Nitrogen Rate and Placement for Grain Sorghum Production in No-Tillage Systems

jpa ◽  
1991 ◽  
Vol 4 (4) ◽  
pp. 531-535 ◽  
Author(s):  
R. E. Lamond ◽  
D. A. Whitney ◽  
J. S. Hickman ◽  
L. C. Bonczkowski
Weed Science ◽  
1994 ◽  
Vol 42 (4) ◽  
pp. 541-547 ◽  
Author(s):  
William K. Vencill ◽  
Philip A. Banks

Field research was conducted from 1987 to 1991 to evaluate the influence of four weed management systems on weed population and species dynamics in conventional-tillage and no-tillage grain sorghum production. These weed management systems included zero, low, medium, and high input systems. The weed seedbank increased faster in zero and low input weed management systems than in the high input weed management systems because of differences in weed control. Tillage influenced weed seed densities as well. Common ragweed, common lambsquarters, horseweed, and sicklepod seed densities often were greater in no-tillage than conventional-tillage plots. Common cocklebur and large crabgrass seed densities were usually greater in conventional-tillage than no-tillage plots. Smooth pigweed seed densities were not affected by tillage. Increasing weed management inputs diminished differences between tillage systems. Smooth pigweed dominated the weed populations after 4 yr in both tillage systems even in high input systems.


1982 ◽  
Vol 74 (2) ◽  
pp. 283-287 ◽  
Author(s):  
J. T. Touchton ◽  
W. A. Gardner ◽  
W. L. Hargrove ◽  
R. R. Duncan

2000 ◽  
Vol 92 (2) ◽  
pp. 321 ◽  
Author(s):  
Raj Khosla ◽  
Mark M. Alley ◽  
Paul H. Davis

2003 ◽  
Vol 93 (9) ◽  
pp. 1182-1189 ◽  
Author(s):  
A. Westphal ◽  
J. R. Smart

The population density of the reniform nematode, Rotylenchulus reniformis, was monitored at depths of 0 to 30, 30 to 60, 60 to 90, and 90 to 120 cm in a tillage and crop sequence trial in south Texas in 2000 and 2001. Main plots were subjected to three different tillage systems: conventional tillage (moldboard plowing and disking), ridge tillage, and no-tillage. Subplots were planted with three different crop sequences: spring cotton and fall corn every year; spring cotton and fall corn in one year, followed by corn for two years; and cotton followed by corn and then grain sorghum, one spring crop per year. The population density of R. reniformis on corn and grain sorghum was low throughout the soil profile. In plots planted with spring cotton and fall corn every year, fewer nematodes were found at depths of 60 to 120 cm in the no-tillage and ridge tillage systems than in the conventional tillage system. Population densities were lower at depths of 0 to 60 cm than at 60 to 120 cm. Soil moisture and cotton root length did not affect nematode population densities in the field. When soil was placed in pots and planted with cotton in the greenhouse, lower population densities developed in soil taken from depths of 0 to 60 cm than in soil from depths of 60 to 120 cm. Final nematode populations were similar in size in soil from the different tillage systems, but reproductive factors were higher in soil from plots with reduced-tillage systems than in soil from plots with conventional tillage. Reduced-tillage practices lowered the risk of increases in R. reniformis populations and reduced population densities following 2 years of non-hosts throughout soil depths, but population densities resurged to the same high levels as in soil planted with cotton every year during one season of cotton.


2012 ◽  
Vol 44 (4) ◽  
pp. 561-576 ◽  
Author(s):  
Jeffery R. Williams ◽  
Matthew J. Pachta ◽  
Kraig L. Roozeboom ◽  
Richard V. Llewelyn ◽  
Mark M. Claassen ◽  
...  

The economic feasibility of soybeans, grain sorghum, and corn in annual rotation with winter wheat using reduced tillage and no-tillage systems in the Central Great Plains was evaluated, with continuous wheat and grain sorghum also analyzed. Net returns were calculated using simulated yield and price distributions based on historical yields, two historical annual price series, and 2011 costs. Stochastic Efficiency with Respect to a Function was used to determine the preferred strategies under various risk preferences. The no-till wheat-soybean and reduced-till wheat-soybean systems are the first and second most preferred, regardless of the level of risk aversion.


1989 ◽  
Vol 29 (6) ◽  
pp. 843 ◽  
Author(s):  
JF Holland ◽  
WL Felton

Grain sorghum was sown at 5 sites in northern New South Wales to examine the response of this crop to no-tillage compared with cultivated fallows. The sites were at Duri and Tamworth in 1980-81, and Warialda, Croppa Creek and Burren Junction in 1982-83. Other treatments investigated were: rates of atrazine applied in the fallow at 4 sites, the gypsum x tillage interaction at 2 sites, and effect of stubble burning during the cultivated fallow at 2 sites. An average of 31 mm more water was stored in the soil with a no-tillage fallow, and this was associated with a consistent grain yield advantage averaging 0.45 t/ha compared with cultivated, stubble retained fallows over all sites. At Warialda and Croppa Creek the stubble on the cultivated treatments from the 1981 wheat crop was either retained or burnt. Moisture accumulation and yield were substantially reduced in the stubble burnt treatment, particularly at Warialda. There was a yield advantage of the no-tillage treatment over the stubble burnt cultivated treatment of about 1.8 t/ha at Warialda, and 0.7 t/ha at Croppa Creek. At Burren Junction, gypsum increased grain sorghum yield by 0.57 t/ha in both the cultivated and no-tillage treatments, indicating that it was not necessary to incorporate the gypsum to improve soil structure. The results of this study indicate that no-tillage sorghum, using atrazine as the primary method of weed control, is an efficient method of production. Potential yield advantages of about 0.5 t/ha over cultivated fallows with stubble retained, and greater yield advantages in comparison with cultivated fallows with burnt stubble, are associated with improved moisture storage.


jpa ◽  
1988 ◽  
Vol 1 (3) ◽  
pp. 202-206 ◽  
Author(s):  
O. B. Hesterman ◽  
F. J. Pierce ◽  
E. C. Rossman

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