No-tillage silage corn with legume hairy vetch(Vicia villosa Roth, HV) has renewed interest in supply of mineral N, soil erosion control at sloping land and weed control by cover of HV killed. This study was conducted to monitor concentration of soil mine
A pulse-chase labeling of on winter rye (Scale cereale) and forage rape (Brassica napus) grown at and was carried out to determine the effects of low temperature on the uptake exogenous N and the remobilization of endogenous N. The growth rate of leave
To elucidate the physiological responses of rice plants to the essential mineral silicon (Si), we assessed the effects of treatments with Si, nitrogen (NH4NO3; ammonium nitrate), and calcium (CaCl2; calcium chloride), independently or in combination on mineral uptake rates and levels of the hormones abscisic acid (ABA), gibberellin (GA1) and jasmonic acid (JA). We found that nitrogen and calcium uptake was inhibited by Si application. However, solo application of nitrogen or calcium did not affect Si uptake. Compared to the untreated plants, the application of Si, NH4NO3 or CaCl2 increased the endogenous hormone levels in treated plants. In particular, the concentrations of GA1 and JA increased significantly after the application of Si or NH4NO3. The level of GA1 observed after a treatment (solo or combine) with Si, and NH4NO3 was higher than that of the control. By contrast, independent application of CaCl2 or a combined treatment with Si and CaCl2 did not alter GA1 levels. The highest level of GA1 was present in plants given a combination treatment of Si and NH4NO3. This effect was observed at all time points (6 h, 12 h and 24 h). Endogenous JA contents were higher in all treatments than the control. In particular, a combination treatment with Si and NH4NO3 significantly increased the JA levels in plants compared to other treatments at all time points. A small increase in JA levels was observed after 6 h in plants given the CaCl2 treatment. However, JA levels did not differ between plants given a CaCl2 treatment and controls after 12 h or 24 h of exposure. We conclude that treatment with CaCl2 alone does not affect endogenous JA levels in the short term. Endogenous ABA contents did not show any differences among the various treatments.
논을 밭으로 1년 전환 후 다시 논으로 복원한 논에서의 벼의 생육촉진 및 질소흡수 증가의 효과를 살펴보기 위하여 복원논 1년 및 2년차인 2006년 및 2007년에 복원논 및 연작논을 대상으로 질소비료를 0, 3, 6 kg 10a1 시용하여 벼의 생육량, 질소흡수량, 쌀의 수량 및 단백질 함량 등을 조사하였는데 결과는 다음과 같다. 연작논에 비해 복원논에서 복원 1년 및 2년차 모두 벼의 초기생육이 크게 증가하여 유수형성기 건물중 및 질소함량이 증가하였으며, 복원논에서도 질소시비량 증가에 따라 건물중 및 질소량이 증가하여 질소시비량 6 kg 10a1까지 질소시비 효과가 뚜렷이 나타났는데, 복원논 1년차 및 2년차의 질소무비구의 건물중 및 질소흡수량은 각각 연작논의 질소시비량 6 및 3 kg 10a1와 동일한 값을 나타내었다. 수확기에서의 벼의 건물중 및 질소흡수량도 유수형성기와 비슷한 경향을 보였으며, 질소시비 방법으로는 같은 량의 질소시비량이라도 전량을 기비로 시용한 것보다 유수형성기에 추비로 3 kg 10a1를 시용한구가 질소흡수량이 다소 높았다. 수량구성요소에서는 연작논에 비해 복원논에서 벼의 수당립수가 증가하는 경향이었으며, 질소시비량이 많아질수록 등숙율이 감소하였는데, 특히 질소흡수량이 많았던 복원논-질소시비량 6 kg 10a1 구에서의 등숙비율이 많이 감소하였다. 벼의 수량도 복원논이 연작논에 비해 복원 1년차 및 2년차 모두 연작논보다 증가하였는데, 복원 1년차는 질소시비량간 벼수량의 차이가 없었지만, 복원 2년차에는 무질소시비구에서 벼의 수량이 다소 감소하였다. 현미 및 백미의 단백질 함량은 복원논이 연작논보다, 질소시비량이 증대할수록 높아졌는데, 질소시비방법에서는 질소시비량 모두 3, 6 kg 10a1 모두 유수형성기에서 추비로 3 kg 10a1를 준 구에서 높아 질소흡수량이 많은 복원논에서 질소를 추비로 줄 때 단백질함량이 증대할 위험성이 높았다.
표준시비량이 감소된 조건에서 좀 더 효율적인 질소시비방법을 확립하고 이들이 벼 수량 및 품질에 미치는 영향을 분석하고자 연차, 지역 및 품종별로 질소시비방법을 달리하여 검토한 결과를 요약하면 다음과 같다. 1. 연차, 지역 및 품종에 관계없이 질소의 수비시용 시기에 따른 수량과 현미단백질 함량에는 차이가 없었고, 질소분비비율을 기비-분얼비-수비로 50-30-20 혹은 70-0-30으로 하여 질소시용시기를 출수 전 25일에서 출수 전 15일로 늦출 때 현미 천립중과 현미완전미 비율이 증가하여 고품질쌀 생산에 유리하였다. 2. 쌀 수량, 현미천립중, 현미완전미율, 현미단백질 함량 모두 일부 지역 및 품종에서 유의성이 인정되었으나 전체적으로 분산시비와 기비중점시비간 차이가 없었다. 따라서 사질답과 같은 토양 양분 유실이 많은 조건을 제외하고는 기비중점 시비로 관행에 비하여 수량 감소 및 품질저하 없이 생산노력비 절감이 가능한 것으로 판단된다.
본 연구는 생식생장기의 습해에 의한 콩 수량과 질소 및 여러 가지 양분흡수에 미치는 영향을 알고자 지하수위를 0 cm, 10 cm 및 40 cm로 달리하여 조사하였다. 지하수위가 높음에 따라 생육과 수량은 감소되었으며 다원콩의 감소정도가 풍산나물콩보다 더 크게 나타났다. 질소흡수량은 지하수위가 높을수록 감소되었으며 수량과의 상관관계는 R2=0.872 로 고도로 유의한 정의상관을 보였다. K함량은 지하수위 높이에 큰 차이를 보이지 않았으며(뿌리 제외), Ca함량은 감소(잎, 줄기) 또는 증가(뿌리)하였지만 Mn과 Fe 함량은 지하수위가 높을수록 급격히 증가하였으며 다원콩이 풍산나물콩보다 높은 함량을 보였다.
This experiment was carried out on plastic pots (40cm~times25cm~times30cm ) filled with sand soil at greenhouse using two soybean cultivars with small seed; one was Pungsannamulkong (PSNK) recognized as a tolerant cultivar against excessive water stress and the other one was Sobaeknamulkong (SBNK) recognized as a susceptible cultivar. Seed was sown with 30 plants of 2 hills, and the amount of applied fertilizer was N; 3.0 g, P; 3.0 g, and K; 3.4 g per m2 with all basal fertilizations. Plants were grown under photoperiod of natural light with day temperature of 31~pm5~circC and night temperature of 22~pm1~circC . The flooding treatment was done for 3, 5, 7 and 10 days by filling pots with tap water up to 1 cm above the level of the soil surface when plants were 2 days after emerging. Nitrogen uptake by leaves of soybeans decreased significantly by the flooding after 6 days. This significant reduction of N uptake by flooding was evidently recognized from the chlorosis of leaves. The dry matter of flooded soybean seedlings significantly decreased compared to non-flooded soybean seedlings at 10 days. The dry matter of roots also showed similar result of the shoot. Shoots had more N reduction than roots under the flooding. This N reduction was more pronounce in SBNK than in PSNK. Chlorophyll content of flooded soybeans showed decreasing or non-increasing tendency, and the reduction of chlorophyll content was more in SBNK than in PSNK from the flooding stress. Nitrate content of soybean seedlings with flooding stress showed decreasing tendency in shoot and root parts. Ammonium content, however, was higher in flooding stress compared to the non-flooding. Flooding caused a remarkable change in the AA (amino acid) composition and TAA (total amino acid) concentration in the leaves of soybean seedlings.
2002년부터 2004년까지 수원의 작물과학원 논포장을 년차간 순차적으로 밭으로 전환하고 또 밭상태에서 우분을 누적투 입하면서 호밀과 옥수수의 윤작을 통하여 질소와 관련된 토양 특성, 작물의 건물수량 및 질소흡수량을 조사하였는데, 주요 결과는 다음과 같다. 논의 밭전환 1년차에는 밭사료작물, 특히 답리작 호밀의 생육과 수량이 현저히 감소하였으며, 그에 따라 우분시용에 의한 무기태질소 등 양분의 이용효율도 현저히 감소하였다. 그러나 전환년차의 증가와 함께 밭사료작물의 수량과 질소흡수량이 증가하였는데, 특히 밭상태에서 전환3년차까지 우분의 누적투입은 토양에의 무기태 질소공급과 더불어 옥수수의 수량, 질소흡수량 및 우분질소 이용률을 계속적으로 증가시켰다. 그 증가는 전환년차 증가에 따른 논토양 자체의 질소공급보다는 주로 우분시용에 의한 토양물리성 개선, 토양탄소 및 무기화 가능한 지력질소(가급태질소) 증가 등 지력증진에 크게 기인하였다. 따라서 전환밭에서 정상적인 밭사료작물의 수량을 얻기 위해서는 전환2년 이상의 기간이 필요하였으며, 이때 우분의 투입은 토양에 무기태질소 공급뿐만아니라 토양유기물 등 지력증진에도 효과적이었으며, 또한 그것이 누적적으로 투입될 때 그 효과가 증가되는 것으로 나타났다.
N fertilizer required by rice could be reduced greatly in the rice-barley double cropping system than in the rice single cropping system. This study was conducted to investigate how much of the N fertilizer during the early stage of rice in the rice-barley double cropping system, could be saved compared to that in the rice single cropping system. This experiment was carried out at the paddy field of the National Crop Experiment Station in Suwon, Korea during three years from 1999 to 2001. Amounts of soil mineral nitrogen (SMN) and SPAD values of rice leaf during rice growing season in the rice-barley double cropping system were higher than those in the rice single cropping system under the same amount of N application during two years. Yield and N uptakes of rice at harvesting time were also higher in the rice-barley double cropping system than in the rice single cropping system during two years. Yield and N uptake of rice in the rice single cropping system were decreased when basal N fertilizer was omitted, but those reductions were not found by either omitting basal N fertilizer or omitting N fertilizer at tillering stage in the rice-barley double cropping system during 2000 and 2001. But yield and N uptakes of rice were decreased by 70 kg/10a and 2kgN/10a by the omission of both N application at basal and tillering stages in the rice-barley double cropping system in 2002. It was concluded that N fertilizer as much as tillering N fertilizer could be saved in the rice-barley double cropping system.
돈분퇴비 시용시 산국 (Chrysanthemum boreale)의 수량과 유효성분들의 함량변화를 알아보고자 토양 16 kg이 충진된 와그너포트에서 돈분퇴비가 각각 0, 2000, 4000, 6000, 8000, 12000 kg 10a-1을 처리한 결과, 8000 kg 10a-1처리구에서 대조구보다 전체 수량과 꽃의 수량은 각각 5.9배 (195.0 g plant-1)와 24배 (21.7 g plant-1)가 증가한 것으로 조사되었다. 질소양분 이용율은 4000 kg 10a-1처리구가 66.6%로 가장 높았다. 꽃에서의 주요 아미노산은 proline (7.4~9.2 g kg-1)이였으며, 돈분퇴비의 시용량이 증가할수록 정의 상관관계를 보였다. Cumambrin A함량을 측정한 결과, 돈분퇴비 시용량에 의한 질소의 함량이 증가할수록 부의 상관관계가 나타났으나 (R2=-0.723, p〈0.01), 전체 수량면에서는 오히려 돈분퇴비의 시용량이 증가할수록 cumambrin A의 수량이 오히려 증가하였다. 이로서 돈분퇴비의 시용이 산국의 수량을 향상시킬 수 있을 것으로 기대되었다.
The responses of six mungbean [Vigna radiata (L.) Wilczek] varieties to Rhizobium inoculation on number and dry weight of nodules, nitrogenase activity of root nodule bacteria, dry weight of shoot and root, nitrogen content, and uptake by shoot were investigated. The mungbean varieties were BARI Mung-2, BARI Mung-3, BARI Mung-4, BARI Mung-5, BINA Moog-2, and BU Mung-1. Two-third seeds of each variety were inoculated with Rhizobium inoculant and the remaining one-third seeds were kept uninoculated. Rhizobium strains TAL 169 and TAL 441 were used for inoculation of seeds. Inoculation of seeds with Rhizobium strains significantly increased nodulation, nitrogenases activity, dry matter production, nitrogen content, and uptake by shoot of the crop compared to uninoculated control. There was positive correlation among the number and dry weight of nodules, nitrogenase activity, dry weight of shoot and root, nitrogen content, and uptake by shoot of the crop. It was concluded that BARI Mung-4 in association with Rhizobium strain TAL 169 performed best in recording nodulation, nitrogenase activity, dry matter production, and nitrogen uptake by shoot of mungbean.
Soybean can produce high-N residue due to N-fixation, so soybean rotation may increase yield of subsequent corn and reduce N fertilizer on the corn fairly. To find out the contribution of nitrogen to subsequent corn following soybean cultivation, soil nitrate, corn yield, and nitrogen uptake were measured for three continuous corn cropping years after soybean rotation. Three N rates of 0, 80, and 160 kg/ha were applied to three continuous corn following soybean cropping. At 6-leaf stage, soil nitrate amount at the soil depth of 0-30cm ranged from 60 to 80 kgN/ha higher in the first corn cropping year than that in the second and third corn cropping years. Judging from corn N status such as SPAD value, N concentration of ear-leaf and stover at silking stage, N contribution of previous soybean to corn in the first corn year was N fertilizer of approximately 80 kg N/ha. Stover N uptake at silking stage increased from 47 to 52 kg N/ha at the 0, and 80 kg N/ha of N rates in the first corn cropping year compared with those in the second and third corn cropping years. Corn grain yield at the 0 kg N/ha of N rate was 6-7 ton/ha higher in the first corn cropping year than that in the second and third corn cropping years, respectively. When compared the first corn year following soybean cropping with the second and third corn cropping years, N uptake of grain and stover at harvest with low N rates such as 0 and 80 kg N/ha increased from 45 to 67kg N/ha, from 35 to 60 kg N/ha, respectively. N uptake of whole plant by soybean rotation increased from 93 to 118 kg N/ha in the first year compared with that in the second and third corn cropping years. However, the N contribution by soybean cropping was small in the second and third continuous corn cropping years. Therefore, it was concluded that the nitrogen fertilizer of 80-100 kg N/ha in the first corn cropping year could be saved by soybean rotation and annual alternative corn-soybean rotation could be the best rotation system