首页> 美国卫生研究院文献>Journal of Experimental Botany >Latitudinal variation in ambient UV-B radiation is an important determinant of Lolium perenne forage production quality and digestibility
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Latitudinal variation in ambient UV-B radiation is an important determinant of Lolium perenne forage production quality and digestibility

机译:环境UV-B辐射的纬度变化是黑麦草饲草产量质量和消化率的重要决定因素

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摘要

Few studies to date have considered the responses of agriculturally important forage grasses to UV-B radiation. Yet grasses such as Lolium perenne have a wide current distribution, representing exposure to a significant variation in ambient UV-B. The current study investigated the responses of L. perenne (cv. AberDart) to a simulated latitudinal gradient of UV-B exposure, representing biologically effective UV-B doses at simulated 70, 60, 50, 40, and 30° N latitudes. Aspects of growth, soluble compounds, and digestibility were assessed, and results are discussed in relation to UV-B effects on forage properties and the implications for livestock and bio-ethanol production. Aboveground biomass production was reduced by approximately 12.67% with every 1 kJ m–2 day–1 increase in biologically weighted UV-B. As a result, plants grown in the highest UV-B treatment had a total biomass of just 13.7% of controls. Total flavonoids were increased by approximately 76% by all UV-B treatments, while hydroxycinnamic acids increased in proportion to the UV-B dose. Conversely, the digestibility of the aboveground biomass and concentrations of soluble fructans were reduced by UV-B exposure, although soluble sucrose, glucose, and fructose concentrations were unaffected. These results highlight the capacity for UV-B to directly affect forage productivity and chemistry, with negative consequences for digestibility and bioethanol production. Results emphasize the need for future development and distribution of L. perenne varieties to take UV-B irradiance into consideration.
机译:迄今为止,很少有研究考虑过农业上重要的牧草对UV-B辐射的反应。然而,像黑麦草(Lolium perenne)之类的草具有宽的电流分布,表示暴露于环境UV-B的显着变化。当前的研究调查了紫薇(L. perenne)(cv。AberDart)对UV-B暴露的模拟纬度梯度的响应,代表在70、60、50、40和30°N北纬度下的生物学有效UV-B剂量。评估了生长,可溶性化合物和消化率等方面,并讨论了与UV-B对草料特性的影响以及对牲畜和生物乙醇生产的影响有关的结果。随着生物加权的UV-B每增加1 kJ m –2 –1 ,地上生物量产量减少约12.67%。结果,在最高UV-B处理下生长的植物的总生物量仅为对照的13.7%。通过所有UV-B处理,总类黄酮增加了约76%,而羟基肉桂酸与UV-B剂量成比例增加。相反,尽管可溶性蔗糖,葡萄糖和果糖浓度不受影响,但通过UV-B暴露会降低地上生物量的消化率和可溶性果聚糖的浓度。这些结果凸显了UV-B直接影响草料生产力和化学性质的能力,对消化率和生物乙醇生产具有负面影响。结果强调,需要将紫苏L.品种的未来开发和分布考虑到UV-B辐照度。

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