$Cd^{2+}$에 의한 닭의장풀의 생리적 독성에 salicyclic acid가 미치는 영향

The Effect of Salicylic Acid on $Cd^{2+}$-induced Physiological Toxicity in Commelina communis L.

  • 이준상 (상지대학교 생명과학과)
  • 발행 : 2002.03.01

초록

3주간 생장한 닭의장풀을 Hoagland용액에서 3주 동안 수경배양하면서, 100$\mu$M C$d^{2+}$과 100$\mu$M salicylic acid(SA)를 처리한 후 성장, 엽록소 함유량, 수분퍼텐셜, 엽록소 형광, 광합성능 및 기공전도도를 조사하였다. Hoagland용액에 C$d^{2+}$ 처리시 3주 동안 2.1cm생장했으나, 대조구는 7.2cm생장했다. 반면에 C$d^{2+}$ + SA 처리구는 1주 동안 0.7cm자랐으며, 2주 후에는 생장이 멈추거나 고사되었다. 엽록소 함량은 C$d^{2+}$ 처리구는 대조구에 비해 3주 때 7% 그리고 C$d^{2+}$ + SA처리구는 86% 억제되었다. 대조구와 C$d^{2+}$ 처리구는 1주와 2주 때를 제외하고는 정상적인 엽록소 a/b 비율을 보여주었으나, C$d^{2+}$ + SA 처리구는 1.6 이하를 보여주었다. Fv/Fm 측정 결과 C$d^{2+}$처리는 Fv/Fm값에 큰 영향을 주지 않았으나, C$d^{2+}$ + SA처리구는 대조구에 비해 2주간 처리한 경우 27%억제하였다. 수분퍼텐셜을 살펴보면 C$d^{2+}$ 처리구는 대조구에 비해 1주, 2주, 3주에서 16-39% 증가되었다. C$d^{2+}$ + SA 처리구에서는 수분퍼텐셜이 40-78% 억제되었다. $CO_2$농도의 차이에 따른 광합성능은 대조구에 비해 모든 광 조건에서 C$d^{2+}$ 처리구는 12-15%내에서 억제되었으나, C$d^{2+}$ + SA처리구는 37-58% 억제되었다. 기공전도도는 대조구에 비해 500과 1,000$\mu$mo1 $m^{-2}$ $s^{-1}$광도에서 C$d^{2+}$ 처리구는 21%와 31% 각각 기공전도도가 억제되었으며, C$d^{2+}$ + SA 처리구는 모든 광조건에서 14-46% 기공전도도가 억제되었다. 이들 결과로부터 C$d^{2+}$에 대한 내성 시스템은 미미하게나마 작동되나, C$d^{2+}$ + SA처리구는 두 화합물의 이중 효과에 의해 전반적인 생리 활성을 억제하여, 결국에는 식물의 고사를 유도하는 것으로 사료된다.

The effect of salicylic acid (SA) on C $d^{2+}$ - induced physiological toxicity in Commelina communis was investigated. 3- weeks old Commelina communis was transferred to and grown in Hoagland solution in the presence or absence of 100 $\mu$M C $d^{2+}$ and SA for 3 weeks. In the treatment of C $d^{2+}$ + SA, the length of stem was increased to 0.7 cm for 3 weeks (C $d^{2+}$, 2.1cm; control, 7.2 cm). C $d^{2+}$ + SA reduced total chlorophyll content up to 86%, and changed chlorophyll a/b ratio below 1.6. C $d^{2+}$ + SA also reduced about 40-78% of water potential, but C $d^{2+}$ increased 16-39% from 1 week to 3 weeks. C $d^{2+}$ + SA also inhibited 27% of Fv/Fm, but in case of C $d^{2+}$, Fv/Fm was not changed. The treatment of C $d^{2+}$ + SA showed about 37-58% inhibition of photosynthetic activity when measured at various light intensity (500-1000 $\mu$mol $m^{-2}$ $s^{-1}$ ). In the case of C $d^{2+}$ treatment, photosynthetic activity was inhibited to 12-15%. Similar effect was found in terms of stomatal conductance. Therefore, it could be concluded that the treatment of C $d^{2+}$ + SA into plant decrease or block various physiological activities and lend to die by double effects of both chemicals.cts of both chemicals..

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