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1.
Intercropping represents an alternative to maize (Zea mays L.) monoculture to provide substrate for agricultural biogas production. Maize was intercropped with either sunflower (Helianthus annuus L.) or forage sorghum [Sorghum bicolor (L.) Moench] to determine the effect of seasonal water supply on yield and quality of the above‐ground biomass as a fermentation substrate. The two intercrop partners were grown in alternating double rows at plant available soil water levels of 60–80 %, 40–50 % and 15–30 % under a foil tunnel during the years 2006 and 2007 at Braunschweig, Germany. Although the intercrop dry matter yields in each year increased with increasing soil moisture, the partner crops responded quite differently. While maize produced significantly greater biomass under high rather than low water supply in each year, forage sorghum exhibited a significant yield response only in 2006, and sunflower in none of the 2 years. Despite greatly different soil moisture contents, the contribution of sorghum to the intercrop dry matter yield was similar, averaging 43 % in 2006 and 40 % in 2007. Under conditions of moderate and no drought stress, sunflower had a dry matter yield proportion of roughly one‐third in both years. In the severe drought treatment, however, sunflower contributed 37 % in 2006 and 54 % in 2007 to the total intercrop dry matter yield. The comparatively good performance of sunflower under conditions of low water supply is attributable to a fast early growth, which allows this crop to exploit the residual winter soil moisture. While the calculated methane‐producing potential of the maize/sorghum intercrop was not affected by the level of water supply, the maize/sunflower intercrop in 2006 had a higher theoretically attainable specific methane yield under low and medium than under high water supply. Nevertheless, the effect of water regime on substrate composition within the intercrops was small in comparison with the large differences between the intercrops.  相似文献   

2.
In two years the growth and composition of mixtures of sorghum with Lablab purpureus as strips, paired rows and alternate rows were compared with those of sorghum and lablab monocrops. In the first year, when sowing did not occur until 7 August, the sorghum yields were low in the monocrop and even less in the mixed crops. Lablab yield was also reduced in mixtures compared with the monocrop, but total forage yield was greater for the mixed crops compared with sorghum alone. Of the mixed cropping systems, a reduction in the yield of lablab plants and in the phosphorus and potassium content of shed lablab leaves in paired rows suggested that there was more competition for nutrients between lablab plants grown in this treatment. In the second year, earlier sowing increased sorghum growth at the expense of lablab yield in the mixed cropping systems, with the result that total forage yield was not increased when sorghum was intercropped with lablab. However, the crude protein content of sorghum stems and leaf yield were increased in mixed crops, particularly in paired and alternate rows rather than strips, demonstrating that close configuration of the legume and cereal are necessary for the cereal to obtain most benefit from nitrogen fixed by the legume. It is concluded that, when conditions are favourable for rapid sorghum and lablab growth, the sorghum will benefit more when it is grown in paired rows with lablab rather than in strips. However, the close spacing normally adopted for paired rows may encourage competition between lablab plants and increase the requirements for phosphorus and potassium fertilizer.  相似文献   

3.
The effects of three okra planting densities (28 000; 56 000 and 111 000 plants ha1) intercropped within or between maize rows were investigated in two field trials during the 1990 and 1991 wet seasons at Nsukka. The plant height and the leaf area index (LAI) increased as the planting density increased in sole or intercropped okra while the number of branches per plant decreased with increasing okra planting density. The height of maize plants also increased as okra planting density increased but the LAI decreased. Intercropping reduced the yield and yield components (number and weight of pods per plant) of okra and maize (number of cobs, cob length and 100-grain weight). Increasing okra planting density reduced the sole and the intercropped okra and also the maize intercrop yield by reducing the number of pods and grains as well as the pod and grain size, respectively. Assessment of the productivity ofthe mixtures showed that the highest yield advantage (35%) of growing okra and maize together was obtained at 28000 okra plants ha1 while the highest monetary return was realized at the highest okra planting density of 111000 plants ha1 intercropped between maize rows. The patterns of row arrangement did not have effect on the growth, yield and yield components of the mixtures.  相似文献   

4.
Field experiments were conducted in 1996 and 1997 on a Striga‐infested field to determine the effect of Striga on the growth characteristics of sorghum intercropped with groundnut varieties (RMP‐12, Yarkasa and Ex‐Dakar). The performance of the intercropped sorghum was significantly better than that of the monoculture in terms of plant height, dry matter, leaf number and leaf area index. Intercropping of sorghum with RMP‐12 resulted in a significant suppression of Striga compared to other groundnut varieties. The dry matter yield of sorghum intercropped with groundnut was significantly higher than that of the sorghum monocrop. The dry matter yield resulting from intercropping of sorghum with the RMP‐12 groundnut variety was significantly higher than that of sorghum intercropped with all other varieties of groundnut.  相似文献   

5.
摘 要:【研究目的】明确不同密肥水平下滨海滩涂盐碱地甜高粱生长特性、干物质积累特征,为盐碱地甜高粱高产栽培提供理论基础。【方法】以甜高粱ST008为试验材料,采用二因素随机区组设计,研究不同种植密度及氮肥用量水平对盐碱地甜高粱农艺性状、产量及茎秆糖锤度的影响,利用通径分析,对甜高粱不同生育阶段干物质积累与生物产量、糖锤度之间的相互关系进行了相关性分析。【结果】甜高粱ST008在种植密度120000株/hm2、氮肥用量300kg/hm2条件下获得的生物产量、籽粒产量和茎秆含糖量较高,株高、叶片数、茎粗等较为适宜。通径分析表明,拔节至抽穗期地上部干物积累量和生物产量、茎秆含糖锤度之间呈极显著的正相关关系,对提高生物产量、茎秆糖锤度的贡献最大。【结论】盐碱地甜高粱在密度120000株/hm2、施氮量300kg/hm2水平下生物产量最高。提高拔节至抽穗阶段甜高粱植株的光合生产是提高甜高粱产量、含糖量的关键。  相似文献   

6.
Sorghum is an excellent alternative to other grains in poor soil where corn does not develop very well, as well as in regions with warm and dry winters. Intercropping sorghum [Sorghum bicolor (L.) Moench] with forage crops, such as palisade grass [Brachiaria brizantha (Hochst. ex A. Rich) Stapf] or guinea grass (Panicum maximum Jacq.), provides large amounts of biomass for use as straw in no-tillage systems or as pasture. However, it is important to determine the appropriate time at which these forage crops have to be sown into sorghum systems to avoid reductions in both sorghum and forage production and to maximize the revenue of the cropping system. This study, conducted for three growing seasons at Botucatu in the State of São Paulo in Brazil, evaluated how nutrient concentration, yield components, sorghum grain yield, revenue, and forage crop dry matter production were affected by the timing of forage intercropping. The experimental design was a randomized complete block design. Intercropping systems were not found to cause reductions in the nutrient concentration in sorghum plants. The number of panicles per unit area of sorghum alone (133,600), intercropped sorghum and palisade grass (133,300) and intercropped sorghum and guinea grass (134,300) corresponded to sorghum grain yields of 5439, 5436 and 5566 kg ha−1, respectively. However, the number of panicles per unit area of intercropped sorghum and palisade grass (144,700) and intercropped sorghum and guinea grass (145,000) with topdressing of fertilizers for the sorghum resulted in the highest sorghum grain yields (6238 and 6127 kg ha−1 for intercropping with palisade grass and guinea grass, respectively). Forage production (8112, 10,972 and 13,193 Mg ha−1 for the first, second and third cuts, respectively) was highest when sorghum and guinea grass were intercropped. The timing of intercropping is an important factor in sorghum grain yield and forage production. Palisade grass or guinea grass must be intercropped with sorghum with topdressing fertilization to achieve the highest sorghum grain yield, but this significantly reduces the forage production. Intercropping sorghum with guinea grass sown simultaneously yielded the highest revenue per ha (€ 1074.4), which was 2.4 times greater than the revenue achieved by sowing sorghum only.  相似文献   

7.
种植密度对高粱群体生理指标及产量影响   总被引:3,自引:0,他引:3  
为明确种植密度与高粱产量和产量构成因素以及群体光合生理指标的关系,以极早熟高粱杂交种‘通早2’为试验作物,采用大田试验方法,研究了不同种植密度对高粱生长、产量及其构成因素、及群体光合生理指标的影响。试验采用随机区组设计,3次重复。试验设15万株/hm2、18万株/hm2、21万株/hm2、24万株/hm2和27万株/hm25个种植密度,结果表明:随种植密度的增加,株高增高,茎粗变细。单株干物质量、群体净同化率、群体生长率显著下降。叶面积指数、叶片光合势及总光合势随种植密度的增加而显著上升;种植密度在15万~21万株/hm2时,籽粒产量随种植密度的增加而增加,种植密度持续增加,籽粒产量呈下降趋势,且各处理之间籽粒产量差异显著。随着种植密度增加,单位面积穗数相应增加,单株穗粒重、千粒重随种植密度的增加而逐渐降低,且各处理之间达到显著水平。本试验研究结果表明,‘通早2’种植密度为21万株/hm2,株行距9.5 cm×60 cm时,能更好地协调群体结构,使籽粒产量达到较高水平。  相似文献   

8.
间作种植模式对玉米和大豆干物质积累与产量组成的影响   总被引:12,自引:0,他引:12  
玉米/大豆间作是中国北方地区常见的一种种植模式。本文通过2个生长季的大田试验,研究了间作种植模式对玉米和大豆的干物质积累与产量组成的影响。试验结果表明,生育前期(播后第79d以前),不同种植模式下玉米的单株干物质量之间没有显著差异;生育后期,玉米/大豆1:3间作模式下(I1处理)玉米的单株干物质量高于单作玉米,达到极显著水平;玉米/大豆2:3间作模式下(I2处理)玉米的单株干物质量高于单作玉米,达到显著水平,1:3和2:3间作模式下玉米的单株干物质量也存在显著差异。生育期内不同种植模式下大豆的单株干物质量之间没有显著差异。利用Logistic方程拟合了单作和间作条件下玉米和大豆单株干物质积累的动态,相关性均达到极显著水平(P<0.01)。由于边际效应的影响,间作群体内玉米各器官干物质积累量高于单作。不同种植模式下大豆各器官的干物质积累差异不明显。间作玉米的干物质转换率高于单作,单作大豆的转换率高于间作。I1和I2处理间作总籽粒产量比单作玉米的籽粒产量增加约6%,比单作大豆的籽粒产量增加约320%。  相似文献   

9.
14个黄秋葵品系叶黄素和β-胡萝卜素产量比较试验   总被引:4,自引:0,他引:4  
选取14个品系黄秋葵在大田进行品种比较试验,结果表明它们叶片干物质产量、叶片中叶黄素和β-胡萝卜素产量差异极显著。004-2品系叶片干物质产量最高,达到4948.0 kg/hm2。024-3品系叶片中叶黄素产量最高,理想纯产量达到9261.7 g/hm2。018-1品系叶片中β-胡萝卜素产量最高,理想纯产量达到32740.0g/hm2。综合叶片干物质产量、叶片中叶黄素和β-胡萝卜素产量三方面,018-1、024-3和021品系适合高产规模化种植。  相似文献   

10.
Radiation use by oil seed crops — a comparison of winter rape, linseed and sunflower For the production of grain crops rich in oil, winter rape, linseed and sunflower are similarly suitable at many arable locations. We wanted to compare the extent to which radiation (PAR) is intercepted and utilized by the individual species for dry matter and yield production. For this purpose, a 2‐year field experiment comprising the factors genotype, N fertilization and soil tillage was conducted. For five phases of crop development, growth rates (CGR, RGR and NAR) and PAR utilization were calculated. At full ripeness, total dry matter, grain, oil and energy yields, the crop‐ and year‐specific PAR supply, its interception and utilization for dry matter production and the resulting energy binding were determined. Due to the different individual vegetation periods, the PAR supply of the crops differed. The crop assimilation areas also differed, with values for winter rape and sunflower higher than those for linseed. The yield productivity of winter rape and sunflower was also higher than that of linseed. N fertilization increased yield to different extents for the different crops. On average, winter rape and sunflower produced the same amounts of dry matter and energy yield. Due to a higher harvest index, sunflower had the highest grain yield, and because the oil concentration in grain was comparatively high sunflower produced the highest oil yield, too. Under cool and wet climate conditions, however, the productivity of sunflower is offset by a relatively high yield risk because of uncertain ripening. The highest PAR utilization by linseed did not compensate for its very short vegetation period in combination with the lowest PAR interception.  相似文献   

11.
Gram sorghum [ Sorghum bicolor (L.) Moench] is grown on marginal land and johnsongrass [Sorghum haiepense (L.) Pers] is the most common and hard to control weed in this crop. The agronomic performance of gram sorghum at different nitrogen (N) and johnsongrass infestation levels in the field has not been adequately investigated. Therefore, research was conducted on a Decatur silty clay loam soil (Rhodic Paleudult) to determine the influence of N rates (0, 40, 80 and 120 kg ha-1) and johnsongrass infestation levels (0, 2, 4, 6 and 8 plants per 5 m crop row) on the growth and yield of grain sorghum (cv. GK522G) and johnsongrass. Increase in N rates increased seed weight, seed yield and percent protein in grain sorghum as well as dry matter and percent protein of johnsongrass. The increase in johnsongrass infestation (from 0 to 8 plants per 5 m crop row) significantly decreased the performance of grain sorghum and johnsongrass at all the N rates. The results suggest that 40 kg N ha-1 with up to 2 johnsongrass plants per 5 m crop row or 80 kg N ha-1 with up to 4 johnsongrass plants per 5 m crop row produced grain sorghum yields equivalent to absence of johnsongrass in the crop.  相似文献   

12.
The influence of cutting applied at four stages of plant growth on dry matter, crude protein, total available carbohydrates and reducing sugar partitioning was examined in six genotypes of berseem ( Trifolium alexandrinum L.). The research was conducted in Foggia (Italy) during 1990 and 1991 in a glasshouse with controlled water application. The plants were grown in a plastic-lined, PVC cylinder. At each cut, dry matter and chemical components were evaluated in leaf, stem and root fractions; at the end of the biological cycle, seed yield was recorded.
Plants showed similar dry matter partitioning between leaves and stems at the eighth internode stage. The crude protein concentration was highest in leaf fractions, reaching the maximum value (31%) at an early stage of growth (fourth internode stage). The maximum value of total available carbohydrates was obtained in the stems at the early flowering stage (11 %), whereas reducing sugars almost always showed higher concentrations in the leaves (4 %). As for forage and seed yields, the developmental stage at cutting had a great influence on dry matter and chemical component partitioning among the different organs. Genotypic differences were observed for dry matter partitioning in leaves and stems in all developmental stages, but diversity in chemical component content was more evident in the roots.  相似文献   

13.
以三系杂交组合金优253和中优315为试验材料,在两种土壤耕作方式和三种栽培密度下,研究了强化栽培水稻的生长发育与产量形成。结果表明,耕作方式和栽培密度对强化栽培水稻的生长发育和产量产生明显影响。相同耕作方式不同密度下,单株分蘖数随株行距的增加而增加,单位面积分蘖数随株行距的增加而下降;抽穗期最大叶面积指数及其衰减率随株行距的增加而下降;抽穗前的群体干物质积累量随株行距的增加而下降,抽穗至成熟期的群体干物质积累量以中等密度的最大,但成熟期群体干物质积累量仍随株行距的增加而下降;茎叶干物质表观输出率随株行距的增加而下降;单位面积有效穗数随株行距的增加而显著下降,每穗总粒数、结实率和千粒重随株行距的增加而增加。免耕条件下的强化栽培水稻产量随株行距的增加而下降,常耕条件下的产量则以中等株行距处理的最高。  相似文献   

14.
以不同粒重的花生种子为试材,采用不同播种方式,研究粒重大小和播种方式对花生生长发育、光合特性及产量的影响。结果表明,单粒精播处理可使产量增加,与传统双粒穴播相比,在一垄两行播种方式下,相对大粒种子和相对小粒种子分别增产9.77%、4.19%;一垄单行种植方式下分别增产3.44%和2.77%。无论种子粒重大小,单粒精播处理的主茎高、侧枝长和地上部干物质积累量均显著高于双粒穴播,但其荚果干重、净光合速率和单株叶面积与双粒穴播间均无显著差异。相关分析表明,叶片干重、茎柄干重与单株叶面积间呈极显著相关关系;饱果成熟期与结荚期地上部干物重之差与产量间呈显著相关关系。采用垄作双行单粒精播模式,选用饱满粒重较小的种子,可达节本降耗、明显提高经济效益的目的。  相似文献   

15.
Fodder sorghum (M. P. Chari) was grown at varying populations to examine its influence on light interception, leaf area index and biomass production. DMY, CGR and IPAR depending on LAI reached maximum at LAI 5 of 150 000 plants ha−1 stand and thus yielded higher biomass. Therefore, physiological potential of fodder sorghum crop was found to be maximum at a population density of 150 000 plants ha−1. Further increases in population developed mutual shading and adversely affected the crop growth rate and dry matter accumulation. Significant linear relationships of dry matter yield with IPAR, plant population densities, LAI and CGR clearly indicate the interdependence of these characters.  相似文献   

16.
为明确不同类型青贮玉米在临沂地区最佳种植密度,设置了4个密度梯度(60 000、75 000、90 000、105 000株/hm 2),研究种植密度对专用型青贮玉米雅玉8号和粮饲兼用型玉米登海605饲用产量和营养价值的影响。结果表明:密度对不同类型青贮玉米鲜草、干草产量影响显著,密度增加,青贮玉米鲜草产量和干草产量均先增加后减少,在密度75 000株/hm 2时均获得最高鲜草、干草产量。密度对不同类型青贮玉米粗脂肪、粗灰分、酸性洗涤纤维含量和子粒产量、粗蛋白产量、粗脂肪产量、可消化干物质、相对饲喂价值、无氮浸出物含量和总能量影响显著,密度增加,雅玉8号粗蛋白、粗脂肪含量和可消化干物质、干物质采食量、相对饲喂价值和无氮浸出物含量下降,粗灰分、中性洗涤纤维和酸性洗涤纤维含量呈上升趋势,子粒产量、粗蛋白、粗脂肪产量和总能量先增加后减少,在密度75 000株/hm 2均获得最高子粒、粗蛋白、粗脂肪产量。从饲料总能量来说,专用型青贮玉米雅玉8号和粮饲兼用型玉米登海605在山东临沂地区饲用的最佳种植密度均为75 000株/hm 2。  相似文献   

17.
[Objective] Intercropping as an intensive planting method, could increase the utilization ratio of land and resources. The study aimed to explore the advantages and disadvantages of cotton/sesame intercropping, and then find out the best planting pattern of cotton/sesame intercropping. [Method] Equidistant row monocropping cotton (Tc1), wide narrow row monocropping cotton (Tc2) and monocropping sesame (Ts) were used as control. We designed three intercropping patterns as follows: 1-1 pattern (cotton row spacing was 80 cm, one row of sesame was planted in the two row spacing), 2-1 pattern (cotton grown in wide-narrow-row, one row of sesame was planted in the wide row spacing), and 2-2 pattern (cotton grown in wide-narrow-row, two rows of sesame were planted in the wide row spacing). The effects of different intercropping patterns on cotton/sesame yield, yield components, leaf area index dynamic change and dry matter accumulation were investigated. The land equivalent ratio was used as an index to assess the land use efficiency. [Result] The results showed that cotton/sesame yield were significantiy affected by different intercropping patterns. However, the seed cotton yield decreased only slightly in 2-1 intercropping pattern. Two years average showed that, the seed cotton yield, plant height, boll number of per plant and boll weight in 1-1 pattern were reduced by 17.3%, 7.9%, 19.7% and 7.9% compared with Tc1, respectively. In the treatment of 2-2 model, which reduced by 16.4%, 5.81%, 14.8% and 6.2% in comparison with Tc2. But in the intercropping systems, the mixed yield and comprehensive economic benefit of cotton and sesame were higher than those of cotton and sesame monoculture. The leaf area index of the group and the total amount of dry matter accumulation in unit area increased significantly under cotton/sesame intercropping systems. The land equivalent ratios in 2015 and 2016 were from 1 to 1.24 and 0.91 to 1.16, respectively. [Conclusion] Under different cotton/sesame intercropping systems, the mixed yield and total economic benefit were higher than that of monocropping cotton or sesame. The 2-1 cotton/sesame intercropping pattern occupied the most optimal production performance and easy to cultivate, which was the practicable intercropping patterns in sustainable development.  相似文献   

18.
空间配置是影响间作套种作物生长和产量构成的关键因素之一。本研究固定玉米–大豆套作带宽200 cm,玉米采用宽窄行种植,设置4个玉米窄行行距为20 cm(A1)、40 cm(A2)、60 cm(A3)和80 cm(A4)套作处理,2个玉米和大豆净作对照处理,研究行距配置对套作系统中玉米和大豆生物量、根系及产量的影响。结果表明,套作大豆冠层光合有效辐射和红光/远红光比值均低于净作,且随着玉米窄行的增加而降低。套作系统中大豆地上地下生物量、总根长、根表面积和根体积从第三节龄期(V3)到盛花期(R2)逐渐增加,但随着玉米窄行的增加而降低。套作玉米地上地下生物量从抽雄期到成熟期逐渐增加,根体积却逐渐降低,但这些参数随玉米窄行的变宽而增加。玉米和大豆在带状套作系统中产量均低于净作,且随玉米窄行的变宽,玉米产量逐渐增加,2012和2013两年最大值平均为6181 kg hm–2,而大豆产量逐渐降低,两年最大值平均为1434 kg hm–2,产量变化与有效株数和粒数变化密切相关。此外,玉米–大豆带状套作群体土地当量比(LER)大于1.3,最大值出现在A2处理,分别为1.59(2012年)和1.61(2013年),且最大经济收益也出现在A2处理(2年每公顷平均收益为1.93万元)。因此,合理的行距配置对玉米–大豆带状套作系统中作物的生长、产量构成和群体效益具有重要的作用。  相似文献   

19.
The effect of plant water stress on net photosynthesis, leaf growth, yield and yield-related components were investigated in a single experiment in order to determine in which way water deficits affect sunflower yields.
Sunflower plants, grown under controlled temperature regimes, were stressed during budding, anthesis and seed filling by withholding water until the leaf water potential reached -1600 and -2000 kPa. Leaf area of unstressed plants significantly exceeded that of plants under severe stress during all growth stages investigated. The CO2 uptake rate per unit leaf area as well as the total uptake rate per plant, significantly diminished with stress, while this effect drastically increased during the reproductive phase of the plant. Although this resulted in significantly smaller heads and kernels, it did not affect the number of seeds borne in the inflorescence. Severe stress during anthesis and seed filling resulted in more empty kernels. Moderate and severe stress during budding significantly lowered both grain and oil yields while plants that experienced moderate stress during anthesis and seed filling significantly outyielded those under severe stress.  相似文献   

20.
Irrigated field experiments were conducted in the Marmara region of Turkey in 2002 and 2003 to compare alternate 40 : 25 cm row spacings and conventional 65 cm with four different plant densities (65 000, 85 000, 105 000 and 125 000 plants ha−1) of three corn hybrids (DK-585, ADA 95–10 and C-955) in some morphological traits and forage and dry matter yield. Morphological traits such as plant height, leaf per plant, stem diameter, ear per plant and ear percentage were measured, forage and dry matter yield was also determined in this study. Hybrids, row spacings and plant densities significantly affected some morphological traits, forage and dry matter yield at 0.01 level. Later maturing hybrids tended to produce taller and thicker stemmed plants. Row spacings and plant densities did not affect plant height. Average stem diameter increased significantly with population density. Row spacings did not influence leaf number, whereas leaf number increased slightly with plant density. On average, all corn plants had slightly more than 1.0 ear per plant in our experiment. Row spacings and plant densities did not affect significantly number of ear per plant. Early maturing DK-585 had the highest ear percentage whilst late maturing C-955 lowest. Yields usually increased with hybrid maturity. When averaged across years, row spacings and plant densities, late maturing C-955 performed significantly better in forage and dry matter yield in all experimental years and combined years. The studies showed favourable advantage for alternate 40 : 25 cm rows over conventional 65 cm row spacings at all plant densities. Average forage and dry matter yields were greater for alternate 40 : 25 cm row spacings than for 65 cm row spacings. However, strong hybrid × row spacing interactions for both forage and dry matter yield were detected.  相似文献   

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