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本文引用的文献

1
Uniparental Mitochondrial Transmission in the Cultivated Button Mushroom, Agaricus bisporus.栽培双孢蘑菇的单亲线粒体传递。
Appl Environ Microbiol. 1994 Dec;60(12):4456-60. doi: 10.1128/aem.60.12.4456-4460.1994.
2
Localization of the Mating Type Gene in Agaricus bisporus.交配型基因在双孢蘑菇中的定位。
Appl Environ Microbiol. 1993 Sep;59(9):3044-9. doi: 10.1128/aem.59.9.3044-3049.1993.
3
Investigation of Mitochondrial Transmission in Selected Matings between Homokaryons from Commercial and Wild-Collected Isolates of Agaricus bisporus (= Agaricus brunnescens).商业和野生栽培双孢蘑菇同源核融合子选择交配中线粒体传递的研究。
Appl Environ Microbiol. 1992 Nov;58(11):3553-60. doi: 10.1128/aem.58.11.3553-3560.1992.
4
Crosses among Homokaryons from Commercial and Wild-Collected Strains of the Mushroom Agaricus brunnescens (= A. bisporus).商业和野生收集的双孢蘑菇(= A. bisporus)同源核融合体的杂交。
Appl Environ Microbiol. 1988 Jul;54(7):1643-8. doi: 10.1128/aem.54.7.1643-1648.1988.
5
Genetics of natural populations. 32. Inbreeding and the mutational and balanced genetic loads in natural populations of Drosophila pseudoobscura.自然种群的遗传学。32. 近交以及拟暗果蝇自然种群中的突变和平衡遗传负荷
Genetics. 1963 Mar;48(3):361-73. doi: 10.1093/genetics/48.3.361.
6
Meiotic behavior and linkage relationships in the secondarily homothallic fungus Agaricus bisporus.双孢蘑菇(Agaricus bisporus)这一兼性同宗配合真菌的减数分裂行为及连锁关系
Genetics. 1993 Feb;133(2):225-36. doi: 10.1093/genetics/133.2.225.
7
A laboratory method to obtain fruit from cased grain spawn of the cultivated mushoom, Agaricus bisporus.一种从栽培蘑菇双孢蘑菇的带菌麦粒菌种中获取子实体的实验室方法。
Mycologia. 1971 Jan-Feb;63(1):16-21.
8
Recessive mutations from natural populations of Neurospora crassa that are expressed in the sexual diplophase.来自粗糙脉孢菌自然群体的隐性突变,这些突变在有性二倍体阶段表达。
Genetics. 1985 Dec;111(4):759-77. doi: 10.1093/genetics/111.4.759.
9
Inheritance of restriction fragment length polymorphisms in Agaricus brunnescens.棕褐蘑菇中限制性片段长度多态性的遗传
Genetics. 1989 Oct;123(2):293-300. doi: 10.1093/genetics/123.2.293.

双孢蘑菇近亲繁殖衰退分析。

Analysis of inbreeding depression in Agaricus bisporus.

作者信息

Xu J

机构信息

Department of Botany, University of Toronto, Erindale College, Mississauga, Ontario, Canada.

出版信息

Genetics. 1995 Sep;141(1):137-45. doi: 10.1093/genetics/141.1.137.

DOI:10.1093/genetics/141.1.137
PMID:8536962
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1206712/
Abstract

Inbreeding depression was observed in the commercial button mushroom, Agaricus bisporus, by examining two laboratory populations. The outbred population consisted of 20 compatible pairings, 10 homokaryons with each of the homokaryons Ag1-1 and Ag89-65. The inbred population consisted of 104 backcrosses (among which 52 were expected to be sexually compatible) obtained from the pairings of two progenitor homokaryons, Ag1-1 and Ag89-65, with 52 progeny homokaryons derived from the mating between Ag1-1 and Ag89-65. The eight fitness components examined for these two populations were successful matings as identified by the analysis of restriction fragment length polymorphisms, positive mycelial interaction in these successful matings, heterokaryon growth rate, primordium formation by the successful matings, fertile fruiting body formation, time to first break, average number of fruiting bodies per square foot, and average weight per fruiting body. The outcrossed population showed a significant advantage over the inbred population in three of eight fitness components. Two pairs of traits were significantly correlated. The multiplicative fitness ratio of the inbred to the outcrossed population was 0.18. The relevance of inbreeding depression to the evolution of fungal mating systems and to mushroom breeding is discussed.

摘要

通过对两个实验室群体进行研究,在商业双孢蘑菇(Agaricus bisporus)中观察到了近亲繁殖衰退现象。杂交群体由20个相容配对组成,即10个同核体分别与同核体Ag1 - 1和Ag89 - 65配对。自交群体由104个回交后代(其中预计52个具有性相容性)组成,这些回交后代来自两个亲本同核体Ag1 - 1和Ag89 - 65与52个由Ag1 - 1和Ag89 - 65交配产生的子代同核体的配对。对这两个群体检测的八个适合度成分包括:通过限制性片段长度多态性分析确定的成功交配、这些成功交配中的正向菌丝体相互作用、异核体生长速率、成功交配产生的原基形成、可育子实体形成、首次出菇时间、每平方英尺子实体的平均数量以及每个子实体的平均重量。在八个适合度成分中,杂交群体在其中三个方面显示出比自交群体具有显著优势。两对性状显著相关。自交群体与杂交群体的乘法适合度比为0.18。文中讨论了近亲繁殖衰退与真菌交配系统进化以及蘑菇育种的相关性。