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The Segregation Pattern of Insect Resistance Genes in the Progenies and Crosses of Transgenic Rojolele Rice

机译:转Rojolele水稻后代和杂交后代中抗虫基因的分离模式。

摘要

Successful application of genetic transformation technique, especially in developing rice variety resistant to brown plant hopper and stem borer, will depend on transgene being expressed and the gene inherited in a stable and predictable manner. This study aimed to analyse transgene segregation pattern of the progenies and the crosses of transgenic rice cv. Rojolele harboring cry1Ab and gna genes. The third generation (T2) of fivetransgenic Rojolele events containing gna and/or cry1Ab were evaluated for two generations to identify the homozygous lines and to study their inheritance. The homozygous lines were selected based on the result of PCR technique. The segregation patterns of gna and cry1Ab were studied in eight F2 populations derived from Rojolele x transgenic Rojolele homozygous for cry1Ab and or gna and their reciprocal crosses. Data resulted from PCR of F2 population were analysed using a Chi Square test. The study obtained six homozygous lines for gna, namely A22- 1-32, A22-1-37, C72-1-9, F11-1-48, K21-1-39, K21-1-48, and two homozygous lines for cry1Ab, namely K21-1-39 and K21- 1-48. Both cry1Ab and gna transgenes had been inherited through selfing and crossing with their wild type as indicated from the F1 containing gna and cry1Ab as many as 48.4% and 47.4%, respectively. In six of the eight crosses, gna was inherited in a 3:1 ratio consistent with Mendelian inheritance of a single dominant locus, while in the remaining two crosses, gna was segregated in a 1:1 ratio. The presence of cry1Ab in F2 populations also showed a 3:1 segregation ratio in all crosses. In the F2 population derived from F1 plant containing cry1Ab and gna, both transgenes segregated in a 9:3:3:1 dihybrid segregation ratio. This study will add to the diversity of genetic sources for insect resistance and allow further use of these transgenic lines for pyramiding resistance to brown plant hopper and stem borer or separately in rice breeding programs whenever the efficacy tests and biosafety requirements have been completed.
机译:基因转化技术的成功应用,特别是在开发对褐飞虱和茎stem虫具有抗性的水稻品种中,将取决于转基因的表达和基因的稳定和可预测方式。本研究旨在分析转基因水稻cv的后代和杂交的转基因分离模式。 Rojolele带有cry1Ab和gna基因。对包含gna和/或cry1Ab的五个转基因Rojolele事件的第三代(T2)进行了两代评估,以鉴定纯合系并研究其遗传。基于PCR技术的结果选择纯合系。在来自cry1Ab和/或gna及其交叉杂交的Rojolele x转基因Rojolele纯合子的八个F2种群中研究了gna和cry1Ab的分离模式。使用卡方检验分析了F2群体的PCR数据。该研究获得了六个gna纯合系,即A22-1-32,A22-1-37,C72-1-9,F11-1-48,K21-1-39,K21-1-48和两个纯合系对于cry1Ab,即K21-1-39和K21-1-48。从含有gna和cry1Ab的F1分别表明,cry1Ab和gna转基因均通过自交和与其野生型杂交而遗传,分别高达48.4%和47.4%。在八个杂交中的六个杂交中,gna以3:1的比例遗传,与单个显性位点的孟德尔遗传一致,而在其余两个杂交中,gna的遗传比例为1:1。 F2群体中cry1Ab的存在在所有杂交中也显示出3:1的分离比率。在源自含有cry1Ab和gna的F1植物的F2群体中,两个转基因均以9:3:3:1的双杂种分离比分离。这项研究将增加昆虫抗药性的遗传资源的多样性,并在功效测试和生物安全要求已完成时,允许将这些转基因品系进一步用于对褐飞虱和茎stem的抗药性,或在水稻育种计划中单独使用。

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