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1
Delineation by fluorescence in situ hybridization of a single hemizygous chromosomal region associated with aposporous embryo sac formation in Pennisetum squamulatum and Cenchrus ciliaris.利用荧光原位杂交技术对与羽茅和狗尾草无孢子生殖胚囊形成相关的单个半合子染色体区域进行描绘。
Genetics. 2003 Mar;163(3):1069-82. doi: 10.1093/genetics/163.3.1069.
2
Comparative physical mapping of the apospory-specific genomic region in two apomictic grasses: Pennisetum squamulatum and Cenchrus ciliaris.两种无融合生殖禾本科植物(鳞苞狼尾草和蒺藜草)中无孢子生殖特异性基因组区域的比较物理图谱
Genetics. 2006 May;173(1):389-400. doi: 10.1534/genetics.105.054429. Epub 2006 Mar 17.
3
High-resolution physical mapping reveals that the apospory-specific genomic region (ASGR) in Cenchrus ciliaris is located on a heterochromatic and hemizygous region of a single chromosome.高分辨率物理图谱显示,黍稷中的无孢子生殖特异性基因组区域(ASGR)位于一条单染色体的异染色质和半合子区域。
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4
In Silico and Fluorescence In Situ Hybridization Mapping Reveals Collinearity between the Pennisetum squamulatum Apomixis Carrier-Chromosome and Chromosome 2 of Sorghum and Foxtail Millet.电子克隆和荧光原位杂交定位揭示了羽茅无融合生殖载体染色体与高粱和谷子2号染色体之间的共线性。
PLoS One. 2016 Mar 31;11(3):e0152411. doi: 10.1371/journal.pone.0152411. eCollection 2016.
5
Recombination within the apospory specific genomic region leads to the uncoupling of apomixis components in Cenchrus ciliaris.在无融合生殖特异性基因组区域内发生重组,导致在 Cenchrus ciliaris 中无融合生殖组件的解偶联。
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6
A segment of the apospory-specific genomic region is highly microsyntenic not only between the apomicts Pennisetum squamulatum and buffelgrass, but also with a rice chromosome 11 centromeric-proximal genomic region.无融合生殖特异性基因组区域的一个片段不仅在无融合生殖的鳞颖狼尾草和水牛草之间具有高度微同线性,而且与水稻第11号染色体着丝粒近端基因组区域也具有高度微同线性。
Plant Physiol. 2006 Mar;140(3):963-71. doi: 10.1104/pp.105.073809. Epub 2006 Jan 13.
7
Sequence analysis of bacterial artificial chromosome clones from the apospory-specific genomic region of Pennisetum and Cenchrus.狼尾草属和蒺藜草属无孢子生殖特异性基因组区域细菌人工染色体克隆的序列分析。
Plant Physiol. 2008 Jul;147(3):1396-411. doi: 10.1104/pp.108.119081. Epub 2008 May 28.
8
Pennisetum squamulatum: is the predominant cytotype hexaploid or octaploid?糙隐子草:主要的细胞型是六倍体还是八倍体?
J Hered. 2006 Sep-Oct;97(5):521-4. doi: 10.1093/jhered/esl005. Epub 2006 Jun 22.
9
High-resolution physical mapping in Pennisetum squamulatum reveals extensive chromosomal heteromorphism of the genomic region associated with apomixis.高粱的高分辨率物理图谱揭示了与无融合生殖相关的基因组区域存在广泛的染色体异质性。
Plant Physiol. 2004 Apr;134(4):1733-41. doi: 10.1104/pp.103.033969. Epub 2004 Apr 2.
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Identification of ovule transcripts from the Apospory-Specific Genomic Region (ASGR)-carrier chromosome.鉴定来自无孢子生殖特异基因组区域(ASGR)-载体染色体的胚珠转录本。
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Apomixis: oh, what a tangled web we have!无融合生殖:哦,我们的关系真是错综复杂!
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2
Alien genome mobilization and fixation utilizing an apomixis mediated genome addition (AMGA) strategy in Pennisetum to improve domestication traits of P. squamulatum.利用无融合生殖介导的基因组添加(AMGA)策略在狼尾草属中进行外来基因组的动员和固定,以改良短芒披碱草的驯化特性。
Theor Appl Genet. 2022 Jul;135(7):2555-2575. doi: 10.1007/s00122-022-04138-4. Epub 2022 Jun 20.
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Can We Use Gene-Editing to Induce Apomixis in Sexual Plants?能否利用基因编辑技术诱导有性植物的无融合生殖?
Genes (Basel). 2020 Jul 12;11(7):781. doi: 10.3390/genes11070781.
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Apomixis Technology: Separating the Wheat from the Chaff.无融合生殖技术:去伪存真
Genes (Basel). 2020 Apr 10;11(4):411. doi: 10.3390/genes11040411.
5
Selection and validation of reference genes for gene expression analysis in apomictic and sexual Cenchrus ciliaris.无融合生殖和有性生殖的黍稷中用于基因表达分析的内参基因的筛选与验证
BMC Res Notes. 2013 Oct 2;6:397. doi: 10.1186/1756-0500-6-397.
6
Harnessing apomictic reproduction in grasses: what we have learned from Paspalum.利用禾本科植物无融合生殖:从雀稗属植物中我们学到了什么。
Ann Bot. 2013 Sep;112(5):767-87. doi: 10.1093/aob/mct152. Epub 2013 Jul 17.
7
Recombination within the apospory specific genomic region leads to the uncoupling of apomixis components in Cenchrus ciliaris.在无融合生殖特异性基因组区域内发生重组,导致在 Cenchrus ciliaris 中无融合生殖组件的解偶联。
Planta. 2013 Jul;238(1):51-63. doi: 10.1007/s00425-013-1873-5. Epub 2013 Apr 5.
8
Preparations of meiotic pachytene chromosomes and extended DNA fibers from cotton suitable for fluorescence in situ hybridization.棉花减数分裂粗线期染色体和伸展 DNA 纤维的制备,适用于荧光原位杂交。
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9
Evolution of the apomixis transmitting chromosome in Pennisetum.无融合生殖传递染色体在狼尾草属中的进化。
BMC Evol Biol. 2011 Oct 5;11:289. doi: 10.1186/1471-2148-11-289.
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A molecular map of the apomixis-control locus in Paspalum procurrens and its comparative analysis with other species of Paspalum.无融合生殖控制位点在沟叶结缕草中的分子图谱及其与其他沟叶结缕草属物种的比较分析。
Theor Appl Genet. 2011 Oct;123(6):959-71. doi: 10.1007/s00122-011-1639-z. Epub 2011 Jun 29.

本文引用的文献

1
Assessment of genome organization among diploid species (2n = 2x = 14) belonging to primary and tertiary gene pools of pearl millet using fluorescent in situ hybridization with rDNA probes.利用 rDNA 探针的荧光原位杂交技术评估属于珍珠粟初生和次生基因库的二倍体物种(2n = 2x = 14)的基因组结构。
Genome. 1996 Aug;39(4):680-7. doi: 10.1139/g96-086.
2
Genome differentiation in Aegilops. 1. Distribution of highly repetitive DNA sequences on chromosomes of diploid species.小麦族基因组分化。1. 二倍体物种染色体上高度重复 DNA 序列的分布。
Genome. 1996 Apr;39(2):293-306. doi: 10.1139/g96-040.
3
A rapid procedure for the isolation of C0t-1 DNA from plants.一种从植物中分离 C0t-1 DNA 的快速程序。
Genome. 1997 Feb;40(1):138-42. doi: 10.1139/g97-020.
4
Construction of BAC libraries from two apomictic grasses to study the microcolinearity of their apospory-specific genomic regions.构建两种无融合生殖禾本科植物的细菌人工染色体文库,以研究其无孢子生殖特异性基因组区域的微共线性。
Theor Appl Genet. 2002 Apr;104(5):804-812. doi: 10.1007/s00122-001-0795-y. Epub 2002 Feb 6.
5
Apomixis: Embryo Sacs and Embryos Formed without Meiosis or Fertilization in Ovules.无融合生殖:胚珠中未经减数分裂或受精形成的胚囊和胚胎。
Plant Cell. 1993 Oct;5(10):1425-1437. doi: 10.1105/tpc.5.10.1425.
6
Developmental genetics of gametophytic apomixis.配子体无融合生殖的发育遗传学。
Trends Genet. 2001 Oct;17(10):597-604. doi: 10.1016/s0168-9525(01)02454-4.
7
How to avoid sex: the genetic control of gametophytic apomixis.如何避免有性生殖:配子体无融合生殖的遗传控制
Plant Cell. 2001 Jul;13(7):1491-8. doi: 10.1105/tpc.13.7.1491.
8
Integration of a B chromosome into the A genome of a wasp.一条B染色体整合到一只黄蜂的A基因组中。
Proc Biol Sci. 2001 Jun 7;268(1472):1127-31. doi: 10.1098/rspb.2001.1613.
9
Comparative fluorescence in situ hybridization mapping of a 431-kb Arabidopsis thaliana bacterial artificial chromosome contig reveals the role of chromosomal duplications in the expansion of the Brassica rapa genome.对一段431千碱基的拟南芥细菌人工染色体重叠群进行比较荧光原位杂交定位,揭示了染色体重复在白菜基因组扩张中的作用。
Genetics. 2000 Oct;156(2):833-8. doi: 10.1093/genetics/156.2.833.
10
Ribosomal DNAs: an exception to the conservation of gene order in rice genomes.核糖体DNA:水稻基因组中基因顺序保守性的一个例外。
Mol Gen Genet. 2000 May;263(4):586-91. doi: 10.1007/s004380051205.

利用荧光原位杂交技术对与羽茅和狗尾草无孢子生殖胚囊形成相关的单个半合子染色体区域进行描绘。

Delineation by fluorescence in situ hybridization of a single hemizygous chromosomal region associated with aposporous embryo sac formation in Pennisetum squamulatum and Cenchrus ciliaris.

作者信息

Goel Shailendra, Chen Zhenbang, Conner Joann A, Akiyama Yukio, Hanna Wayne W, Ozias-Akins Peggy

机构信息

Department of Horticulture, University of Georgia, Tifton, Georgia 31793-0748, USA.

出版信息

Genetics. 2003 Mar;163(3):1069-82. doi: 10.1093/genetics/163.3.1069.

DOI:10.1093/genetics/163.3.1069
PMID:12663545
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1462501/
Abstract

Apomixis is a means of asexual reproduction by which plants produce embryos without meiosis and fertilization; thus the embryo is of clonal, maternal origin. We previously reported molecular markers showing no recombination with the trait for aposporous embryo sac development in Pennisetum squamulatum and Cenchrus ciliaris, and the collective single-dose alleles defined an apospory-specific genomic region (ASGR). Fluorescence in situ hybridization (FISH) was used to confirm that the ASGR is a hemizygous genomic region and to determine its chromosomal position with respect to rDNA loci and centromere repeats. We also documented chromosome transmission from P. squamulatum in several backcrosses (BCs) with P. glaucum using genomic in situ hybridization (GISH). One to three complete P. squamulatum chromosomes were detected in BC(6), but only one of the three hybridized with the ASGR-linked markers. In P. squamulatum and in all BCs examined, the apospory-linked markers were located in the distal region of the short arm of a single chromosome. All alien chromosomes behaved as univalents during meiosis and segregated randomly in BC(3) and later BC generations, but presence of the ASGR-carrier chromosome alone was sufficient to confer apospory. FISH results support our hypotheses that hemizygosity, proximity to centromeric sequences, and chromosome structure may all play a role in low recombination in the ASGR.

摘要

无融合生殖是一种无性繁殖方式,植物通过这种方式不经过减数分裂和受精作用就能产生胚胎;因此,胚胎具有克隆性且源自母体。我们之前报道了一些分子标记,这些标记在鳞稃狼尾草和毛花雀稗中与无孢子生殖胚囊发育性状不发生重组,并且这些单剂量等位基因共同定义了一个无孢子生殖特异性基因组区域(ASGR)。荧光原位杂交(FISH)被用于确认ASGR是一个半合子基因组区域,并确定其相对于核糖体DNA位点和着丝粒重复序列的染色体位置。我们还利用基因组原位杂交(GISH)记录了鳞稃狼尾草在与绿黍的几次回交(BC)中的染色体传递情况。在BC(6)中检测到1至3条完整的鳞稃狼尾草染色体,但其中只有一条与ASGR连锁标记杂交。在鳞稃狼尾草以及所有检测的回交后代中,无孢子生殖连锁标记位于一条单染色体短臂的远端区域。在减数分裂过程中,所有异源染色体都表现为单价体,并在BC(3)及后续回交后代中随机分离,但仅ASGR携带染色体的存在就足以赋予无孢子生殖能力。FISH结果支持了我们的假设,即半合子状态、与着丝粒序列的接近程度以及染色体结构可能都在ASGR的低重组中发挥作用。