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Effect of cadmium on growth and photosynthesis of tomato seedlings

机译:镉对番茄幼苗生长和光合作用的影响

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摘要

A hydroponic experiment carried out to study the effect of five Cd levels on growth and photosynthesis of two tomato cultivars showed that the addition of 0.1 μmol/L Cd induced a slight increase in plant height of Hezuo 903 and the SPAD (the Soil–Plant Analyses Development) value of the 2 cultivars. However, at higher Cd levels, i.e., 1 and 10 μmol/L, root length and volume, plant height, and SPAD value were all significantly reduced. On an average of the 2 cultivars, exposure to 1 and 10 μmol/L Cd for 33 d reduced plant height by 18.9% and 46.4% and SPAD value by 11.2% and 31.6%, compared with control, respectively. Similarly, root length was reduced by 41.1% and 25.8% and root volume by 45.2% and 63.7%, respectively. The addition of Cd in the growth medium also had significant deleterious effect on net photosynthetic rate (Pn) and intracellular CO2 concentration (Ci), with Pn being reduced by 27.2% and 62.1% at 1 μmol/L and 10 μmol/L Cd treatments compared to the control, respectively, while Ci increased correspondingly by 28.4% and 39.3%.
机译:通过水培试验研究了5种Cd水平对两个番茄品种生长和光合作用的影响,结果表明,添加0.1μmol/ L Cd可以使Hezuo 903和SPAD的株高略有增加(土壤-植物分析开发)这两个品种的价值。然而,在较高的镉水平下,即1和10μmol/ L,根的长度和体积,植株高度和SPAD值均显着降低。平均而言,与对照相比,在两个品种中,分别暴露于1和10μmol/ L Cd中33 d可使株高降低18.9%和46.4%,SPAD值降低11.2%和31.6%。同样,根长分别减少了41.1%和25.8%,根体积分别减少了45.2%和63.7%。在生长培养基中添加Cd对净光合速率(Pn)和细胞内CO2浓度(Ci)也具有显着的有害影响,在1μmol/ L和10μmol/ L Cd处理下,Pn分别降低27.2%和62.1%与对照组相比,Ci分别增加了28.4%和39.3%。

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