Yeargan R, Maiti I B, Nielsen M T, Hunt A G, Wagner G J
Agronomy Department, University of Kentucky, Lexington 40546-0091.
Transgenic Res. 1992 Nov;1(6):261-7. doi: 10.1007/BF02525167.
Since agricultural crops contribute > 70% of human cadmium (Cd) intake, modification of crops to reduce accumulation of this pollutant metal during plant growth is desirable. Here we describe Cd accumulation characteristics of seedlings and field grown tobacco plants expressing the Cd-chelating protein, mouse metallothionein I. The objective of the transformation is to entrap Cd in roots as Cd-metallothionein and thereby reduce its accumulation in the shoot. Transformed and control seedlings were exposed for 15 days in liquid culture at a field soil-solution-like Cd concentration of 0.02 microM. Transformed seedlings of Nicotiana tabacum cultivar KY 14 contained about 24% lower Cd concentration in shoots and about 5% higher Cd concentration in roots than control seedlings. Dry weights of transformed and control tissues did not differ significantly. In the field in 1990, mature transformed N. tabacum cv. KY 14 plants exposed only to endogenous soil Cd contained about 14% lower leaf lamina Cd concentration than did controls. Differences were significant at the p < or = 0.1 level in 13 of 16 leaf positions. Leaf dry weight did not differ significantly but transformed field plants had 12% fewer leaves and were 9% shorter than the controls. Copper (Cu) concentration was significantly higher (ca10%) in the bottom nine leaf positions of transformed plants suggesting that reduced leaf number and plant height may be due to Cu deficiency or toxicity. Alternatively, somaclonal variation or gene position effects may be involved. No differences were found in zinc levels. With N. tabacum cv. Petit Havana, transformed seedlings contained no less Cd in shoots but 48% higher Cd concentration in roots.(ABSTRACT TRUNCATED AT 250 WORDS)
由于农作物占人类镉(Cd)摄入量的70%以上,因此改良作物以减少这种污染金属在植物生长过程中的积累是很有必要的。在此,我们描述了表达镉螯合蛋白——小鼠金属硫蛋白I的烟草幼苗和田间种植烟草植株的镉积累特性。转化的目的是将镉以镉 - 金属硫蛋白的形式截留在根部,从而减少其在地上部分的积累。将转化苗和对照苗在液体培养中以类似于田间土壤溶液的0.02微摩尔/升镉浓度暴露15天。烟草品种KY 14的转化苗地上部分镉浓度比对照苗低约24%,根部镉浓度比对照苗高约5%。转化组织和对照组织的干重没有显著差异。1990年在田间,仅暴露于内源土壤镉的成熟转化烟草品种KY 14植株叶片镉浓度比对照低约14%。在16个叶位中的13个,差异在p≤0.1水平显著。叶片干重没有显著差异,但转化的田间植株叶片数量少12%,高度比对照矮9%。转化植株底部九个叶位的铜(Cu)浓度显著更高(约10%),这表明叶片数量减少和植株变矮可能是由于铜缺乏或毒性。或者,可能涉及体细胞克隆变异或基因位置效应。锌水平没有差异。对于烟草品种 Petit Havana,转化苗地上部分镉含量并不低于对照,但根部镉浓度高48%。(摘要截短于250字)