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Characteristic analysis of tetra-resistant genetically modified rice

机译:四抗转基因水稻的特性分析

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摘要

In this study, the characteristic of three transformants named as B1C106-1, B1C106-2, and B1C106-3 were studied that carried three innate resistant genes Bph14,Bph15,and Xa23,and two enthetic resistant genes Cry1Ca#and Bar. The five resistant genes were all verified by PCR and the two enthetic genes were identified in single copy insertion by Southern blot. At tillering stage, the Cry1C and PAT (phosphinothricin acetyl transferase) protein contents in leaf, sheath, and stem of T2generation were in the similar pattern: leaf>stem>sheath, and showed significant difference (P<0.01) among three organs. The average contents of Cry1C protein in plant of B1C106-1, B1C106-2, and B1C106-3 were 12.95, 6.57, and 11.30 μg g–1, respectively, and showed significant difference (P<0.01) among them. However, the average contents of PAT in plant of B1C106-1, B1C106-2, and B1C106-3 were 28.54, 27.66, and 28.02 μg g–1, respectively, and there were no significant difference among three transformants. The glufosinate tolerable concentration of three transformants of T3 generation reached at least 6 g L–1, and the mortality of rice leaf rollers were above 97.4% in 5 days after being fed with fresh transformants' leaves. The Cry1C protein toxicity was also assessed by silkworms, and the mortality of silkworms feeding mulberry leaves smeared with Cry1C protein extracts of leaves of B1C106-1, B1C106-2, and B1C106-3 were 90, 67.8, and 87.8%, respectively, that were positive correlation (r=0.993) with Cry1C protein contents in plant of three transformants. The three transformants also maintained high resistance to brown planthopper and bacterial blight as the original version. The above results indicate the tetra-resistant rice germplasm was well-developed by pyramiding innate and enthetic resistant genes in an elite line to provide with resistances of glufosinate, rice leaf roller, brown planthopper, and bacterial blight.
机译:在该研究中,研究了以B1C106-1,B1C106-2和B1C106-3的三种转化体的特征进行了研究,其携带三个先天抗性基因BPH14,BPH15和XA23,以及两个敏捷的抗性基因Cry1CA#和Bar。通过PCR验证五种抗性基因,并通过Southern印迹以单拷贝插入鉴定出两种焓基因。在分蘖期,Cry1C和PAT(膦腈素乙酰转移酶)叶片,护套和T2Generation的茎中的蛋白质含量在类似的图案:叶片>茎>护套中,并且在三个器官中显示出显着差异(P <0.01)。 B1C106-1,B1C106-2和B1C106-3的植物中Cry1C蛋白的平均含量分别为12.95,6.57和11.30μgg-1,并在其中显示出显着差异(P <0.01)。然而,B1C106-1,B1C106-2和B1C106-3的植物植物的平均含量分别为28.54,27.66和28.02μgg-1,三种转化体之间没有显着差异。 T3代的三种转化体的泡磺酸膦耐受浓度达到至少6g L-1,并且在用新鲜转化体的叶子进料后5天内,水稻叶片的死亡率高于97.4%。 Cry1C蛋白质毒性也被蚕评估,饲喂桑蚕叶片的蚕叶片的死亡率分别用B1C106-1,B1C106-2和B1C106-3的叶片的Cry1C蛋白提取物涂抹,分别为90,67.8和87.8%在三种转化体的植物中具有Cry1C蛋白质含量的正相关(R = 0.993)。三种转化体也保持着高抗褐色Planthopper和细菌枯萎作为原始版本。上述结果表明,通过精英生产线中的金属酸酯和敏捷的基因,通过精英生产线的抗抗性基因提供了抗性水稻种质的抗性稻种质良好,以提供甘氟磺酸盐,水稻叶片,棕色植物锅和细菌枯萎的抗性。

著录项

  • 来源
    《农业科学学报(英文版)》 |2018年第3期|493-506|共14页
  • 作者单位

    Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, P.R.China;

    University of Chinese Academy of Sciences, Beijing 100049, P.R.China;

    Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, P.R.China;

    State Key Laboratory of Hybrid Rice/Hunan Hybrid Rice Research Center, Changsha 410125, P.R.China;

    Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, P.R.China;

    Hunan Plant Protection Institute, Hunan Academy of Agricultural Sciences, Changsha 410125, P.R.China;

    Sericultural Research Institute of Hunan Province, Changsha 410125, P.R.China;

    State Key Laboratory of Hybrid Rice/Hunan Hybrid Rice Research Center, Changsha 410125, P.R.China;

    Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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