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      • KCI등재

        배추 무사마귀병 발병 억제 및 생육증진을 위한 달걀껍질 토양혼화처리 효과

        가오유량,김병관,임태헌,리규화,백기엽,차병진 한국식물병리학회 2009 식물병연구 Vol.15 No.2

        Before transplanting Chinese cabbage seedlings, two kinds of eggshell powder were blended into the soil of cabbage field where the clubroot pathogen, Plasmodiophora brassicae, was infested. The incidence of clubroot disease, the shoot and root growth of cabbages, and soil pH were examined four times at 10 to 13 days interval from transplanting Chinese cabbage. As results, the cabbages treated with eggshell powder without membrane showed the fastest growth in above ground part, and the lowest disease index for clubroot disease. The cabbages treated with eggshell powder with membrane showed better growth than the cabbages of non-treated check, but lower growth than those treated with eggshell powder without membrane. Soil pH started to increase from 3 weeks after soil blending of eggshell powder, and it reached to above 8.0. However, the soil pH of non-treated check stayed at around 6.8. In the experiment to compare the effect of eggshell powder with other calcium compounds, soil-blending of CaCO3 resulted the lowest disease incidence of 1.7 and the registered fungicide, ‘flusulfamide’, and the resistant variety ‘CR Green cabbage’ followed with the incidence of 1.9. Cabbages of non-treated check scored the highest disease incidence, 3.4, and that of eggshell powder without membrane was as high as 2.7. However, the growth of Chinese cabbage showed the different pattern to the disease incidence. Chinese cabbages treated with eggshell without membrane recorded the highest average growth, around 2.1 kg. On the other hand, the average growth of CR Green Chinese cabbage was about 2.0 kg, that of flusulfamide-treatment plot was 1.7, and that of non-treated check was as low as 1.3 kg. Soil blending of eggshell powder without membrane did not inhibit the development of clubroot, but increased the growth of cabbage to a great extent. Therefore, it was confirmed that soil blending of eggshell powder before transplanting makes the Chinese cabbage culture possible even in the field infested with clubroot pathogen. Before transplanting Chinese cabbage seedlings, two kinds of eggshell powder were blended into the soil of cabbage field where the clubroot pathogen, Plasmodiophora brassicae, was infested. The incidence of clubroot disease, the shoot and root growth of cabbages, and soil pH were examined four times at 10 to 13 days interval from transplanting Chinese cabbage. As results, the cabbages treated with eggshell powder without membrane showed the fastest growth in above ground part, and the lowest disease index for clubroot disease. The cabbages treated with eggshell powder with membrane showed better growth than the cabbages of non-treated check, but lower growth than those treated with eggshell powder without membrane. Soil pH started to increase from 3 weeks after soil blending of eggshell powder, and it reached to above 8.0. However, the soil pH of non-treated check stayed at around 6.8. In the experiment to compare the effect of eggshell powder with other calcium compounds, soil-blending of CaCO3 resulted the lowest disease incidence of 1.7 and the registered fungicide, ‘flusulfamide’, and the resistant variety ‘CR Green cabbage’ followed with the incidence of 1.9. Cabbages of non-treated check scored the highest disease incidence, 3.4, and that of eggshell powder without membrane was as high as 2.7. However, the growth of Chinese cabbage showed the different pattern to the disease incidence. Chinese cabbages treated with eggshell without membrane recorded the highest average growth, around 2.1 kg. On the other hand, the average growth of CR Green Chinese cabbage was about 2.0 kg, that of flusulfamide-treatment plot was 1.7, and that of non-treated check was as low as 1.3 kg. Soil blending of eggshell powder without membrane did not inhibit the development of clubroot, but increased the growth of cabbage to a great extent. Therefore, it was confirmed that soil blending of eggshell powder before transplanting makes the Chinese cabbage culture possible even in the field infested with clubroot pathogen.

      • KCI등재후보

        노거수 활력 측정 및 내부 부후 검출을 위한 비파괴검사법

        가오유량,차병진 국립문화재연구원 2009 헤리티지:역사와 과학 Vol.42 No.1

        노거수에 큰 피해를 주지 않고 나무의 활력과 내부 부후도를 알아내는 방법에는 목질부의 전기저항치 측정, 음파전달 속도 측정(초음파 측정법), 미세천공저항력 측정, 자외선의 이용 등 몇 가지 방법이 있다. 이 중 초음파 측정법은 나무에 전혀 상처를 남기지 않으며, 굵기가 매우 굵은 나무도 측정할 수 있다는 점에서 다른 방법들보다 더 뛰어나다. 그러나 초 음파측정기는 아직까지 많이 보급되어 있지 않으며 값이 비싼 것도 단점이다. 반면에 식물조직의 전기전도도를 측정하는 Shigometer는 나무의 활력이나 내부 부후 여부를 진단하는 데 아주 유용하게 사용할 수 있는 도구이며 매우 정확한 결 과를 얻게 하여 준다. 나무의 활력은 형성층의 전기저항치로써 알 수 있으며, 내부의 부후여부는 목질부의 전기전도도를 보고 알 수 있다. 형성층 전기저항을 측정하여 나무의 활력을 판정하고자 할 때는 판정하고자 하는 것과 같은 수종을 적 어도 수 십 그루 이상 미리 조사하여 표준식(standard equation)을 만들어 두어야 한다. 나무의 전기저항을 변화시킬 수 있는 요인들은 모두 포함하여야 하며, 특히 수종과 나무의 크기, 온도 요인들은 필수적이다. 현재 우리가 보호하여야 할 노거수의 수종들에 대한 표준식을 만들어 놓는다면 필요할 때에 아주 유용하게 사용할 수 있을 것이다. 또한 특정 나무의 형성층 전기저항치를 정기적이고 지속적으로 조사하면 누적된 조사치들과 비교하여 나무의 상태를 판정할 수 있다. 부후 여부를 진단하기 위한 목질부 전기저항 측정에서는 표준식이 필요하지는 않지만 수종별로 건전한 목질부 전기전도도를 확인해 두어야 하며, 줄기의 굵기가 굵을 때는 초음파 측정기를 함께 사용하는 것이 좋다. Nondestructive methods to check the vitality of trees and to find out internal decay of old-giant trees include the use of electrical resistance, ultrasound transmission time, microdrilling, and infrared thermography etc. Among these, ultrasound transmission offers some advantages compared to others such as it is an entirely nondestructive detection method and it can be applied to very big trees. However, the ultrasound equipment is comparatively expensive and not broadly spread yet. On the other hand, Shigometer is versatile to be applied to check vitality of the tree and find out internal decay. Electrical conductivity of plant tissues is a very useful characteristics to determine the vitality and internal decay of trees. Electrical resistance of cambial area tells about the vitality of a tree and electrical resistance of heartwood reveals discoloration or decay of it. For determination of the vitality of the tree, the standard equation for calibration of measured electrical resistances should be developed by measuring and analyzing electrical resistance from at least 30-40 trees of the same species with that tree. All the factors, especially tree species, diameter of the stem, and temperature, which can altered the electrical resistance of trees, should be taken into consideration in the development of the equation. If the standard equation is developed for old-giant trees that we should conserve, it will be very useful. In addition, periodical and continued measuring of a certain tree will help to determine the condition of the tree by comparing the measurement with accumulated data of the tree. Measuring electrical resistance of wood might not require the standard equation. But it also needs to check electrical resistance of sound wood of the same tree species. If the stems that should be examined is thicker than 40cm, it is better to use the ultrasound measurement combined to Shigometer.

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