2007•Unpublished venueRequires access

Effect of different tillage methods on grain yield and yield components of maize (Zea mays L.)

Mohammad Mehdi Rashidi, Fereydoun Keshavarzpour

Open publisher page 87 citations

Abstract

Tillage practices influence soil physical, chemical and biological characteristics, which in turn may alter plant’s yield and growth. Field experiments were conducted to study the effects of seven tillage methods on grain yield and yield components of maize (Zea mays L.) during 2004 and 2005. The soil of the experimental site was a fine, mixed, thermic, Typic Haplacambids clay-loam soil. Tillage treatments in the study were moldboard plow + two passes of disk harrow (MDD), moldboard plow + one pass of rotary tiller (MR), two passes of disk harrow (DD), one pass of tine cultivator + one pass of disk harrow (CD), one pass of rotary tiller (R), one pass of tine cultivator (C) and no-tillage (NT) as direct drilling method. Number of plants per hectare, number of cobs per plant, number of lines per cob, number of grains per line, cob diameter and cob length (yield components) were measured and consequently grain yield was determined for all treatments. The study indicated that tillage method significantly (P ≤ 0.05) affected number of plants per hectare and number of lines per cob; the former being the major yield component explaining grain yield of maize under different tillage methods. The highest number of plants per hectare was obtained for the MDD and lowest for the NT treatment. The results suggested that tillage method significantly affected grain yield of maize in the order of MDD > MR > DD > CD > R > C > NT owing to differences in number of plants per hectare in the same order. Therefore, moldboard plow followed by two passes of disk harrow was a more appropriate and profitable tillage method in improving grain yield of maize due to reduced soil compaction, enhanced seed-soil contact, increased soil moisture storage and suppressing weed growth.

About this research paper

What this paper is about

Tillage practices influence soil physical, chemical and biological characteristics, which in turn may alter plant’s yield and growth. Field experiments were conducted to study the effects of seven tillage methods on grain yield and yield components of maize (Zea mays L.) during 2004 and 2005. The soil of the experimental site was a fine, mixed, thermic, Typic Haplacambids clay-loam soil. Tillage treatments in the study were moldboard plow + two passes of disk harrow (MDD), moldboard plow + one pass of rotary tiller (MR), two passes of disk harrow (DD), one pass of tine cultivator + one pass of disk harrow (CD), one pass of rotary tiller (R), one pass of tine cultivator (C) and no-tillage (NT) as direct drilling method. Number of plants per hectare, number of cobs per plant, number of lines per cob, number of grains per line, cob diameter and cob length (yield components) were measured and consequently grain yield was determined for all treatments. The study indicated that tillage method significantly (P ≤ 0.05) affected number of plants per hectare and number of lines per cob; the former being the major yield component explaining grain yield of maize under different tillage methods. The highest number of plants per hectare was obtained for the MDD and lowest for the NT treatment. The results suggested that tillage method significantly affected grain yield of maize in the order of MDD > MR > DD > CD > R > C > NT owing to differences in number of plants per hectare in the same order. Therefore, moldboard plow followed by two passes of disk harrow was a more appropriate and profitable tillage method in improving grain yield of maize due to reduced soil compaction, enhanced seed-soil contact, increased soil moisture storage and suppressing weed growth.

Why it matters

OpenAlex reports 87 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Tillage practices influence soil physical, chemical and biological characteristics, which in turn may alter plant’s yield and growth. Field experiments were conducted to study the effects of seven tillage methods on grain yield and yield components of maize (Zea mays L.) during 2004 and 2005. The soil of the experimental site was a fine, mixed, thermic, Typic Haplacambids clay-loam soil. Tillage treatments in the study were moldboard plow + two passes of disk harrow (MDD), moldboard plow + one pass of rotary tiller (MR), two passes of disk harrow (DD), one pass of tine cultivator + one pass of disk harrow (CD), one pass of rotary tiller (R), one pass of tine cultivator (C) and no-tillage (NT) as direct drilling method. Number of plants per hectare, number of cobs per plant, number of lines per cob, number of grains per line, cob diameter and cob length (yield components) were measured and consequently grain yield was determined for all treatments. The study indicated that tillage method significantly (P ≤ 0.05) affected number of plants per hectare and number of lines per cob; the former being the major yield component explaining grain yield of maize under different tillage methods. The highest number of plants per hectare was obtained for the MDD and lowest for the NT treatment. The results suggested that tillage method significantly affected grain yield of maize in the order of MDD > MR > DD > CD > R > C > NT owing to differences in number of plants per hectare in the same order. Therefore, moldboard plow followed by two passes of disk harrow was a more appropriate and profitable tillage method in improving grain yield of maize due to reduced soil compaction, enhanced seed-soil contact, increased soil moisture storage and suppressing weed growth.

Key concepts: Tillage, Plough, Harrow, Tiller (botany), Agronomy, Hectare, Mathematics, Yield (engineering)

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of different tillage methods on grain yield and yield components of maize (Zea mays L.) — Research Paper | ScholarLens