Biotechnology Bulletin ›› 2025, Vol. 41 ›› Issue (6): 109-118.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0003
LUO Ji-lin(
), LI Jin-ye, JIA Yu-xin(
)
Received:2025-01-02
Online:2025-06-26
Published:2025-06-30
Contact:
JIA Yu-xin
E-mail:ljl2461647881@163.com;jiayuxin@caas.cn
LUO Ji-lin, LI Jin-ye, JIA Yu-xin. Identification and Functional Analysis of Gravity Response Regulatory Genes in Potato[J]. Biotechnology Bulletin, 2025, 41(6): 109-118.
| 基因名称Gene name | 引物名称 Primer name | 引物序列Primer sequence(5'-3') |
|---|---|---|
| StACTIN | Stactin-F | GGGATGGAGAAGTTTGGTGGTGG |
| Stactin-R | CTTCGACCAAGGGATGGTGTAGC | |
| StBRXL4 | BRXL4-qRT-F | TGCCAGTGATGTTGAGACTGA |
| BRXL4-qRT-R | TGGGCAGTGCAGGATCTTTT | |
| StLAZY1-1 | LAZY1-1-qRT-F | TTCAGCAGAGCCAAAACCCC |
| LAZY1-1-qRT-R | TTTGAGAGGCGATGGTGAGG | |
| StLAZY2 | LAZY2-qRT-F | GCGAGACACACTTCCCGAAT |
| LAZY2-qRT-R | ATCCGAATCGGTTTTGACCCA | |
| StLAZY5 | LAZY5-qRT-F | CGGTGGAGAAAAGAAAGAACGA |
| LAZY5-qRT-R | TTGCCCTGTTCCTGAAGTTGA | |
| StLAZY6 | LAZY6-qRT-F | GCCATAATAGCACCAGCAGTTT |
| LAZY6-qRT-R | TGGCGTTGGAGGGTCAGTA | |
| StPIN3 | PIN3-qRT-F | TCGGATGTTGGTTTCTGACCA |
| PIN3-qRT-R | ATGTGGAGCTAGACCCCAGT | |
| StRLD1 | RLD1-qRT-F | TTCTCTGCCTTCTGGCAACC |
| RLD1-qRT-R | CTTGGTGCTCCCCGAATCTT | |
| StRLD2 | RLD2-qRT-F | GCTGGAGAAGAGACTGCCAA |
| RLD2-qRT-R | GCAGTGAGATTGGAACCCGA | |
| StSCR | SCR-qRT-F | GCCGAGAGATTAGGCCTTCC |
| SCR-qRT-R | ACCTTCGGAGCCAACCTTTG | |
| StSHR | SHR-qRT-F | GACACAACAATCTCAATCTCATCA |
| SHR-qRT-R | ACATCCACATGAGTTGTTGGAC |
Table 1 Primer sequences for RT-qPCR
| 基因名称Gene name | 引物名称 Primer name | 引物序列Primer sequence(5'-3') |
|---|---|---|
| StACTIN | Stactin-F | GGGATGGAGAAGTTTGGTGGTGG |
| Stactin-R | CTTCGACCAAGGGATGGTGTAGC | |
| StBRXL4 | BRXL4-qRT-F | TGCCAGTGATGTTGAGACTGA |
| BRXL4-qRT-R | TGGGCAGTGCAGGATCTTTT | |
| StLAZY1-1 | LAZY1-1-qRT-F | TTCAGCAGAGCCAAAACCCC |
| LAZY1-1-qRT-R | TTTGAGAGGCGATGGTGAGG | |
| StLAZY2 | LAZY2-qRT-F | GCGAGACACACTTCCCGAAT |
| LAZY2-qRT-R | ATCCGAATCGGTTTTGACCCA | |
| StLAZY5 | LAZY5-qRT-F | CGGTGGAGAAAAGAAAGAACGA |
| LAZY5-qRT-R | TTGCCCTGTTCCTGAAGTTGA | |
| StLAZY6 | LAZY6-qRT-F | GCCATAATAGCACCAGCAGTTT |
| LAZY6-qRT-R | TGGCGTTGGAGGGTCAGTA | |
| StPIN3 | PIN3-qRT-F | TCGGATGTTGGTTTCTGACCA |
| PIN3-qRT-R | ATGTGGAGCTAGACCCCAGT | |
| StRLD1 | RLD1-qRT-F | TTCTCTGCCTTCTGGCAACC |
| RLD1-qRT-R | CTTGGTGCTCCCCGAATCTT | |
| StRLD2 | RLD2-qRT-F | GCTGGAGAAGAGACTGCCAA |
| RLD2-qRT-R | GCAGTGAGATTGGAACCCGA | |
| StSCR | SCR-qRT-F | GCCGAGAGATTAGGCCTTCC |
| SCR-qRT-R | ACCTTCGGAGCCAACCTTTG | |
| StSHR | SHR-qRT-F | GACACAACAATCTCAATCTCATCA |
| SHR-qRT-R | ACATCCACATGAGTTGTTGGAC |
Fig. 3 Expression pattern of gravity-responsive regulatory genes in potatoA: RT-qPCR detects expression pattern in tissues of potato; B: RNA-seq detects expression pattern in tissues of potato. LD refers to long day, SD refers to short day
Fig. 5 StLAZY1-1 expression patterns in the stolon of different developmental morphology of potatoA: Schematic diagram of underground organization of potato part. B: The expression of StLAZY1-1 was detected by RT-qPCR, one-way ANOVA was used, *P<0.05, **P<0.01,***P<0.001, ****P<0.000 1, the same below
Fig. 6 Identification and phenotypic statistics of LAZY1-1OE positive plantsA: Detection of LAZY1-1-positive plants in the Desiree background; B: Phenotypic statistics of transgenic plants in the Desiree background
| 33 | Xu R, Sun CQ. What happened during domestication of wild to cultivated rice [J]. Crop J, 2021, 9(3): 564-576. |
| 34 | Li PJ, Wang YH, Qian Q, et al. LAZY1 controls rice shoot gravitropism through regulating polar auxin transport [J]. Cell Res, 2007, 17(5): 402-410. |
| 35 | Yoshihara T, Spalding EP. LAZY genes mediate the effects of gravity on auxin gradients and plant architecture [J]. Plant Physiol, 2017, 175(2): 959-969. |
| 1 | Vandenbrink JP, Kiss JZ. Plant responses to gravity [J]. Semin Cell Dev Biol, 2019, 92: 122-125. |
| 2 | Volkmann D, Baluska F. Gravity: one of the driving forces for evolution [J]. Protoplasma, 2006, 229(2-4): 143-148. |
| 3 | Hangarter RP. Gravity, light and plant form [J]. Plant Cell Environ, 1997, 20(6): 796-800. |
| 4 | ARWIN F. The statolith-theory of geotropism [J]. Proc R Soc Lond, 1903, 71(467-476): 362-373. |
| 5 | Roychoudhry S, Kepinski S. Shoot and root branch growth angle control-the wonderfulness of lateralness [J]. Curr Opin Plant Biol, 2015, 23: 124-131. |
| 6 | Emerson R, Beadle G, Fraser AC. A summary of linkage studies in maize [J]. Cornell Agricultural Experiment, 1935,180:83. |
| 7 | Dong ZB, Jiang C, Chen XY, et al. Maize LAZY1 mediates shoot gravitropism and inflorescence development through regulating auxin transport, auxin signaling, and light response [J]. Plant Physiol, 2013, 163(3): 1306-1322. |
| 8 | Fukaki H, Fujisawa H, Tasaka M. SGR1, SGR2, SGR3: novel genetic loci involved in shoot gravitropism in Arabidopsis thaliana [J]. Plant Physiol, 1996, 110(3): 945-955. |
| 9 | Zhang H, Li X, Sang DJ, et al. PROG1 acts upstream of LAZY1 to regulate rice tiller angle as a repressor [J]. Crop J, 2023, 11(2): 386-393. |
| 10 | Chen JY, Yu RB, Li N, et al. Amyloplast sedimentation repolarizes LAZYs to achieve gravity sensing in plants [J]. Cell, 2023, 186(22): 4788-4802.e15. |
| 11 | Hollender CA, Hill JL Jr, Waite J, et al. Opposing influences of TAC1 and LAZY1 on lateral shoot orientation in Arabidopsis [J]. Sci Rep, 2020, 10(1): 6051. |
| 12 | Taniguchi M, Furutani M, Nishimura T, et al. The Arabidopsis LAZY1 family plays a key role in gravity signaling within statocytes and in branch angle control of roots and shoots [J]. Plant Cell, 2017, 29(8): 1984-1999. |
| 13 | Yoshihara T, Spalding EP, Iino M. AtLAZY1 is a signaling component required for gravitropism of the Arabidopsis thaliana inflorescence [J]. Plant J, 2013, 74(2): 267-279. |
| 14 | Furutani M, Hirano Y, Nishimura T, et al. Polar recruitment of RLD by LAZY1-like protein during gravity signaling in root branch angle control [J]. Nat Commun, 2020, 11(1): 76. |
| 15 | Che XM, Splitt BL, Eckholm MT, et al. BRXL4-LAZY1 interaction at the plasma membrane controls Arabidopsis branch angle and gravitropism [J]. Plant J, 2023, 113(2): 211-224. |
| 16 | Caspar T, Pickard BG. Gravitropism in a starchless mutant of Arabidopsis: implications for the starch-statolith theory of gravity sensing [J]. Planta, 1989, 177: 185-197. |
| 17 | Vitha S, Yang M, Sack FD, et al. Gravitropism in the starch excess mutant of Arabidopsis thaliana [J]. Am J Bot, 2007, 94(4): 590-598. |
| 18 | Zhu L, Yin T, Zhang MJ, et al. Genome-wide identification and expression pattern analysis of the kiwifruit GRAS transcription factor family in response to salt stress [J]. BMC Genomics, 2024, 25(1): 12. |
| 19 | Fukaki H, Wysocka-Diller J, Kato T, et al. Genetic evidence that the endodermis is essential for shoot gravitropism in Arabidopsis thaliana [J]. Plant J, 1998, 14(4): 425-430. |
| 20 | Johri MM. Hormonal regulation in green plant lineage families [J]. Physiol Mol Biol Plants, 2008, 14(1-2): 23-38. |
| 21 | Friml J, Wiśniewska J, Benková E, et al. Lateral relocation of auxin efflux regulator PIN3 mediates tropism in Arabidopsis [J]. Nature, 2002, 415(6873): 806-809. |
| 22 | Zažímalová E, Křeček P, Skůpa P, et al. Polar transport of the plant hormone auxin-the role of PIN-FORMED (PIN) proteins [J]. Cell Mol Life Sci, 2007, 64(13): 1621-1637. |
| 23 | Horton D. Underground crops: Long-term trends in production of roots and tubers [J]. Winrock International, 1988,7-9. |
| 24 | Navarro C, Abelenda JA, Cruz-Oró E, et al. Control of flowering and storage organ formation in potato by FLOWERING LOCUS T [J]. Nature, 2011, 478(7367): 119-122. |
| 25 | Zierer W, Rüscher D, Sonnewald U, et al. Tuber and tuberous root development [J]. Annu Rev Plant Biol, 2021, 72: 551-580. |
| 26 | Xu X, Vreugdenhil D, Lammeren AAMV. Cell division and cell enlargement during potato Tuber formation [J]. J Exp Bot, 1998, 49(320): 573-582. |
| 27 | Abelenda JA, Bergonzi S, Oortwijn M, et al. Source-sink regulation is mediated by interaction of an FT homolog with a SWEET protein in potato [J]. Curr Biol, 2019, 29(7): 1178-1186.e6. |
| 28 | Tang D, Jia YX, Zhang JZ, et al. Genome evolution and diversity of wild and cultivated potatoes [J]. Nature, 2022, 606(7914): 535-541. |
| 29 | 叶明旺, 张春芝, 黄三文. 二倍体栽培马铃薯高效遗传转化体系的建立 [J]. 中国农业科学, 2018, 51(17): 3249-3257. |
| Ye MW, Zhang CZ, Huang SW. Construction of high efficient genetic transformation system for diploid potatoes [J]. Sci Agric Sin, 2018, 51(17): 3249-3257. | |
| 30 | Overbeek JV. “Lazy,” an a-geotropic form of maize [J]. J Hered, 1936, 27(3): 93-96. |
| 31 | Howard TP 3rd, Hayward AP, Tordillos A, et al. Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy [J]. PLoS One, 2014, 9(1): e87053. |
| 32 | Huang X, Kurata N, Wei X, et al. A map of rice genome variation reveals the origin of cultivated rice[J]. Nature, 2012, 490(7421):497-501. |
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