scholarly journals Doses of Crotalaria juncea: Residual effect on zucchini and maize crop in sequence to broccoli

Revista CERES ◽  
2017 ◽  
Vol 64 (6) ◽  
pp. 600-606
Author(s):  
Ellen Rúbia Diniz ◽  
Thiago de O Vargas ◽  
Amanda F Guedes ◽  
Ricardo Henrique Silva Santos ◽  
Segundo Urquiaga ◽  
...  

ABSTRACT Amounts of N from green manures not absorbed in the first cycle can be absorbed by the subsequent crops. Therefore, it is important to quantify and monitor the residual effects of green manure to increase the agronomic benefits of its use in cropping systems. Our purpose was to study the residual effect of doses of the Crotalaria juncea green manure applied in broccoli crop in the zucchini-maize succession. This study was carried out in a crop succession system organized in three crops, with seven treatments and four major doses of green manure as 0, 3, 6, and 9 t ha-1. The control treatments consisted of a mineral fertilization, a treatment with 25 t ha-1 compost, and another as absolute control without organic compost or mineral fertilizer. The experimental plot consisted of five rows spaced 0.8 m with 3 m in length. The experimental design was a completely randomized block with four replications in a split-plot scheme in time for growth with variables of adjustment of statistical models by the response surface methodology. With the highest dose of green manure, the yield of zucchini plants was greater than the yield with 25 t ha-1 compost control and similar with mineral fertilizer. As for the maize yield in the dose of 9 t ha-1 green manure, the yield was superior only to absolute control. There was a residual effect of C. juncea mass, which was applied in broccoli crop for growth and yield of zucchini and maize grown in succession. The residual effect is dependent on the amount of weight of C. juncea applied, with the greatest effects in larger doses.

2017 ◽  
Vol 7 (1) ◽  
pp. 54
Author(s):  
Obert Jiri ◽  
Paramu L Mafongoya

On-farm research was conducted in Dendenyore Communal Land and Zana Resettlement areas of Hwedza District, Zimbabwe from 1999 to 2001. The objective of the study was to evaluate the effects of velvet bean and cowpea on growth and yield of maize in legume-maize rotation system. A total of 14 treatments, which consisted of forage legume and maize crops were examined. The experiment was established in a randomized complete block design with 9 replicates. On-farm sites were the replicates. The results show a significant residual effect of velvet bean and cowpea, when grown with single super phosphate fertiliser, on the maize stover and grain yield. They indicate significant phosphorus residual effects on a subsequent maize crop on sandy soils. Forage legumes contribute to residual soil fertility in fallen leaves and roots that increases yield of subsequent crops. The results also reveal that biomass production in perennial leys, grazed during the dry season, would be greater in the second season than in the establishment year. The results also indicate that in the velvet bean systems, especially green manure, nitrogen is lost very early in the season. This may lead to lack of synchrony between nutrient availability and crop uptake. The maize after green manure system had a nitrogen use efficiency of about 11 kg/kg of nitrogen applied. These results show the residual potential of forage legumes in reducing nitrogen fertiliser need for subsequent maize crops in mixed livestock-cropping systems.


2017 ◽  
Vol 35 (3) ◽  
pp. 395-401 ◽  
Author(s):  
Ellen R Diniz ◽  
Thiago O Vargas ◽  
Wander D Pereira ◽  
Ricardo HS Santos ◽  
Segundo Urquiaga ◽  
...  

ABSTRACT The recommendation for green manure (GM) in cropping systems still has little scientific support, with few studies addressing the effects of nutrient amounts from green manure on the growth and production of the crop. Our aim was to evaluate the effect of levels of Crotalaria juncea green manure on the growth, production, and efficiency of the use as well as the apparent recovery of N in broccoli crop. Seven treatments were established; the main with four doses of green manure: 0, 3, 6, and 9 t/ha on a dry matter (DM) basis, applied with 12 t/ha compost. The control treatments consisted of mineral fertilization, the treatment with 25 t/ha compost, and another as the absolute control. Comparatively, production under the absolute control was less than all other treatments with green manure doses and application of 12 t/ha compost. The production of plants grown with 25 t/ha compost was superior to that of plants grown with dose of 0 t/ha and similar to that obtained with 3 t/ha; however, it was inferior to those produced with doses of 6 and 9 t/ha green manure. The highest percentage of N recovered (REC N) by the broccoli plants was observed close to a dose of 3 t/ha green manure, with a maximum point of 37.90% (2.8 t/ha), while in larger doses of 6 and 9 t/ha showed estimated values of 31.91% and 20.49%, respectively. The physiological efficiency of the use of N (EFUN) showed an effect similar to apparent recovery of N (REC N), with higher EFUN from lowest to highest dose of green manure, that is, 3, 6, and 9 t/ha, with estimated values of 70.41, 62.45, and 26.02 g DM per g of N uptake, respectively. The mass amounts of applied C. juncea influenced positively on the growth and productivity of broccoli. The lower mass of applied green manure increases the physiological efficiency of the use of N with more apparent recovery of the applied N.


2014 ◽  
Vol 2014 ◽  
pp. 1-5 ◽  
Author(s):  
Olowoake Adebayo Abayomi ◽  
Ojo James Adebayo

Field experiment was carried out at the Teaching and Research Farm of Kwara State University, Malete, Ilorin, to evaluate the effect of compost, organomineral, and inorganic fertilizers on the growth and yield ofAmaranthus caudatusas well as its residual effects.Amaranthuswas grown with compost Grade B (unamended compost), organomineral fertilizer Grade A (compost amended with mineral fertilizer), and NPK 15-15-15 and no fertilizer (control). All the treatments except control were applied at the rate of 100 kg N/ha. The results indicated that theAmaranthusyield of 18.9 t/ha produced from Grade A was significantly (P<0.05) higher than 17.6 t/ha obtained from NPK fertilizer. Residual effect ofAmaranthusgrowth parameters such as plant height, number of leaves, and yield values obtained from Grade A was also significantly (P<0.05) higher than that of NPK, compost, and control values. Thus, organomineral fertilizer could be used in cultivation ofAmaranthus caudatusin Ilorin and in similar type of soil in similar agroecology.


Revista CERES ◽  
2011 ◽  
Vol 58 (5) ◽  
pp. 645-650 ◽  
Author(s):  
Gilberto Bernardo de Freitas ◽  
Márcio Sousa Rocha ◽  
Ricardo Henrique Silva Santos ◽  
Letícia Monteiro da Silva Freitas ◽  
Leandro de Almeida Resende

The objective of this work was to evaluate the productive performance of broccoli under different top-dressing organic fertilizations. The experiment was conducted under protected cultivation, in a completely randomized design with four replications, with two plants per experimental unit. Broccoli seedlings were produced in a commercial substrate in styrofoam trays. The seedlings were transplanted to plastic pots containing 10.0 L of substrate made up of subsoil and organic compost at the ratio of 3:1 (v/v), respectively, which is equivalent to about 20.0 t ha-1 of organic compost at planting. After seedling establishment, the top-dressing fertilization treatments were applied: gliricidia biomass associated or not with liquid biofertilizer of cattle manure to the soil and bokashi. Two control treatments were established: one with mineral fertilization recommended for the crop and the other without top-dressing fertilization. The broccoli production was evaluated (commercial standard). Plants that received mineral fertilizer were more productive, however, they were not significantly different (p>0.05), by Dunnet test, from the plants fertilized with 2.5 t ha-1 gliricidiabiomass (dry mass) associated with liquid biofertilizer (2.0 L m-2) applied to soil. Top-dressing fertilizations with only gliricidia, at 2.5 and 5.0 t ha-1 of biomass (dry mass), resulted in no significant increase in production of broccoli inflorescence. The use of bokashi in addition to gliricidia biomass and liquid biofertilizer reduced the efficiency of the fertilization compared with plants that received only gliricidia and liquid biofertilizer.


2013 ◽  
Vol 19 (1) ◽  
pp. 33-38 ◽  
Author(s):  
MA Tarafder ◽  
MQ Haque ◽  
MM Rahman ◽  
MR Khan

The experiment was conducted at the Bangladesh Institute of Nuclear Agriculture (BINA) sub-staion, Tajhat, Ranpure, using potato-Boro-T. aman rice cropping pattern with an objective to evaluate the direct and residual effects of sulphur and zinc on the growth, yield and nutrient uptake by the crops. The surface soil was sandy loam texture, pH 6.3, organic matter 1.24%, available sulphur 6.62 ppm and available zinc 0.45 ppm. The experiment comprised of eight treatments for potato S15Zn2 (T2, T4 and T8, S8Zn1 (T5 and T6)and S0Zn0 (T1, T3 and T7), for boro rice S20Zn4 (T3, T5, T6 and T7) and S0Zn0 (T1, T3, T4 and T6). The experiment was laid out in a randomized complete block design with three replications. Average tuber yield of potato (var. cardinal) varied from 28.29 to 32.86 t ha-1 with the highest yield in S15Zn2 treatment (100% recommended dose) and the lowest was in the S0Zn0 treatment (control). In the second crop (Boro rice), growth and yield attributes, grain and straw yields responded significantly to S and Zn applied either in the first crop or in both crops. The average grain yield varied from 3.51 to 5.27 t ha-1 over the treatments. In the third crop (T. aman rice), the grain and straw yields responded significantly to S and Zn applied either in the first and second crop or in the third crops. The grain yield of T. aman rice varied from 2.96 to 4.46 t ha-1 over the treatments. The growth and yield contributing characters were also significantly influenced by the treatment. There was a significant direct and residual effect of the treatments on S and Zn uptake by the crops.DOI: http://dx.doi.org/10.3329/pa.v19i1.16987 Progress. Agric. 19(1): 33 - 38, 2008 


2019 ◽  
Vol 11 (9) ◽  
pp. 73
Author(s):  
João Nacir Colombo ◽  
Mário Puiatti ◽  
Marcelo Rodrigo Krause ◽  
Marília Cecília Bittencourt ◽  
Janiele Cássia Barbosa Vieira ◽  
...  

Although several studies about intercropping green manures with vegetable crops have already been carried out, there are few studies in which the economic analysis was performed. The aim of the present study was to evaluate the economic profitability of the taro and Crotalaria juncea consortium, as well as broccoli, green maize and snow pea grown in succession. The treatments correspond to 10 different cutting dates of the sunn hemp during its intercropping with taro (55, 70, 85, 100, 115, 130, 145, 160, 190 and 220 DAS-days after sowing), plus the monoculture of the taro. Under the legumious cover crop straw were grown in succession: broccoli, green maize and snow pea. The use of Crotalaria juncea in a consortium does not affect the productivity and economic profitability of the taro when cutting up to 130 DAS. The residual effect of Crotalaria juncea grown in consortium with taro increases the economic yield of broccoli when the cutting is performed from 145 DAS. However, it does not affect green maize and snow pea. When the taro is cultivated intercropped with Crotalaria juncea and in succession broccoli, green maize and snow pea are grown, higher yields and economic incomes are obtained by cutting the leguminous green manure up to 130 DAS.


Author(s):  
A. K. Oliveira ◽  
J. S. S. Lima ◽  
A. M. A. Bezerra ◽  
G. S. O. Rodrigues ◽  
M. L. S. Medeiros

<p>Sistemas de cultivo com incorporação de adubos verdes podem preservar a capacidade produtiva do solo em longo prazo, oferecendo resíduos que proporcionarão melhorias nas condições físicas, química e biológica do solo tornando-o propício para a implantação de uma cultura sucedente. Diante disso, o trabalho teve como objetivo avaliar produção de rabanete sob o efeito residual da adubação verde no consórcio de beterraba e rúcula. O delineamento experimental usado foi em blocos casualizados com cinco repetições. Os tratamentos utilizados foram o efeito residual de quatro quantidades de flor-de-seda incorporadas ao solo (10, 25, 40 e 55 t ha-¹ em base seca). As características avaliadas na cultura do rabanete foram: altura e diâmetro de plantas, número de folhas, produtividade total e comercial de raízes, massa seca da parte aérea e de raízes. O efeito residual da incorporação de flor-de-seda ao solo na quantidade de 55 t ha-¹ proporcionou a maior produtividade de raízes comerciais de rabanete, e assim podemos afirmar que a adubação verde com flor-de-seda apresenta-se como uma prática promissora para o produtor de hortaliças em cultivo sucessivo.</p><p align="center"><strong><em>Radish production under the residual effect of green manure in the consortium beet and arugula</em></strong><strong><em></em></strong></p><p><strong>Abstract</strong><strong>: </strong>Cropping systems in with incorporation of green manures can preserve the productive capacity of the soil over time providing waste to the soil improvement in the conditions physical, chemical and biological, making it suitable for the implementation of a succeeding crop. Therefore the aim of this study was to evaluate the radish production under the residual effect of green manure in the consortium beet and arugula. The experimental design was a randomized complete block design with five replications. The treatments were the residual effect of four amounts of fleur-de-silk incorporated into the soil (10, 25, 40 and 55 t ha-¹ dry basis). The characteristics evaluated in the radish production were: plant height, diameter, total and commercial yield of roots, dry weight of shoots and roots. The residual effect of the fleur-de-silk incorporation into the soil in the amount of 55 t ha-¹ provided the highest yield of commercial radish roots.  The green manure with fleur-de-silk was presented as a promising practice for the producer of vegetables in succeeding crop.</p>


Author(s):  
Massimo Zaccardelli ◽  
Catello Pane ◽  
Ida Di Mola ◽  
Domenico Ronga ◽  
Mauro Mori

Highlights - Municipal solid organic waste compost (MSWC) integrated with N fertilizers can sustain vegetable production. - MSWC (at least 30 t ha-1 d.w.) replaced synthetic fertilizers for tomato and eggplant productions. - N fertilizer integration to the compost residual effect is necessary to sustain endive and broccoli productions. - MSWC (at 15 t ha-1 d.w.) needs 25% of N integration to reduce the gap with plant only fertilized with N fertilizer. - MSWC preserved soil quality and avoided accumulation of undesired metals, such as Cu and Zn.   Municipal waste compost was evaluated under open field conditions for replacing synthetic fertilizers in a vegetable three-year succession. Three compost rates, 45 t ha-1, 30 t ha-1 and 15 t ha-1 (dry matter), and compost at 15 t ha-1combined with 25%, and 50% of the full synthetic nitrogen rate, were compared to full and none synthetic nitrogen fertilizations. Crop succession was: tomato followed by endive in the first year; eggplant and, then, broccoli in the second year; tomato and, then, endive/broccoli, in the third year. The application of compost at a dose of at least 30 t ha-1 or at 15 t ha-1 with the addition of 25% of the full synthetic nitrogen rate, in Spring-Summer cycle, sustained growth and yield at levels comparable with those of synthetic nitrogen fertilization. However, only a very poor residual effect of the compost soil treatment on the yield of Autumn-Winter crops, was observed. Monitoring of nitrate content into the soil during cropping seasons, a reduction of the risk of groundwater pollution was displayed due to nitrates released by compost, respect to synthetic nitrogen fertilizer. The cumulative effects of compost application on soil properties were detected at the end of the field trials, registering changes in chemical parameters analyzed, except for phosphorus and boron.


2017 ◽  
Vol 15 (3) ◽  
pp. 499
Author(s):  
PAULO CÉSAR TIMOSSI ◽  
HILTON ROSA DA SILVA JUNIOR ◽  
SUZETE FERNANDES LIMA ◽  
RONALDO CASTRO ◽  
DIEIMISSON PAULO ALMEIDA

RESUMO- A adubação de sistema aliada à adubação verde pode aumentar a disponibilidade de nitrogênio no solo.Objetivou-se na pesquisa investigar se a disponibilidade antecipada de fertilizantes orgânico e mineral sobre o cultivode Crotalaria spectabilis e Crotalaria juncea influência nas características de produção da cultura do milho. Odelineamento experimental adotado foi o inteiramente casualizado, disposto em esquema fatorial 2 x 4, no qual o fatorA foi formado por duas espécies de adubos verdes (Crotalaria spectabilis e Crotalaria juncea) e o fator B foi formadopor três formas de fertilização (PK, NPK e orgânica) e pela ausência de fertilização, com oito repetições. Foramrealizadas avaliações das características agronômicas e produtivas da cultura do milho. O número de fileiras e númerosde grãos por fileira não diferiu entre as formas de fertilização. A maior altura de plantas de milho, altura de inserçãode espiga e produtividade de grãos foi obtida na área cultivada anteriormente com C. spectabilis. A fertilização comNPK e orgânica, com cama-de-aves, resultou em maior produtividade, porém com 800 kg ha-1 de NPK, valor superiorao recomendado. Conclui-se que a antecipação de fertilização do solo, associado ao cultivo de adubos verdes é viávelpara o cultivo da cultura do milho, a C. spectabilis proporciona maior produtividade de grãos de milho em sucessãoe a adubação orgânica, com cama-de-aves, é tão eficiente quanto à adubação mineral com NPK quando antecipada.Palavras-chave: Crotalaria spectabilis, Crotalaria juncea, cama-de-aves, adubação verde, adubação de sistema.PRE-FERTILIZATION WITH ORGANIC AND MINERAL FERTILIZERS ASSOCIATED WITH CROTALARIES IN MAIZEABSTRACT- The fertilization of system combined with green manure can enhance the availability of soil nitrogen.This study aimed to research whether the anticipated availability of organic and mineral fertilizers in the cultivationof Crotalaria spectabilis and Crotalaria juncea affects the characteristics of production of corn crop. The completelyrandomized design (CRD) was used, with eight replications, in factorial arrangement 2 x 4, in which the factor A wasformed by two species of green manure (Crotalaria spectabilis and Crotalaria juncea) and the factor B comprisedthree forms of fertilization (PK, NPK and organic) and the absence of fertilization. Assessments of agronomic andyield characteristics of corn crop were conducted. As conclusion,the anticipation of soil fertility, associated with greenmanure cultivation is viable for cultivation of corn crop, the C. spectabilis provides increased productivity of the corncrop, and the organic fertilization with bed of birds is as efficient as the mineral fertilization with NPK.Keywords: Crotalaria spectabilis, Crotalaria juncea, bed-of-birds, green manure, system fertilization.


2016 ◽  
Vol 53 (2) ◽  
pp. 288-307 ◽  
Author(s):  
W. MUPANGWA ◽  
C. THIERFELDER ◽  
A. NGWIRA

SUMMARYMultilocation experiments were established to determine the best strategy for using inorganic fertilizer in conservation agriculture (CA) systems that use green manure cover crops, namely sunhemp, velvet bean and cowpea grown in rotation with maize. The objectives of the study were to determine (i) the effect of half and full rates of basal fertilizer on maize and legume biomass yields, (ii) the residual effects of unfertilized, half and fully fertilized green manure legumes on maize grown after the legumes, and (iii) the residual effect of unfertilized, half and fully fertilized green manure legumes combined with basal and topdressing fertilizer on maize yields. Experimental design was a randomized complete block with basal fertilizer as a treatment in the green manure legumes phase. Previously, in the maize phase, green manure legume species were the main treatment with basal fertilizer as a subtreatment (sunhemp, velvet bean and cowpea: 0, 75, 150 kg ha−1and 0, 50, 100 kg ha−1, respectively). Nitrogen was applied in the maize phase at 0, 23, 46, 69 kg N ha−1as a sub-subtreatment in Malawi. Results showed that inorganic fertilizer is the most effective when applied to the maize, not green manure legumes. Biomass of green manure legumes, sunnhemp 8084 kg ha−1, velvet bean 7678 kg ha−1and cowpea 4520 kg ha−1, was not significantly affected by application of basal fertilizer. Maize production increased after the application of green manure legumes with maize-after-maize, maize-after-velvet bean, maize-after-sunnhemp and maize-after-cowpea, yielding 3804, 5440, 5446 and 5339 kg ha−1, respectively. Nitrogen increased maize yield regardless of the previously used green manure legumes species. Our results suggest that farmers should apply fertilizer to maize and grow green manure legumes on residual soil in CA systems. Despite growing green manure legumes, smallholders should apply nitrogen topdressing to maize grown using the green manure legumes in some agro-ecologies.


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