• 제목/요약/키워드: Optimum harvest stage

검색결과 65건 처리시간 0.026초

Potential of four corn varieties at different harvest stages for silage production in Malaysia

  • Nazli, Muhamad Hazim;Halim, Ridzwan Abdul;Abdullah, Amin Mahir;Hussin, Ghazali;Samsudin, Anjas Asmara
    • Asian-Australasian Journal of Animal Sciences
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    • 제32권2호
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    • pp.224-232
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    • 2019
  • Objective: Apart from various climatic differences, corn harvest stage and varieties are two major factors that can influence the yield and quality of corn silage in the tropics. A study was conducted to determine the optimum harvest stage of four corn varieties for silage production in Malaysia. Methods: Corn was harvested at four growth stages; silking, milk, dough, and dent stages from four varieties; Sweet Corn hybrid 926, Suwan, breeding test line (BTL) 1 and BTL 2. Using a split plot design, the treatments were then analysed based on the plant growth performance, yield, nutritive and feeding values followed by a financial feasibility study for potential commercialization. Results: Significant differences and interactions were detected across the parameters suggesting varying responses among the varieties towards the harvest stages. Sweet Corn was best harvested early in the dough stage due to high dry matter (DM) yield, digestible nutrient, and energy content with low fibre portion. Suwan was recommended to be harvested at the dent stage when it gave the highest DM yield with optimum digestible nutrient and energy content with low acid detergent fibre. BTL 1 and BTL 2 varieties can either be harvested at dough or dent stages as the crude protein, crude fibre, DM yield, DM content, digestible nutrient and energy were not significantly different at either stage. Further financial analysis showed that only Sweet Corn production was not financially feasible while Suwan had the best financial appraisal values among the grain varieties. Conclusion: In conclusion, only the grain varieties tested had the potential for silage making according to their optimum harvest stage but Suwan is highly recommended for commercialization as it was the most profitable.

Influences of Different Planting Times on Harvest Index and Yield Determination Factors in Soybean

  • Park, Sei-Joon;Kim, Wook-Han;Seong, Rak-Chun
    • 한국작물학회지
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    • 제45권2호
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    • pp.97-102
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    • 2000
  • This experiment was conducted to investigate the changes of harvest index and the relationship between harvest index and yield determination factors by different planting times in the determinate soybean cultivars, Shinpaldal and Danbaeg. Optimum planting were 23 May in 1995 and 1996. Late planting were 13 June in 1995 and 6 June in 1996. Growth period from planting to physiological maturity (R7) was shortened as planting time was delayed in two cultivars due to shortening of reproductive growth period in Shinpaldal, and of vegetative growth period in Danbaeg. Stem weight was distinctly decreased in late planting compared to optimum planting, but seed weight of both cultivars was not different between planting times. Also, seed number per pod and harvest index were significantly increased in late planting and the high correlation was found between two factors. It was suggested that increase of harvest index in late planting would be related with high assimilate use efficiency due to increase of sink capacity. The results of correlation and principal component analysis for yield determination factors showed that main factor on yield determination was pod number per plant at R5 stage associated with dry matter accumulation during early reproductive growth period, seed number per pod and harvest index were the second factor, and one hundred seed weight was the third factor. The result of this experiment indicated that yield determination in soy-bean was dependent mainly on pod number per plant related to dry matter accumulation by early reproductive growth period, and the increase of seed number per pod and harvest index could compensate for yield decrease by shortening of vegetative growth period in late planting. Such result suggests that optimum planting date can be delayed from mid May to early June in improved soybean cultivars in Korea.

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이탈리안 라이그라스 '코윈어리'의 봄철 1회 및 2회 이용에 따른 수확적기 구명 (Optimum Harvest Stage of Italian Ryegrass 'Kowinearly' According to One and Two Harvests During Spring Season)

  • 서성;김맹중;김원호;이상학;정민웅;김기용;지희정;박형수;김종근;최기준
    • 한국초지조사료학회지
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    • 제33권1호
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    • pp.15-20
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    • 2013
  • 본 연구는 국내 개발 이탈리안 라이그라스 (IRG)의 봄철 1회 및 2회 이용 시 수확적기를 구명하고자 국립축산과학원(수원)에서 조생종 'Kowinearly' 품종을 공시, 2009년 9월 30일에 파종하여 2010년 6월까지 수행하였다. 처리내용은 1차 수확시기로 출수시(T1), 출수기(T2), 출수후기~개화초기(T3), 개화기~개화후기(T4), 등숙기(T5) 및 등숙후기(T6) 등 6처리였으며, 2차 수량조사는 6월 11일 동일하게 실시하였다. 'Kowinearly'의 출수시는 5월 4~5일, 출수기는 5월 14일, 도복은 개화 이후 많이 관찰되었다. 건물률은 T1 14.8%에서 T6 35.0%로 생육진행에 따라 높아졌으며, 조단백질, RFV, 건물 소화율 등 사료가치는 생육 지연에 따라 낮아졌다. 건물수량과 가소화 건물수량은 T4에서 ha당 각각 8,984 kg과 5,728 kg으로, 조단백질 수량은 T3에서 795 kg으로 유의적으로 높았으며 (p<0.05), 재생초의 건물수량, 조단백질 수량, 가소화 건물수량은 T1과 T2에서 차이 없이 각각 5,425 kg, 596 kg, 3,204 kg(T1)과 4,811 kg, 589 kg, 3,143 kg (T2)으로 유의적으로 높았다 (p<0.05). 총 건물수량, 조단백질 수량, 가소화 건물수량은 T2 와 T3에서 차이 없이 각각 11,089 kg, 1,254 kg, 7,669 kg(T2)과 10,354 kg, 1,225 kg, 6,915 kg (T3)으로 유의적으로 높았다 (p<0.05). 일당 건물생산량과 일당 가소화건물생산량은 1차 생육은 T2, T3, T4에서, 재생초는 T2, T1에서 높았으며, 전 기간 일당생산량에서는 출수기인 T2에서 가장 높았고 다음이 T3, T4, T1 순이었다. 이상의 결과를 종합하여 볼 때, IRG 'Kowinearly'를 봄철에 1회 수확하여 이용할 경우 단위면적당 생산량과 사료가치를 고려한 수확적기는 출수후기~개화기이며, 봄철 2회 수확하여 이용할 경우 재생과 단위면적당 총 생산량을 고려한 1차 수확적기는 출수기가 유리하다고 판단된다.

수확시기, 예건 및 싸라기 처리가 유기 청보리의 사초 생산성 및 사일리지 품질에 미치는 영향 (Effect of Harvest Stage, Wilting and Crushed Rice on the Forage Production and Silage Quality of Organic Whole Crop Barely)

  • 김종덕;이현진;전경협;양가영;권찬호;성하균;황보순;조익환
    • 한국초지조사료학회지
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    • 제30권1호
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    • pp.25-34
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    • 2010
  • 최근에 청보리 사일리지는 국내에서 가장 많이 이용하는 조사료이지만 유기축산을 위한 유기조사료의 생산과 품질에 관한 연구는 미흡한 실정이다. 따라서 본 시험은 유기 청보리 사일리지의 적정 수확시기를 구명하고, 사일리지 품질 향상을 위하여 예건과 싸라기를 첨가하여 사일리지를 평가하였다. 시험구 배치는 12처리 3반복의 분할구 배치법으로 주구는 수확시기로 출수기, 유숙기 및 황숙기를 두었으며, 세구는 무처리, 예건, 싸라기 10%, 싸라기 15%를 두었다. 수확시 건물함량은 출수기, 유숙기 및 황숙기가 각각 12.8%, 21.9% 및 29.8%로 증가하였다. 청보리의 건물수량은 출수기, 유숙기 및 황숙기가 각각 10,346, 15,819 및 18,336 kg/ha였으며, TDN 수량은 6,288, 9,550 및 10,178 kg/ha였다. 유기 사일리지의 pH는 출수기, 유숙기 및 황숙기가 각각 4.70, 4.03 및 5.37로 유숙기가 가장 낮았다. 청보리의 수확시기가 늦어짐에 따라 조단백질, 조지방, NFC 및 TDN 함량은 감소하였으나, NDF 및 ADF 함량은 증가하였다. 그러나 조회분 함량은 유숙기가 가장 낮았다. 사일리지의 예건과 싸라기의 첨가는 조회분, NDF 및 ADF 함량을 감소시키고, NFC와 TDN 함량은 증가시켰다. 사일리지의 건물소화율은 수확시기가 늦어짐에 따라 감소하였으며, 예건과 싸라기 첨가에 의하여 건물소화율이 증가하였다. 유숙기가 다른 수확시기보다 젖산과 총유기산 함량은 높고 낙산 함량이 낮아 총유기산 중 젖산함량이 가장 높았다. 예건과 싸라기 첨가에 의한 젖산 함량 증가 효과는 출수기가 다른 수확기보다 효과가 있었다. 이상의 결과를 종합해 볼 때 유기 청보리 사일리지 제조를 위한 수확적기는 유숙기 이었으며, 예건과 싸라기 첨가에 의하여 청보리 사일리지의 품질을 향상시킬 수 있었다.

만기파종에서 수확시 숙기가 사일리지용 옥수수의 사초수량과 품질에 미치는 영향 (Effect of Harvest Stage on Forage Yield and Quality of Silage Corn at Late Planting)

  • 김종덕;권찬호;김수곤;박형수;고한종;김종관
    • Journal of Animal Science and Technology
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    • 제44권2호
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    • pp.251-260
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    • 2002
  • 옥수수를 호밀과 조합한 연간 2모작의 작부체계하에서는 옥수수의 파종시기가 5월 중순이후로 지연된다. 따라서 본 시험은 전작물이 호밀 때문에 옥수수의 파종시기가 5월 21일로 지연되었을 때 건물수량과 품질을 극대화 할 수 있는 적정 수확시기를 결정하기 위하여 수행하였다. 사일리지용 옥수수는 서울대학교 부속목장에서 5월 21일에 파종하고, 수확은 8개의 다른 숙기에서 수확하였다. 수확시 숙기는 수포형성기 (출사후 16일), 유숙기 (20일), 유숙후기 (26일), 연호숙기 (28일), 황숙초기 (33일), 황숙중기 (38일), 황숙후기 (44일), 및 생리적성숙기 (53일)로 하였다. 황숙초기에서 황숙후기의 전 식물체 건물률은 29.0~38.5%로 사일리지 생산에 가장 적합하였다. 건물 및 가소화영양소총량 (TDN) 수량이 최대인 시기는 황숙중기로 각각 14,831 및 10,675 kg/ha 이었다. 숙기가 진행됨에 따라 전식물체의 ADF 함량은 35.4%에서 22.1%로 감소하였고 NDF 함량 또한 63.8%에서 46.0%로 감소하였다 (P$<$0.05). ADF 및 NDF 함량의 감소는 옥수수의 부위별 함량 변화와 관련이 높다. 즉 숙기가 진행됨에 따라 옥수수의 부위중 암이삭은 증가하고 경엽은 상대적으로 감소하였다. ADF 함량에 의해 계산된 비유정미에너지 (NEL) 및 TDN은 경엽의 경우에는 황숙초기까지는 감소하고 그 이후에는 증가하였으나, 종실과 전식물체의 NEL 및 TDN은 숙기가 진행됨에 따라 유의적으로 증가하였다. In vitro 건물소화율은 숙기가 진행됨에 따라 경엽은 61.1%에서 49.7%로 감소한 반면 전식물체는 58.3%에서 65.7%로 증가하였다 (P$<$0.05). 이상의 결과로 미루어 볼 때 만기파종시 최대건물수량과 품질을 가진 사일리지용 옥수수를 생산하기 위해서는 황숙중기 (1/2 milkline) 에서 황숙후기 (2/3 milkline) 사이에 수확하여야 한다. 그리고 이때 출사후일수는 38일에서 44일 사이였다.

수확시기가 사료용 벼의 초장, 건물수량 및 사료성분에 미치는 영향 (Plant Height, Dry Matter Yield and Forge Quality at Different Maturity of Whole Crop Rice)

  • 성경일;홍석만;김병완
    • 한국초지조사료학회지
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    • 제24권1호
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    • pp.53-60
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    • 2004
  • Recently, there has been a growing tendency to use whole crop rice for feeds as there is an increased rice supply and a decrease in the demand for rice in Korea. Little information, however, is available about the management and utilization of whole crop rice for feeds. This study was conducted to decide the optimum harvest date through examining the plant height, dry matter(DM) yield and feed composition of whole crop rice harvested at different maturity. Field study was established early in May until October 7th on a rice field at Yupori, Sinbuk-yeup, Chunchon, Kangwon-Do. "Ilpum" mutant rice was sown at 52 kg/ha, and N, P and K were applied at 209, 113 and 81 kg/ha, respectively. The rice was harvested at six different mature stages for analysis; booting stage; 17 Aug., milk-ripe stage; 27 Aug., dough stage; 7 Sep., yellow ripe stage; 17 Sep., dead ripe stage; 27 Sep. and full ripe stage; 7 Oct. Plant height was 77 cm in booting stage (P<0.05) which was lower when compared to the other stages among which the heights did not differ with average range of 93∼97 cm. The highest dry matter yield was observed in yellow ripe stage (22.8 T/ha), which was followed by dead ripe stage (19.3 T/ha), full ripe stage (19.3 T/ha), and dough stage (15.1 T/ha). Crude protein (CP) and Neutral detergent fiber (NDF) concentrations consistently decreased with maturity. The highest concentrations of CP and NDF were obtained in booting stage with 9 and 73.6%, respectively (P<0.05), and lowest in full ripe stage with 5.8 and 64.6%, respectively (P<0.05). The concentration of total digestible nutrient (TDN) was highest in booting stage (59.7%); however no significant difference was found among other stages. The concentrations of Ca and P were not different among mature stages. According to these results, the yellow ripe period is appropriate to harvest the whole crop rice for forage considering dry matter yields, feed compositions and TDN concentrations.

The Potential of Mulberry (Morus alba) as a Fodder Crop: The Effect of Plant Maturity on Yield, Persistence and Nutrient Composition of Plant Fractions

  • Saddul, D.;Jelan, Z.A.;Liang, J.B.;Halim, R.A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제17권12호
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    • pp.1657-1662
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    • 2004
  • The forage potential of mulberry (Morus alba) was evaluated under Malaysian conditions. The yield and nutrient composition of plant fractions of mulberry (whole plant, leaf and stem fractions) were determined at four harvest stages, namely, 3 (W3), 5 (W5), 7 (W7) and 9 (W9) weeks in a randomized block design. The study was conducted over a 9-month period to assess the persistence of the crop to repeated harvests. Fresh and dry matter (DM) yields of all plant fractions increased significantly (p<0.01) with increasing intervals between harvests, with highest DM yields at W9. The leaf to stem ratio declined significantly (p<0.01) from 5.2 (W3) to 0.9 (W9), indicating predominance of the stem fraction with advancing maturity. The nutritional composition of plant fractions was also significantly influenced (p<0.01) by advancing plant maturity at harvest. Crude protein (CP), ash and the metabolisable energy content of plant fractions declined significantly (p<0.01) from W3 to W9, while there was a corresponding significant increase (p<0.01) in the acid detergent fibre, neutral detergent fibre and acid detergent lignin. From this study it was concluded that the optimum stage to harvest the whole plant is 5 weeks, which is a compromise between yield, nutrient composition (CP and fibre components), and the annual number of cuts, with good crop persistence to repeated harvests. Fresh mulberry whole plant can provide a valuable supplemental source of nutrients to poor quality basal diets.

사과 '후지'에서 유기 칼슘화합물의 수관살포가 과실의 무기성분 농도, 동녹 발생 및 과실 품질에 미치는 영향 (Effects of Tree-spray of Organic Calcium Compounds on the Mineral Nutrition Concentration, Russet Occurrence and Fruit Quality in 'Fuji' Apple at Harvest)

  • 문병우;이영철;정혜웅
    • 현장농수산연구지
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    • 제14권1호
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    • pp.47-59
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    • 2012
  • 사과 '후지'에서 유기 칼슘화합물(ACa)을 수관살포 농도별 및 생육후반기 횟수별 처리한 후 과실의 칼슘농도, 동녹 발생 및 과실품질에 미치는 영향을 조사한 결과는 다음과 같다. 생육기간중 ACa 수관살포의 적정농도는 엽에는 125배에서 1,000배, 과실에서는 125배 이었다. 생육기간중 ACa 500배 수관살포 적정횟수는 엽에는 1회 (9월 25일) ~ 3회 (9월 25일, 10월 5일, 15일), 과피에는 1회 (9월 25일), 과육에서는 2회 (9월 25일, 10월 5일) ~ 3회(9월 25일, 10월 5일, 15일)이었다. ACa 생육후반기 농도 및 살포 횟수 수관살포에 의한 약해발생은 육안으로 발견하지 못하였다.

Effects of Nitrogen Level on Nitrogen Partitioning and Harvest Index in Brassica napus L.

  • Lee, Hyo;Zaman, Rashed;Lee, Bok-Rye;Kim, Tae-Hwan
    • 한국초지조사료학회지
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    • 제38권2호
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    • pp.140-144
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    • 2018
  • To investigate the impact of nitrogen (N) mineral on reproductive potential of Brassica napus L, plants were treated with different levels of N treatment ($N_0$; $N_{100}$; $N_{500}$). The half of N content for each treatment were applied at the beginning of the early vegetative stage and the rest was applied at the late vegetative stage. Nitrogen content in plant tissues such as root, stem and branch, leaf, pod and seed was analyzed and harvest index (HI) was calculated as percentage of seed yield to total plant weight. Biomass and nitrogen content were significantly affected by different levels of N supply. Biomass was significantly decreased by 59.2% in nitrogen deficiency ($N_0$) but significantly increased by 50.3% in N excess ($N_{500}$), compared to control ($N_{100}$). Nitrogen content in all organs was remarkably increased with nitrogen levels. N distribution to stem and branches, and dead leaves was higher in N-deficient ($N_0$) and N excessive plants ($N_{500}$) than in control ($N_{100}$). However, nitrogen allocated to seed was higher in control ($N_{100}$) than in other treatments ($N_0$ or $N_{500}$), accompanied by higher HI. These results indicate that the optimum level of N supply ($N_{100}$) improve HI and N distribution to seed and excessive N input is unnecessary.

밭작물소비수량에 관한 기초적 연구(II)-마늘 및 오이- (Basic Studies on the Consumptive Use of Water Required for Dry Field Crops (2) -Garlic and Cucumber-)

  • 김철기;김진한;정하우;최홍규;권영헌
    • 한국농공학회지
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    • 제31권3호
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    • pp.41-56
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    • 1989
  • The purpose of this study is to find out the basic data for irrigation plans of garlic and cucumber during the growing period, such as total amount of evapotranspiration, coefficients of evapotranspiration at each growth stage, the peak stage of evapotranspiration and the maximum evapotranspiraton, optimum irrigation point, total readily available moisture, and intervals of irrigation date. The plots of experiment were arranged with split plot design which were composed of two factors, irrigation point for main plot and soil texture for split plot, and three levels ; irrigation points with pP 1.7-2.1, pP 2.2-2.5, pP 2.6-2.8, for garlic and those with pP 1.9, pF 2.3, pP 2.7, for cucumber, soil textures of silty clay, sandy loam and sandy soil for both garlic and cucumber, with two replications. The results obtained are summarized as follows 1.There was the highest significant correlation between the avapotranspiration of garlic and cucumber and the pan evaporation, beyond all other meteorological factors considered, as mentioned in the previous paper. Therefore, the pan evaporation is enough to be used as a meteorological index measuring the quantity of evapotranspiration. 2.1/10 probability values of maximum total pan evaporation during growing period for garlic and cucumber were shown as 495.8mm and 406.8mm, respectively, and those of maximum ten day pan evaporation for garlic and cucumber, 63.8mm and 69.7mm, respectively. 3.The time that annual maximum of ten day pan evaporation can be occurred, exists at any stage between the middle of May and the late of June(harvest period) for garlic, and at any stage of growing period for cucumber. 4.The magnitude of evapotranspiration and of its coefficient for garlic and cucumber was occurred in the order of pF 1.7-2.1>pF 2.2-2.5>pF 2.6-2.8 and of pF 1.9>pF 2.3>pF2.7 respectively in aspect of irrigation point and of sandy loam>silty clay>sandy soil in aspect of soil texture for both garlic and cucumber. 5.The magnitude of leaf area index was shown in the order of pF 2.2-2.5>pF 1.7-2.1>pF 2.6-2.8 for garlic and of pF 1.9>pF 2.3>pF 2.7 for cucumber in aspect of irrigation point, and of sandy loam>sandy soil>silty clay in aspect of soil texture for both garlic and cucumber. 6.1/10 probability value of evapotranspiration and its coefficient during the growing period for garlic were shown as 391.7mm and 0.79 respectively, while those of cucumber, 423.lmm and 1.04 respectively. 7.The time the maximum evapotranspiration of garlic can be occurred is at the date of thirtieth before harvest period and the time for cucumber is presumed to be at the date of sixtieth to seventieth after transplanting, At that time, 1/10 probability value of ten day evapotranspiration and its coefficient for garlic is presumed to be 65.lmm and 1.02 respectively, while those of cucumber, 94.8mm and 1.36 respectively. 8.In aspect of irrigation point, the weight of raw garlic and cucumber were increased in the order of pF 2.2-2.5>pF 1.7-2.1>pF 2.6-2.8 and of pF 1.9>pF 2.3>pF 2.7 respectively. Therefore, optimum irrigation point for garlic and cucumber is presumed to be pF 2.2-2.5 and pF 1.9 respectively, when the significance of yield between the different irrigation treatments is considered. 9.Except the mulching period of garlic that soil moisture extraction patterns were about the same, those of garlic and cucumber have shown that maximum extraction rate exists at 7cm deep layer at the beginning stage after removing mulching for garlic and at the beginning stage of growth for cucumber and that extraction rates of 21cm to 35cm deep layer are increased as getting closer to the late stage of growth. 10.Total readily available moisture of garlic in silty clay, sandy loam, sandy soil become to be 18.71-24.96mm, 19.08-25.43mm, 10.35- 13.80mm respctively on the basis of the optimum irrigation point with pF 2.2-2.5, while that of cucumber, 11.8lmm, 12.03mm, 6.39mm respectively on the basis of the optimum irrigation point with pF 1.9. 11.The intervals of irrigation date of garlic and cucumber at the growth stage of maximum consumptive use become to be about three and a half days and one and a half days respectively, on the basis of each optimum irrgation point.

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