Arid
DOI10.1016/S0378-4290(02)00085-0
Predicting plant leaf area production: shoot assimilate accumulation and partitioning, and leaf area ratio, are stable for a wide range of sorghum population densities
Lafarge, TA; Hammer, GL
通讯作者Lafarge, TA
来源期刊FIELD CROPS RESEARCH
ISSN0378-4290
出版年2002
卷号77期号:2-3页码:137-151
英文摘要

Predicting plant leaf area production is required for modelling carbon balance and tiller dynamics in plant canopies. Plant leaf area production can be studied using a framework based on radiation intercepted, radiation use efficiency (RUE) and leaf area ratio (LAR) (ratio of leaf area to net above-ground biomass). The objective of this study was to test this framework for predicting leaf area production of sorghum during vegetative development by examining the stability of the contributing components over a large range of plant density. Four densities, varying from 2 to 16 plants m(-2), were implemented in a field experiment. Plants were either allowed to tiller or were maintained as uniculm by systematic tiller removal. In all cases, intercepted radiation was recorded daily and leaf area and shoot dry matter partitioning were quantified weekly at individual culm level. Up to anthesis, a unique relationship applied between fraction of intercepted radiation and leaf area index, and between shoot dry weight accumulation and amount of intercepted radiation, regardless of plant density. Partitioning of shoot assimilate between leaf, stem and head was also common across treatments up to anthesis, at both plant and culm levels. The relationship with thermal time (TT) from emergence of specific leaf area (SLA) and LAR of tillering plants did not change with plant density. In contrast, SLA of uniculm plants was appreciably lower under low-density conditions at any given TT from emergence. This was interpreted as a consequence of assimilate surplus arising from the inability of the plant to compensate by increasing the leaf area a culm could produce. It is argued that the stability of the extinction coefficient, RUE and plant LAR of tillering plants observed in these conditions provides a reliable way to predict leaf area production regardless of plant density. Crown Copyright (C) 2002 Published by Elsevier Science B.V. All rights reserved.


英文关键词sorghum plant density tillering intercepted radiation extinction coefficient radiation use efficiency shoot assimilate partitioning specific leaf area leaf area ratio
类型Article
语种英语
国家France ; Australia
收录类别SCI-E
WOS记录号WOS:000177114100006
WOS关键词RADIATION-USE EFFICIENCY ; ARID TROPICAL ENVIRONMENT ; RELATIVE GROWTH-RATE ; LIGHT INTERCEPTION ; GRAIN-SORGHUM ; PEARL-MILLET ; BIOMASS ACCUMULATION ; SIMULATION-MODEL ; WATER-USE ; YIELD
WOS类目Agronomy
WOS研究方向Agriculture
来源机构Commonwealth Scientific and Industrial Research Organisation
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/142614
作者单位(1)CIRAD CA, Programme Cultures Alimentaires, F-34398 Montpellier 5, France;(2)Queensland Dept Primary Ind, Agr Prod Syst Res Unit, Toowoomba, Qld 4350, Australia;(3)Univ Queensland, Sch Land & Food Sci, Brisbane, Qld 4072, Australia
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GB/T 7714
Lafarge, TA,Hammer, GL. Predicting plant leaf area production: shoot assimilate accumulation and partitioning, and leaf area ratio, are stable for a wide range of sorghum population densities[J]. Commonwealth Scientific and Industrial Research Organisation,2002,77(2-3):137-151.
APA Lafarge, TA,&Hammer, GL.(2002).Predicting plant leaf area production: shoot assimilate accumulation and partitioning, and leaf area ratio, are stable for a wide range of sorghum population densities.FIELD CROPS RESEARCH,77(2-3),137-151.
MLA Lafarge, TA,et al."Predicting plant leaf area production: shoot assimilate accumulation and partitioning, and leaf area ratio, are stable for a wide range of sorghum population densities".FIELD CROPS RESEARCH 77.2-3(2002):137-151.
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