Water Use Efficiency and Biomass Partitioning of Three Different Miscanthus Genotypes with Limited and Unlimited Water Supply

芒属 生物 用水效率 多年生植物 农学 生物量(生态学) 干物质 蒸腾作用 含水量 生物量分配 用水 蒸汽压差 生物能源 植物 灌溉 光合作用 生态学 生物燃料 工程类 岩土工程
作者
J. C. Brown
出处
期刊:Annals of Botany [Oxford University Press]
卷期号:86 (1): 191-200 被引量:191
标识
DOI:10.1006/anbo.2000.1183
摘要

Miscanthus species, which are C 4 perennial grasses, have a high biomass potential but yields at many sites in Europe can be limited by insufficient water supply and plant survival is endangered under extreme summer drought. A pot experiment was conducted to measure the influence of reduced water supply on the water use efficiency (WUE) and biomass partitioning of three Miscanthus genotypes ( M. x giganteus, M. sacchariflorus , and a M. sinensis hybrid) in a controlled environment. The experiment consisted of three phases (phase 1 = 0–20 d; phase 2 = 21–39 d; phase 3 = 40–54 d) punctuated by destructive harvests. In phase 1, soil moisture was non-limiting. In the second and third phases, lowered soil moisture contents induced water deficits. Air vapour pressure deficit (VPD) was 0.49 ± 0.05 kPa. Water deficits caused leaf senescence in M. x giganteus and M. sacchariflorus , but not in the M. sinensis hybrid. Green leaf conductances were lowest in M. sinensis under water deficit, indicating stomatal regulation. Water use efficiency for whole plants of each genotype ranged from 11.5 to 14.2 g dry matter (DM) kg −1 H 2 O but did not differ significantly between genotypes or water treatments under the conditions of this experiment. However, differences in dry matter partitioning to the shoot (the harvestable component) resulted in genotypic differences in WUE, calculated on a harvestable dry matter basis, which ranged from 4.1 g DM kg −1 H 2 O for M. sacchariflorus to 2.2 g DM kg −1 H 2 O for M. x giganteus . Copyright 2000 Annals of Botany Company
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