Scientia Agricultura Sinica ›› 2007, Vol. 40 ›› Issue (11): 2488-2494 .doi: 10.3864/j.issn.0578-1752.at-2006-8296

• PLANT PROTECTION • Previous Articles     Next Articles

Dynamics in kanamycin-resistant bacterial population and shift of nptII gene in the phyllosphere of insect-resistant transgenic cotton

  

  1. 中国农业科学院植物保护研究所/植物病虫害生物学国家重点实验室
  • Received:2006-10-30 Revised:1900-01-01 Online:2007-11-10 Published:2007-11-10

Abstract: 【Objective】To study the Dynamics in kanamycin-resistant bacterial population and monitor shift of nptII gene in the phyllosphere of insect-resistant transgenic cotton.【Method】Insect-resistant transgenic cotton 33B, SGK321 and GK12,and corresponding receptor cotton 33, Shiyuan 321 and No.3 Simian cotton were sampled at different growing stages. Dynamics and diversity among kanamycin-resistant bacterial populations in the phyllosphere were analyzed with the conventional culture methods. In addition, the shift of nptII gene was monitored by germ PCR, and the unique primer was designed from the sequence of nptII gene, the CK is pBI121 plasmids.【Result】at different sample time,significant differences were found among the total number and diversity index of phyllospere kanamycin-resistant bacterial population each cotton variety, but little differences between Insect-resistant transgenic cotton and corresponding receptor cotton at the same time. we discovered the positive segment from kanamycin-resistant bacteria in the phyllosphere of insect-resistant transgenic cotton SKG321, GK12 and receptor cotton No.3 Simian cotton.【Conclusion】We suggested that little differences were found among the total number and diversity index of phyllospere kanamycin-resistant bacterial population between Insect-resistant transgenic cotton and corresponding receptor cotton,and nptII gene in insect-resistant transgenic cottons could drift into the phyllosphere bacteria.

Key words: insect-resistant transgenic cotton, phyllosphere bacteria, kanamycin-resistant, population, biosafety, nptII

[1] DU MengYuan, HOU YanHong, LIU Di, CHEN Li, FAN ZhiYe, WANG WenHao, SHEN HaiLong, WANG CanGuan, LI ShiMin, HUANG JianRong, CHEN Qi. Analysis of Population Dynamics and Migration Status of Harmonia axyridis Under Searchlight Trap and Ground Light Trap [J]. Scientia Agricultura Sinica, 2026, 59(6): 1231-1243.
[2] ZHANG MengYu, HE ZaiJu, WANG XingXing, REN Hao, REN BaiZhao, LIU Peng, ZHANG JiWang, ZHAO Bin. The Influences of Different Plant Height Combinations of Maize Varieties on Light Distribution in the Canopy and the Photosynthetic Characteristics of Maize Under Maize-Soybean Strip Intercropping Pattern [J]. Scientia Agricultura Sinica, 2025, 58(23): 4886-4904.
[3] LIU XiaoXu, ZHONG ZeXin, QIU JiaRen, YANG ChunXiao, ZHANG YongJun, XIE Wen, ZHANG YouJun, PAN HuiPeng. GENETIC DIVERSITY OF MTCO1 IN DIFFERENT GEOGRAPHICAL POPULATIONS OF MEGALUROTHRIPS USITATUS [J]. Scientia Agricultura Sinica, 2025, 58(21): 4361-4371.
[4] HUANG ShengLin, XU YiBo, KONG XiangYi, SHI CaiHua, JIAO XiaoGuo, ZHANG YouJun, WU MingYue, XIE Wen. Analysis of Annual Population Dynamics of Megalurothrips usitatus on Cowpea in Hainan [J]. Scientia Agricultura Sinica, 2025, 58(21): 4439-4450.
[5] ZHAO DongLan, MA JuKui, XIAO ShiZhuo, ZHOU ZhiLin, ZHAO LingXiao, WANG Jie, DAI XiBin, SUN HouJun, CAO QingHe. QTL Analysis for Resistance to Stem Nematode Disease in Sweetpotato [J]. Scientia Agricultura Sinica, 2025, 58(17): 3389-3399.
[6] ZHANG GuiFen, WAN Kun, PAN MengNi, WANG Long, HUANG Cong, WANG YuSheng, ZHANG YiBo, XIAN XiaoQing, YANG NianWan, GUI FuRong, LIU WanXue, WAN FangHao. Population Colonization, Re-Establishment and Development of the Tomato Leafminer (Tuta absoluta) [J]. Scientia Agricultura Sinica, 2024, 57(3): 514-524.
[7] DENG YuanJian, LIU Peng. Study on the Influence of Rural Population Structure on Agricultural Green Total Factor Productivity [J]. Scientia Agricultura Sinica, 2024, 57(23): 4725-4745.
[8] JIANG YaNan, QI FangJian, LI WeiWei, CHEN JuLian, TAN XiaoLing. The Increasing Temperature Accelerated the Population Growth of Rhopalosiphum padi and Sitobion avenae by Wheat Rhizosphere Microorganisms [J]. Scientia Agricultura Sinica, 2024, 57(20): 4045-4056.
[9] WANG LiLi, LUAN BingHui, WANG HongTao, WANG PeiSong, GAO XingXiang, LIU BaoYou. Analysis of Population Dynamics and Migration Status of Ostrinia furnacalis Under Searchlight Trap and Ground Light-Trap [J]. Scientia Agricultura Sinica, 2024, 57(20): 4071-4081.
[10] HU XueJie, LIU LuPing, WANG FengMin, HAN YuHua, SUN BinCheng, MA QiBin, HUANG ZhiPing, FENG Yan, CHEN Qiang, YANG ChunYan, ZHANG MengChen, ZHANG Kai, QIN Jun. Construction of ms1 Basic Recurrent Populations Adapted to Different Ecological Regions Using Maturity Genes E1 and E2 in Soybean [J]. Scientia Agricultura Sinica, 2024, 57(17): 3305-3317.
[11] ZHANG XiaoQin, YIN Chang, LI Zheng, TANG Xu, LI Yan, WU ChunYan. Influences of Long-Term Appling Different Fertilizers on the Activities and Abundances of Canocial Ammonia Oxidizers and Comammox in Paddy Soil [J]. Scientia Agricultura Sinica, 2024, 57(14): 2803-2814.
[12] DING JinFeng, XU DongYi, DING YongGang, ZHU Min, LI ChunYan, ZHU XinKai, GUO WenShan. Effects of Cultivation Patterns on Grain Yield, Nitrogen Uptake and Utilization, and Population Quality of Wheat Under Rice-Wheat Rotation [J]. Scientia Agricultura Sinica, 2023, 56(4): 619-634.
[13] ZANG XinShan, WANG KangWen, ZHANG XianLiang, WANG XuePing, WANG Jun, LIANG Yu, PEI XiaoYu, REN Xiang, LÜ YuLong, GAO Yu, WANG XingXing, PENG YunLing, MA XiongFeng. Research Advances of Map-Based Cloning Genes in Cotton [J]. Scientia Agricultura Sinica, 2023, 56(23): 4635-4647.
[14] LIU ZhenShan, TU HongXia, ZHOU JingTing, MA Yan, CHAI JiuFeng, WANG ZhiYi, YANG PengFei, YANG XiaoQin, Kumail Abbas, WANG Hao, WANG Yan, WANG XiaoRong. Genetic Analysis of Fruits Characters in Reciprocal Cross Progenies of Chinese Cherry [J]. Scientia Agricultura Sinica, 2023, 56(2): 345-356.
[15] TONG Xiong, LUO Wei, MIN Li, ZHANG ZhiFei, MA XinYan, LUO ChengLong, CHEN WeiDong, XU Bin, LI DaGang. Population Structure and Genetic Diversity of Lufeng Cattle and Leiqiong Cattle Based on Genome-Wide SNPs [J]. Scientia Agricultura Sinica, 2023, 56(14): 2798-2811.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!