Citation: | REN X X, SUN Y P, QING Z, et al. Identification and Functional Analysis of Genes Related to Cocoon Shell Ratio in Bombyx mori [J]. Fujian Journal of Agricultural Sciences,2022,37(7):841−849 doi: 10.19303/j.issn.1008-0384.2022.007.004 |
[1] |
任晓晓, 罗朝斌, 孙运朋, 等. 高原蚕区家蚕茧层率遗传分析 [J]. 农学学报, 2020, 10(6):75−80.
REN X X, LUO C B, SUN Y P, et al. The cocoon shell ratio of Bombyx mori from sericultural area of plateau: Genetic analysis [J]. Journal of Agriculture, 2020, 10(6): 75−80.(in Chinese)
|
[2] |
LI C L, TONG X L, ZUO W D, et al. QTL analysis of cocoon shell weight identifies BmRPL18 associated with silk protein synthesis in silkworm by pooling sequencing [J]. Scientific Reports, 2017, 7: 17985. doi: 10.1038/s41598-017-18277-y
|
[3] |
刘娜, 李娟, 秦笙, 等. 家蚕茧丝相关性状的研究进展 [J]. 中国蚕业, 2016, 37(4):6−9. doi: 10.16839/j.cnki.zgcy.2016.04.002
LIU N, LI J, QIN S, et al. Research progress on cocoon silk related traits of silkworm [J]. China Sericulture, 2016, 37(4): 6−9.(in Chinese) doi: 10.16839/j.cnki.zgcy.2016.04.002
|
[4] |
栾悦, 李春林, 代方银. 家蚕茧丝性状的遗传基础研究 [J]. 蚕学通讯, 2017, 37(1):21−28. doi: 10.3969/j.issn.1006-0561.2017.01.005
LUAN Y, LI C L, DAI F Y. Basic researches of the genetics of cocoon traits in silkworm [J]. Newsletter of Sericultural Science, 2017, 37(1): 21−28.(in Chinese) doi: 10.3969/j.issn.1006-0561.2017.01.005
|
[5] |
鲁成, 李斌, 赵爱春, 等. 家蚕重要经济性状的QTL定位研究 [J]. 中国科学(C辑:生命科学), 2004, 34(3):236−242.
LU C, LI B, ZHAO A C, et al. QTL mapping of important economic characters of Bombyx mori [J]. Science in China(SerC), 2004, 34(3): 236−242.(in Chinese)
|
[6] |
李斌, 鲁成, 赵爱春, 等. 家蚕全茧量及重要相关经济性状的多重区间作图分析 [J]. 中国农业科学, 2005, 38(7):1474−1479. doi: 10.3321/j.issn:0578-1752.2005.07.030
LI B, LU C, ZHAO A C, et al. Multiple interval mapping for whole cocoon weight and related economically important traits QTL in silkworm (Bombyx mori) [J]. Scientia Agricultura Sinica, 2005, 38(7): 1474−1479.(in Chinese) doi: 10.3321/j.issn:0578-1752.2005.07.030
|
[7] |
司马杨虎, 李斌, 徐海明, 等. 家蚕茧质性状的QTL定位研究 [J]. 遗传学报, 2005, 32(6):625−632.
SIMA Y H, LI B, XU H M, et al. Study on location of QTLs controlling cocoon traits in silkworm [J]. Acta Genetica Sinica, 2005, 32(6): 625−632.(in Chinese)
|
[8] |
侯成香, 王修业, 李冰, 等. 家蚕茧丝相关性状的性连锁QTLs定位与分析 [J]. 蚕业科学, 2013, 39(1):35−39. doi: 10.13441/j.cnki.cykx.2013.01.019
HOU C X, WANG X Y, LI B, et al. Mapping and analysis of Bombyx mori sex-linked QTLs related to cocoon and silk traits [J]. Science of Sericulture, 2013, 39(1): 35−39.(in Chinese) doi: 10.13441/j.cnki.cykx.2013.01.019
|
[9] |
LI B, WANG X Y, HOU C X, et al. Genetic analysis of quantitative trait loci for cocoon and silk production quantity in Bombyx mori (Lepidoptera: Bombycidae) [J]. European Journal of Entomology, 2013, 110(2): 205−213. doi: 10.14411/eje.2013.031
|
[10] |
张之昊, 王俊, 刘章雄, 等. 基于BSA-Seq技术挖掘大豆中黄622的多小叶基因 [J]. 作物学报, 2020, 46(12):1839−1849.
ZHANG Z H, WANG J, LIU Z X, et al. Mapping of an incomplete dominant gene controlling multifoliolate leaf by BSA-Seq in soybean(Glycine max L.) [J]. Acta Agronomica Sinica, 2020, 46(12): 1839−1849.(in Chinese)
|
[11] |
贾秀苹, 卯旭辉, 岳云, 等. 利用BSA-Seq方法鉴定向日葵耐盐候选基因 [J]. 中国油料作物学报, 2018, 40(6):777−784. doi: 10.7505/j.issn.1007-9084.2018.06.006
JIA X P, MAO X H, YUE Y, et al. Identification of major salt-tolerant genes via BSA-Seq method in sunflower [J]. Chinese Journal of Oil Crop Sciences, 2018, 40(6): 777−784.(in Chinese) doi: 10.7505/j.issn.1007-9084.2018.06.006
|
[12] |
徐剑文, 刘剑光, 赵君, 等. 利用BSA-seq发掘棉花适宜机采的果枝长度相关QTL [J]. 棉花学报, 2019, 31(4):319−326. doi: 10.11963/1002-7807.xjwxsh.20190611
XU J W, LIU J G, ZHAO J, et al. The identification of QTL associated with cotton fruit branch length suitable for mechanized harvest utilizing BSA-seq [J]. Cotton Science, 2019, 31(4): 319−326.(in Chinese) doi: 10.11963/1002-7807.xjwxsh.20190611
|
[13] |
YANG T T, AMANULLAH S, PAN J H, et al. Identification of putative genetic regions for watermelon rind hardness and related traits by BSA-seq and QTL mapping [J]. Euphytica, 2021, 217(2): 19. doi: 10.1007/s10681-020-02758-9
|
[14] |
刘梦雨, 刘小丰, 江东, 等. 利用重测序-BSA分析鉴定金柑油胞发育相关基因 [J]. 园艺学报, 2019, 46(5):841−854.
LIU M Y, LIU X F, JIANG D, et al. Identification of genes related to oil gland development in kumquat by using BSA-seq [J]. Acta Horticulturae Sinica, 2019, 46(5): 841−854.(in Chinese)
|
[15] |
许芸梅, 李玉梅, 贾玉鑫, 等. 马铃薯红色薯肉调控基因的精细定位与候选基因分析 [J]. 中国农业科学, 2019, 52(15):2678−2685. doi: 10.3864/j.issn.0578-1752.2019.15.011
XU Y M, LI Y M, JIA Y X, et al. Fine mapping and candidate genes analysis for regulatory gene of anthocyanin synthesis in red-colored Tuber flesh [J]. Scientia Agricultura Sinica, 2019, 52(15): 2678−2685.(in Chinese) doi: 10.3864/j.issn.0578-1752.2019.15.011
|
[16] |
柳海东, 赵绪涛, 杜德志. 利用QTL-seq技术定位甘蓝型春油菜早花位点cqDTFC8及其近等基因系构建 [J]. 植物生理学报, 2020, 56(2):219−234. doi: 10.13592/j.cnki.ppj.2019.0398
LIU H D, ZHAO X T, DU D Z. Mapping of early flowering site cqDTFC8 using QTL-seq technique and construction of its near-isogenic lines in Brassica napus [J]. Plant Physiology Journal, 2020, 56(2): 219−234.(in Chinese) doi: 10.13592/j.cnki.ppj.2019.0398
|
[17] |
尹明智, 胡燕. 基于BSA-seq法的油菜野芥胞质雄性不育恢复基因的分析 [J]. 西北植物学报, 2020, 40(7):1148−1156.
YIN M Z, HU Y. Location analysis of restorer gene of Sinapis arvensis cytoplasmic male sterility in Brassica napus based on BSA-seq method [J]. Acta Botanica Boreali-Occidentalia Sinica, 2020, 40(7): 1148−1156.(in Chinese)
|
[18] |
欧点点, 赵光伟, 贺玉花, 等. 甜瓜果皮颜色遗传分析及基因定位 [J]. 中国农学通报, 2019, 35(13):64−69. doi: 10.11924/j.issn.1000-6850.casb18110127
OU D D, ZHAO G W, HE Y H, et al. Genetic analysis and gene mapping for melon rind color [J]. Chinese Agricultural Science Bulletin, 2019, 35(13): 64−69.(in Chinese) doi: 10.11924/j.issn.1000-6850.casb18110127
|
[19] |
祝新荣, 何克荣, 柳新菊, 等. 多丝量雄蚕新品种华菁×平72的育成 [J]. 蚕业科学, 2014, 40(2):248−253. doi: 10.13441/j.cnki.cykx.2014.02.012
ZHU X R, HE K R, LIU X J, et al. Breeding of new male silkworm variety Huajing × Ping 72 with high silk yield [J]. Science of Sericulture, 2014, 40(2): 248−253.(in Chinese) doi: 10.13441/j.cnki.cykx.2014.02.012
|
[20] |
司马杨虎, 徐海明, 赵爱春, 等. 性别效应对家蚕茧质性状QTL定位的影响 [J]. 蚕业科学, 2009, 35(4):783−789. doi: 10.3969/j.issn.0257-4799.2009.04.012
SIMA Y H, XU H M, ZHAO A C, et al. Influence of sex-effects on QTL mapping of silkworm cocoon quality traits [J]. Science of Sericulture, 2009, 35(4): 783−789.(in Chinese) doi: 10.3969/j.issn.0257-4799.2009.04.012
|
[21] |
ZHAN S, HUANG J H, GUO Q H, et al. An integrated genetic linkage map for silkworms with three parental combinations and its application to the mapping of single genes and QTL [J]. BMC Genomics, 2009, 10: 389. doi: 10.1186/1471-2164-10-389
|
[22] |
FANG S M, ZHOU Q Z, YU Q Y, et al. Genetic and genomic analysis for cocoon yield traits in silkworm [J]. Scientific Reports, 2020, 10: 5682. doi: 10.1038/s41598-020-62507-9
|
[23] |
马倩, 马俐, 李胜, 等. 基于RNA-Seq分析Ras1 CA在家蚕后部丝腺过表达对细胞周期通路基因的影响 [J]. 应用昆虫学报, 2015, 52(2):390−399. doi: 10.7679/j.issn.2095-1353.2015.043
MA Q, MA L, LI S, et al. RNA-Seq technology based transcriptomic analysis of differentially expressed genes in the cell cycle pathway of Ras1 CA-overexpressed and wild type posterior silk glands of Bombyx mori [J]. Chinese Journal of Applied Entomology, 2015, 52(2): 390−399.(in Chinese) doi: 10.7679/j.issn.2095-1353.2015.043
|
[24] |
张祥乐, 马俐, 马倩, 等. Ras信号通路通过激活转录因子Myc促进核内复制细胞生长 [J]. 昆虫学报, 2018, 61(8):885−894.
ZHANG X L, MA L, MA Q, et al. Ras signaling pathway promotes the growth of endoreplication cells through activating the expression of transcription factor Myc [J]. Acta Entomologica Sinica, 2018, 61(8): 885−894.(in Chinese)
|
[25] |
CALDWELL P E, WALKIEWICZ M, STERN M. Ras activity in the Drosophila prothoracic gland regulates body size and developmental rate via ecdysone release [J]. Current Biology, 2005, 15(20): 1785−1795. doi: 10.1016/j.cub.2005.09.011
|
[26] |
MA L, XU H F, ZHU J Q, et al. Ras1 CA overexpression in the posterior silk gland improves silk yield [J]. Cell Research, 2011, 21(6): 934−943. doi: 10.1038/cr.2011.36
|