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Optimum D.C. electric field strength for growth acceleration of thale cress

机译:最佳DC电场强度可促进拟南芥的生长

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We have studied the influence of D.C. electric field on plant growth. Raphanus sativus longipinnatus (daikon radish) and Arabidopsis thaliana (thale cress) were used as sample. Thale cress is widely used as one of the model organisms for studying plant sciences, because its genome has been already sequenced. In the previous paper, we had reported the following results for daikon radish: (a) The application of D.C. electric field improves the seed germination rate. (b) The D.C. electric field increases the length and the weight. (c) The D.C. electric field encourages the consumption of substances which is stored in the seed. The following results had been also reported for thale cress: (d) The D.C. electric field accelerates the seed germination. (e) The D.C. electric field exerts no effect on seed germination when the electric potential of the thale cress is grounded. It is expected that there is an optimum strength of D.C. electric field for plant growth acceleration. As the first step to seek the optimum strength, we adopted 2.5kV/m and 10.0kV/m. Namely, the seeds of thale cress were cultivated under D.C. electric field of 2.5kV/m and 10.0kV/m. As a result, the growth of the sample was more promoted by 10.0kV/m D.C. field than by 2.5kV/m D.C. field.
机译:我们已经研究了直流电场对植物生长的影响。以萝卜萝卜(萝卜)和拟南芥(水芹)为样品。 Thale水芹被广泛用作研究植物科学的典型生物之一,因为它的基因组已经被测序。在以前的论文中,我们已经报道了萝卜萝卜的以下结果:(a)直流电场的应用提高了种子的发芽率。 (b)直流电场增加了长度和重量。 (c)直流电场鼓励消耗种子中存储的物质。还报道了关于拟南芥的以下结果:(d)直流电场加速了种子发芽。 (e)当拟南芥的电位接地时,直流电场对种子发芽没有影响。期望有直流电场的最佳强度以促进植物生长。作为寻求最佳强度的第一步,我们采用了2.5kV / m和10.0kV / m。即,在2.5kV / m和10.0kV / m的直流电场下栽培拟南芥的种子。结果,与2.5kV / m D.C.场相比,在10.0kV / m D.C.场中样品的生长更加促进。

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