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1
Sex determination in polyploids of Caenorhabditis elegans.秀丽隐杆线虫多倍体中的性别决定
Genetics. 1994 Jun;137(2):467-81. doi: 10.1093/genetics/137.2.467.
2
Microinjected DNA from the X chromosome affects sex determination in Caenorhabditis elegans.来自X染色体的显微注射DNA会影响秀丽隐杆线虫的性别决定。
Science. 1988 Nov 25;242(4882):1146-51. doi: 10.1126/science.2973125.
3
Identification of X chromosome regions in Caenorhabditis elegans that contain sex-determination signal elements.秀丽隐杆线虫中含有性别决定信号元件的X染色体区域的鉴定。
Genetics. 1994 Dec;138(4):1105-25. doi: 10.1093/genetics/138.4.1105.
4
Polyploids and sex determination in Caenorhabditis elegans.秀丽隐杆线虫中的多倍体与性别决定
Genetics. 1979 Oct;93(2):393-402. doi: 10.1093/genetics/93.2.393.
5
X-linked gene expression and sex determination in Caenorhabditis elegans.秀丽隐杆线虫中的X连锁基因表达与性别决定
Bioessays. 1990 Nov;12(11):513-8. doi: 10.1002/bies.950121102.
6
Identification of a candidate primary sex determination locus, fox-1, on the X chromosome of Caenorhabditis elegans.
Development. 1994 Dec;120(12):3681-9. doi: 10.1242/dev.120.12.3681.
7
The Caenorhabditis elegans dosage compensation machinery is recruited to X chromosome DNA attached to an autosome.秀丽隐杆线虫的剂量补偿机制被招募到附着于常染色体的X染色体DNA上。
Genetics. 2000 Dec;156(4):1603-21. doi: 10.1093/genetics/156.4.1603.
8
Genes that implement the hermaphrodite mode of dosage compensation in Caenorhabditis elegans.在秀丽隐杆线虫中实现雌雄同体剂量补偿模式的基因。
Genetics. 1989 Jan;121(1):57-76. doi: 10.1093/genetics/121.1.57.
9
Isolation of dominant XO-feminizing mutations in Caenorhabditis elegans: new regulatory tra alleles and an X chromosome duplication with implications for primary sex determination.秀丽隐杆线虫中显性XO雌性化突变的分离:新的调控tra等位基因和一个对初级性别决定有影响的X染色体重复
Genetics. 1995 Oct;141(2):527-42. doi: 10.1093/genetics/141.2.527.
10
The dpy-30 gene encodes an essential component of the Caenorhabditis elegans dosage compensation machinery.dpy-30基因编码秀丽隐杆线虫剂量补偿机制的一个必需组成部分。
Genetics. 1994 Aug;137(4):999-1018. doi: 10.1093/genetics/137.4.999.

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Manipulation of Ploidy in Caenorhabditis elegans.秀丽隐杆线虫倍性的操控
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Mlh1 deficiency in zebrafish results in male sterility and aneuploid as well as triploid progeny in females.斑马鱼中Mlh1基因缺失会导致雄性不育,以及雌性产生非整倍体和三倍体后代。
Genetics. 2007 Apr;175(4):1561-9. doi: 10.1534/genetics.106.068171. Epub 2007 Jan 21.
4
Isolation of dominant XO-feminizing mutations in Caenorhabditis elegans: new regulatory tra alleles and an X chromosome duplication with implications for primary sex determination.秀丽隐杆线虫中显性XO雌性化突变的分离:新的调控tra等位基因和一个对初级性别决定有影响的X染色体重复
Genetics. 1995 Oct;141(2):527-42. doi: 10.1093/genetics/141.2.527.

本文引用的文献

1
Nondisjunction Mutants of the Nematode CAENORHABDITIS ELEGANS.线虫 CAENORHABDITIS ELEGANS 的不分离突变体。
Genetics. 1979 Jan;91(1):67-94. doi: 10.1093/genetics/91.1.67.
2
Common denominators for sex.性别的共同特征。
Curr Biol. 1992 Dec;2(12):629-31. doi: 10.1016/0960-9822(92)90097-t.
3
Feedback control of sex determination by dosage compensation revealed through Caenorhabditis elegans sdc-3 mutations.通过秀丽隐杆线虫sdc-3突变揭示剂量补偿对性别决定的反馈控制。
Genetics. 1993 Apr;133(4):875-96. doi: 10.1093/genetics/133.4.875.
4
Regulation of the sex-specific binding of the maleless dosage compensation protein to the male X chromosome in Drosophila.果蝇中无雄性剂量补偿蛋白与雄性X染色体的性别特异性结合的调控。
Cell. 1993 Jan 15;72(1):39-49. doi: 10.1016/0092-8674(93)90048-u.
5
The inactive X chromosome in female mammals is distinguished by a lack of histone H4 acetylation, a cytogenetic marker for gene expression.雌性哺乳动物中失活的X染色体的特征是缺乏组蛋白H4乙酰化,这是一种基因表达的细胞遗传学标记。
Cell. 1993 Jul 30;74(2):281-9. doi: 10.1016/0092-8674(93)90419-q.
6
The male-specific lethal-one (msl-1) gene of Drosophila melanogaster encodes a novel protein that associates with the X chromosome in males.黑腹果蝇的雄性特异性致死基因1(msl-1)编码一种与雄性X染色体相关的新型蛋白质。
Genetics. 1993 Jun;134(2):545-57. doi: 10.1093/genetics/134.2.545.
7
The Drosophila sex determination signal: how do flies count to two?果蝇性别决定信号:果蝇如何数到二?
Trends Genet. 1993 Nov;9(11):385-90. doi: 10.1016/0168-9525(93)90138-8.
8
Dominant X-chromosome nondisjunction mutants of Caenorhabditis elegans.秀丽隐杆线虫的显性X染色体不分离突变体。
Genetics. 1982 Nov;102(3):379-400. doi: 10.1093/genetics/102.3.379.
9
Autoregulatory functioning of a Drosophila gene product that establish es and maintains the sexually determined state.一种果蝇基因产物的自调节功能,该基因产物建立并维持性别决定状态。
Genetics. 1984 Jun;107(2):231-77. doi: 10.1093/genetics/107.2.231.
10
An autosomal gene that affects X chromosome expression and sex determination in Caenorhabditis elegans.一种影响秀丽隐杆线虫X染色体表达和性别决定的常染色体基因。
Genetics. 1984 Jan;106(1):29-44. doi: 10.1093/genetics/106.1.29.

秀丽隐杆线虫多倍体中的性别决定

Sex determination in polyploids of Caenorhabditis elegans.

作者信息

Meneely P M

机构信息

Fred Hutchinson Cancer Research Center, Seattle, Washington 98104.

出版信息

Genetics. 1994 Jun;137(2):467-81. doi: 10.1093/genetics/137.2.467.

DOI:10.1093/genetics/137.2.467
PMID:8070658
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1205970/
Abstract

In Caenorhabditis elegans triploid animals with two X chromosomes (symbolized 3A;2X) are males. However, these triploid males can be feminized by making them mutant for recessive dosage compensation mutations, by adding X chromosome duplications or by microinjecting particular DNA sequences termed feminizing elements. None of these treatments affects diploid males. This study explores several aspects of these treatments in polyploids. The dosage compensation mutants exhibit a strong maternal effect, such that reduction of any of the dosage compensation gene functions in the mother leads to sex reversal of 3A;2X animals. Likewise, all X chromosome duplications tested cause both sex reversal and intersexual development of many 3A;2X animals. Microinjected feminizing element DNA does not cause extensive sex reversal, but does result in intersexual development in 3A;2X animals. Neither X chromosome duplications nor microinjected feminizing elements show that extreme maternal effect of the dosage compensation mutants, although there is indirect evidence for a maternal effect of the feminizing elements. In particular, very little feminizing element DNA needs to be microinjected in order to feminize triploid males, far less than what is needed for stable inheritance, implying that feminizing elements can work within the mother's gonad. However, even very high concentrations of microinjected feminizing elements do not affect sex determination in diploid males, suggesting that they are not part of the numerator of the X/A ratio. In addition, no pair of X chromosome duplications feminizes diploid males, suggesting that none of these duplications contains a numerator of the X/A ratio. Instead, I infer that an X-linked locus, as yet undefined, must be present in two copies for hermaphrodite development to ensue or that the two X chromosomes might interact.

摘要

在秀丽隐杆线虫中,具有两条X染色体的三倍体动物(记作3A;2X)是雄性。然而,这些三倍体雄性可以通过使其成为隐性剂量补偿突变的突变体、添加X染色体重复序列或显微注射特定的称为雌性化元件的DNA序列来实现雌性化。这些处理都不会影响二倍体雄性。本研究探讨了多倍体中这些处理的几个方面。剂量补偿突变体表现出强烈的母体效应,即母亲体内任何剂量补偿基因功能的降低都会导致3A;2X动物的性反转。同样,所有测试的X染色体重复序列都会导致许多3A;2X动物的性反转和两性发育。显微注射的雌性化元件DNA不会导致广泛的性反转,但确实会导致3A;2X动物的两性发育。X染色体重复序列和显微注射的雌性化元件都没有表现出剂量补偿突变体的那种极端母体效应,尽管有间接证据表明雌性化元件存在母体效应。特别是,为了使三倍体雄性雌性化,只需显微注射极少的雌性化元件DNA,远远少于稳定遗传所需的量,这意味着雌性化元件可以在母亲的性腺内起作用。然而,即使显微注射的雌性化元件浓度非常高,也不会影响二倍体雄性的性别决定,这表明它们不是X/A比率分子的一部分。此外,没有一对X染色体重复序列能使二倍体雄性雌性化,这表明这些重复序列中没有一个包含X/A比率的分子。相反,我推断必须存在两个拷贝的一个尚未确定的X连锁基因座才能进行雌雄同体发育,或者两条X染色体可能相互作用。