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A recombination suppressor contributes to ecological speciation in OSTRINIA moths.一种重组抑制因子有助于玉米螟的生态物种形成。
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FISH identification of Helicoverpa armigera and Mamestra brassicae chromosomes by BAC and fosmid probes.用 BAC 和 fosmid 探针进行 FISH 鉴定,鉴定出棉铃虫和斜纹夜蛾的染色体。
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Gloverins of the silkworm Bombyx mori: structural and binding properties and activities.家蚕 Gloverin 蛋白:结构、结合特性和活性。
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A heterozygous moth genome provides insights into herbivory and detoxification.杂合子飞蛾基因组为研究食草性和解毒提供了线索。
Nat Genet. 2013 Feb;45(2):220-5. doi: 10.1038/ng.2524. Epub 2013 Jan 13.
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Butterfly genome reveals promiscuous exchange of mimicry adaptations among species.蝴蝶基因组揭示了物种间拟态适应性的混杂交换。
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The monarch butterfly genome yields insights into long-distance migration.帝王蝶基因组揭示远距离迁徙之谜。
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Chromosomal rearrangements maintain a polymorphic supergene controlling butterfly mimicry.染色体重排维持控制蝴蝶拟态的多态超级基因。
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Industrial melanism in British peppered moths has a singular and recent mutational origin.英国胡椒蛾的工业黑化具有单一且近期的突变起源。
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10
Disruption of an N-acetyltransferase gene in the silkworm reveals a novel role in pigmentation.家蚕 N-乙酰基转移酶基因的破坏揭示了其在色素形成中的新作用。
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家蚕两个蛾体色突变(黑蛾和野生翅斑)的定位与重组分析

Mapping and recombination analysis of two moth colour mutations, Black moth and Wild wing spot, in the silkworm Bombyx mori.

作者信息

Ito K, Katsuma S, Kuwazaki S, Jouraku A, Fujimoto T, Sahara K, Yasukochi Y, Yamamoto K, Tabunoki H, Yokoyama T, Kadono-Okuda K, Shimada T

机构信息

Department of Science of Biological Production, Graduate School of Agriculture, Tokyo University of Agriculture and Technology, Fuchu, Tokyo, Japan.

Department of Agricultural and Environmental Biology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Bunkyo-ku, Tokyo, Japan.

出版信息

Heredity (Edinb). 2016 Jan;116(1):52-9. doi: 10.1038/hdy.2015.69. Epub 2015 Jul 29.

DOI:10.1038/hdy.2015.69
PMID:26219230
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4675873/
Abstract

Many lepidopteran insects exhibit body colour variations, where the high phenotypic diversity observed in the wings and bodies of adults provides opportunities for studying adaptive morphological evolution. In the silkworm Bombyx mori, two genes responsible for moth colour mutation, Bm and Ws, have been mapped to 0.0 and 14.7 cM of the B. mori genetic linkage group 17; however, these genes have not been identified at the molecular level. We performed positional cloning of both genes to elucidate the molecular mechanisms that underlie the moth wing- and body-colour patterns in B. mori. We successfully narrowed down Bm and Ws to ~2-Mb-long and 100-kb-long regions on the same scaffold Bm_scaf33. Gene prediction analysis of this region identified 77 candidate genes in the Bm region, whereas there were no candidate genes in the Ws region. Fluorescence in-situ hybridisation analysis in Bm mutant detected chromosome inversion, which explains why there are no recombination in the corresponding region. The comparative genomic analysis demonstrated that the candidate regions of both genes shared synteny with a region associated with wing- and body-colour variations in other lepidopteran species including Biston betularia and Heliconius butterflies. These results suggest that the genes responsible for wing and body colour in B. mori may be associated with similar genes in other Lepidoptera.

摘要

许多鳞翅目昆虫表现出体色变化,成虫翅膀和身体中观察到的高表型多样性为研究适应性形态进化提供了机会。在家蚕(Bombyx mori)中,两个导致蛾类颜色突变的基因Bm和Ws,已被定位到家蚕遗传连锁群17的0.0和14.7厘摩处;然而,这些基因尚未在分子水平上得到鉴定。我们对这两个基因进行了定位克隆,以阐明家蚕蛾类翅膀和身体颜色模式背后的分子机制。我们成功地将Bm和Ws定位到同一支架Bm_scaf33上约2兆碱基长和100千碱基长的区域。对该区域的基因预测分析在Bm区域鉴定出77个候选基因,而Ws区域没有候选基因。对Bm突变体的荧光原位杂交分析检测到染色体倒位,这解释了为什么在相应区域没有重组。比较基因组分析表明,这两个基因的候选区域与包括桦尺蛾(Biston betularia)和光明女神闪蝶(Heliconius butterflies)在内的其他鳞翅目物种中与翅膀和身体颜色变化相关的区域具有共线性。这些结果表明,家蚕中负责翅膀和身体颜色的基因可能与其他鳞翅目昆虫中的类似基因相关。