| Literature DB >> 29041973 |
Shuo Zhang1,2, Caixia Lei1,3, Junping Wu1,3, Jing Zhou1, Haiyan Sun1, Jing Fu1,3, Yijuan Sun1, Xiaoxi Sun4,5, Daru Lu6, Yueping Zhang7,8.
Abstract
BACKGROUND: Preimplantation genetic diagnosis (PGD) is now widely used to select embryos free of chromosomal copy number variations (CNV) from chromosome balanced translocation carriers. However, it remains a difficulty to distinguish in embryos between balanced and structurally normal chromosomes efficiently.Entities:
Keywords: Breakpoint; Preimplantation genetic haplotyping; Reciprocal translocation; Robertsonian translocation; Single nucleotide polymorphism
Mesh:
Year: 2017 PMID: 29041973 PMCID: PMC5646120 DOI: 10.1186/s12920-017-0294-x
Source DB: PubMed Journal: BMC Med Genomics ISSN: 1755-8794 Impact factor: 3.063
The characteristics of the patients in this study
| Family | Maternal age /Paternal age | Karyotypea | Reason for karyotyping | The number of oocytes retrievedf | The number of mature oocytes (MII) | The number of fertilized oocytes | The number of D3 oocytes | The number of biopsied blastocysts |
|---|---|---|---|---|---|---|---|---|
| 1 | 33/34 | 46,XY,t(5;22)(q33;q12) mat | Infertility | 16 | 15 | 15 | 15 | 5 |
| 2 | 33/30 | 46,XX,t(16;18) (q22; q21.1) pat | repeated miscarriage | 21 | 16 | 15 | 11 | 4 |
| 3 | 23/31 | 46,XX,t(12;22)(p12;q13) pat | repeated miscarriage | 14 | 8 | 5 | 5 | 3 |
| 4 | 29/31 | 46,XX,t(11;16)(p11.2;p12.3) pat | affected fetus | 15 | 13 | 9 | 9 | 6 |
| 5 | 29/29 | 46,XY,t(1; 19) (q12;p13) mat | repeated miscarriage | 19 | 14 | 12 | 11 | 6 |
| 6 | 27/26 | 45,XX, rob(14; 21) (q10;q10) mat | repeated miscarriage | 18 | 12 | 7 | 7 | 6 |
| 7 | 31/33 | 45,XY, rob(14; 21) (q10;q10) pat | Infertility | 16 | 16 | 16 | 13 | 8 |
| 8 | 26/29 | 45,XX, rob(14; 15) (q10;q10) pat | repeated miscarriage | 4 | 3 | 3 | 3 | 3 |
| 9 | 36/53 | 46,XY,t(6;9)(q27;q22) mat/pat | repeated miscarriage | 8 | 8 | 5 | 5 | 3 |
| 10b | 29/30 | 46,XX, t(2;3)(q22.1;p14.1) | repeated miscarriage | 31 | 26 | 26 | 21 | 12 |
| 11 | 25/28 | 46,XY, t(7;11)(q21;q21) | Infertility | 28 | 28 | 26 | 22 | 12 |
aThe karyotypes were identified by peripheral blood cells
bIn family-10, the number of oocytes was from 3 cycles
Detailed results of microarray platform of the transferred blastocysts
| Family | The number of biopsied blastocysts | Grade of blastocysts | Molecular karyotype | Results of PGH | Transferred blastocysts | Karyotype of amniotic fluid | Consistency? | |
|---|---|---|---|---|---|---|---|---|
| Family membera | Unbalanced embryosb | |||||||
| 1 | 7 | 6BB | (1-22,X)*2 | Carrier | NA | Embryo-1 | 46,XX,t(5;22)(q33;q12) | Yes |
| 2 | 4 | 5 BC | (1-22,X)*2 | Normal | Normal | Embryo-4 | 46,XX | Yes |
| 3 | 3 | 5BB | (1-22)*2, (XY)*1 | Carrier | NA | Embryo-6 | 46,XY,t(12;22)(p12;q13) | Yes |
| 4 | 6 | 5BB | (1-22,X)*2 | Normal | NA | Embryo-1 | 46,XX | Yes |
| 5 | 6 | 5AB | (1-22,X)*2 | Carrier | Carrier | Embryo-1 | 46,XX,t(1; 19) (q12;p13) | Yes |
| 6 | 6 | 5 BC | (1-22,X)*2 | Carrier | Carrier | Embryo-9 | 45,XX, rob(14; 21)(q10;q10) | Yes |
| 7 | 8 | 5 BC | (1-22,X)*2 | Normal | Normal | Embryo-6 | 46,XX | Yes |
| 8 | 3 | 5BB | (1-22)*2, (XY)*1 | Carrier | NA | Embryo-2 | 45,XY,der(14;15)(q10;q10) | Yes |
| 9 | 3 | 5AB | (1-22,X)*2 | Normal | NA | Embryo-4 | 46,XX | Yes |
| 10 | 12 | 5 AC | (1-22,X)*2 | NA | Carrier | Embryo-1-5 | No pregnancy | NA |
| 5BB | (1-22,X)*2 | NA | Carrier | Embryo-3-4 | No pregnancy | NA | ||
| 5 BC | (1-22)*2, (XY)*1 | NA | Normal | Embryo-3-1 | 46,XY | Yes | ||
| 11 | 12 | 5 BC | (1-22,X)*2 | NA | Normal | Embryo-12 | 46,XX | Yes |
NA = not available
aIn family1-9, the family member was used as a reference; in family10-11, the unbalanced embryo was used as a reference
bIn family2, embryo-1, embryo-4 and embryo-9 were included; In family5, embryo-3 was included; In family6, embryo-4 was included; In family7, embryo-13 was included; In other families, the unbalanced embryos couldn’t be used as reference
Fig. 1The process of establishing haplotypes and distinguishing between balanced and structurally normal chromosomes embryos through PGH analysis. Informative SNPs should be heterozygous in the carrier, and homozygous in the carrier’s partner and carrier’s family member. These SNPs were used to establish the haplotypes of the breakpoint regions, the whole chromosomes involved in the translocation and the corresponding normal homologous chromosomes in the couple, reference and embryos
Fig. 2a The genealogic tree in family3. b The peripheral blood karyotype of carrier, the translocation was inherited from her father. c Based on the genetic screening of 23-pairs chromosomes, embryo-1 and embryo-6 were identified as balanced or normal embryos, embryo-2 was identified as unbalanced embryo. d The haplotypes including the two breakpoint regions, the two whole chromosomes involved in the translocation and the two corresponding normal homologous chromosomes in the couple, reference who has the same translocation and embryos were shown. The recombination was identified outside the breakpoints. The colorful histograms represented haplotypes, in the embryos the gray column represented the haplotype that was inherited from the normal parent and in the carrier’s family number the gray column represented the haplotype that wasn’t passed on to the carrier, the other different colorful histograms represented different haplotypes. The PGH result indicated embryo-6 was a translocation carrier embryo and embryo-1 was a structurally normal embryo
Summary of informative SNPs used to establish the whole haplotypes of the successfully transferred blastocysts
| Familya | Number of blastocysts | Chromosome | The total number of informative SNPs | The average number of informative SNPs /Mb | The number of recombination SNPs | The location of recombination | The location of breakpointb | Weather recombination occurs in the breakpoint? |
|---|---|---|---|---|---|---|---|---|
| 1 | Embryo-1 | 5 | 1520 | 8.4 | 91 | 5:1-7,228,178(p15.33p15.31) | 5q33.1 | No |
| 22 | 401 | 7.8 | 0 | NR | 22q12 | No | ||
| 2 | Embryo-4 | 16 | 823 | 9.1 | 148 | 16:1-9,724,564(p13.3p13.2) | 16q23.1 | No |
| 18 | 637 | 8.2 | 197 | 18:7,105,507-31,960,623(p11.23q12.1) | 18q21.31 | No | ||
| 3 | Embryo-6 | 12 | 1121 | 8.4 | 218 | 12:1-25,329,895(p13.33p12.1) | 12p11.21 | No |
| 163 | 12:117,913,186-133,851,895(q24.22q24.33) | No | ||||||
| 22 | 419 | 8.2 | 149 | 22:40,212,715-51,304,566(q13.1q13.33) | 22q12.1 | No | ||
| 4 | Embryo-1 | 11 | 1328 | 9.8 | 309 | 11:94,616,073-127,991,048(q21q24.3) | 11p11.2 | No |
| 16 | 648 | 7.2 | 209 | 16:1-16,599,806(p13.3p13.11) | 16p12.3 | No | ||
| 5 | Embryo-1 | 1 | 1802 | 7.2 | 763 | 1:15,110,819-116,270,101(p36.21p13.2) | 1q21.2 | No |
| 117 | 1:235,510,141-249,250,261(q42.3q44) | No | ||||||
| 19 | 482 | 8.2 | 115 | 19:51,465,236-59,128,983(q13.41q13.43) | 19p13.11 | No | ||
| 6 | Embryo-9 | 14 | 672 | 6.3 | 0 | NR | Centromere | No |
| 21 | 350 | 7.3 | 0 | NR | Centromere | No | ||
| 7 | Embryo-6 | 14 | 776 | 7.2 | 558 | 14:44,534,715-107,349,540(q21.2q32.33) | Centromere | No |
| 21 | 363 | 7.5 | 0 | NR | Centromere | No | ||
| 8 | Embryo-2 | 14 | 787 | 7.3 | 192 | 14:65,512,354-89,493,151(q23.3q31.3) | Centromere | No |
| 15 | 785 | 7.7 | 0 | NR | Centromere | No | ||
| 9 | Embryo-4c | 6 | 1565 | 9.2 | 197 | 6:37,549,903-56,107,530(p21.2p12.1) | 6q27 | No |
| 58 | 6:60,539,141-65,772,043(q11.1q12) | No | ||||||
| 19 | 6:85,870,071-88,787,897(q14.3q15) | No | ||||||
| 40 | 6:168,092,007-171,115,067(q27) | No | ||||||
| 9 | 936 | 6.7 | 9 | 9:2,331,347-2,792,531(p24.3p24.2) | No | |||
| 424 | 9:5,098,509-77,784,684(p24.1q21.13) | 9q22 | No | |||||
| Embryo-4d | 6 | 751 | 4.4 | 13 | 6:11,558,464-14,305,025(p24.2p23) | 6q27 | No | |
| 197 | 6:37,549,903-56,107,530(p21.2p12.1) | No | ||||||
| 57 | 6:60,539,141-65,772,043(p11.1q12) | No | ||||||
| 9 | 367 | 2.6 | 179 | 9:12,809,535-76,736,238(p23q21.13) | 9q22 | NAe |
NR = no recombination; NA = not available
aIn family10-11, as the unbalanced embryos were the only reference, the whole chromosome haplotypes couldn’t be established
bThe breakpoints were identified by microarray results, except chromosome 22 in family1
cThe carrier’s brother was used as a reference
dThe carrier’s sister was used as a reference
eThe haplotype couldn’t be established in this breakpoint region, for no informative SNPs existed