China Rice ›› 2024, Vol. 30 ›› Issue (4): 1-6.DOI: 10.3969/j.issn.1006-8082.2024.04.001
• Special Thesis & Basic Research • Next Articles
TANG Simin1, TONG Xiaohong2, YING Jiezheng2, ZHANG Jian2, TIAN Zhihong1,*(), WANG Yifeng2,*(
)
Received:
2024-01-23
Online:
2024-07-20
Published:
2024-07-16
Contact:
TIAN Zhihong, WANG Yifeng
唐思敏1, 童晓红2, 应杰政2, 张健2, 田志宏1,*(), 王以锋2,*(
)
通讯作者:
田志宏,王以锋
基金资助:
CLC Number:
TANG Simin, TONG Xiaohong, YING Jiezheng, ZHANG Jian, TIAN Zhihong, WANG Yifeng. Advance and Prospect in Regulation Mechanisms of Seed Dormancy and Germination of Rice in China in Recent Years[J]. China Rice, 2024, 30(4): 1-6.
唐思敏, 童晓红, 应杰政, 张健, 田志宏, 王以锋. 近年我国水稻种子休眠与萌发调控机制研究进展[J]. 中国稻米, 2024, 30(4): 1-6.
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[1] | XU F, TANG J, GAO S, et al. Control of rice pre-harvest sprouting by glutaredoxin-mediated abscisic acid signaling[J]. The Plant Journal, 2019, 100(5): 1 036-1 051. |
[2] | KANEKO M, ITOH H, UEGUCHI-TANAKA M, et al. The alpha-amylase induction in endosperm during rice seed germination is caused by gibberellin synthesized in epithelium[J]. Plant Physiology, 2002, 128(4): 1 264-1 270. |
[3] | GIMENO-GILLES C, LELIVRE E, VIAU L, et al. ABA-mediated inhibition of germination is related to the inhibition of genes encoding cell-wall biosynthetic and architecture: modifying enzymes and structural proteins in Medicago truncatula embryo axis[J]. Molecular Plant, 2009, 2(1): 108-119. |
[4] | WANG G Q, LI X Z, YE N H, et al. OsTPP1 regulates seed germination through the crosstalk with abscisic acid in rice[J]. New Phytologist, 2021, 230(5): 1 925-1 939. |
[5] | HE Y, CHEN W T, TAN J H, et al. Rice CENTRORADIALIS 2 regulates seed germination and salt tolerance via ABA-mediated pathway[J]. Theoretical and Applied Genetics, 2022, 135(12): 4 245-4 259. |
[6] | JIA J T, LUO Y J, WU Z Y, et al. OsJMJ718, a histone demethylase gene, positively regulates seed germination in rice[J]. The Plant Journal, 2024, 118: 191-202. |
[7] | WANG Y F, HOU Y X, QIU J H, et al. Abscisic acid promotes jasmonic acid biosynthesis via a‘SAPK10-bZIP72-AOC’ pathway to synergistically inhibit seed germination in rice (Oryza sativa)[J]. New Phytologist, 2020, 228(4): 1 336-1 353. |
[8] | HE Y, CHEN S S, LIU K X, et al. OsHIPL1, a hedgehog-interacting protein-like 1 protein, increases seed vigour in rice[J]. Plant Biotechnology Journal, 2022, 20(7): 1 346-1 362. |
[9] | HE Y Q, ZHAO J, YANG B, et al. Indole-3-acetate beta-glucosyltransferase OsIAGLU regulates seed vigour through mediating crosstalk between auxin and abscisic acid in rice[J]. Plant Biotechnology Journal, 2020, 18(9): 1 933-1 945. |
[10] | HUANG C W, ZHAO J, HUANG Q Q, et al. OsNAC3 regulates seed germination involving abscisic acid pathway and cell elongation in rice[J]. New Phytologist, 2023, 241(2): 650-664. |
[11] | WANG H T, ZHANG Y M, XIAO N, et al. Rice GERMIN-LIKE PROTEIN 2-1 functions in seed dormancy under the control of abscisic acid and gibberellic acid signaling pathways[J]. Plant Physiology, 2020, 183(3): 1 157-1 170. |
[12] | XIONG M, YU J W, WANG J D, et al. Brassinosteroids regulate rice seed germination through the BZR1-RAmy3D transcriptional module[J]. Plant Physiology, 2022, 189(1): 402-418. |
[13] | LI Y X, ZHOU J H, LI Z, et al. SALT AND ABA RESPONSE ERF1 improves seed germination and salt tolerance by repressing ABA signaling in rice[J]. Plant Physiology, 2022, 189(2): 1 110-1 127. |
[14] | SONG W H, HAO Q X, CAI M Y, et al. Rice OsBT1 regulates seed dormancy through the glycometabolism pathway[J]. Plant Physiology and Biochemistry, 2020, 151: 469-476. |
[15] | HU Y X, BAI J Q, XIA Y Q, et al. Increasing SnRK1 activity with the AMPK activator A-769662 accelerates seed germination in rice[J]. Plant Physiology and Biochemistry, 2022, 185: 155-166. |
[16] | YU H H, TENG Z N, LIU B H, et al. Transcription factor OsMYB30 increases trehalose content to inhibit α-amylase and seed germination at low temperature[J]. Plant Physiology, 2023, doi: 10.1093/plphys/kiad650. |
[17] | YANG L M, LIU H L, LEI L, et al. Combined QTL-sequencing, linkage mapping, and RNA-sequencing identify candidate genes and KASP markers for low-temperature germination in Oryza sativa L. ssp. japonica[J]. Planta, 2023, 257(6): 122. |
[18] | HE Y Q, SUN S, ZHAO J, et al. UDP-glucosyltransferase OsUGT75A promotes submergence tolerance during rice seed germination[J]. Nature Communications, 2023, 14(1): 2 296. |
[19] | SUN J, ZHANG G C, CUI Z B, et al. Regain flood adaptation in rice through a 14-3-3 protein OsGF14h[J]. Nature Communications, 2022, 13(1): 5 664. |
[20] | LEE K W, CHEN J J W, WU C S, et al. Auxin plays a role in the adaptation of rice to anaerobic germination and seedling establishment[J]. Plant Cell and Environment, 2023, 46(4): 1 157-1 175. |
[21] | LU K X, GUO Z Y, DI S Y, et al. OsMFT1 inhibits seed germination by modulating abscisic acid signaling and gibberellin biosynthesis under salt stress in rice[J]. Plant and Cell Physiology, 2023, 64(6): 674-685. |
[22] | JIN X K, LI X X, XIE Z Z, et al. Nuclear factor OsNF-YC5 modulates rice seed germination by regulating synergistic hormone signaling[J]. Plant Physiology, 2023, 193(4): 2 825-2 847. |
[23] | PENG L L, SUN S, YANG B, et al. Genome-wide association study reveals that the cupin domain protein OsCDP3.10 regulates seed vigour in rice[J]. Plant Biotechnology Journal, 2022, 20(3): 485-498. |
[24] | LI R Q, ZHENG W Y, YANG R F, et al. OsSGT1 promotes melatonin-ameliorated seed tolerance to chromium stress by affecting the OsABI5-OsAPX1 transcriptional module in rice[J]. The Plant Journal, 2022, 112(1): 151-171. |
[25] | LI R Q, WU L Q, SHAO Y F, et al. Melatonin alleviates copper stress to promote rice seed germination and seedling growth via crosstalk among various defensive response pathways[J]. Plant Physiology and Biochemistry, 2022, 179: 65-77. |
[26] | QIAO J Z, QUAN R D, WANG J, et al. OsEIL1 and OsEIL2, two master regulators of rice ethylene signaling, promote the expression of ROS scavenging genes to facilitate coleoptile elongation and seedling emergence from soil[J]. Plant Communications, 2024, 5(3): 100 771. |
[27] | GRAHAM I A. Seed storage oil mobilization[J]. Annual Review of Plant Biology, 2008, 59: 115-142. |
[28] | WANG F X, XU H B, ZHANG L, et al. The lipoxygenase OsLOX10 affects seed longevity and resistance to saline-alkaline stress during rice seedlings[J]. Plant Molecular Biology, 2023, 111(4/5): 415-428. |
[29] | SUGIMOTO K, TAKEUCHI Y, EBANA K, et al. Molecular cloning of Sdr4 a regulator involved in seed dormancy and domestication of rice[J]. Proceedings of the National Academy of Sciences of USA, 2010, 107(13): 5 792-5 797. |
[30] | ZHAO B, ZHANG H, CHEN T X, et al. Sdr4 dominates pre-harvest sprouting and facilitates adaptation to local climatic condition in Asian cultivated rice[J]. Journal of Integrative Plant Biology, 2022, 64(6): 1 246-1 263. |
[31] | CHEN W Q, WANG W, LYU Y S, et al. OsVP1 activates Sdr4 expression to control rice seed dormancy via the ABA signaling pathway[J]. The Crop Journal, 2021, 9(1): 68-78. |
[32] | WANG Q, LIN Q B, WU T, et al. OsDOG1L-3 regulates seed dormancy through the abscisic acid pathway in rice[J]. Plant Science, 2020, 298: 110 570. |
[33] | FU K, SONG W H, CHEN C, et al. Improving pre-harvest sprouting resistance in rice by editing OsABA8ox using CRISPR/Cas9[J]. Plant Cell Reports, 2022, 41(10): 2 107-2 110. |
[34] | HUANG Y S, SONG J W, HAO Q X, et al. WEAK SEED DORMANCY 1, an aminotransferase protein, regulates seed dormancy in rice through the GA and ABA pathways[J]. Plant Physiology and Biochemistry, 2023, 202: 107 923. |
[35] | XU F, TANG J Y, WANG S X, et al. Antagonistic control of seed dormancy in rice by two bHLH transcription factors[J]. Nature Genetics, 2022, 54(12): 1 972-1 982. |
[36] | SONG S, WANG G F, WU H, et al. OsMFT2 is involved in the regulation of ABA signaling-mediated seed germination through interacting with OsbZIP23/66/72 in rice[J]. The Plant Journal, 2020, 103(2): 532-546. |
[37] | CHEN Y, XIANG Z P, LIU M, et al. ABA biosynthesis gene OsNCED3 contributes to preharvest sprouting resistance and grain development in rice[J]. Plant Cell and Environment, 2023, 46(4): 1 384-1 401. |
[38] | XING M Q, CHEN S H, ZHANG X F, et al. Rice OsGA2ox9 regulates seed GA metabolism and dormancy[J]. Plant Biotechnology Journal, 2023, 21(12): 2 411-2 413. |
[39] | NIKOLIC N, GHIRARDELLI A, SCHIAVON M, et al. Effects of the salinity-temperature interaction on seed germination and early seedling development: a comparative study of crop and weed species[J]. BMC Plant Biology, 2023, 23(1): 446. |
[40] | PRERNA D I, GOVINDARAJU K, TAMILSELVAN S, et al. Influence of nanoscale micro-nutrient α-Fe2O3 on seed germination, seedling growth, translocation, physiological effects and yield of rice (Oryza sativa) and maize (Zea mays)[J]. Plant Physiology and Biochemistry, 2021,162: 564-580. |
[41] | KIM S, HUH S M, HAN H J, et al. A rice seed-specific glycine-rich protein OsDOR1 interacts with GID1 to repress GA signaling and regulates seed dormancy[J]. Plant Molecular Biology, 2023, 111(6): 523-539. |
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