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Genotypic variation in rice yield enhancement by elevated CO2 relates to growth before heading, and not to maturity group

机译:CO 2浓度升高可提高水稻产量的基因型变化与抽穗前的生长有关,与成熟组无关

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摘要

Maturity group (based on the number of days to maturity) is an important growth trait for determining crop productivity, but there has been no attempt to examine the effects of elevated [CO2] on yield enhancement of rice cultivars with different maturity groups. Since early-maturing cultivars generally show higher plant N concentration than late-maturing cultivars, it is hypothesized that [CO2]-induced yield enhancement might be larger for early-maturing cultivars than late-maturing cultivars. To test this hypothesis, the effects of elevated [CO2] on yield components, biomass, N uptake, and leaf photosynthesis of cultivars with different maturity groups were examined for 2 years using a free-air CO2 enrichment (FACE). Elevated [CO2] significantly increased grain yield and the magnitude significantly differed among the cultivars as detected by a significant [CO2]×cultivar interaction. Two cultivars (one with early and one with late maturity) responded more strongly to elevated [CO2] than those with intermediate maturity, resulting mainly from increases in spikelet density. Biomass and N uptake at the heading stage were closely correlated with grain yield and spikelet density over [CO2] and cultivars. Our 2 year field trial rejected the hypothesis that earlier cultivars would respond more to elevated [CO2] than later cultivars, but it is revealed that the magnitude of the growth enhancement before heading is a useful criterion for selecting rice cultivars capable of adapting to elevated [CO2].
机译:成熟度组(基于成熟天数)是决定作物生产力的重要生长特征,但尚未尝试研究升高的[CO2]对不同成熟度组的水稻品种增产的影响。由于早熟品种通常显示出比晚熟品种更高的植物氮含量,因此可以推测,[CO2]诱导的产量提高比早熟品种更大。为了验证该假设,使用自由空气CO2浓缩(FACE)检查了[CO2]升高对不同成熟组品种的产量组成,生物量,N吸收和叶片光合作用的影响,为期2年。通过显着的[CO2] x品种相互作用,升高的[CO2]显着提高了谷物的产量,并且各品种之间的幅度差异显着。与中等成熟的品种相比,两个品种(一个早熟的品种和一个晚熟的品种)对升高的[CO2]的反应更强烈,这主要是由于小穗密度的增加所致。抽穗期的生物量和氮素吸收与[CO2]和品种上的籽粒产量和小穗密度密切相关。我们为期2年的田间试验拒绝了这样的假设,即较早的品种比升高的[CO2]响应更高,但是揭示了抽穗前生长增强的幅度是选择能够适应高水平的水稻品种的有用标准。 CO2]。

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