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1.
转Bt基因玉米的生态安全性研究进展   总被引:3,自引:0,他引:3  
随着转基因作物的应用和推广 ,转 Bt基因作物释放后对生态环境及其它方面产生的潜在影响越来越受到重视。分别从生物活性杀虫晶体蛋白在土壤中的残留特性、杀虫晶体蛋白对土壤中非目标生物的影响、转 Bt基因玉米植株体成分的变化、转Bt基因玉米花粉中杀虫晶体蛋白的表达特性及其在田间和马力筋叶片上的散积状况、花粉中表达的杀虫晶体蛋白对君主斑蝶的毒性、君主斑蝶幼虫暴露在 Bt花粉中的概率及综合风险评价估算等方面对转 Bt基因玉米产生的杀虫晶体蛋白与土壤生态环境的相互作用、花粉对非目标生物影响的研究现状进行了综述。通过对转 Bt基因作物生态安全性的科学评价和广泛宣传 ,以确保生物技术的健康发展。  相似文献   

2.
转Bt基因作物释放杀虫晶体蛋白对土壤生态安全的影响   总被引:3,自引:0,他引:3  
Zhou XY  Liu N  Zhao M  Li H  Zhou L  Tang ZW  Cao F  Li W 《遗传》2011,33(5):443-448
随着转Bt基因抗虫作物的大面积推广种植,其环境安全性问题日益引起关注。转Bt基因作物在生长期内持续不断地向环境释放杀虫晶体蛋白,这些杀虫晶体蛋白积累一旦超过了昆虫的消耗及环境因子对其的钝化,就可能对非靶标昆虫或土壤微生物造成伤害。转Bt基因作物向土壤中释放杀虫晶体蛋白的途径主要有3种:根系分泌、花粉飘落和秸秆还田。释放到土壤中的Bt杀虫晶体蛋白能够迅速被土壤活性颗粒吸附,1~3 h就能达到吸附平衡。吸附态Bt杀虫晶体蛋白不易被土壤微生物或酶降解,导致杀虫活性持续时间显著延长。土壤微生物种群变化是衡量Bt作物对土壤生态影响的重要指标。研究表明,Bt作物根系分泌物或Bt生物体降解释放的杀虫晶体蛋白对于土壤蚯蚓、线虫、原生动物、细菌和真菌没有毒性,但可使丛枝菌根真菌(AMF)菌丝长度减小,不能形成侵染单元。Bt杀虫晶体蛋白对土壤酶活性的影响程度依这类蛋白的导入方式或Bt作物生育期的不同而呈现差异。土壤中Bt Cry1Ab蛋白能被部分后茬作物吸收,但不同的商品试剂盒检测结果存在差异。文章综述了Bt杀虫晶体蛋白在土壤中释放、吸附、残留特性及其对土壤动物、土壤微生物、土壤酶活性和后茬作物的影响,旨在为转Bt基因作物释放杀虫晶体蛋白的土壤生态安全评价提供参考依据。  相似文献   

3.
种植转Bt基因水稻对土壤酶活性的影响   总被引:42,自引:8,他引:34  
转Bt基因及非Bt基因水稻的盆栽试验研究表明,转Bt基因水稻在生长发育过程中可以向土壤中释放杀虫晶体蛋白,而且杀虫晶体蛋白的释放量与水稻生长发育时间有关;与非Bt基因水稻相比,转Bt基因水稻生长15d时,土壤脲酶活性显著下降(降幅为2.47%),土壤酸性磷酸酶活性显著升高(增幅为8.91%),而土壤芳基硫酸酯酶、蔗糖酶和脱氢酶活性的变化差异不显著;生长30d时,土壤脲酶活性仍显著下降(降幅为16.36%),土壤酸性磷酸酶、芳基硫酸酯酶和脱氢酶活性显著升高(增幅分别为35.69%,19.70%和16.83%),而土壤蔗糖酶活性变化差异仍不显著。  相似文献   

4.
Bt杀虫晶体蛋白基因及其转基因育种研究进展   总被引:9,自引:0,他引:9  
本文简要介绍了Bt杀虫晶体蛋白及其编码基因,以及目前通过基因工程方法获得的转Bt杀虫晶体蛋白基因植物,着重分析和探讨了目前转Bt杀虫晶体蛋白基因植物及转基因育种研究中存在的一些问题,并就这些问题及合理持续利用Bt杀虫晶体蛋白提出了一些见解。  相似文献   

5.
本文选择转Bt基因棉和其非靶生物棉蚜(Aphis gossypii)作为研究对象,对转Bt基因棉的生态安全性进行个案评价.利用刺探电位技术(electrical penetration graph,EPG)、光学显微镜和电子显微镜观察、生物测定和化学分析等手段,研究了两种转Bt基因棉花(GK12和GK19)及其常规棉亲本泗棉3号叶片表面的物理和化学特征以及棉蚜在棉叶上的搜寻行为.EPG结果显示棉蚜在3种棉株上的取食搜寻行为存在差异;生物测定实验中,棉蚜对3种棉花叶片表面淋洗物的反应没有显著差异;对棉花叶片表面化学物质进行分析后发现,3种棉株的叶表面化学物质的成分和含量基本一致;但在光学显微镜和电子显微镜观察下发现3种棉花叶片叶毛的密度存在显著差异.利用多元回归方法建立了叶片的物理特征和棉蚜的搜寻行为之间的相互关系模型,由模型可知腺毛和分支为5的覆盖毛对棉蚜的搜寻行为有明显的影响,其他分支的覆盖毛对棉蚜的影响关系较为复杂.由以上结果可以得出结论,所研究的这两种转Bt基因棉表面的物理特征异于其亲本,且这种差异会影响转Bt基因棉的非靶昆虫棉蚜在其上的取食刺探行为,棉蚜在两种Bt棉上较容易进行刺探和取食.  相似文献   

6.
转基因棉种植对土壤水解酶活性的影响   总被引:10,自引:1,他引:9  
转Bt基因棉和转Bt+cpTI基因棉种植面积不断扩大,它们种植后杀虫晶体蛋白在土壤中的残留特性及对土壤水解酶活性的影响是环境风险评价的重要组成部分,本文采用盆栽实验的方法对此进行了初步研究。结果表明,转基因棉出苗后生长到30天时可向土壤中释放Bt杀虫晶体蛋白,而双抗棉种植时CpTI杀虫晶体蛋白的释放量与品种有关;转基因棉出苗后30天时,与等价基因系非转基因棉(各对照)相比,转Bt基因棉(“中30”)和双抗棉A(转Bt+CpTI棉“中41”)的种植并未使脲酶、蛋白酶和磷酸单脂酶活性发生显著变化,而双抗棉B(转Bt+CpTI棉“双抗321”)的种植使土壤磷酸单脂酶活性显著下降。从杀虫晶体蛋白的释放和对酶活性的影响来看,双抗棉A的种植对土壤的生物活性扰动更小。  相似文献   

7.
盐碱地是潜在的可利用耕地资源,但土壤盐碱化严重制约了农业生产的可持续发展。基于棉花机械化程度低、劳动力成本和生产资料投入剧增、比较效益下降和实施粮食生产安全战略等因素影响,我国长江流域和黄河流域棉花面积锐减,种植区域向内陆盐碱旱地或滨海盐碱地转移,但目前针对盐碱地转Bt基因棉种植可能带来的生态安全性问题研究甚少,正成为国内外研究的焦点和热点。伴随着棉花向盐碱地大面积转移种植趋势,检测盐胁迫是否影响转基因抗虫棉抗虫性,明确其影响程度,直接关系到转基因抗虫棉种植的安全性,也是目前抗虫棉扩大生产中迫切需要解决的问题。以非转基因棉花为对照,分别在低盐、中盐和高盐土壤种植的棉花的苗期、蕾期和花铃期采样,室内测定了转Bt基因棉花叶片对棉铃虫幼虫校正死亡率和外源蛋白表达量。研究结果发现盐分胁迫下转Bt基因棉花苗期叶片对棉铃虫幼虫校正死亡率下降了9.22%—47.46%,蕾期下降了31.61%—45.42%,花铃期下降了3.59%—18.52%;土壤盐分显著降低了转Bt基因棉花叶片中外源蛋白的表达量,苗期功能叶外源蛋白表达量下降了7.66%—29.86%;蕾期下降了3.77%—36.85%;花铃期下降了18.13%—41.02%;相关性分析表明,盐分胁迫条件下转Bt基因棉花叶片中外源蛋白表达量与其对棉铃虫抗性程度存在正相关关系。结果表明,盐碱土壤显著降低了转Bt基因棉花叶片外源杀虫蛋白表达量,从而导致转Bt基因棉花叶片对棉铃虫的抗虫性下降。研究土壤盐分对转Bt基因棉花对棉铃虫的影响及其作用机制,可为建立盐碱地转Bt基因棉花田害虫综合防控技术体系、转Bt基因棉花环境安全评价及转Bt基因棉安全管理提供依据。  相似文献   

8.
通过室内盆栽实验研究了大气颗粒污染物硫酸铵对香樟幼苗生长及光合特性的影响。结果表明,香樟幼苗叶片涂抹硫酸铵处理对植物生长无显著影响;低浓度硫酸铵(2 g·L^-1)提高了叶片叶绿素含量,而高浓度(4 g·L^-1)却降低了叶片叶绿素含量;与对照相比,低浓度处理的香樟叶片净光合速率、气孔导度、胞间二氧化碳浓度与蒸腾速率无显著差异;高浓度处理的香樟叶片净光合速率与蒸腾速率高于对照,而气孔导度与胞间二氧化碳浓度与对照无显著差异。机理分析表明,硫酸铵颗粒物主要通过影响叶片气孔导度来影响植物光合特性。  相似文献   

9.
近几年来,甲虫已成为十字花科蔬菜的头号害虫。本文采集了湖北省各地区192份土壤样品,分离到苏云金芽胞杆菌(简称Bt)菌株74株,以甲虫代表——黄粉虫为靶标昆虫筛选了15株典型Bt,得到一株对甲虫有活性的Bt L1;生物测定该菌的半致死浓度(LC50)为221.20μg·g-1;聚丙烯酰胺凝胶电泳(SDS-PAGE)显示L1至少具有3个杀虫晶体蛋白;PCR扩增杀虫晶体蛋白基因,测序发现Bt L1中含有cry1Ac,cry1Aa,cry1Ia基因,推测Bt L1中对甲虫活性的杀虫晶体蛋白基因为cry1Ia。  相似文献   

10.
Bt毒素在转基因棉花与土壤系统中的分布   总被引:4,自引:2,他引:2  
研究了转Bt基因棉花与土壤系统中Bt毒素的分布.结果表明,两种转Bt基因棉花地上部(叶片、茎秆)的毒素表达量(103.5~134.1 ng·g-1)显著高于地下部分(根系)(44.7~21.2 ng·g-1),土壤中Bt毒素总量可通过转基因棉花地上部分秸秆的处理得到控制;Bt毒素在转Bt基因棉花根系分泌物中的含量极低,如果控制Bt毒素的其它导入来源,将显著降低转Bt基因作物释放中因Bt毒素导入而引发的对土壤生态系统的扰动.  相似文献   

11.
 在盆栽种植条件下,比较研究了两个转Bt基因棉(Gossypium hirsutum)与对照棉对根际土壤细菌、放线菌、真菌和主要功能类群及多样性的影 响差异。结果表明:两个转Bt基因棉根际土壤均可检测到Bt蛋白,且不同转Bt基因棉根系分泌Bt蛋白量以及Bt蛋白在根际土壤中的降解率不同 。与各自对照相比,转Bt基因棉对细菌和真菌生长繁殖有促进作用,对放线菌、好气固氮菌和钾细菌数量没有显著影响。苗期和花期转Bt基因 棉均可显著提高氨化细菌、显著降低无机溶磷菌数量,花期均可显著提高好气纤维分解菌、显著降低有机溶磷菌数量,‘Bt冀668’苗期也可显 著提高好气纤维分解菌数量。转Bt基因棉根际土壤好气纤维分解菌、有机和无机溶磷菌多度发生了变化。尽管功能类群总数转Bt基因棉高于各 自对照常规棉,但群落多样性和均匀度都有所下降,优势集中性表现明显,且花期转Bt基因棉多样性参数值以及功能类群数量的变化幅度大于 苗期。  相似文献   

12.
Bt毒蛋白在转Bt基因棉中的表达及其在害虫-天敌间的转移   总被引:16,自引:2,他引:14  
以常规棉泗棉3号作为对照,采用酶联免疫生测法(ELISA)和室内生物测定法,研究了转Bt基因棉新棉33B和GK-12不同组织器官中Cry1Ac或Cry1Ab毒蛋白的表达及其向靶标害虫(棉铃虫)、非靶标害虫(棉蚜)以及天敌(龟纹瓢虫)的传递和影响。研究结果表明,新棉33B各组织器官中Bt毒蛋白的表达量较高,为79.7~1 390.0 ng/g鲜重,GK-012较低为165~2640 ng/g鲜重。在花盛期,新棉33B各组织器官中Bt毒蛋白的表达量依次为:柱头、花 >子房、花瓣>群尖;而5~7叶期的初展嫩叶、现蕾初期的幼蕾及花铃期的幼铃表达量相当,而且与花盛期群尖的表达量没有明显区别。同样处于花盛期的GK-12,其各组织器官中Bt毒蛋白的表达量依次为:花药>柱头>花瓣>群尖>子房;而5~7叶期的初展嫩叶、现蕾初期的幼蕾及花铃期的幼铃表达量相当,而且与花盛期群尖的表达量没有明显差异。常规对照棉的幼铃、花药、柱头以及子房中痕量Bt毒蛋白的存在可能与传粉昆虫等的活动有关。在转Bt基因棉田采集的棉蚜和棉铃虫老龄幼虫,其体内均可检测到Bt毒蛋白;在新棉33B棉田采集的龟纹瓢虫幼虫和成虫体内也可检测出Bt毒素。当以Bt棉田的棉蚜饲喂龟纹瓢虫时,龟纹瓢虫的生长发育、存活以及繁殖等基本没有受到影响。  相似文献   

13.
A field study was carried out to quantify plant growth and the foliar chemistry of transgenic Bacillus thuringiensis (Bt) cotton (cv. GK-12) exposed to ambient CO2 and elevated (double-ambient) CO2 for different lengths of time (1, 2 and 3 months) in 2004 and 2005. The results indicated that CO2 levels significantly affected plant height, leaf area per plant and leaf chemistry of transgenic Bt cotton. Significantly, higher plant height and leaf area per plant were observed after cotton plants that were grown in elevated CO2 were compared with plants grown in ambient CO2 for 1, 2 and 3 months in the investigation. Simultaneously, significant interaction between CO2 level x investigating year was observed in leaf area per plant. Moreover, foliar total amino acids were increased by 14%, 13%, 11% and 12%, 14%, 10% in transgenic Bt cotton after exposed to elevated CO2 for 1, 2 or 3 months compared with ambient CO2 in 2004 and 2005, respectively. Condensed tannin occurrence increased by 17%, 11%, 9% in 2004 and 12%, 11%, 9% in 2005 in transgenic Bt cotton after being exposed to elevated CO2 for 1, 2 or 3 months compared with ambient CO2 for the same time. However, Bt toxin decreased by 3.0%, 2.9%, 3.1% and 2.4%, 2.5%, 2.9% in transgenic Bt cotton after exposed to elevated CO2 for 1, 2 or 3months compared with ambient CO2 for same time in 2004 and 2005, respectively. Furthermore, there was prominent interaction on the foliar total amino acids between the CO2 level and the time of cotton plant being exposed to elevated CO2. It is presumed that elevated CO2 can alter the plant growth and hence ultimately the phenotype allocation to foliar chemistical components of transgenic Bt cotton, which may in turn, affect the plant-herbivore interactions.  相似文献   

14.
Summary The concentrations of Bacillus thuringensis (Bt) toxin released from root exudation of Bt cotton were measured by an enzyme-linked immunosorbent assay (ELISA), and its impacts on the numbers of culturable functional bacteria in the rhizosphere were determined by cultivation. No Bt toxin was found in the rhizosphere of non-Bt cotton (SHIYUAN321), but varying levels of Bt toxin were present in the rhizosphere of two Bt cotton varieties (NuCOTN99B and SGK321) during the entire growth period. The levels of Bt toxin in the rhizosphere of NuCOTN99B were significantly higher (p<0.05) than those of SGK321 within all sampling dates except on June 17th in the whole growth season. Significant differences (p<0.05) were found in the numbers of the three functional bacteria between SHIYUAN321 and NuCOTN99B within each sampling day from May 27th to October 27th. No significant differences were found in the numbers of functional bacteria among three cultivars after growth season. Fortification of pure Bt toxin into rhizospheric soil did not result in significant changes in the numbers of culturable functional bacteria, except the nitrogen-fixing bacteria when the concentration of Bt toxin was higher than 500 ng/g. The results indicated that Bt toxin was not the direct factor causing decrease of the numbers of bacteria in the rhizosphere, and other factors may be involved.  相似文献   

15.
Bt玉米光合作用和生长性状的变化   总被引:3,自引:0,他引:3  
聂呈荣  骆世明  王建武 《生态学报》2006,26(6):1957-1963
在华南地区种植美国先锋公司的Bt玉米34824与其非转基因近等基因系34823,比较它们的光合作用和部分重要的生理生长性状。结果表明,Bt玉米由于Bt基因的插入和表达使植株得到保护,受玉米螟危害的叶片显著减少;但Bt玉米植株的光合作用和部分生理生长性状也发生了一定的变化。与其非转基因近等基因系34823相比,虽然Bt玉米34824的胞问CO2浓度变化不大;并且在绝大多数生长时期,Bt玉米的蒸腾速率和气孔导度大于的非转基因玉米;但是从生长中期始,Bt玉米的净光合速率却一直小于非转基因玉米,在生长后期,这种差异甚至达到显著水平。在生长性状方面,各时期观察到的Bt玉米植株叶片数一直略少于非转基因玉米,表明Bt玉米的生长发育受到一定的延缓。同时,Bt玉米植株的株高变矮,单株叶面积变小,根系活力显著降低。在地下部,Bt玉米34824的植株根系总长度、根总表面积、根总体积和平均根直径均小于相对应的非转基因近等基因系34823。  相似文献   

16.
Various studies have been conducted to assess the damage caused by secondary lepidopteran pests to transgenic Bt maize expressing Cry1Ab. However, to date little is known on the effects of transgenic maize on Spodoptera littoralis (Boisduval) (Lepidoptera: Noctuidae), a polyphagous herbivore which is considered a pest in Mediterranean maize growing areas. Here we present results on the effects of Bt maize (Bt‐11) and Bt spray (Dipel) on the various life stage parameters of this herbivore. We further assess the expression of Cry1Ab in different leaves and leaf parts in maize at a given plant growth stage, and determine whether the feeding damage of 3rd instar S. littoralis is influenced by Bt toxin expression. Contrary to previous literature reporting that S. littoralis is not sensitive to Bt Cry1Ab toxin, our results show that insects fed on either transgenic or Bt sprayed plants were negatively affected. Young S. littoralis larvae (1st and 2nd instars) were found to be the most sensitive to the Bt toxin. This was represented by a higher mortality and a slower developmental time of larvae maintained on transgenic or sprayed plants when compared to insects maintained on control plants. Moreover, Bt maize had a stronger and prolonged detrimental effect on insects when compared to Bt spray in maize. This was revealed by the fact that insects maintained on transgenic plants from 3rd instar to pupation took longer to reach adult emergence compared to insects that were maintained on sprayed plants. This was likely due to the continuous exposure of insects to the toxin when kept on transgenic maize. ELISA results showed a variation in the amount of Bt toxin among different leaf sections in transgenic maize at a given plant growth stage. These differences in Bt toxin were primarily found in the youngest leaf of growing plants. Although the lowest amounts of Bt toxin were detected in the growing leaf section of young leaves, this difference did not appear to influence the feeding behavior of 3rd instar S. littoralis.  相似文献   

17.
The effects of Bt transgenic cottons (Bt-I expressing cry1Ac and Bt-II expressing cry1Ab and cry2Ab or cry1Ab and cry1Fa) and non-Bt cottons on feeding, oviposition and longevity of adults, and development and survival of Liriomyza trifolii larvae were studied under laboratory conditions; and infestation on four Bt and two non-Bt cotton traits were investigated under field conditions. Laboratory choice and no-choice tests showed that L. trifolii adults were capable of distinguishing between Bt cottons and non-Bt cottons. In a choice test on younger plants (4-5 leaves), the adults were found more often and made more feeding punctures (FP) on non-Bt cottons than on Bt cottons. On older plants (8-9 leaves), adults made the most FP on non-Bt cotton followed by those on Bt-II cottons and the least on Bt-I cotton. The females oviposited more eggs (6.7 eggs per leaf) on non-Bt cotton than on Bt-I (1.7 eggs per leaf) and Bt-II (0.8 eggs per leaf) cottons on younger plants and oviposited similar numbers of eggs (0.7-1.3 eggs per leaf) on non-Bt and Bt cottons on older plants. In a no-choice test, the females also fed more FP on non-Bt cottons than on Bt cottons on both younger and older plants. The females oviposited more eggs (15.6 eggs per leaf) on non-Bt cotton than on Bt-I (8.2 eggs per leaf) and Bt-II (6.5 eggs per leaf) cottons on younger plants and similar numbers of eggs (2.5-3.3 eggs per leaf) on non-Bt and Bt cottons on older plants. Larval and puparial survivals were not different among Bt and non-Bt cottons. The occurrence and damage of leafminers on cottons in the field showed that L. trifolii infested more plants and leaves and had more mines on non-Bt cotton than on Bt cottons.  相似文献   

18.
转Bt基因抗虫棉对亚洲玉米螟抗性的研究   总被引:6,自引:0,他引:6  
对转Bt抗虫棉苏抗103与GK—22对玉米螟抗性的研究结果显示:(1)用苏抗103嫩叶、簧,花、蕾饲曩第三代玉米螟幼虫,最终幼虫校正死亡率分别达100%、95.83%、83.33%与100%。校正化蛹下降率分别达100%、92.31%、50.07%与100%,校正幼虫成蛾减退率分别达100%、90.92%、0%与100%。(2)人工饲料中加入5个不同浓度苏抗103嫩叶饲喂第二代幼虫,除0.4%浓度,幼虫校正死亡率与成蛹下降率均为100%,0.4%浓度的幼虫期延长20.68%,蛹重下降18.24%,蛹期延长19.79%。(3)人工饲料中加入5个浓度的苏抗103或GK22嫩叶分别饲喂第三代幼虫,苏抗103上幼虫校正死亡率较第二代有所下降,分别为3.04%、-16.68%、28.2%、33.33和75%。GK22上幼虫校正死亡率分别为3.13%、26.89%、45.69%、70.816%和68.09%。其幼虫校正死亡率及幼虫期、蛹期、成虫校正减退率均有随浓度增加而上升的趋势。较亲本棚,对蛹重、雌成虫寿命、单雌产卵量、卵孵化率也有一定程度的影响。上述研究结果表明,苏抗103与GK22影响棉田玉米螟幼虫与蛹的存活与生命力,进而影响其成虫繁殖力而表现出良好抗性。  相似文献   

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