Javascript must be enabled to continue!
DIFFERENTIAL RESPONSE OF MAIZE AND MUNGBEAN TO TOBACCO ALLELOPATHY
View through CrossRef
SUMMARYSeedling emergence and stand establishment of crops following the allelopathic crops are often affected. When the crops are grown in rotation, they are influenced by allelopathy of preceding crop. In this study, consisting of three independent experiments, allelopathic effect of tobacco, rich in several allelochemicals, on the subsequent maize and mungbean crops was investigated. In first experiment, maize and mungbean were sown in field previously occupied by tobacco or was fallow. In second experiment, maize and mungbean were planted in pots after the harvest of tobacco. Whereas in third experiment, maize and mungbean seeds were soaked in water or 2 and 4 mM nicotine and were then sown in soil-filled pots. Stand establishment, leaf emergence and growth of maize were significantly improved when grown after tobacco, whereas in mungbean these characters were suppressed when grown after tobacco. Likewise external application of nicotine improved the emergence uniformity, seedling dry weight and chlorophyll contents in maize and suppressed these parameters in mungbean. Tobacco allelopathy also increased the total soil nitrogen, zinc, iron, nicotine and total phenolics. Nicotine-induced change in chlorophyll contents and α-amylase activity seems the possible reason of differential response of maize and mungbean to tobacco allelopathy. When grown in rotation with tobacco, stand establishment and growth of maize were improved, whereas mungbean stand and growth were suppressed. In crux, allelopathic nature of the crops must be considered while making the crop rotations.
Cambridge University Press (CUP)
Title: DIFFERENTIAL RESPONSE OF MAIZE AND MUNGBEAN TO TOBACCO ALLELOPATHY
Description:
SUMMARYSeedling emergence and stand establishment of crops following the allelopathic crops are often affected.
When the crops are grown in rotation, they are influenced by allelopathy of preceding crop.
In this study, consisting of three independent experiments, allelopathic effect of tobacco, rich in several allelochemicals, on the subsequent maize and mungbean crops was investigated.
In first experiment, maize and mungbean were sown in field previously occupied by tobacco or was fallow.
In second experiment, maize and mungbean were planted in pots after the harvest of tobacco.
Whereas in third experiment, maize and mungbean seeds were soaked in water or 2 and 4 mM nicotine and were then sown in soil-filled pots.
Stand establishment, leaf emergence and growth of maize were significantly improved when grown after tobacco, whereas in mungbean these characters were suppressed when grown after tobacco.
Likewise external application of nicotine improved the emergence uniformity, seedling dry weight and chlorophyll contents in maize and suppressed these parameters in mungbean.
Tobacco allelopathy also increased the total soil nitrogen, zinc, iron, nicotine and total phenolics.
Nicotine-induced change in chlorophyll contents and α-amylase activity seems the possible reason of differential response of maize and mungbean to tobacco allelopathy.
When grown in rotation with tobacco, stand establishment and growth of maize were improved, whereas mungbean stand and growth were suppressed.
In crux, allelopathic nature of the crops must be considered while making the crop rotations.
Related Results
Us Public Health Service Clinical Practice Guideline: Treating Tobacco Use and Dependence
Us Public Health Service Clinical Practice Guideline: Treating Tobacco Use and Dependence
Treating Tobacco Use and Dependence, a Public Health Service-sponsored Clinical Practice Guideline, is a product of the Tobacco Use and Dependence Guideline Panel ("the panel"), co...
Are Farmers Willing to Substitute Tobacco Cultivation? Evidence From Lichuan City, China
Are Farmers Willing to Substitute Tobacco Cultivation? Evidence From Lichuan City, China
Abstract
Introduction
Tobacco crop substitution is a critical element in implementing comprehensive tobacco control policies. Un...
Similarity in the microbial community structure of tobacco from geographically similar regions
Similarity in the microbial community structure of tobacco from geographically similar regions
Abstract
To investigate the structural and functional similarities of microbial communities in burnt-sweetness alcoholized tobacco as a function of distance from the equato...
Tobacco and Cancer: An American Association for Cancer Research Policy Statement
Tobacco and Cancer: An American Association for Cancer Research Policy Statement
Executive Summary
The evidence against tobacco use is clear, incontrovertible, and convincing; so is the need for urgent and immediate action to stem the global tide...
A new efficient multiobject detection and size calculation for blended tobacco shred using an improved YOLOv7 network and LWC algorithm
A new efficient multiobject detection and size calculation for blended tobacco shred using an improved YOLOv7 network and LWC algorithm
Abstract
Detection of the four tobacco shred varieties, including tobacco silk, cut stem, expended tobacco silk, and reconstituted tobacco shred, and the subsequent calcula...
Willingness to Stop Growing of Tobacco in Uganda
Willingness to Stop Growing of Tobacco in Uganda
Abstract 10 Background: Tobacco use is the leading cause of premature death and disability in both developed and developing countries. One aspect of tobacco control is convincing f...
The Plain Packaging of Tobacco Products
The Plain Packaging of Tobacco Products
The Plain Packaging of Tobacco ProductsThis special edition of the QUT Law Review considers the international debate over the introduction of Australia's pioneering plain packaging...
KELAYAKAN USAHATANI JAGUNG HIBRIDA DI KABUPATEN MUNA PROVINSI SULAWESI TENGGARA
KELAYAKAN USAHATANI JAGUNG HIBRIDA DI KABUPATEN MUNA PROVINSI SULAWESI TENGGARA
<p>Feasibility Study of Hybrid Maize Farming in Muna District Southeast Sulawesi Province. Maize harvest area in 2015 in Muna District was 13,159 ha with the production by 32...

