Xinjiang Agricultural Sciences ›› 2022, Vol. 59 ›› Issue (6): 1321-1329.DOI: 10.6048/j.issn.1001-4330.2022.06.003
• Crop Genetics and Breeding·Cultivation Physiology·Physiology and Biochemistry • Previous Articles Next Articles
YANG Jing1(), WANG Weiran1, WANG Meng1, ZHU Jiahui1, NING Xinmin1, Alifu Aierxi1, MIN Ling2(
), KONG Jie1,3(
)
Received:
2021-10-11
Online:
2022-06-20
Published:
2022-07-07
Correspondence author:
MIN Ling, KONG Jie
Supported by:
杨静1(), 王为然1, 王萌1, 朱家辉1, 宁新民1, 阿里甫·艾尔西1, 闵玲2(
), 孔杰1,3(
)
通讯作者:
闵玲,孔杰
作者简介:
杨静(1989-),女,陕西宁强人,助理研究员,研究方向为长绒棉遗传育种. (E-mail) hzjingy@126.com
基金资助:
CLC Number:
YANG Jing, WANG Weiran, WANG Meng, ZHU Jiahui, NING Xinmin, Alifu Aierxi, MIN Ling, KONG Jie. Preliminary Study on the Embryogenic Callus Culture System of Xinjiang Island Cotton (G. barbadense L. )[J]. Xinjiang Agricultural Sciences, 2022, 59(6): 1321-1329.
杨静, 王为然, 王萌, 朱家辉, 宁新民, 阿里甫·艾尔西, 闵玲, 孔杰. 新疆海岛棉胚性愈伤组织培养体系[J]. 新疆农业科学, 2022, 59(6): 1321-1329.
材料编号Material code | |||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
907 | 947 | 966 | 974 | 984 | 1011 | 1028 | 1046 | 1061 | 1074 | 1086 | 1094 | 1108 | 1119 |
920 | 954 | 967 | 975 | 987 | 1012 | 1036 | 1050 | 1062 | 1075 | 1087 | 1098 | 1109 | |
921 | 955 | 968 | 976 | 995 | 1013 | 1040 | 1051 | 1063 | 1076 | 1088 | 1099 | 1111 | |
922 | 960 | 969 | 977 | 998 | 1014 | 1041 | 1052 | 1064 | 1080 | 1089 | 1101 | 1112 | |
923 | 961 | 970 | 979 | 999 | 1016 | 1042 | 1056 | 1065 | 1081 | 1090 | 1102 | 1113 | |
926 | 962 | 971 | 980 | 1007 | 1017 | 1043 | 1058 | 1067 | 1083 | 1091 | 1103 | 1115 | |
927 | 964 | 972 | 981 | 1008 | 1024 | 1044 | 1059 | 1070 | 1084 | 1092 | 1104 | 1116 | |
933 | 965 | 973 | 982 | 1010 | 1025 | 1045 | 1060 | 1073 | 1085 | 1093 | 1105 | 1118 |
Table 1 The experiment accessions of island cotton
材料编号Material code | |||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
907 | 947 | 966 | 974 | 984 | 1011 | 1028 | 1046 | 1061 | 1074 | 1086 | 1094 | 1108 | 1119 |
920 | 954 | 967 | 975 | 987 | 1012 | 1036 | 1050 | 1062 | 1075 | 1087 | 1098 | 1109 | |
921 | 955 | 968 | 976 | 995 | 1013 | 1040 | 1051 | 1063 | 1076 | 1088 | 1099 | 1111 | |
922 | 960 | 969 | 977 | 998 | 1014 | 1041 | 1052 | 1064 | 1080 | 1089 | 1101 | 1112 | |
923 | 961 | 970 | 979 | 999 | 1016 | 1042 | 1056 | 1065 | 1081 | 1090 | 1102 | 1113 | |
926 | 962 | 971 | 980 | 1007 | 1017 | 1043 | 1058 | 1067 | 1083 | 1091 | 1103 | 1115 | |
927 | 964 | 972 | 981 | 1008 | 1024 | 1044 | 1059 | 1070 | 1084 | 1092 | 1104 | 1116 | |
933 | 965 | 973 | 982 | 1010 | 1025 | 1045 | 1060 | 1073 | 1085 | 1093 | 1105 | 1118 |
Fig.1 Process of callus induction and transformin island cotton Note: A.The aseptic seedling of Jin668; B.Jin668 hypocotyl; C.The aseptic seedling of island cotton; D-F.Hypocotyl of 923,971,962.Bars value is 1 cm
Fig.2 Callus induction and proliferation Note: A.Callus of upland cotton Jin668 (CK) not infested with agrobacterium; B-C,E-F, Callus of 923,986,1007 and 972 after 4 months of culture,respectively.D.The callus of Jin668 after 4 months of cultivation inoculation with agrobacterium.Bars value is 1 cm
材料编号 Code | 诱导4个月增重 Add weight after 4 months(g) | 愈伤颜色质地 Callus of color and phenotype | 愈伤细胞形态 Callus of cell morphology | 诱导6个月增重 Add weight after 6 months(g) | 愈伤颜色质地 Callus of color and phenotype | 愈伤细胞形态 Callus of cell morphology |
---|---|---|---|---|---|---|
Jin668 | 0.26±0.08 | 浅黄,疏松 | 长柱、近球形 | 0.35±0.04 | 浅棕,疏松 | 长柱形 |
962 | 0.13±0.02 | 浅黄色,疏松 | 同上 | 0.64±0.15 | 浅黄,疏松 | 近球、长柱形 |
1010 | 0.22±0.04 | 粉白色,硬 | 同上 | 0.83±0.15 | 浅绿,硬 | 同上 |
1025 | 0.35±0.06 | 浅绿色,疏松 | 同上 | 0.47±0.10 | 浅绿色,疏松 | 同上 |
1052 | 0.24±0.07 | 浅绿色,硬 | 同上 | 0.35±0.13 | 红褐色,疏松 | 同上 |
964 | 0.20±0.06 | 绿色,疏松 | 近球形 | 1.10±0.14 | 浅黄,软 | 近球形 |
986 | 0.12±0.03 | 绿色,硬 | 同上 | 0.45±0.10 | 浅黄,疏松 | 同上 |
1011 | 0.16±0.06 | 浅绿,硬 | 同上 | 0.29±0.04 | 浅黄,硬 | 同上 |
1086 | 0.10±0.01 | 浅绿,疏松 | 同上 | 0.18±0.03 | 浅绿,硬 | 同上 |
1103 | 0.18±0.03 | 同上 | 同上 | 0.39±0.05 | 浅绿,硬 | 同上 |
Table 2 Callus quality of hypocotyl at different induction time
材料编号 Code | 诱导4个月增重 Add weight after 4 months(g) | 愈伤颜色质地 Callus of color and phenotype | 愈伤细胞形态 Callus of cell morphology | 诱导6个月增重 Add weight after 6 months(g) | 愈伤颜色质地 Callus of color and phenotype | 愈伤细胞形态 Callus of cell morphology |
---|---|---|---|---|---|---|
Jin668 | 0.26±0.08 | 浅黄,疏松 | 长柱、近球形 | 0.35±0.04 | 浅棕,疏松 | 长柱形 |
962 | 0.13±0.02 | 浅黄色,疏松 | 同上 | 0.64±0.15 | 浅黄,疏松 | 近球、长柱形 |
1010 | 0.22±0.04 | 粉白色,硬 | 同上 | 0.83±0.15 | 浅绿,硬 | 同上 |
1025 | 0.35±0.06 | 浅绿色,疏松 | 同上 | 0.47±0.10 | 浅绿色,疏松 | 同上 |
1052 | 0.24±0.07 | 浅绿色,硬 | 同上 | 0.35±0.13 | 红褐色,疏松 | 同上 |
964 | 0.20±0.06 | 绿色,疏松 | 近球形 | 1.10±0.14 | 浅黄,软 | 近球形 |
986 | 0.12±0.03 | 绿色,硬 | 同上 | 0.45±0.10 | 浅黄,疏松 | 同上 |
1011 | 0.16±0.06 | 浅绿,硬 | 同上 | 0.29±0.04 | 浅黄,硬 | 同上 |
1086 | 0.10±0.01 | 浅绿,疏松 | 同上 | 0.18±0.03 | 浅绿,硬 | 同上 |
1103 | 0.18±0.03 | 同上 | 同上 | 0.39±0.05 | 浅绿,硬 | 同上 |
Fig.4 The better callus induction and proliferation of accessions Note:A.The callus of 962,964,1010,1011,1025,1052,1086 and 1103 after 4 months of cultivation,respectively.Bars value is 1 cm
Fig.5 Observation of red fluorescence protein transform in island cotton Note:A-D.Callus of Jin668,964,1086 and 1052 cultivated 4 Callus after 4 months, respectively; E-H.Jin668,964,1086 and 1052 after 4 months of cultivation of red fluorescent protein in callus; I-L.Jin668, 964,1086 and 1052 after 4 months of cultivation tissue cell morphology (toluidine blue staining), respectively.Bars value of A, B, C, D is 1 cm, and E, F, G, H,I,J,K, L is 100 μm
Fig.6 Observation of lower transform ratio of red fluorescence protein in island cotton Note:A, D: Island cotton 1010and 1103 callus after 4 months of cultivation; B, E: 1010 and1103 callus after 4 months of cultivation of red fluorescence protein; C, F: 1010 and 1103 callus cell morphology after 4 months of cultivation (toluidine blue staining).Bars value of A and D is 1cm, B, C, E, and F is 100 μm
[1] | Huang X, OUYANG X, DENG X W. Beyond repressionof photomorphogenesis: role switching of COP/DET/FUS in light signaling[J]. Current Opinion Plant Biology, 2014, 21C: 96-103. |
[2] | Beasley C A. In vitro culture of fertilized cotton ovules[J]. Bio Science, 1971, 21(17):906-907. |
[3] |
Davidonis G H, Hamilton R H. Plant regeneration from callus tissue of Gossypium hirsutum L.[J]. Plant Science Letters, 1983, 32:89-93.
DOI URL |
[4] |
Keller G, Spatola L, McCabe D E, et al.(1997). Transgenic cotton resistant to herbicide bialaphos[J]. Transgenic Research, 6:385-392.
DOI URL |
[5] | 武秀明, 刘传亮, 张朝军, 等. 棉花体细胞胚胎发生的研究进展[J]. 植物学通报, 2008, 25(4):469-475. |
WU Xiuming, LIU Chuanliang, ZHANG Chaojun, et al. Progress of Somatic Embryogenesis in Cotton[J]. Chinese Bulletin of Botany, 2008, 25(4):469-475. | |
[6] | 谭晓连, 钱迎倩. 不同外植体来源和培养条件对拟似棉植株再生的影响[J]. 遗传学报, 1988, 15(2): 81-85. |
TAN Xiaolian, QIAN Yingqian. Effects of explant sources and culture conditions on plant regeneration in (G.gossypioides Ulbrich) Standley[J]. Journal of Genetics and Genomics, 1998, 15(2): 81-85. | |
[7] |
Sun Y, Zhang X, Jin S, et al. Somatic embryogenesis and plant regeneration in wild cotton (Gossypiumklotzschianum)[J]. Plant Cell, Tissue and Organ Culture, 2003, 75(3): 247-253.
DOI URL |
[8] | 陆振鑫, 夏镇澳. 戴维逊棉的组织培养与原生质体培养研究[J]. 植物学报, 1991, 33(2):98-103, 172. |
LU Zhenxin, XIA Zhenao. Study on tissue and protoplast culture of wild cotton (Gossypium davidsonil)[J]. Chinese Bulletin of Botany, 1991, 33(2):98-103, 172. | |
[9] |
Sun Y, Zhang X, Huang C, et al. Somatic embryogenesis and plant regeneration from different wild diploid cotton (Gossypium) species[J]. Plant Cell Reports, 2006, 25(4): 289-296.
DOI URL |
[10] | Rao A Q, Hussain S S, Shahzad M S, et al. Somatic embryogenesis in wild relatives of cotton (Gossypium spp.)[J]. Journal of Zhejiang University Science Botany, 2006, 7(4):291-298. |
[11] |
Yan S, Zhang Q, Wang J, et al. Somatic embryogenesis and plant regeneration in two wild cotton species belong to G genome[J]. In Vitro Cellular and Developmental Biology-Plant, 2010, 46(3): 298-305.
DOI URL |
[12] | 魏延红. 农杆菌介导海岛棉(G.barbadense L.)遗传转化技术研究[D]. 石河子: 石河子大学, 2013. |
WEI Yanhong. Agrobacterium-mediated Sea-island cotton (G.barbadense L.) Genetic transformation technology research[D]. Shihezi: Shihezi University 2013. | |
[13] | 周小凤, 金双侠, 李翔, 等. 新疆海岛棉的丛生芽诱导和茎尖遗传转化的研究[J]. 棉花学报, 2009, 21(4):324-329. |
ZHOU Xiaofeng, JIN Shuangxia, LI Xiang, et al. Multiple-shoot Induction and Genetic Transformation of Island Cotton (G.barbadense L.) in Xinjiang[J]. Cotton Science, 2009, 21(4):324-329. | |
[14] | 丁喜莲. 农杆菌介导的海岛棉转Bt基因遗传转化研究[D]. 乌鲁木齐: 新疆农业大学, 2015. |
DING Xilian. Study on the Agrobacterium tumefaciens-mediated Transformation of Bt Gene into Sea Island Cotton (G.barbadense L.)[D]. Urumqi: Xinjiang Agricultural University, 2015. | |
[15] |
Navarro C, E Cruz-Oró, Prat S. Conserved function of FLOWERING LOCUS T (FT) homologues as signals for storage organ differentiation[J]. Current Opinion in Plant Biology, 2015, 23:45-53.
DOI URL |
[16] |
Jin S X, Zhang X L, Nie Y C, et al. Identification of a novel elite genotype for in vitro culture and genetic transformation of cotton.[J]. Biologia Plantarum, 2006, 50(4):519-524.
DOI URL |
[17] | Cristina Navarro, Eduard CruzOró, SaloméPratNavarro C. Conserved function of FLOWERING LOCUST(FT) homologues as signals for storage organ differentiation.[J]. Current Opinion Plant Biology, 2014, 23C:45-53. |
[18] | 郑顺利, 陈金湘, 周仲华. 影响棉花愈伤组织及其体细胞胚发生的内外因素[J]. 棉花科学, 2012, 34(1),1-10. |
ZHENG Shunli, CHEN Jinxiang, ZHOU Zhonghua. Internal and External Factors of Cotton Callus and Its Somatic Embryogenesis[J]. Cotton Science, 2012, 34(1):1-10. | |
[19] | 商海红, 刘传亮, 张朝军, 等. 棉花体细胞胚发生机理的研究进展[J]. 西北植物学报, 2009, 29(3):637-642. |
SHANG Haihong, LIU Chuanliang, ZHANG Chaojun, et al. Progress in Mechanisms of Cotton Somatic Embryogenesis[J]. Acta Botanica Boreali-Occidentalia Sinica, 2009, 29(3):637-642. | |
[20] | 师海荣, 王清连, 鲁玉贞. 陆地棉品种在体细胞培养中愈伤组织褐化的生化基础研究[J]. 中国农学通报, 2006, 22(6):215-217. |
SHI Hairong, WANG Qinglian, LU Yuzhen. Study on Physiological biochemistry of Callus Browning in Three Upland Cottons[J]. Chinese Agricultural Science Bulletin, 2006, 22(6):215-217. | |
[21] | 张朝军, 李付广, 王玉芬, 等. 降低棉花胚性愈伤褐化研究[J]. 棉花学报, 2005, 17 (5):285-288. |
ZHANG Chaojun, LI Fuguang, WANG Yufen, et al. Prevent Browning of Upland Cotton Embryoid Callus[J]. Cotton Science, 2005, 17(5):285-288. | |
[22] | 杨瑞思, 周静, 张霞. 海岛棉(Gossypium barbadense)体细胞胚发生体系中的畸形再生植株的遗传性分析[J]. 分子植物育种, 2019, 17,(23)7849-7853. |
YANG Ruisi, ZHOU Jing, ZHANG Xia. Genetic analysis of malformed regenerated seedlings in the somaticembryogenesisof Gossypium barbadense[J]. Molecular Plant Breeding, 2019, 17(23):7849-7853. | |
[23] | 翁琴, 陈全家, 孔庆平, 等. 农杆菌介导的海岛棉茎尖再生体系及其遗传转化影响因子的研究[J], 新疆农业大学学报, 2007, 30(4) :63-67. |
WENG Qin, CHEN Quanjia, KONG Qingping, et al. Study on Regeneration System and Influencing Factorsof Genetic Transformation of G.barbadense Shoot Apex Mediated by Agrobacterium[J]. Journal of Xinjiang Agricultural University, 2007, 30(4): 63-67. |
[1] | Kadierayi Maimaiti, ZHOU Tingting, HAN Sheng, Meilikehan Rexiti, Yushanjiang Maimaiti. Establishment of genetic transformation and regeneration systems for different melon varieties and rapid acquisition of gene edited plants [J]. Xinjiang Agricultural Sciences, 2024, 61(7): 1666-1672. |
[2] | YANG Bo, WANG Hao, CHEN Yongwei, HA Rong, JIN Wei, XU Can, ZHANG Min, YANG Guili, YANG Hongbo, MA Wenli. Study on establishment and optimization of rapid tissue culture propagation technology of three wine grape cultivars [J]. Xinjiang Agricultural Sciences, 2024, 61(1): 109-117. |
[3] | FU Qiang, WANG Qin, XU Caiqin, NIU Junli, NIU Jianxin, WANG Jianyou. Study on disinfection and prevention of browning in tissue culture of black walnut [J]. Xinjiang Agricultural Sciences, 2023, 60(6): 1499-1505. |
[4] | ZHOU Xi-ping;WANG Meng-yao;L(U) Xin-hua;ZHU Jian-bo;SUN Li. Establishment of Regeneration System of Two Types Inbred Lines from Oil Sunflower (Helianthus annuus L.) [J]. , 2017, 54(7): 1208-1215. |
[5] | HAN Hong-wei;LIAO Qing;Marbaha Wsman;WANG Hao;ZHUANG Hong-mei;WANG Qiang;SHA Hong. Isolation, Identification and Screening of Endophyte Fingicides for Disease Control during Tissue Culture of German Irises [J]. , 2017, 54(4): 652-659. |
[6] | ZHOU Xia, XIA Hong-mei, JIA Yong-chuang, XU Ye-ting, HAN Hong-wei, WANG Zhi-ming, LIAO Zhi-li. Study on Production Technology of Tissue Culture Seedlings of Philodendron con-go [J]. Xinjiang Agricultural Sciences, 2017, 54(12): 2227-2231. |
[7] | CHEN Ying;ZHANG Xi-ying. Optimization of a Rapid Reproductive System of Strawberry Variety Hongysn'by Using Tissue Culture Method [J]. , 2016, 53(12): 2210-2216. |
[8] | SU Xiu-juan;WANG Li-ping;DAI Pei-hong;CHEN Quan-jia;QU Yan-ying. Agrobacterium Tumefactions-mediated Genetic Transformation of leaf in English Lavender [J]. , 2015, 52(3): 517-522. |
[9] | ZHANG Yan-hong;ZHAO zhi-qiang;WU Ze-xin;YUAN Jie;Buhaliqiemu;WANG Feng-bin. Study on the Genetic Transformation System Mediated by Agrobacterium Tumefactions in Xinjiang Rice [J]. , 2014, 51(8): 1457-1462. |
[10] | GUO Gang;LU Yue-min;ZHANG Xiao-hong;FU Xi-ke;Ma Dun;ZHOU Xiao-yun. Tissue Culture and Rapid Propagation of Swainsona salsula [J]. , 2014, 51(1): 118-123. |
[11] | LI Peng-fei;ZHU Hua-guo;CHENG Wen-han;WANG Fan-long;ZHANG Xin-yu;SUN Jie. Study on Protocol of Efficiency Genetic Transformation in Xinluzao 33 (Gossypium hirsutum L.) [J]. , 2013, 50(6): 981-987. |
[12] | MENG Ling-zhen;CHEN Quan-jia;YANG Ting;Ayixiamu Guli;WANG Xi-dong;QU Yan-ying. Studies on Genetic Transformation of Agrobacterium mediated Bar Gene and Bt Gene [J]. , 2013, 50(12): 2189-2196. |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 115
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 1411
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||