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小麦中稳定的转基因表达和随机基因沉默

Stable transgene expression and random gene silencing in wheat.

作者信息

Anand Ajith, Trick Harold N, Gill Bikram S, Muthukrishnan Subbaratnam

机构信息

Department of Biochemistry, Kansas State Universuty, Manhattan, KS 66506, USA.

出版信息

Plant Biotechnol J. 2003 Jul;1(4):241-51. doi: 10.1046/j.1467-7652.2003.00023.x.

Abstract

Wheat genes for pathogenesis-related (PR-)proteins, chitinase and beta-1,3-glucanase, under the control of maize ubiquitin promoter-intron were used for transforming the spring wheat 'Bobwhite', using a biolistic approach. Twenty of the 24 primary transgenic lines expressing the PR-protein genes in the T0 generation were silenced in either the T1 or T2 generations. Two apparently genetically identical regenerants arising from a single callus co-bombarded with chitinase and beta-1,3-glucanase transgene combinations, but differing in the expression of the transgenes were selected for further characterization. In one homozygous line, transgene silencing was observed in the T3 plants, while the other line homozygous for the transgene loci stably expressed and inherited the transgenes to at least the T4 generation. Southern blot analyses of genomic DNA from the two lines using the isoschizomeric methylation-sensitive enzymes, MspI and HpaII, revealed a higher degree of methylation of CCGG sequences in the line with the silenced transgene locus. Analysis by reverse transcriptase-polymerase chain reaction, Northern blotting and Western blotting detected stable expression of the transgenes in the line with a lesser extent of methylation, whereas the line with a higher level of CCGG methylation had no transgene expression by the T3 generation. The germination of seeds from the silenced plants in the presence of a cytidine analogue, 5-azacytidine (azaC), did not lead to a reversion of this phenotype.

摘要

将受玉米泛素启动子-内含子控制的小麦病程相关(PR-)蛋白、几丁质酶和β-1,3-葡聚糖酶基因,采用生物弹道法用于转化春小麦“博比特”。在T0代中表达PR蛋白基因的24个初级转基因株系中有20个在T1或T2代中发生了沉默。从单个愈伤组织共轰击几丁质酶和β-1,3-葡聚糖酶转基因组合产生的两个明显基因相同的再生植株,但转基因表达不同,被选用于进一步表征。在一个纯合株系中,在T3代植株中观察到转基因沉默,而另一个转基因位点纯合的株系稳定表达并将转基因遗传至至少T4代。使用同裂酶甲基化敏感酶MspI和HpaII对这两个株系的基因组DNA进行Southern印迹分析,结果显示转基因沉默位点所在株系中CCGG序列的甲基化程度更高。通过逆转录聚合酶链反应、Northern印迹和Western印迹分析检测到甲基化程度较低的株系中转基因稳定表达,而CCGG甲基化水平较高的株系到T3代时没有转基因表达。在胞苷类似物5-氮杂胞苷(azaC)存在的情况下,沉默植株种子的萌发并未导致该表型的逆转。

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