Hereditas(Beijing) ›› 2022, Vol. 44 ›› Issue (6): 510-520.doi: 10.16288/j.yczz.22-074
• Research Article • Previous Articles Next Articles
Pengfei Zheng(), Haibo Xie, Panpan Zhu, Chengtian Zhao(
)
Received:
2022-03-17
Revised:
2022-04-22
Online:
2022-06-20
Published:
2022-05-27
Contact:
Zhao Chengtian
E-mail:zhengpf@stu.ouc.edu.cn;chengtian_zhao@ouc.edu.cn
Supported by:
Pengfei Zheng, Haibo Xie, Panpan Zhu, Chengtian Zhao. Distribution pattern of floor plate neurons in zebrafish[J]. Hereditas(Beijing), 2022, 44(6): 510-520.
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
[1] |
Colamarino SA, Tessier-Lavigne M. The role of the floor plate in axon guidance. Annu Rev Neurosci, 1995, 18(1):497-529.
doi: 10.1146/annurev.ne.18.030195.002433 |
[2] |
Tanabe Y, Jessell TM. Diversity and pattern in the developing spinal cord. Science, 1996, 274(5290):1115-1123.
pmid: 8895454 |
[3] |
Strähle U, Lam CS, Ertzer R, Rastegar S. Vertebrate floor-plate specification: variations on common themes. Trends Genet, 2004, 20(3):155-162.
pmid: 15036809 |
[4] |
Placzek M, Briscoe J. The floor plate: multiple cells, multiple signals. Nat Rev Neurosci, 2005, 6(3):230-240.
doi: 10.1038/nrn1628 |
[5] |
Yu XW, Ng CP, Habacher H, Roy S. Foxj1 transcription factors are master regulators of the motile ciliogenic program. Nat Genet, 2008, 40(12):1445-1453.
doi: 10.1038/ng.263 |
[6] |
Cruz C, Ribes V, Kutejova E, Cayuso J, Lawson V, Norris D, Stevens J, Davey M, Blight K, Bangs F, Mynett A, Hirst E, Chung R, Balaskas N, Brody SL, Marti E, Briscoe J. Foxj1 regulates floor plate cilia architecture and modifies the response of cells to sonic hedgehog signalling. Development, 2010, 137(24):4271-4282.
doi: 10.1242/dev.051714 |
[7] |
Zhang XL, Jia S, Chen Z, Chong YL, Xie HB, Feng D, Wu XT, Song DZ, Roy S, Zhao CT. Cilia-driven cerebrospinal fluid flow directs expression of urotensin neuropeptides to straighten the vertebrate body axis. Nat Genet, 2018, 50(12):1666-1673.
doi: 10.1038/s41588-018-0260-3 |
[8] |
Song Z, Zhang XL, Jia S, Yelick PC, Zhao CT. Zebrafish as a Model for Human Ciliopathies. J Genet Genomics, 2016, 43(3):107-120.
doi: 10.1016/j.jgg.2016.02.001 pmid: 27020031 |
[9] |
Grimes DT, Boswell CW, Morante NFC, Henkelman RM, Burdine RD, Ciruna B. Zebrafish models of idiopathic scoliosis link cerebrospinal fluid flow defects to spine curvature. Science, 2016, 352(6291):1341-1344.
doi: 10.1126/science.aaf6419 pmid: 27284198 |
[10] | Placzek M, Yamada T, Tessier-Lavigne M, Jessell T, Dodd J. Control of dorsoventral pattern in vertebrate neural development: induction and polarizing properties of the floor plate. Dev Suppl, 1991, 113(Supplement 2):105-122. |
[11] |
Yamada T, Placzek M, Tanaka H, Dodd J, Jessell TM. Control of cell pattern in the developing nervous system: polarizing activity of the floor plate and notochord. Cell, 1991, 64(3):635-647.
pmid: 1991324 |
[12] |
Placzek M, Jessell TM, Dodd J. Induction of floor plate differentiation by contact-dependent, homeogenetic signals. Development, 1993, 117(1):205-218.
doi: 10.1242/dev.117.1.205 pmid: 8223247 |
[13] |
Ang SL, Wierda A, Wong D, Stevens KA, Cascio S, Rossant J, Zaret KS. The formation and maintenance of the definitive endoderm lineage in the mouse: involvement of HNF3/forkhead proteins. Development, 1993, 119(4):1301-1315.
doi: 10.1242/dev.119.4.1301 pmid: 8306889 |
[14] |
Monaghan AP, Kaestner KH, Grau E, Schütz G. Postimplantation expression patterns indicate a role for the mouse forkhead/HNF-3 alpha, beta and gamma genes in determination of the definitive endoderm, chordamesoderm and neuroectoderm. Development, 1993, 119(3):567-578.
doi: 10.1242/dev.119.3.567 pmid: 8187630 |
[15] |
Sasaki H, Hogan BL. Differential expression of multiple fork head related genes during gastrulation and axial pattern formation in the mouse embryo. Development, 1993, 118(1):47-59.
doi: 10.1242/dev.118.1.47 pmid: 8375339 |
[16] |
Roelink H, Porter JA, Chiang C, Tanabe Y, Chang DT, Beachy PA, Jessell TM. Floor plate and motor neuron induction by different concentrations of the amino-terminal cleavage product of sonic hedgehog autoproteolysis. Cell, 1995, 81(3):445-455.
pmid: 7736596 |
[17] |
Jeong Y, Epstein DJ. Distinct regulators of Shh transcription in the floor plate and notochord indicate separate origins for these tissues in the mouse node. Development, 2003, 130(16):3891-3902.
doi: 10.1242/dev.00590 |
[18] |
Odenthal J, van Eeden FJ, Haffter P, Ingham PW, Nüsslein-Volhard C. Two distinct cell populations in the floor plate of the zebrafish are induced by different pathways. Dev Biol, 2000, 219(2):350-363.
pmid: 10694427 |
[19] |
Schäfer M, Kinzel D, Winkler C. Discontinuous organization and specification of the lateral floor plate in zebrafish. Dev Biol, 2007, 301(1):117-129.
doi: 10.1016/j.ydbio.2006.09.018 |
[20] |
Cantaut-Belarif Y, Sternberg JR, Thouvenin O, Wyart C, Bardet PL. The reissner fiber in the cerebrospinal fluid controls morphogenesis of the body axis. Curr Biol, 2018, 28(15): 2479-2486.e4.
doi: S0960-9822(18)30747-4 pmid: 30057305 |
[21] |
Orts-Del'Immagine A, Cantaut-Belarif Y, Thouvenin O, Roussel J, Baskaran A, Langui D, Koëth F, Bivas P, Lejeune FX, Bardet PL, Wyart C. Sensory neurons contacting the cerebrospinal fluid require the reissner fiber to detect spinal curvature in vivo. Curr Biol, 2020, 30(5): 827-839.e4.
doi: S0960-9822(19)31704-X pmid: 32084399 |
[22] |
Ringers C, Jurisch-Yaksi N. Development: how the reissner fiber keeps our back straight. Curr Biol, 2020, 30(12):R705-R708.
doi: 10.1016/j.cub.2020.04.073 |
[23] |
Pevny L, Placzek M. SOX genes and neural progenitor identity. Curr Opin Neurobiol, 2005, 15(1):7-13.
doi: 10.1016/j.conb.2005.01.016 |
[24] |
Bernardos RL, Raymond PA. GFAP transgenic zebrafish. Gene Expr Patterns, 2006, 6(8):1007-1013.
pmid: 16765104 |
[25] |
Johnson K, Barragan J, Bashiruddin S, Smith CJ, Tyrrell C, Parsons MJ, Doris R, Kucenas S, Downes GB, Velez CM, Schneider C, Sakai C, Pathak N, Anderson K, Stein R, Devoto SH, Mumm JS, Barresi MJF. Gfap-positive radial glial cells are an essential progenitor population for later-born neurons and glia in the zebrafish spinal cord. Glia, 2016, 64(7):1170-1189.
doi: 10.1002/glia.22990 |
[26] |
Jeong YM, Jin TE, Choi JH, Lee MS, Kim HT, Hwang KS, Park DS, Oh HW, Choi JK, Korzh V, Schachner M, You KH, Kim CH. Induction of clusterin expression by neuronal cell death in zebrafish. J Genet Genomics, 2014, 41(11):583-589.
doi: 10.1016/j.jgg.2014.08.007 |
[27] |
Jiao S, Dai W, Lu L, Liu YZ, Zhou JF, Li Y, Korzh V, Duan CM. The conserved clusterin gene is expressed in the developing choroid plexus under the regulation of notch but not IGF signaling in zebrafish. Endocrinology, 2011, 152(5):1860-1871.
doi: 10.1210/en.2010-1183 |
[28] |
Sternberg JR, Prendergast AE, Brosse L, Cantaut-Belarif Y, Thouvenin O, Orts-Del'Immagine A,Castillo L,Djenoune L,Kurisu S,McDearmid JR,Bardet PL,Boccara C,Okamoto H,Delmas P,Wyart C. Pkd2l1 is required for mechanoception in cerebrospinal fluid-contacting neurons and maintenance of spine curvature. Nat Commun, 2018, 9(1):3804.
doi: 10.1038/s41467-018-06225-x pmid: 30228263 |
[29] |
Djenoune L, Khabou H, Joubert F, Quan FB, Nunes Figueiredo S, Bodineau L, Del Bene F, Burcklé C, Tostivint H, Wyart C. Investigation of spinal cerebrospinal fluid-contacting neurons expressing PKD2L1: evidence for a conserved system from fish to primates. Front Neuroanat, 2014, 8:26.
doi: 10.3389/fnana.2014.00026 pmid: 24834029 |
[30] |
Petracca YL, Sartoretti MM, Di Bella DJ, Marin-Burgin A, Carcagno AL, Schinder AF, Lanuza GM. The late and dual origin of cerebrospinal fluid-contacting neurons in the mouse spinal cord. Development, 2016, 143(5):880-891.
doi: 10.1242/dev.129254 pmid: 26839365 |
[31] |
Andrzejczuk LA, Banerjee S, England SJ, Voufo C, Kamara K, Lewis KE. Tal1, Gata2a, and Gata3 have distinct functions in the development of V2b and cerebrospinal fluid-contacting KA spinal neurons. Front Neurosci, 2018, 12:170.
doi: 10.3389/fnins.2018.00170 |
[32] |
Zhao L, Ben-Yair R, Burns CE, Burns CG. Endocardial Notch signaling promotes cardiomyocyte proliferation in the regenerating zebrafish heart through Wnt pathway antagonism. Cell Rep, 2019, 26(3): 546-554.e5.
doi: 10.1016/j.celrep.2018.12.048 |
[33] |
Quan FB, Dubessy C, Galant S, Kenigfest NB, Djenoune L, Leprince J, Wyart C, Lihrmann I, Tostivint H. Comparative distribution and in vitro activities of the urotensin II-related peptides URP1 and URP2 in zebrafish: evidence for their colocalization in spinal cerebrospinal fluid-contacting neurons. PLoS One, 2015, 10(3):e0119290.
doi: 10.1371/journal.pone.0119290 |
[34] |
Park HC, Shin J, Appel B. Spatial and temporal regulation of ventral spinal cord precursor specification by Hedgehog signaling. Development, 2004, 131(23):5959-5969.
doi: 10.1242/dev.01456 |
[35] |
Chiang C, Litingtung Y, Lee E, Young KE, Corden JL, Westphal H, Beachy PA. Cyclopia and defective axial patterning in mice lacking Sonic hedgehog gene function. Nature, 1996, 383(6599):407-413.
doi: 10.1038/383407a0 |
[36] |
Latimer AJ, Appel B. Notch signaling regulates midline cell specification and proliferation in zebrafish. Dev Biol, 2006, 298(2):392-402.
pmid: 16876779 |
[1] | Kailun Li, Jingao Lu, Xiaohui Chen, Wenqing Zhang, Wei Liu. The role of the allantoin in promoting fracture healing in osteoclast-deficient zebrafish [J]. Hereditas(Beijing), 2023, 45(4): 341-353. |
[2] | Jing’ao Lu, Chunyan Huang, Zhiyin Lin, Zheng Tang, Ning Ma, Zhibin Huang. The role of the cd99l2 gene on leukocyte interstitial migration in zebrafish [J]. Hereditas(Beijing), 2022, 44(9): 798-809. |
[3] | Tingting Zhang, Feng Liu. Study on a detection method of protein tyrosine sulfation modification in zebrafish [J]. Hereditas(Beijing), 2022, 44(2): 178-186. |
[4] | Tingting Jia, Lei Lei, Xinyuan Wu, Shunyou Cai, Yixuan Chen, Yu Xue. Study on the mechanism of metformin on zebrafish skeletal development and damage repair [J]. Hereditas(Beijing), 2022, 44(1): 68-79. |
[5] | Chunxia Zhang, Feng Liu. Regulatory signaling pathways in hematopoietic stem cell development [J]. Hereditas(Beijing), 2021, 43(4): 295-307. |
[6] | Jiani Guo, Fan Liu, Lu Wang. Zebrafish blood disease models and applications [J]. Hereditas(Beijing), 2020, 42(8): 725-738. |
[7] | Zhaojie Lyu, Zhihao Wang, Shuxian Lu, Peirong Liu, Jing Tian. Brachydactyly and the molecular mechanisms of digit formation [J]. Hereditas(Beijing), 2019, 41(12): 1073-1083. |
[8] | Feng Xiong,Xunwei Xie,Luyuan Pan,Kuoyu Li,Liyue Liu,Yun Zhang,Linglu Li,Yonghua Sun. Development of resources, technologies and services at the China Zebrafish Resource Center [J]. Hereditas(Beijing), 2018, 40(8): 683-692. |
[9] | Jingjin Xu, Wenjuan Zhang, Jingyi Wang, Liyun Yao, Yutian Pan, Yixin Ou, Yu Xue. The active component screening of Anoectochilus roxburghii and the functional study on inhibition of melanogenesis in zebrafish [J]. Hereditas(Beijing), 2017, 39(12): 1178-1187. |
[10] | Shanshan Liu, Cuizhen Zhang, Gang Peng. Effects of starvation on the expression of feeding related neuropeptides in the larval zebrafish hypothalamus [J]. Hereditas(Beijing), 2016, 38(9): 821-830. |
[11] | Fenghua Zhang, Houpeng Wang, Siyu Huang, Feng Xiong, Zuoyan Zhu, Yonghua Sun. A comparison of the knockout efficiencies of two codon-optimized Cas9 coding sequences in zebrafish embryos [J]. HEREDITAS(Beijing), 2016, 38(2): 144-154. |
[12] | Xiao Qiu, Rongfei Wei, Lingqiang Zhang, Fuchu He. The roles of signaling pathways in regulating kidney development [J]. HEREDITAS(Beijing), 2015, 37(1): 1-7. |
[13] | YAN Li-Feng GU Ai-Hua. Progress and application of zebrafish in regenerative medicine [J]. HEREDITAS, 2013, 35(7): 856-866. |
[14] | LI Li, LUO Ling-Fei. Zebrafish as the model system to study organogenesis and regeneration [J]. HEREDITAS, 2013, 35(4): 421-432. |
[15] | XU Ran-Ran ZHANG Cong-Wei CAO Yu WANG Qiang. mir122 deficiency inhibits differentiation of zebrafish hepa-toblast into hepatocyte [J]. HEREDITAS, 2013, 35(4): 488-494. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
www.chinagene.cn
备案号:京ICP备09063187号