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首页> 外文期刊>International Journal of Plant & Soil Science >Ambient and Elevated Carbon Dioxide on Growth, Physiological and Nutrient Uptake Parameters of Perennial Leguminous Cover Crops under Low Light Intensities
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Ambient and Elevated Carbon Dioxide on Growth, Physiological and Nutrient Uptake Parameters of Perennial Leguminous Cover Crops under Low Light Intensities

机译:环境和高浓度二氧化碳对弱光下多年生豆科植物的生长,生理和营养吸收参数的影响

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Adaptability and optimum growth of cover crops in plantation crops is affected by the inherent nature of the cover crop species and the light intensity at canopy levels. Globally concentrations of atmospheric CO2 are increasing and this creates higher photosynthesis and nutrient demand by crops as long as the light intensity is adequate. An experiment was undertaken to assess effects of ambient (400 μmol mol-1) and elevated (700 μmol mol-1) levels of [CO2] on the growth and physiological parameters and nutrient use efficiency in five selected tropical perennial legume cover crops (Calopo/frisolla, Jack bean, Brazilian lucerne, Leucaena, and Mucuna) under low levels of photosynthetic photon flux density (PPFD; 100, 250, and 450 μmol m-2 s-1). Overall, total dry biomass, root dry biomass, root/shoot ratio, and stem height were significantly influenced by levels of [CO2] and PPFD and cover crop species. With some exceptions, these growth parameters showed significant interactions between cover crop species x [CO2] and cover crop species x PPFD. In all the cover crops tested, increasing levels of [CO2] and PPFD increased RGR, NAR, WUE and SPAD, and decreased water flux (VO). With few exceptions, overall macro-micronutrient concentrations were significantly influenced by levels of [CO2] and PPFD and species. Macro-micronutrient uptake levels were significantly influenced by cover crop species; however with few exceptions, levels of PPFD also had significant effects on uptake of all nutrients. Across crop species, increasing [CO2] and PPFD increased uptake of all nutrients and this was a reflection of higher shoot dry matter accumulations at the higher levels of [CO2] and PPFD. Nutrient influx (IN) of all the nutrients was significantly influenced by crop species. However, with few exceptions levels of [CO2] and PPFD and their interactions had no effects on IN of nutrients. Cover crop species and levels of [CO2] and PPFD and the interaction of PPFD x species had significant effects on nutrient transport (TR). Macro-micronutrient use efficiency was significantly influenced by levels of [CO2], PPFD and crop species. Brazilian lucerne and Jack bean were efficient in nutrient use efficiency of N, K, Mg, Cu, Fe, and Mn; while Calopo and Leucaena were efficient in Zn use efficiency and Leucaena was efficient in P use efficiency.
机译:覆盖作物在种植作物中的适应性和最佳生长受到覆盖作物种类的固有性质和冠层水平的光强度的影响。只要光强度足够,全球大气中CO 2 的浓度就会增加,这会增加作物的光合作用和养分需求。进行了一项实验,以评估环境水平(400μmolmol -1 )和升高的水平(700μmolmol -1 )[CO 2 >]在低水平光合作用光子通量密度(PPFD; 100、250)下选择的五种热带多年生豆科植物(Calopo / frisolla,Jack bean,巴西卢塞恩,Leucaena和Mucuna)的生长,生理参数和养分利用效率和450μmolm -2 s -1 )。总体而言,总干生物量,根干生物量,根/茎长比和茎高受[CO 2 ]和PPFD含量以及覆盖作物种类的显着影响。除某些例外,这些生长参数显示了覆盖作物物种x [CO 2 ]和覆盖作物物种x PPFD之间的显着相互作用。在所有测试的覆盖作物中,[CO 2 ]和PPFD含量的增加会增加RGR,NAR,WUE和SPAD,并降低水通量(VO)。除少数例外,[CO 2 ]和PPFD的水平和种类对整体微量营养素的总含量有显着影响。覆盖作物种类对宏观微量营养素的吸收水平有显着影响。但是,除少数例外,PPFD的含量也对所有营养素的吸收有显着影响。在整个作物物种中,[CO 2 ]和PPFD的增加均增加了所有养分的吸收,这反映了在较高的[CO 2 ]水平下较高的枝干干物质积累。和PPFD。作物种类显着影响所有养分的养分流入。但是,[CO 2 ]和PPFD的水平及其相互作用对营养素的IN几乎没有影响。覆盖作物的种类和[CO 2 ]和PPFD的水平以及PPFD x种类的相互作用对养分转运(TR)有显着影响。 [CO 2 ],PPFD和作物品种的含量对宏观微量营养素的利用效率有显着影响。巴西卢塞恩和波豆在氮,钾,镁,铜,铁和锰的养分利用效率方面非常有效。而Calopo和Leucaena的锌利用率高,Leucaena的磷利用率高。

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