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The antibody response to tumor inoculation; improved methods of antibody detection.对肿瘤接种的抗体反应;改进的抗体检测方法。
Cancer Res. 1954 Oct;14(9):651-5.
2
Host defenses in experimental rickettsialpox: genetics of natural resistance to infection.实验性立克次体痘中的宿主防御:对感染天然抵抗力的遗传学
Infect Immun. 1980 Apr;28(1):132-6. doi: 10.1128/iai.28.1.132-136.1980.
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Genetic control of susceptibility to Cryptococcus neoformans in mice.小鼠对新型隐球菌易感性的遗传控制。
Infect Immun. 1980 Aug;29(2):494-9. doi: 10.1128/iai.29.2.494-499.1980.
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Macrophages in resistance to rickettsial infections: early host defense mechanisms in experimental scrub typhus.巨噬细胞在抵抗立克次体感染中的作用:实验性恙虫病的早期宿主防御机制
Infect Immun. 1981 Mar;31(3):1239-50. doi: 10.1128/iai.31.3.1239-1250.1981.
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Host defenses in experimental scrub typhus: mapping the gene that controls natural resistance in mice.实验性恙虫病中的宿主防御:定位控制小鼠天然抗性的基因。
J Immunol. 1980 Sep;125(3):1395-9.
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Genetic analysis of resistance to cadmium-induced testicular damage in mice.小鼠对镉诱导的睾丸损伤抗性的遗传分析。
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The varying susceptibility of different genetic strains of laboratory mice to Histoplasma capsulatum.不同基因品系的实验小鼠对荚膜组织胞浆菌的易感性差异。
Mycopathol Mycol Appl. 1974 Apr 30;52(3):251-3. doi: 10.1007/BF02198750.
8
Strain-dependent differences in murine susceptibility to toxoplasma.小鼠对弓形虫易感性的品系依赖性差异。
Infect Immun. 1976 May;13(5):1528-30. doi: 10.1128/iai.13.5.1528-1530.1976.
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Inherited resistance to Corynebacterium kutscheri in mice.小鼠对库氏棒状杆菌的遗传性抗性。
Infect Immun. 1976 Aug;14(2):475-82. doi: 10.1128/iai.14.2.475-482.1976.
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Genetic control of murine resistance to Toxoplasma gondii.小鼠对刚地弓形虫抗性的遗传控制。
Infect Immun. 1978 Feb;19(2):416-20. doi: 10.1128/iai.19.2.416-420.1978.

小鼠对克氏锥虫抗性的遗传学

Genetics of murine resistance to Trypanosoma cruzi.

作者信息

Trischmann T M, Bloom B R

出版信息

Infect Immun. 1982 Feb;35(2):546-51. doi: 10.1128/iai.35.2.546-551.1982.

DOI:10.1128/iai.35.2.546-551.1982
PMID:6799406
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC351075/
Abstract

Resistance to the protozoan parasite Trypanosoma cruzi is governed by multiple genetic factors, including at least one coded for by a locus in or near the major histocompatibility complex of the mouse. The influence of the H-2 locus on resistance was evident when H-2 congenic mice on a strain background of intermediate resistance were challenged or when the survival of H-2 typed F2 mice was followed. The H-2k haplotype of the susceptible C3H/An strain was associated with higher mortality when compared with the H-2b haplotype of the resistant C57BL/10 strain. Genetic studies showed that resistance was a dominant trait and increased with genetic heterozygosity. F1 mice derived from crosses between resistant and susceptible strains, or even between two susceptible strains, were much more resistant than either parent. Crosses between two resistant strains, C57BL/6J and DBA/2J, led to resistant progeny in the F1 and F2 generations; but when recombinant inbred strains derived from these parental strains were challenged, susceptible strains were identified, indicating that different genes were responsible for resistance in the two strains.

摘要

对原生动物寄生虫克氏锥虫的抗性受多种遗传因素控制,其中至少有一个基因由小鼠主要组织相容性复合体内部或附近的一个位点编码。当具有中等抗性品系背景的H-2同源基因小鼠受到攻击时,或者当追踪H-2分型的F2小鼠的存活情况时,H-2位点对抗性的影响就很明显。与抗性C57BL/10品系的H-2b单倍型相比,易感C3H/An品系的H-2k单倍型与更高的死亡率相关。遗传研究表明,抗性是一种显性性状,并且随着遗传杂合性的增加而增强。来自抗性品系与易感品系之间杂交,甚至两个易感品系之间杂交产生的F1小鼠,比任何一个亲本都更具抗性。两个抗性品系C57BL/6J和DBA/2J之间的杂交,在F1和F2代产生了抗性后代;但是当对源自这些亲本品系的重组近交系进行攻击时,鉴定出了易感品系,这表明两个品系中负责抗性的基因不同。