The Behaviors of Phosphorus-32 and Ptoassium-42 under the Control of Thermoperiod and Potassium Level

가리(加里)와 온도주기성(溫度週期性)이 고구마 생육(生育) 및 인(燐)-32, 가리(加里)-42 동태(動態)에 미치는 영향(影響)

  • Kim, Y.C. (Korea University College of Agriculture)
  • Published : 1968.12.31

Abstract

1. The experiment was carried out for investigating the interaction between potassium nutrition and thermoperiod (as an environment regulating factor) in relation to behaviors of several nutrients including phosphorus-32 and Potassium-42 in IPOMOEA BATAS. 2. To obtain same condition to trace the behaviors of phosphorus and potassum-42 they were simultaneously incorporated to roots. The determination of each CPM by counting twice with adequate interval and calculating true CPM of each isotope according to different half-life, was carried out with satisfactory. 3. Some specific symptoms i.e, chlorosis and withering of growing point under the condition of lower potassium level were found and was accelerated by the low night temperature. 4. A manganese shortage in growing point of the lower potassium level was found by activiation analysis and very low distribution ratio of phosphorus-32 and potassium-42 in the growing point of the lower potassium level was manifested, though the contents of nitrogen, phosphorus, potassium, sodium and magnesium were not in great difference. 5. In addition to the low water content with appearence of "hard", shorterning internode and lower ratio of roots to shoot as well as the symptoms of potassium deficiency such as brown spot in leaf blade and necrosis of leaf margin were appeared at later stage of experiment at the lower potassium level. 6. Very stimulating vegetative growth, e.g, large plant length, leaf expansion, increasing node number and fresh weight as well as high ratio of roots to shoot, high water content was resulted in the condition of higher potassium level. 7. A specific interaction between higher potassium level and thermoperiod was found, that is, the largest tuber production and the largest ratio of roots to shoot were resulted in the combined condition of higher potassium level and constant temperature while the largest plant length, fresh weight etc. i.e. the most stimulative vegetative growth was resulted in the combined condition of higher potassium level and low night temperature. 8. Comparatively low water content in the former condition of stimulative tuber production was resulted(especially at the tuber thickening stage), while high water content in the latter condition of stimulative vegetation was resulted though the higher potassium level made generally high water contents. 9. The nitrogen contents of soluble and insoluble did not make distinct difference between the lower and higher potassium level. 10. Though the phosphorus contents were not distinctly different by the potassium level, the lower potassium level made the percentage of phosphorus increased at tuber forming stage accumulating more phosphorus in roots, while the higher potassium level decreased percentage of phosphorus at that stage. 11. The higher potassium level made distinctly high potassium contents than the lower potassium level and increased contents at the tuber forming stage through both conditions. 12. The sodium contents were low in the condition of higher potassium level than the lower potassium level and decreased at tuber forming stage in both conditions, on the contary of potassium. 13. Except the noticeable deficeney of manganese in the growing point of the lower potassium level, mangense and magnesium contents in other organs did not make distinct difference according to the potassium level. 14. Generally more uptake and large absorption rate of phosphorus-32 and potassium-42 were resulted at the higher potassium level, and the most uptake, and the largest absorption rate of phosphorus and potassium-42 (especially potassium-42 at tuber forming stage) were resulted in the condition of higher potassium level and constant temperature which made the highest tuber production. 15. The higher potassium level stimulated the translocation of phoshorus-32 and potassium-42 from roots to shoots while the lower potassium level suppressed or blocked the translocation. 16. Therefore, very large distribution rate of $p^{32}$, $K^{42}$ in shoot, especially, in growing point, compared with roots was resulted in the higher potassium level. 17. The lower potassium level suppressed the translocation of phosporus-32 from roots to shoot more than that of potassium-42. 18. The uptake of potassium-42 and translocation in IPOMOEA BATATAS were more vivid than phosphorus-32. 19. A specific interaction between potassium nutrition and thermoperiod which resulted the largest tuber production etc. was discussed in relation to behaviors of minerals and potasium-42 etc. 20. Also, the specific effect of the lower and higher potassium level on the growth pattern of IPOMOEA BATATAS were discussed in relation to behaviors of minerals and isotopes. 21. An emphasize on the significance of the higher potassium level as well as the interaction with the regulating factor and problem of potassium level (gradient) for crops product ion were discussed from the point of dynamical and variable function of potassium.

영양조건(營養條件)으로서 가리(加里)가 대사과정(代謝過程)의 활성화(活性化) 내지조정자(乃至調整者)라는 견지(見地)에서 가리공급수준과(加里供給水準) 생태적조정조건(生態的調整條件)이라고 볼 수 있는 온도주기성(溫度週期性)이 고구마 생육(生育)과 몇 가지 동위원소(同位元素) 동태(動態)에 미치는 영향(影響)을 살피었다. 역경배양하(礫耕培養下) 저수준가리구(低水準加里區)(3m.e/l)는 생장(生長)을 현저(顯著)히 억제(抑制)할 뿐 아니라 말기(末期)에는 대리(待異)한 생장점(生長點) 위조현상(萎凋現象) 등을 나타나게 하였다. 고수준가리구(高水準加里區)(14m.e/l) 특히 암기저온구(暗期低溫區)는 현저(顯著)한 초장(草丈), 마디수(數), 생체중증대(生體重增大)를 가져오고 질소효과와 비슷한 영양생장촉진생육상(營養生長促進生育相)을 나타냈으나 함유질소(含有窒素)를 분석(分析)한 결과 저수준가리구(低水準加里區)가 평균(平均) 2.86~3.23% 고수준가리구(高水準加里區)가 2.91~3.41%로서 큰 차이(差異)를 나타낸 것으로 볼 수 없다. 따라서 고수준가리구(高水準加里區)의 영양생장촉진형(營養生長促進型) 유도(誘導) 특히 초장촉진(草丈促進)은 가리(加里)가 질소흡수(窒素吸收)를 촉진(促進)한데 연유(然由)한 것이 아니라 가리자체(加里自體)의 효과로 보인다. 저수준가리구(低水準加里區)에서는 괴근형성(塊根形成)이 불능(不能)하였지만 고수준가리구(高水準加里區)에서는 영양생장촉진생육상(營養生長促進生育相)에 수반하며 질소효과와는 달리 후기(後期)에는 괴근형성(塊根形成)도 왕성(旺盛)하였다. 고수준가리구중(高水準加里區中)에서도 암기저온구(暗期低溫區)에서는 더욱 영양생장촉진경향(營養生長促進傾向)이 원저(願著)하고 암기고온구(暗期高溫區)에서는 지상부대지하부비(地上部對地下部比), 또는 괴근비(塊根比)가 월등(越等)하여 원래(元來)의 온도주기성(溫度週期性)의 효과가 고수준가리(高水準加里)에 의(依)하며 변화(變化)된 것으로 보인다. 인(燐)-32 가리(加里)-42의 개체당(個體當) 흡수(吸收) 및 흡수율(吸收率)은 고수준(高水準) 가리구(加里區)에서 현저(顯著)하고 특(特)히 괴근형성기(塊根形成期) 및 괴근생성(塊根生成)이 가장 왕성(旺盛)한 구(區)에서 증대(增大)되고 있나 p-32보다 k-42동태(動態)가 이점(點)에 관하여 더 활발(活潑)한 것을 볼 수 있다. 저수준가리구(低水準加里區)에서는 P-32, K-42의 지상부(地上部)로의 이동(移動)이 억제(抑制)되고 고수준가리구(高水準加里區)에서는 촉진(促進)되고 있다. 즉 가리(加里)가 인(燐)-32와 가리(加里)-42의 지상부전이(地上部轉移) 특(特)히 생장점(生長點)으로의 전이(轉移)에 밀접(密接)한 관계(關係)를 가지고 있다. 가리함량(加里含量)은 고수준가리구(高水準加里區)에서 높고 근신장기(根伸長期)보다 괴근형성기(塊根形成期)에 감에 따라 증가(增加)되고 있지만 인산함량(燐酸含量)은 별차이(別差異)가 없고 나토리움함량(含量)은 가리(加里)와 대조적(對照的)으로 정반대(正反對)의 경향(傾向)을 나타내고 있다. 가리(加里)는 온도주기성(溫度週期性)의 관여하(關與下) 고구마생장(生長)에 지리(持異)한 효과를 나타내고 또 P-32, K-42이동(移動)등 기본적(基本的) 대사과정(代謝過程)에 관여(關與)하기 때문에 공급량(供給量)이나 조건(條件)에 따라서 다양적효과를 가질 수 있는 영양요소(營養要素)라고 본다. 본연구(本硏究)를 지도(指導)하신 조백현원자력위원(趙伯顯原子力委員)과 협조(協調)하여주신 국제원자력기구(國際原子力機構) 및 가리연구회(加里硏究會)에 심사(深謝)한다.

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