...
首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Comparison of Detached Leaf Evaluations in Different Age of Transgenic Tomato Expressing Antimicrobial Peptide Gene (Ace-AMP1) Resistant to Early Blight Disease Caused By Alternariasolani
【24h】

Comparison of Detached Leaf Evaluations in Different Age of Transgenic Tomato Expressing Antimicrobial Peptide Gene (Ace-AMP1) Resistant to Early Blight Disease Caused By Alternariasolani

机译:表达抗微生物链霉菌引起的早疫病的表达抗菌肽基因(Ace-AMP1)的转基因番茄不同年龄的叶片评价的比较

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Tomato cultivar Arkavikas were transformed with Ace-AMP1 gene, regenerated plants were screened for the presence of gene and T1 transgenic leaves were used for detached leaf bioassay evaluations. Three different stages of transgenic tomato leaves were evaluated for resistance to early blight caused by the fungus Alternariasolani. Evaluations were conducted in three replications in growth chambers using detached leaves under controlled conditions. Leaf samples were plated on sterile blotting paper with 3 mm fungal plug along with respective control. Percentage of lesion diameter were calculated and compared with control for disease resistances. Forty day old leaf developed chlorotic lesions in 3 days and were more susceptible to disease when compared to 60 and 90 day old leaves and the correct age for detached leaf bioassay evaluation is 90 day old leaf. Transgenic line 10-7 was highly resistant towards Alternariasolani and moderate levels of resistance were observed in 7-2, 13-19 and 1-3. The detached leaf bioassay offers an early, compact and relatively fast method to detect resistance levels in transgenic plants when compared to other screening methods.
机译:用Ace-AMP1基因转化番茄栽培种Arkavikas,筛选再生植物的基因,并将T1转基因叶片用于离体叶片生物测定评估。评价了三个不同阶段的转基因番茄叶片对真菌链格孢菌引起的早疫病的抗性。在受控条件下,使用离体叶片在生长室中进行三次重复评估。将叶片样品与相应的对照一起铺在带有3mm真菌塞的无菌吸水纸上。计算病变直径的百分比并将其与对照进行抗病性比较。与60天和90天的叶子相比,四十天大的叶子在3天内出现了褪绿病病斑,并且更容易患病,分离叶生物测定评估的正确年龄为90天的叶子。转基因株系10-7对链霉菌高度抗性,在7-2、13-19和1-3中观察到中等水平的抗性。与其他筛选方法相比,离体叶片生物测定法提供了一种早期,紧凑且相对较快的方法来检测转基因植物中的抗性水平。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号