Expression of a sulfur-rich maize seed storage protein, δ-zein, in white clover (shape Trifolium repens) to improve forage quality

被引:2
作者
Shashi B. Sharma
Kerrie R. Hancock
Paul M. Ealing
Derek W.R. White
机构
[1] Plant Molecular Genetics Laboratory,Grasslands Division, AgResearch
[2] Cunningham Laboratory,CSIRO, Division of Tropical Agriculture
来源
Molecular Breeding | 1998年 / 4卷
关键词
forage quality; HA epitope; seed storage protein; transgenic white clover; zein;
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中图分类号
学科分类号
摘要
A modified gene encoding a sulfur-rich maize seed storage protein, δ-zein, was introduced into white clover plants by Agrobacterium-mediated transformation. Expression of the gene was under the control of the double 35S promoter of cauliflower mosaic virus and the nopaline synthase gene transcription terminator. All of the transgenic plants expressing transgene-specific mRNA also accumulated δ-zein in their leaves. Levels of the HA epitope tagged δ-zein in the first fully expanded young leaves of different transgenic plants varied from 0.06 to 0.3% of total water-soluble protein. Expression of the protein was also detected in petioles, nodes, internodes, roots and seeds of the transgenic plants. N-terminal sequencing of the modified δ-zein from transgenic plants revealed that the protein is processed in white clover leaves as in maize seeds. All the transgenic plants expressing the δ-zein showed monogenic inheritance of the linked nptII gene conferring kanamycin resistance. The epitope tagged δ-zein is relatively stable in white clover leaves and in the highest expressing plants, its accumulation increased with increasing leaf age from 0.3 (youngest leaves) to 1.3% (oldest leaves) of total water-soluble protein. These results open up the possibility of using sulfur-rich and rumen-protected δ-zein to improve white clover forage quality.
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页码:435 / 448
页数:13
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  • [1] Allen GC(1996)High-level transgene expression in plant cells: effects of a strong scaffold attachment region from tobacco Plant Cell 8 899-913
  • [2] Hall G(1995)Accumulation of 15-kilodalton zein in novel protein bodies in transgenic tobacco Plant Physiol 107 13-23
  • [3] Michalowski S(1997)Coexpression of the maize δ-zein and β-zein genes results in stable accumulation of δ-zein in endoplasmic reticulum-derived protein bodies formed by β-zein Plant Cell 9 1683-1696
  • [4] Newman W(1996)RNA as a target and an initiator of posttranscriptional gene silencing in transgenic plants Plant Mol Biol 32 79-88
  • [5] Spiker S(1981)Protein metabolism in growing lambs fed on fresh ryegrass ( Br J Nutr 46 521-532
  • [6] Weissinger AK(1994))-white clover ( Plant J 6 957-968
  • [7] Thompson WF(1989)) pasture ad lib EMBO J 8 2195-2202
  • [8] Bagga S(1989)Reduced variation in transgene expression from a binary vector with selectable markers at the right and left T-DNA borders FEBS Lett 242 285-292
  • [9] Adams H(1976)The CaMV 35S enhancer contains at least two domains which can confer different developmental and tissue-specific expression patterns Anal Chem 72 248-254
  • [10] Kemp JD(1987)The refined 2.0 Å X-ray crystal structure of the complex formed between bovine β-trypsin and CMTI-I, a trypsin inhibitor from squash seeds ( Anal Biochem 162 156-159