PDF(537 KB)
Research Progress on the Mechanism of Plant Hormone Regulating Yield and Latex Flow in Hevea brasiliensis
Bingbing GUO, Mingyang LIU, Longjun DAI, Hong YANG, Lifeng WANG
PDF(537 KB)
PDF(537 KB)
Research Progress on the Mechanism of Plant Hormone Regulating Yield and Latex Flow in Hevea brasiliensis
Rubber tree(Hevea brasiliensis) is one of the important tropical cash crops, and natural rubber(NR), a secondary metabolite, is an important industrial raw material and strategic material in China. Phytohormones play important roles in regulating plant growth, development, germination, and environmental responses. Here, the research progress on application of four phytohormones, Ethylene, Abscisic acid, Brassinolides, and Gibberellin in the growth and development of rubber trees, NR biosynthesis, rubber yield, latex flow, and quality formation, was summarized in detail, and the application prospect of four phytohormones in mechanism research of improving rubber production and latex flow was looked forward to provide theoretical support for the rubber industry development.
Hevea brasiliensis / latex flow / plant hormone / natural rubber / biosynthesis
S794.1
| 1 | JIANG C L, DAI J X, HAN H L,et al.Determination of thirteen acidic phytohormones and their analogues in tea (Camellia sinensis) leaves using ultra high performance liquid chromatography tandem mass spectrometry[J].Journal of Chromatography B,2020,1149:122144. |
| 2 | WANG Y, MOSTAFA S, ZENG W,et al.Function and mechanism of jasmonic acid in plant responses to abiotic and biotic stresses[J].International Journal of Molecular Sciences,2021,22(16):8568. |
| 3 | YANG C L, HUANG Y T, SCHMIDT W,et al.Ethylene response factor 109 attunes immunity,photosynthesis,and iron homeostasis in arabidopsis leaves[J].Frontiers in Plant Science,2022,13:841366. |
| 4 | KHALEGHNEZHAD V, YOUSEFI A R, TAVAKOLI A,et al.Concentrations-dependent effect of exogenous abscisic acid on photosynthesis,growth and phenolic content of Dracocephalum moldavica L.under drought stress[J].Planta,2021,253(6):127. |
| 5 | CASTRO-CAMBA R, SáNCHEZ C, VIDAL N,et al.Plant development and crop yield:the role of gibberellins[J].Plants,2022,11(19):2650. |
| 6 | CHAUDHURI A, HALDER K, ABDIN M Z,et al.Abiotic stress tolerance in plants:brassinosteroids navigate competently[J].International Journal of Molecular Sciences,2022,23(23):14577. |
| 7 | BOWMAN J L, BRIGINSHAW L N, FISHER T J,et al.Something ancient and something neofunctionalized-evolution of land plant hormone signaling pathways[J].Current Opinion in Plant Biology,2019,47:64-72. |
| 8 | BAI Y C, XIE Y L, CAI M M,et al. GA20ox family genes mediate gibberellin and auxin crosstalk in Moso bamboo (Phyllostachys edulis)[J].Plants,2023,12(15):2842. |
| 9 | LI N, HAN X, FENG D,et al.Signaling crosstalk between salicylic acid and ethylene/jasmonate in plant defense:Do we understand what they are whispering?[J].International Journal of Molecular Sciences,2019,20(3):671. |
| 10 | CHERIAN S, RYU S B, CORNISH K.Natural rubber biosynthesis in plants,the rubber transferase complex,and metabolic engineering progress and prospects[J].Plant Biotechnology Journal,2019,17(11):2041-2061. |
| 11 | 莫业勇,杨琳.2022年国内外天然橡胶产业发展情况和2023年形势分析[J].中国热带农业,2023(4):19-25. |
| 11 | MO Y Y, YANG L.Development of natural rubber industry at home and abroad in 2022 and situation analysis in 2023[J].China Tropical Agriculture,2023(4):19-25. |
| 12 | WANG T H, UDAYABHANU J, GU X C,et al.Induction of axillary bud swelling of Hevea brasiliensis to regenerate plants through somatic embryogenesis and analysis of genetic stability[J].Plants,2023,12(9):1803. |
| 13 | SUI J L, XIAO X H, YANG J H,et al.The rubber tree RALF peptide hormone and its receptor protein kinase FER implicates in rubber production[J].Plant Science,2023,326:111510. |
| 14 | SHI M J, CAI F G, TIAN W M.Ethrel-stimulated prolongation of latex flow in the rubber tree (Hevea brasiliensis Muell.Arg.):an Hev b 7-like protein acts as a universal antagonist of rubber particle aggregating factors from lutoids and C-serum[J].The Journal of Biochemistry,2016,159(2):209-216. |
| 15 | YANG S F, HOFFMAN N E.Ethylene biosynthesis and its regulation in higher plants[J].Annual Review of Plant Physiology,1984,35:155-189. |
| 16 | 赵赫,陈受宜,张劲松.乙烯信号转导与植物非生物胁迫反应调控研究进展[J].生物技术通报,2016,32(10):1-10. |
| 16 | ZHAO H, CHEN S Y, ZHANG J S.Advances in ethylene signal transduction and regulation of plant abiotic stress response[J].Biotechnology Bulletin,2016,32(10):1-10. |
| 17 | KIEBER J J, ROTHENBERG M, ROMAN G,et al. CTR1,a negative regulator of the ethylene response pathway in arabidopsis,encodes a member of the raf family of protein kinases[J].Cell,1993,72(3):427-441. |
| 18 | LI W Y, MA M D, FENG Y,et al.EIN2-directed translational regulation of ethylene signaling in arabidopsis[J].Cell,2015,163(3):670-683. |
| 19 | POTUSCHAK T, LECHNER E, PARMENTIER Y,et al.EIN3-dependent regulation of plant ethylene hormone signaling by two Arabidopsis F box proteins:EBF1 and EBF2[J].Cell,2003,115(6):679-689. |
| 20 | CUI Y Y, ZHAI Y L, HE J J,et al. AP2/ERF genes associated with superfast fig (Ficus carica L.) fruit ripening[J].Frontiers in Plant Science,2022,13:1040796. |
| 21 | YANG Z P, LI H L, GUO D,et al.Identification and characterization of the EIN3/EIL gene family in Hevea brasiliensis [J].Tree Genetics & Genomes,2015,11(3):51. |
| 22 | WANG Q C, XU G, ZHAI J L,et al.Identification of the targets of HbEIN3/EILs in genomic wide in Hevea brasiliensis [J].Bioscience,Biotechnology,and Biochemistry,2019,83(7):1270-1283. |
| 23 | PIYATRAKUL P, PUTRANTO R A, MARTIN F,et al.Some ethylene biosynthesis and AP2/ERF genes reveal a specific pattern of expression during somatic embryogenesis in Hevea brasiliensis [J].BMC Plant Biology,2012,12:244. |
| 24 | GAO L, SUN Y, WU M,et al.Physiological and proteomic analyses of molybdenum- and ethylene-responsive mechanisms in rubber latex[J].Frontiers in Plant Science,2018,9:621. |
| 25 | NIE Z Y, KANG G J, DUAN C F,et al.Profiling ethylene-responsive genes expressed in the latex of the mature virgin rubber trees using cDNA microarray[J].PLoS One,2016,11(3):e0152039. |
| 26 | 张华林,周凯,李文秀,等.橡胶树品种‘湛试327-13’乙烯响应分子机制分析[J].分子植物育种,2023,21(14):4770-4779. |
| 26 | ZHANG H L, ZHOU K, LI W X,et al.Molecular mechanism analysis of ethylene response of Zhanshi 327-13[J].Molecular Plant Breeding,2023,21(14):4770-4779. |
| 27 | SREENIVASULU N, RADCHUK V, ALAWADY A,et al.De-regulation of abscisic acid contents causes abnormal endosperm development in the barley mutant seg8 [J].The Plant Journal,2010,64(4):589-603. |
| 28 | LIU Q F, QIN B, ZHANG D,et al.Identification and characterization of the HbPP2C gene family and its expression in response to biotic and abiotic stresses in rubber tree[J].International Journal of Molecular Sciences,2023,24(22):16061. |
| 29 | ZHANG Y, LIU M Y, ZHANG D,et al.Characterisation of the HbSnRK2 gene family members and revealing specific HbSnRK2.2 functions in the stress resistance of the rubber tree[J].Plant Protection Science,2023,59(1):59-72. |
| 30 | WANG M, WANG Y, ZHANG D,et al.Characterization of 33 HbbZIP gene family members and analysis of their expression profiles in rubber tree in response to ABA,glyphosate and powdery mildew treatment[J].Forests,2023,14(3):556. |
| 31 | VRIET C, RUSSINOVA E, REUZEAU C.From squalene to brassinolide:the steroid metabolic and signaling pathways across the plant kingdom[J].Molecular Plant,2013,6(6):1738-1757. |
| 32 | GUO B B, DAI L J, YANG H,et al.Comprehensive analysis of BR receptor expression under hormone treatment in the rubber tree (Hevea brasiliensis Muell.Arg.)[J].Plants,2023,12(6):1280. |
| 33 | GUO B B, LIU M Y, YANG H,et al.Brassinosteroids regulate the water deficit and latex yield of rubber trees[J].International Journal of Molecular Sciences,2023,24(16):12857. |
| 34 | GUO B B, YANG H, DAI L J,et al.Genome-wide identification and response stress expression analysis of the BES1 family in rubber tree (Hevea brasiliensis Muell.Arg.)[J].PeerJ,2022,10:e13189. |
| 35 | 岳川,曾建明,曹红利,等.高等植物赤霉素代谢及其信号转导通路[J].植物生理学报,2012,48(2):118-128. |
| 35 | YUE C, ZENG J M, CAO H L,et al.Gibberellins metabolism and signaling pathway in higher plant[J].Plant Physiology Journal,2012,48(2):118-128. |
| 36 | YOSHIDA H, UEGUCHI-TANAKA M.DELLA and SCL3 balance gibberellin feedback regulation by utilizing INDETERMINATE DOMAIN proteins as transcriptional scaffolds[J].Plant Signaling & Behavior,2014,9(9):e29726. |
| 37 | 吴绍华,张世鑫,陈月异,等.橡胶树DELLA蛋白编码基因HbGAI的克隆与表达分析[J].西北植物学报,2015,35(11):2157-2163. |
| 37 | WU S H, ZHANG S X, CHEN Y Y,et al.Cloning and expression analysis of HbGAI encoding DELLA protein in Hevea brasinensis [J].Acta Botanica Boreali-Occidentalia Sinica,2015,35(11):2157-2163. |
| 38 | 陈华峰,樊松乐,王立丰.巴西橡胶树赤霉素信号转导途径HbRGA1结构和功能分析[J].植物研究,2021,41(4):531-539. |
| 38 | CHEN H F, FAN S L, WANG L F.Structure and function analysis of gibberellin signal transduction pathway HbRGA1 in Hevea brasiliensis [J].Bulletin of Botanical Research,2021,41(4):531-539. |
| 39 | 覃碧,刘明洋,王萌,等.橡胶树DELLA基因HbRGL1的克隆与表达分析[J].植物研究,2022,42(6):997-1004. |
| 39 | QIN B, LIU M Y, WANG M,et al.Cloning and expression analysis of DELLA gene HbRGL1 in Hevea brasinensis [J].Bulletin of Botanical Research,2022,42(6):997-1004. |
| 40 | KIM J, KIM D H, LEE J Y,et al.The R3-type MYB transcription factor BrMYBL2.1 negatively regulates anthocyanin biosynthesis in Chinese cabbage (Brassica rapa L.) by repressing MYB-bHLH-WD40 complex activity[J].International Journal of Molecular Sciences,2022,23(6):3382. |
| 41 | QIN B, FAN S L, YU H Y,et al.HbMYB44,a rubber tree MYB transcription factor with versatile functions in modulating multiple phytohormone signaling and abiotic stress responses[J].Frontiers in Plant Science,2022,13:893896. |
/
| 〈 |
|
〉 |