Seed germination ecology of itchgrass (Rottboellia cochinchinensis)

Itchgrass is a weed of many crops throughout the tropics and one of the most important grass weeds of rainfed rice. Experiments were conducted in the laboratory and screenhouse to determine the effects of light, alternating day/night temperatures, high temperature pretreatment, water stress, seed bu...

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Main Authors: Bolfrey-Arku, Grace E-K., Chauhan, Bhagirath S., Johnson, David E.
Format: Journal Article
Language:Inglés
Published: Cambridge University Press 2011
Subjects:
Online Access:https://hdl.handle.net/10568/165127
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author Bolfrey-Arku, Grace E-K.
Chauhan, Bhagirath S.
Johnson, David E.
author_browse Bolfrey-Arku, Grace E-K.
Chauhan, Bhagirath S.
Johnson, David E.
author_facet Bolfrey-Arku, Grace E-K.
Chauhan, Bhagirath S.
Johnson, David E.
author_sort Bolfrey-Arku, Grace E-K.
collection Repository of Agricultural Research Outputs (CGSpace)
description Itchgrass is a weed of many crops throughout the tropics and one of the most important grass weeds of rainfed rice. Experiments were conducted in the laboratory and screenhouse to determine the effects of light, alternating day/night temperatures, high temperature pretreatment, water stress, seed burial depth, and rice residue on seed germination and seedling emergence of itchgrass in the Philippines. Two populations were evaluated and the results were consistent for both populations. Germination in the light/dark regime was greater at alternating day/night temperatures of 25/15 C than at 35/25, 30/20, or 20/10 C. Light was not a requirement for germination, but a light/dark regime increased germination by 96%, across temperature and population. A 5-min high temperature pretreatment for 50% inhibition of maximum itchgrass germination ranged from 145 to 151 C with no germination when seeds were exposed to ≥ 180 C. The osmotic potential required for 50% inhibition of maximum germination was −0.6 MPa for itchgrass, although some seeds germinated at −0.8 MPa. Seedling emergence was greatest for seeds placed on the soil surface, and emergence declined with increasing soil burial depth; no seedlings emerged from seeds buried at 10 cm. The addition of rice residue to soil surface in pots at rates equivalent to 4 to 6 Mg ha−1reduced itchgrass seedling emergence. Since seedling emergence was greatest at shallow depths and germination was stimulated by light, itchgrass may become a problem in systems where soil is cultivated at shallow depths. Knowledge gained in this study could contribute to developing components of integrated weed management strategies for itchgrass.
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spelling CGSpace1651272024-12-19T14:11:30Z Seed germination ecology of itchgrass (Rottboellia cochinchinensis) Bolfrey-Arku, Grace E-K. Chauhan, Bhagirath S. Johnson, David E. crop residues drought stress ecology germination inhibition osmosis poaceae rottboellia cochinchinensis seed germination seedlings seeds soil stress temperature tropical zones weed control weeds Itchgrass is a weed of many crops throughout the tropics and one of the most important grass weeds of rainfed rice. Experiments were conducted in the laboratory and screenhouse to determine the effects of light, alternating day/night temperatures, high temperature pretreatment, water stress, seed burial depth, and rice residue on seed germination and seedling emergence of itchgrass in the Philippines. Two populations were evaluated and the results were consistent for both populations. Germination in the light/dark regime was greater at alternating day/night temperatures of 25/15 C than at 35/25, 30/20, or 20/10 C. Light was not a requirement for germination, but a light/dark regime increased germination by 96%, across temperature and population. A 5-min high temperature pretreatment for 50% inhibition of maximum itchgrass germination ranged from 145 to 151 C with no germination when seeds were exposed to ≥ 180 C. The osmotic potential required for 50% inhibition of maximum germination was −0.6 MPa for itchgrass, although some seeds germinated at −0.8 MPa. Seedling emergence was greatest for seeds placed on the soil surface, and emergence declined with increasing soil burial depth; no seedlings emerged from seeds buried at 10 cm. The addition of rice residue to soil surface in pots at rates equivalent to 4 to 6 Mg ha−1reduced itchgrass seedling emergence. Since seedling emergence was greatest at shallow depths and germination was stimulated by light, itchgrass may become a problem in systems where soil is cultivated at shallow depths. Knowledge gained in this study could contribute to developing components of integrated weed management strategies for itchgrass. 2011-06 2024-12-19T12:54:43Z 2024-12-19T12:54:43Z Journal Article https://hdl.handle.net/10568/165127 en Cambridge University Press Bolfrey-Arku, Grace E-K.; Chauhan, Bhagirath S. and Johnson, David E. 2011. Seed germination ecology of itchgrass (Rottboellia cochinchinensis). Weed sci., Volume 59 no. 2 p. 182-187
spellingShingle crop residues
drought stress
ecology
germination
inhibition
osmosis
poaceae
rottboellia cochinchinensis
seed germination
seedlings
seeds
soil
stress
temperature
tropical zones
weed control
weeds
Bolfrey-Arku, Grace E-K.
Chauhan, Bhagirath S.
Johnson, David E.
Seed germination ecology of itchgrass (Rottboellia cochinchinensis)
title Seed germination ecology of itchgrass (Rottboellia cochinchinensis)
title_full Seed germination ecology of itchgrass (Rottboellia cochinchinensis)
title_fullStr Seed germination ecology of itchgrass (Rottboellia cochinchinensis)
title_full_unstemmed Seed germination ecology of itchgrass (Rottboellia cochinchinensis)
title_short Seed germination ecology of itchgrass (Rottboellia cochinchinensis)
title_sort seed germination ecology of itchgrass rottboellia cochinchinensis
topic crop residues
drought stress
ecology
germination
inhibition
osmosis
poaceae
rottboellia cochinchinensis
seed germination
seedlings
seeds
soil
stress
temperature
tropical zones
weed control
weeds
url https://hdl.handle.net/10568/165127
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