Showing posts with label agricultural systems. Show all posts
Showing posts with label agricultural systems. Show all posts

Wednesday, June 8, 2022

Nutrient accumulation, balance and partition patterns in different wheat production systems

 

Little research has been done on the accumulation of N, P, K, and S in wheat plants growing under different crop production systems in the Pampean Semiarid Region. Consequently, the effects of wheat-grazing (TP), wheat-wheat (TT), and wheat-clover (TL), with and without fertilizer, production systems on total aerial dry matter (TADM) and N, P, K, and S accumulation at different growth stages were studied. Nutrient plant concentration decreased with the length of the cycle. Phosphorus and sulfur adequate levels were observed along wheat growing season. N deficiencies were observed since booting wheat growth stage. Potassium concentration sharply dropped between 90-140 growing days. Nitrogen, P, K and S uptake (kg ha-1) gradually increased reaching the highest value at booting. Legume in crop sequences gave highest wheat dry matter, nutrient uptake and grain yield. Fertilizer application increased TADM and grain yield only in TT and TL.


Galantini J.A., M.R. Landriscini, R.A. Rosell. 2000. Patrones de acumulación, balance y partición de nutrientes en diferentes sistemas de producción de trigo. Revista de Investigaciones Agropecuarias (RIA-INTA) 29 (2) 99-110.


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Tuesday, November 17, 2020

Factors determining phosphorus availability in soils under no tillage in southwest of Buenos Aires

 

The objective of this work was to analyze factors that would affect P availability for winter crops in soils under no tillage (SD) of the southwestern portion of Buenos Aires province –Argentina–. Extractable P, microbial activity and acid phosphatase activity presented a great stratification in all evaluated sites and years, which could affect P availability. Also, in 10-20 cm there were limitations in aeration porosity, which could affect the crop accessibility to soil P. These factors would explain the high response to phosphoric fertilization in soils under SD where P values were above sufficiency levels.

Extractable P; Stratification; Fertilization.

López F.M., M.E. Duval, J.M. Martínez, J.A. Galantini. 2019. Condicionantes de la disponibilidad de fósforo en suelos bajo siembra directa del sudoeste bonaerense. Ciencia del Suelo 37 (1) 158-163.

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Cover crops reduce environmental impact by improving soil biological properties and crop yield

 

Cover crops (CC) represent a potential practice to reduce the use of herbicides and the impact on the environment. In addition to controlling weeds and increasing crop yields, they allow to increase microbial biomass and activity through the addition of crop residues. The objective of this work was to determine the effects of the inclusion of CC and herbicide application on microbial activity, labile organic matter and crop yield. The assay was done under a soybean - corn rotation system without tillage. It was made on a split plot design with three replicates, where the main factor was the previous crop of the summer crop, a cover crop, and bare fallow (B). The secondary factor was the post-emergence chemical control of weeds during the summer crop, with and without glyphosate applications. The soil sampling was carried out at 10 cm depth during four consecutive crop seasons (2013/2014, 2015/2016; 2016/2017 and 2017/2018), until 15 days after applying the last dose of glyphosate. The biological variables Respiration (R); Fluorescein diacetate (FDA), Acid Phosphatase (AF); and chemical soil variables, particulate organic carbon (POC), particulate organic nitrogen (PON), Anaerobic nitrogen (AnN), and soybean and corn yields were measured. In addition, the environmental impact index for each management was calculated. In general, the inclusion of CC increased R, 51% the FDA and 21% AF; and the applications of herbicide decreased contents of POC by 36%, PON 40% and AnN by 25% in one crop seasons apparently influenced by the temperatures and rainfall. Soybean and corn yields were higher with applications, ardless of the previous crop. However, the plots with CC without herbicide application exceeded the levels of B without application by 30%. The CC favored the biological properties of the soil without modify crops yields, reducing the environmental risk 64% even making applications. On the other hand, the applications of herbicide affected the labile soil organic matter fractions increasing the environmental risk respect to the management without applications. From the evaluated soil conditions, CC used in agricultural systems to promote soil biological properties and crop yields is recommended. This practice reduces environmental impact even in combination with herbicide application.

Triticale, Rye, Vetch, Glyphosate

Boccolini M.F., C.R. Cazorla, J.A. Galantini, P.A. Belluccini, T. Baigorria. 2019. Cultivos de cobertura disminuyen el impacto ambiental mejorando propiedades biológicas del suelo y el rendimiento de los cultivos. RIA (INTA) 45(3) 412-425.

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Soil stabilisation by water repellency under no-till management for soils with contrasting mineralogy and carbon quality

 

No-till soil management is common around the globe, but the impacts on soil structural quality varies depending on cropping practice and inherent soil properties. This study explored water repellency as a driver of soil stabilization, as affected by soil mineralogy, granulometry and organic carbon quality in three Mollisols and one Vertisol under no-till management and with different levels of cropping intensity. The studied soils were located along a west-east textural gradient in the northern part of the Pampean region of Argentina. Cropping intensity treatments evaluated in each one of the soils were: Poor Agricultural Practices (PAP) close to a monoculture, Good Agricultural Practices (GAP) involving a diverse crop rotation and more targeted inputs, and the soil in the surrounding natural environment (NE) as a reference. NE had the greatest aggregate stability (MWD) of all cropping intensities, with GAP being more stable than PAP for Mollisols and PAP being greater than GAP for the Vertisol. This trend matched the Repellency Index (Rindex), with greater Rindex associated with greater MWD, including the difference between the Mollisols and Vertisol. However, the persistence of water repellency, measured by the Water Drop Penetration Time (WDPT) test followed the trend NE > GAP > PAP regardless of soil type. The increases in Rindex and MWD were related to higher intensification as measured by the Crop Sequence Index, and decreased with greater soybean occurrence in the sequence. Both WDPT and Rindex were closely related to aggregate stability, particularly for Mollisols. These results highlight the importance of considering the inherent soil characteristics texture and mineralogy to understand aggregate stabilization mediated by water repellency. Good correlations between soil water repellency, organic carbon fractions and aggregate stability were found. Under no-till, crop rotations can be altered to increase soil stability by inducing greater water repellency in the soils. The findings suggest that water repellency is a major property influencing soil structure stabilization, thus providing a useful quality indicator

Behrends Kraemer F., P. Hallett, H.J.M. Morrás, L. Garibaldi, D. J. Cosentino, M. Duval, J.A. Galantini. 2019. Soil stabilisation by water repellency under no-till management for soils with contrasting mineralogy and carbon quality. Geoderma 355: 113902. Doi 10.1016/j.geoderma.2019.113902

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Friday, August 30, 2019

Soil stabilisation by water repellency under no-till management for soils with contrasting mineralogy and carbon quality


No-till soil management is common around the globe, but the impacts on soil structural quality varies depending on cropping practice and inherent soil properties. This study explored water repellency as a driver of soil stabilization, as affected by soil mineralogy, granulometry and organic carbon quality in three Mollisols and one Vertisol under no-till management and with different levels of cropping intensity. The studied soils were located along a west-east textural gradient in the northern part of the Pampean region of Argentina. Cropping intensity treatments evaluated in each one of the soils were: Poor Agricultural Practices (PAP) close to a monoculture, Good Agricultural Practices (GAP) involving a diverse crop rotation and more targeted inputs, and the soil in the surrounding natural environment (NE) as a reference. NE had the greatest aggregate stability (MWD) of all cropping intensities, with GAP being more stable than PAP for Mollisols and PAP being greater than GAP for the Vertisol. This trend matched the Repellency Index (Rindex), with greater Rindex associated with greater MWD, including the difference between the Mollisols and Vertisol. However, the persistence of water repellency, measured by the Water Drop Penetration Time (WDPT) test followed the trend NE > GAP > PAP regardless of soil type. The increases in Rindex and MWD were related to higher intensification as measured by the Crop Sequence Index, and decreased with greater soybean occurrence in the sequence. Both WDPT and Rindex were closely related to aggregate stability, particularly for Mollisols. These results highlight the importance of considering the inherent soil characteristics texture and mineralogy to understand aggregate stabilization mediated by water repellency. Good correlations between soil water repellency, organic carbon fractions and aggregate stability were found. Under no-till, crop rotations can be altered to increase soil stability by inducing greater water repellency in the soils. The findings suggest that water repellency is a major property influencing soil structure stabilization, thus providing a useful quality indicator

Behrends Kraemer F., P. Hallett, H.J.M. Morrás, L. Garibaldi, D. J. Cosentino, M. Duval, J.A. Galantini. 2019. Soil stabilisation by water repellency under no-till management for soils with contrasting mineralogy and carbon quality. Geoderma 355: 113902. Doi 10.1016/j.geoderma.2019.113902

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ResearchGate     Journal      Google Drive 


Tuesday, July 17, 2018

Soil Physical compaction in production systems


Physical properties in no till soils of the southwest of Buenos Aires
Soil physical quality has great importance as a regulator of several processes that affect the functioning of agroecosystems. However, because physical quality problems are complex, persistent, difficult to solve, often its importance is not recognized and its effects are attributed to other causes. Since the large expansion of no tillage (NT) in the southwest of Buenos Aires (SOB), it is needed a more detailed knowledge of the physical condition of soils under NT. In addition, in this chapter there were included some aspects to be considered in the future for the adequate implementation of the NT in the region, which would allow the development of conservation agriculture (CA). Soils under NT in the region showed great variations in the accumulation of surface residues and a large proportion did not have adequate soil cover (> 30%), a necessary requirement of CA. Therefore, in studies that evaluate the effect of NT it is crucial to detail both the amount of residues and the soil cover. In terms of soil porosity, the main limitation was associated with low macroporosity (pores> 30 μm) that would affect soil aeration and root growth. Although it is not possible to attribute the loss of macroporosity to NT management, the way in which it has been implemented in the region (e. g. used in soils with a plow pan, lack of rotations, scarce soil cover) has not been able to reverse the problems of physical degradation. In soils of the SOB under NT it is necessary the development of land management practices that contribute to the biotic regeneration of soil structure (e.g. pasture rotations, inclusion of crops with deep roots) to ensure adequate physical quality. In addition, in the region it would be very important to increase soil cover by residues and to establish crop rotations, to move towards CA.


López, F.M.; M. Duval; J.M. Martínez; J.A. Galantini. 2018. Propiedades físicas en suelos bajo siembra directa del sudoeste bonaerense. En: Compactaciones Naturales y Antrópicas en Suelos Argentinos (Eds. Perla Imbellone y Carina Álvarez) 532-547.

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Thursday, July 5, 2018

Cover Crops in the Production System


Cover crops in the Southeastern region of Buenos Aires, Argentina: effects on organic matter physical fractions and nutrient availability
In the Southeastern region of Buenos Aires province, soybean monoculture has led to a decline in soil organic matter (SOM) levels in soil, mostly the labile fractions. The reduction of SOM has a negative impact on the soil environment. Cover crops (CC) constitute an alternative to maintain or improve SOM levels. The aim of this study was to determine the effect of oat as CC on (a) the SOM dynamics and (b) the availability of macro- and micronutrients in a representative soil of the Southeastern region of Buenos Aires province. Total organic carbon (TOC) and nitrogen (TON), as well as their labile and mineral-associated fractions, and macro- and micronutrient availability were determined. The treatments were soybean monoculture with and without oat as cover crop. The increases in SOC and TON were 22.7% and 11%, respectively, when CC was included to the soybean monoculture. These increases were observed mostly in the labile fractions, with increases of 61.3 and 38.7% for the particulate coarse organic carbon (PCOf) and particulate fine organic carbon (PCOf), respectively, and 79.2% for the particulate coarse organic nitrogen (NOPg). Regarding the nutrients, an increase of 47.6% was observed in manganese (Mn) in the first 5 cm of soil depth, and a decrease in phosphorous (P) availability in the same soil layer due to its consumption and retention by CC. It can be conclude that CC presented a surface soil effect on the dynamic of SOM, increasing C, N, and available Mn contents, but decreasing soil P availability
Oat, Soybean monoculture, Particulate organic carbon and nitrogen

Beltrán M.J., H. Sainz Rozas, J.A. Galantini, R.I. Romaniuk, P. Barbieri. 2018. Cover crops in the Southeastern region of Buenos Aires, Argentina: effects on organic matter physical fractions and nutrient availability. Environmental Earth Sciences 77:428. DOI: 10.1007/s12665-018-7606-0.
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Wednesday, April 20, 2016

Soil organic matter quality, quantity and distribution under different tillage systems

Galantini, J.A.; M. Duval; J.M. Martinez; V. Mora; R. Baigorri & J.M. García-Mina. 2016. Quality and quantity of organic fractions as affected by soil depth in an argiudoll under till and no-till systems. International Journal of Plant & Soil Science 10 (5) - doi:10.9734/IJPSS/2016/25205


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