The French Associates Institute for Agriculture and Biotechnology of Drylands, The Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, 84990, Israel.
The French Associates Institute for Agriculture and Biotechnology of Drylands, The Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, 84990, Israel.
Plant Sci. 2018 Jul;272:294-300. doi: 10.1016/j.plantsci.2018.03.034. Epub 2018 Apr 11.
Ambient CO concentration is currently 400 μmol mol, and projections forecast an increase up to 970 μmol mol by century's end. Elevated CO can stimulate C3 plant growth, whereas nitrogen is the main nutrient plants acquire from soils and often limits growth. Plants primarily obtain two nitrogen sources from the soil, ammonium (NH) and nitrate (NO). At elevated CO levels, plant growth and nitrogen metabolism is affected by the nitrogen source. Most research has focused on shoot traits, while neglecting the plants' hidden half, the root. We studied the effects of elevated CO and nitrogen source on hydroponically grown tomato plants, a C3 model and crop plant. Our main objective was to determine how the nitrogen source and elevated CO affect root development. Our results indicate they affect development in terms of the size and anatomy of different root orders. Specifically, root xylem development was found sensitive to the nitrogen source, whereas NO-supplied plants displayed greater xylem development compared to their NH counterparts, and also to a lesser extent, to elevated CO, which we found inhibits this development. Additionally, elevated CO decreased root respiration in different root orders exclusively in plants supplied with NHas the sole nitrogen source.
环境 CO 浓度目前为 400 μmol/mol,预计到本世纪末将上升至 970 μmol/mol。升高的 CO 可以刺激 C3 植物的生长,而氮是植物从土壤中获取的主要营养物质,通常限制植物的生长。植物主要从土壤中获取两种氮源,铵(NH)和硝酸盐(NO)。在高 CO 水平下,植物的生长和氮代谢受到氮源的影响。大多数研究都集中在地上部分的特征上,而忽略了植物的另一半,即根。我们研究了高 CO 和氮源对水培番茄植株的影响,番茄是 C3 模式植物和作物。我们的主要目标是确定氮源和高 CO 如何影响根的发育。我们的结果表明,它们会影响不同根级的大小和解剖结构的发育。具体来说,发现木质部的发育对氮源敏感,而与 NH 相比,NO 供应的植物显示出更大的木质部发育,而且在较小程度上也受到高 CO 的影响,我们发现高 CO 抑制了这种发育。此外,高 CO 降低了仅以 NH 作为氮源的不同根级的根呼吸。