /,/,107 | /,/,9.88 | /,/,12.16 | TCP superfamily |
| TCP8 | Pos.gene73497 | PL-5G111400.1 | / | 203,217,/ | 8.33,7.66,/ | 21.94,23.23,/ | TCP superfamily |
| TCP9a | Pos.gene42145 | PL-3G121530.1 | / | 352,346,/ | 7.84,8.55,/ | 37.60,37.16,/ | TCP superfamily |
| TCP9b | / | / | Psu.T.00008119.1 | /,/,282 | /,/,9.37 | /,/,29.99 | TCP superfamily |
| TCP10 | / | / | Psu.T.00004485.1 | /,/,325 | /,/,6.89 | /,/,36.38 | TCP superfamily |
| TCP12a | Pos.gene45291 | / | / | 562,/,/ | 9.38,/,/ | 65.01,/,/ | TCP |
| TCP12b | Pos.gene7348 | PL-5G147810.1 | / | 403,270,/ | 8.08,9.35,/ | 45.22,30.17,/ | TCP |
| TCP13 | Pos.gene72744 | PL-2G116620.1 | / | 729,357,/ | 6.25,6.9,/ | 80.39,39.63,/ | TCP2 superfamily |
| TCP14a | / | / | Psu.T.00014829.1 | /,/,198 | /,/,10.12 | /,/,22.30 | TCP superfamily |
| TCP14b | Pos.gene82182 | / | / | 220,/,/ | 9.78,/,/ | 24.15,/,/ | TCP superfamily |
| TCP15a | Pos.gene36892 | / | Psu.T.00029341.1 | 371,/,371 | 6.67,/,6.67 | 39.83,/,39.83 | TCP |
| TCP15b | Pos.gene43777 | / | / | 333,/,/ | 9.62,/,/ | 37.23,/,/ | TCP |
| TCP15c | Pos.gene61444 | / | Psu.T.00005566.1 | 543,/,128 | 5.88,/,11.2 | 60.73,/,14.38 | TCP |
| TCP15d | Pos.gene27661 | PL-1G208530.1 | / | 356,354,/ | 7.82,7.82,/ | 38.31,38.00,/ | TCP superfamily |
| TCP17 | Pos.gene78687 | PL-UG256570.1 | / | 440,378,/ | 9.12,9.36,/ | 49.28,42.08,/ | TCP2 superfamily |
| TCP18 | Pos.gene72830 | PL-5G126440.1 | Psu.T.00026341.1 | 507,701,200 | 6.29,7.55,9.6 | 55.75,78.12,21.96 | TCP superfamily |
| TCP19 | Pos.gene75864 | PL-1G133380.1 | / | 377,377,/ | 5.26,5.26,/ | 39.82,39.82,/ | TCP superfamily |
| TCP20 | Pos.gene22067 | PL-2G301650.1 | Psu.T.00007142.1 | 307,306,309 | 8.68,8.68,8.68 | 32.98,32.88,33.24 | TCP superfamily |
| TCP21 | pos.gene79130 | PL-2G150160.1 | Psu.T.00026535.1 | 261,261,261 | 9.45,9.45,9.45 | 27.42,27.36,27.42 | TCP superfamily |
| TCP23 | Pos.gene34937 | PL-5G204500.1 | / | 356,356,/ | 7.91,7.91,/ | 37.92,37.91,/ | TCP |
| Gene name | Alpha helix(proportion) | Extended strand(proportion) | Beta turn(proportion) | Random coil(proportion) | Subgroup |
|---|---|---|---|---|---|
| TCP15a | 33(8.89%) | 20(5.39%) | 5(1.35%) | 313(84.37%) | PCF |
| TCP15b | 26(7.81%) | 17(5.11%) | 3(0.90%) | 287(86.19%) | |
| TCP15c | 200(36.83%) | 94(17.31%) | 25(4.60%) | 224(41.25%) | |
| TCP15d | 41(11.52%) | 12(3.37%) | 5(1.40%) | 298(83.71%) | |
| TCP14a | 26(13.13%) | 9(4.55%) | 2(1.01%) | 161(81.31%) | |
| TCP14b | 26(11.82%) | 12(5.45%) | 4(1.82%) | 178(80.91%) | |
| TCP23 | 37(10.39%) | 15(4.21%) | 8(2.25%) | 296(83.15%) | |
| TCP8 | 53(26.11%) | 7(3.45%) | 3(1.48%) | 140(68.97%) | |
| TCP7a | 45(16.85%) | 29(10.86%) | 10(3.75%) | 183(68.54%) | |
| TCP7b | 25(23.36%) | 8(7.48%) | 3(2.80%) | 71(66.36%) | |
| TCP21 | 38(14.56%) | 11(4.21%) | 2(0.77%) | 210(80.46%) | |
| TCP20 | 38(12.38%) | 8(2.61%) | 5(1.63%) | 256(83.39%) | |
| TCP9a | 33(9.38%) | 24(6.82%) | 6(1.70%) | 289(82.10%) | |
| TCP9b | 19(6.74%) | 19(6.74%) | 6(2.13%) | 238(84.40%) | |
| TCP19 | 44(11.67%) | 19(5.04%) | 7(1.86%) | 307(81.43%) | |
| TCP18 | 143(28.21%) | 73(14.40%) | 20(3.94%) | 271(53.45%) | CYC |
| TCP12a | 193(34.34%) | 58(10.32%) | 29(5.16%) | 282(50.18%) | |
| TCP12b | 92(22.83%) | 21(5.21%) | 4(0.99%) | 286(70.97%) | |
| TCP1 | 85(25.07%) | 9(2.65%) | 1(0.29%) | 244(71.98%) | |
| TCP3 | 43(9.09%) | 16(3.38%) | 2(0.42%) | 412(87.10%) | CIN |
| TCP10 | 42(12.92%) | 24(7.38%) | 2(0.62%) | 257(79.08%) | |
| TCP2 | 77(15.31%) | 29(5.77%) | 5(0.99%) | 392(77.93%) | |
| TCP13 | 151(20.71%) | 99(13.58%) | 27(3.70%) | 452(62.00%) | |
| TCP5a | 17(12.69%) | 8(5.97%) | 1(0.75%) | 108(80.60%) | |
| TCP5b | 19(22.89%) | 8(9.64%) | 2(2.41%) | 54(65.06%) | |
| TCP17 | 57(12.95%) | 30(6.82%) | 2(0.45%) | 351(79.77%) |
Table 3 Second structure analysis of the TCP gene family in tree peony
| Gene name | Alpha helix(proportion) | Extended strand(proportion) | Beta turn(proportion) | Random coil(proportion) | Subgroup |
|---|---|---|---|---|---|
| TCP15a | 33(8.89%) | 20(5.39%) | 5(1.35%) | 313(84.37%) | PCF |
| TCP15b | 26(7.81%) | 17(5.11%) | 3(0.90%) | 287(86.19%) | |
| TCP15c | 200(36.83%) | 94(17.31%) | 25(4.60%) | 224(41.25%) | |
| TCP15d | 41(11.52%) | 12(3.37%) | 5(1.40%) | 298(83.71%) | |
| TCP14a | 26(13.13%) | 9(4.55%) | 2(1.01%) | 161(81.31%) | |
| TCP14b | 26(11.82%) | 12(5.45%) | 4(1.82%) | 178(80.91%) | |
| TCP23 | 37(10.39%) | 15(4.21%) | 8(2.25%) | 296(83.15%) | |
| TCP8 | 53(26.11%) | 7(3.45%) | 3(1.48%) | 140(68.97%) | |
| TCP7a | 45(16.85%) | 29(10.86%) | 10(3.75%) | 183(68.54%) | |
| TCP7b | 25(23.36%) | 8(7.48%) | 3(2.80%) | 71(66.36%) | |
| TCP21 | 38(14.56%) | 11(4.21%) | 2(0.77%) | 210(80.46%) | |
| TCP20 | 38(12.38%) | 8(2.61%) | 5(1.63%) | 256(83.39%) | |
| TCP9a | 33(9.38%) | 24(6.82%) | 6(1.70%) | 289(82.10%) | |
| TCP9b | 19(6.74%) | 19(6.74%) | 6(2.13%) | 238(84.40%) | |
| TCP19 | 44(11.67%) | 19(5.04%) | 7(1.86%) | 307(81.43%) | |
| TCP18 | 143(28.21%) | 73(14.40%) | 20(3.94%) | 271(53.45%) | CYC |
| TCP12a | 193(34.34%) | 58(10.32%) | 29(5.16%) | 282(50.18%) | |
| TCP12b | 92(22.83%) | 21(5.21%) | 4(0.99%) | 286(70.97%) | |
| TCP1 | 85(25.07%) | 9(2.65%) | 1(0.29%) | 244(71.98%) | |
| TCP3 | 43(9.09%) | 16(3.38%) | 2(0.42%) | 412(87.10%) | CIN |
| TCP10 | 42(12.92%) | 24(7.38%) | 2(0.62%) | 257(79.08%) | |
| TCP2 | 77(15.31%) | 29(5.77%) | 5(0.99%) | 392(77.93%) | |
| TCP13 | 151(20.71%) | 99(13.58%) | 27(3.70%) | 452(62.00%) | |
| TCP5a | 17(12.69%) | 8(5.97%) | 1(0.75%) | 108(80.60%) | |
| TCP5b | 19(22.89%) | 8(9.64%) | 2(2.41%) | 54(65.06%) | |
| TCP17 | 57(12.95%) | 30(6.82%) | 2(0.45%) | 351(79.77%) |
|
Chen ZH, Qiao ZS, Li JQ, Zhang XL, Ma SJ, He CZ, Zong D (2024). Genome-wide identification and analysis of the TCP gene family in Populus yunnanensis. Biotechnol Bull 40 (11), 214–226. (in Chinese)
|
|
|
陈智华, 乔振升, 李嘉其, 张晓琳, 马少杰, 何承忠, 纵丹 (2024). 滇杨TCP基因家族的全基因组鉴定与分析. 生物技术通报 40 (11), 214–226
|
|
|
Cubas P, Lauter N, Doebley J, Coen E (1999). The TCP domain: a motif found in proteins regulating plant growth and development. Plant J 18, 215–222
|
|
|
Fu ZZ, Wang R, Zhang TR, Wang HG, Gao J, Li YM, Jiang H, Wang LM, Yuan X, Li YB, Zhang HC (2021). Identification of F3′5′H gene in petunia and the roles in petal coloration. J Henan Agric Sci 50 (12), 121–127. (in Chinese)
|
|
|
符真珠, 王锐, 张泰然, 王慧娟, 高杰, 李艳敏, 蒋卉, 王利民, 袁欣, 李彦邦, 张和臣 (2021). 矮牵牛F3′5′H基因在花瓣呈色中的作用解析. 河南农业科学 50 (12), 121–127
|
|
|
Fu ZZ, Yuan X, Wang EQ, Wang XH, Gao J, Wang HJ, Li YM, Han XR, Shi M, Wang LS, Zhang HC (2024). Transcriptional and metabolic analysis of the mechanism underlying colored blotches of tree peony ‘High Noon’ petals. Plant Physiol J 60, 1524–1536. (in Chinese)
|
|
|
符真珠, 袁欣, 王二强, 王晓晖, 高杰, 王慧娟, 李艳敏, 韩新蕊, 师曼, 王亮生, 张和臣 (2024). 牡丹‘海黄’花瓣色斑呈色的转录及代谢机制解析. 植物生理学报 60, 1524–1536
|
|
|
Grotewold E (2006). The genetics and biochemistry of floral pigments. Annu Rev Plant Biol 57, 761–780
|
|
|
Guan ZW, Cao XY, Zhang XW, Zhou XY (2022). Genome-wide identification and expression analysis of TCP family in rice (Oryza sativa L.). Mol Plant Breed 20, 3145–3156. (in Chinese)
|
|
|
关紫微, 曹希雅, 张先文, 周小云 (2022). 水稻TCP家族的全基因组鉴定及表达分析. 分子植物育种 20, 3145–3156
|
|
|
Hur YS, Oh J, Kim N, Kim S, Son O, Kim J, Um JH, Ji ZW, Kim MH, Ko JH, Ohme-Takagi M, Choi G, Cheon CI (2024). Arabidopsis transcription factor TCP13 promotes shade avoidance syndrome-like responses by directly targeting a subset of shade-responsive gene promoters. J Exp Bot 75, 241–257
|
|
|
Kosugi S, Ohashi Y (1997). PCF1 and PCF2 specifically bind to cis elements in the rice proliferating cell nuclear antigen gene. Plant Cell 9, 1607–1619
|
|
|
Li XY, Zhang GF, Liang YH, Hu L, Zhu BN, Qi DM, Cui SJ, Zhao HT (2021). TCP7 interacts with Nuclear Factor-Ys to promote flowering by directly regulating SOC1 in Arabidopsis. Plant J 108, 1493–1506
|
|
|
Liang H (2018). Genetics, 3rd edn. Beijing: Chemical Industry Press. pp. 13–59. (in Chinese)
|
|
|
梁红 (2018). 遗传学 (第3版). 北京: 化学工业出版社. pp. 13–59
|
|
|
Lv SZ, Cheng S, Wang ZY, Li SM, Jin X, Lan L, Yang B, Yu K, Ni XM, Li N, Hou XG, Huang G, Wang J, Dong Y, Wang EQ, Huang JT, Zhang GY, Zhang CJ (2020). Draft genome of the famous ornamental plant Paeonia suffruticosa. Ecol Evol 10, 4518–4530
|
|
|
Martín-Trillo M, Cubas P (2010). TCP genes: a family snapshot ten years later. Trends Plant Sci 15, 31–39
|
|
|
Sreedasyam A, Lovell JT, Mamidi S, Khanal S, Jenkins JW, Plott C, Bryan KB, Li ZG, Shu SQ, Carlson J, Goodstein D, De Santiago L, Kirkbride RC, Calleja S, Campbell T, Koebernick JC, Dever JK, Scheffler JA, Pauli D, Jenkins JN, McCarty JC, Williams M, Boston L, Webber J, Udall JA, Chen ZJ, Bourland F, Stiller WN, Saski CA, Grimwood J, Chee PW, Jones DC, Schmutz J (2024). Genome resources for three modern cotton lines guide future breeding efforts. Nat Plants 10, 1039–1051
|
|
|
Sun HD, Xue JZ, Liu YJ, Liu C, Nian XC, Bian Z, Li Q, Li LY, Liu YW, Gong XD (2021). Genome identification and expression pattern analysis of TCP transcription factor family in maize. Mol Plant Breed 19, 2460–2471. (in Chinese)
|
|
|
孙菡笛, 薛江芝, 刘亚洁, 刘畅, 年旭昌, 卞哲, 李晴, 李路阳, 刘玉卫, 巩校东 (2021). 玉米TCP转录因子家族的全基因组鉴定及表达模式分析. 分子植物育种 19, 2460–2471
|
|
|
Sun QX, Chen ZT, Chen RR, Zhang B (2024). Genome-wide identification and analysis of TCP transcription factors in bermudagrass. Pratac Sci 41, 2330–2344. (in Chinese)
|
|
|
孙启雪, 陈焯婷, 陈荣荣, 张兵 (2024). 狗牙根TCP转录因子基因家族鉴定与分析. 草业科学 41, 2330–2344
|
|
|
Suo ZL, Zhao XQ, Zhao JP, Zhao XC, Chen FF (2008). ‘Sisters on spring outing’ (Paeonia suffruticosa ‘Zi Mei You Chun’) (Paeoniaceae): a unique Chinese tree peony cultivar possessing side flowers and bicolored floral discs. HortScience 43, 532–534
|
|
|
Takeda T, Suwa Y, Suzuki M, Kitano H, Ueguchi-Tanaka M, Ashikari M, Matsuoka M, Ueguchi C (2003). The OsTB1 gene negatively regulates lateral branching in rice. Plant J 33, 513–520
|
|
|
Tan ZW, Guo SZ, Su XY, Sun Y, Yu YL, Li L, Zhang LC, Xu LJ, Lu DD, An SF, Li CM, Liang HZ, Wang ZJ (2024). Genome-wide analysis of TCP gene family and their expression pattern analysis in Lonicera japonica. Chin Tradit Herb Drugs 55, 1665–1676. (in Chinese)
|
|
|
谭政委, 郭水柱, 苏小雨, 孙瑶, 余永亮, 李磊, 张利超, 许兰杰, 鲁丹丹, 安素妨, 李春明, 梁慧珍, 王子君 (2024). 全基因组水平金银花TCP基因家族的鉴定及表达模式分析. 中草药 55, 1665–1676
|
|
|
Tatematsu K, Nakabayashi K, Kamiya Y, Nambara E (2008). Transcription factor AtTCP14 regulates embryonic growth potential during seed germination in Arabidopsis thaliana. Plant J 53, 42–52
|
|
|
Verweij W, Spelt CE, Bliek M, de Vries M, Wit N, Faraco M, Koes R, Quattrocchio FM (2016). Functionally similar WRKY proteins regulate vacuolar acidification in petunia and hair development in Arabidopsis. Plant Cell 28, 786–803
|
|
|
Viola IL, Camoirano A, Gonzalez DH (2016). Redox-dependent modulation of anthocyanin biosynthesis by the TCP transcription factor TCP15 during exposure to high light intensity conditions in Arabidopsis. Plant Physiol 170, 74–85
|
|
|
Viola IL, Gonzalez DH (2023). TCP transcription factors in plant reproductive development: juggling multiple roles. Biomolecules 13, 750
|
|
|
Wang F, Wang XJ, Zhao SN, Yan JR, Bu X, Zhang Y, Liu YF, Xu T, Qi MF, Qi HY, Li TL (2020). Light regulation of anthocyanin biosynthesis in horticultural crops. Sci Agric Sin 53, 4904–4917. (in Chinese)
|
|
|
王峰, 王秀杰, 赵胜男, 闫家榕, 卜鑫, 张颖, 刘玉凤, 许涛, 齐明芳, 齐红岩, 李天来 (2020). 光对园艺植物花青素生物合成的调控作用. 中国农业科学 53, 4904–4917
|
|
|
Xiao PX, Li YR, Lu J, Zuo H, Pingcuo G, Ying H, Zhao F, Xu Q, Zeng XL, Jiao WB (2023). High-quality assembly and methylome of a Tibetan wild tree peony genome (Paeonia ludlowii) reveal the evolution of giant genome architecture. Hortic Res 10, uhad241
|
|
|
Xie YG (2019). Functional Analysis of Strawberry (Fragaria vesca) Transcription Factor FvTCP9 in Fruit Ripening. Master’s thesis. Yangling: Northwest A&F University. pp. 1–58. (in Chinese)
|
|
|
谢尹歌 (2019). 草莓转录因子FvTCP9在果实成熟中的功能研究. 硕士论文. 杨凌: 西北农林科技大学. pp. 1–58
|
|
|
Xu WJ, Dubos C, Lepiniec L (2015). Transcriptional control of flavonoid biosynthesis by MYB-bHLH-WDR complexes. Trends Plant Sci 20, 176–185
|
|
|
Yang X, Wang Y, Liu TX, Liu Q, Liu J, Lü TF, Yang RX, Guo FX, Wang YZ (2023). CYCLOIDEA-like genes control floral symmetry, floral orientation, and nectar guide patterning. Plant Cell 35, 2799–2820
|
|
|
Yang XH, Wang JR, Xia XZ, Zhang ZQ, He J, Nong BX, Luo TP, Feng R, Wu YY, Pan YH, Xiong FQ, Zeng Y, Chen C, Guo H, Xu ZJ, Li DT, Deng GF (2021). OsTTG1, a WD40 repeat gene, regulates anthocyanin biosynthesis in rice. Plant J 107, 198–214
|
|
|
Yuan JH, Jiang SJ, Jian JB, Liu MY, Yue Z, Xu JB, Li J, Xu CY, Lin LH, Jing Y, Zhang XX, Chen HX, Zhang LJ, Fu T, Yu SY, Wu ZY, Zhang Y, Wang CZ, Zhang X, Huang LB, Wang HQ, Hong DY, Chen XY, Hu YH (2022). Genomic basis of the giga-chromosomes and giga-genome of tree peony Paeonia ostii. Nat Commun 13, 7328
|
|
|
Zhang JJ, Wang LS, Liu ZA, Li CH (2006). Recent advances in flower color research of tree peony. Acta Hortic Sin 33, 1383–1388. (in Chinese)
|
|
|
张晶晶, 王亮生, 刘政安, 李崇晖 (2006). 牡丹花色研究进展. 园艺学报 33, 1383–1388
|
|
|
Zhang Y, Zhao MJ, Zhu W, Shi CM, Bao MZ, Zhang W (2021a). Nonglandular prickle formation is associated with development and secondary metabolism-related genes in Rosa multiflora. Physiol Plant 173, 1147–1162
|
|
|
Zhang YJ, Pan YC, Wang RX, Li JL, Zhang J (2014). Research progress of genes which relate to the biosynthetic pathway of anthocyanins. J Anhui Agric Sci 42, 12014–12016. (in Chinese)
|
|
|
张云洁, 潘怡辰, 王汝茜, 李集临, 张杰 (2014). 植物花青素生物合成途径相关基因的研究进展. 安徽农业科学 42, 12014–12016
|
|
|
Zhang YY, Yang ZQ, He YZ, Liu DX, Liu YY, Liang CY, Xie ML, Jia YP, Ke QL, Zhou YM, Cheng XH, Huang JY, Liu LJ, Xiang Y, Raman H, Kliebenstein DJ, Liu SY, Yang QY (2024). Structural variation reshapes population gene expression and trait variation in 2,105 Brassica napus accessions. Nat Genet 56, 2538–2550
|
|
|
Zhang YZ, Xu SZ, Cheng YW, Wang J, Wang XX, Liu RX, Han JM (2020). Functional identification of PsMYB57 involved in anthocyanin regulation of tree peony. BMC Genet 21, 124
|
|
|
Zhang YZ, Xu SZ, Ma HP, Duan XJ, Gao SX, Zhou XJ, Cheng YW (2021b). The R2R3-MYB gene PsMYB58 positively regulates anthocyanin biosynthesis in tree peony flowers. Plant Physiol Biochem 164, 279–288
|
|
|
Zhou WY, Wu FY, Zhao MY, Huang L, Chen XJ, Zhou Y, Liu KD (2024). Identification of TCP transcription factors in Carica papaya and their expression during fruit ripening. J Zhejiang Agric Sci 65, 2693–2702. (in Chinese)
|
|
|
周汪洋, 吴飞燕, 赵苗羽, 黄蕾, 陈雄进, 周艳, 刘锴栋 (2024). 番木瓜TCP转录因子鉴定及在果实成熟中的表达. 浙江农业科学 65, 2693–2702
|
|
|
Zimmermann IM, Heim MA, Weisshaar B, Uhrig JF (2004). Comprehensive identification of Arabidopsis thaliana MYB transcription factors interacting with R/B-like BHLH proteins. Plant J 40, 22–34
|
| No related articles found! |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||