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Climatic Warming Increases Winter Wheat Yield but Reduces Grain Nitrogen Concentration in East China

机译:气候变暖增加了华东地区的冬小麦产量但降低了籽粒氮含量

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摘要

Climatic warming is often predicted to reduce wheat yield and grain quality in China. However, direct evidence is still lacking. We conducted a three-year experiment with a Free Air Temperature Increase (FATI) facility to examine the responses of winter wheat growth and plant N accumulation to a moderate temperature increase of 1.5°C predicted to prevail by 2050 in East China. Three warming treatments (AW: all-day warming; DW: daytime warming; NW: nighttime warming) were applied for an entire growth period. Consistent warming effects on wheat plant were recorded across the experimental years. An increase of ca. 1.5°C in daily, daytime and nighttime mean temperatures shortened the length of pre-anthesis period averagely by 12.7, 8.3 and 10.7 d (P<0.05), respectively, but had no significant impact on the length of the post-anthesis period. Warming did not significantly alter the aboveground biomass production, but the grain yield was 16.3, 18.1 and 19.6% (P<0.05) higher in the AW, DW and NW plots than the non-warmed plot, respectively. Warming also significantly increased plant N uptake and total biomass N accumulation. However, warming significantly reduced grain N concentrations while increased N concentrations in the leaves and stems. Together, our results demonstrate differential impacts of warming on the depositions of grain starch and protein, highlighting the needs to further understand the mechanisms that underlie warming impacts on plant C and N metabolism in wheat.
机译:人们通常预计气候变暖会降低中国的小麦产量和谷物品质。但是,仍然缺乏直接的证据。我们使用自由气温升高(FATI)设施进行了为期三年的实验,以检验冬小麦生长和植物氮积累对预计2050年华东地区温和升高1.5°C的响应。在整个生长期内进行了三种增温处理(AW:全天增温; DW:白天增温; NW:夜间增温)。在整个实验年中记录到对小麦植物的持续变暖作用。增加约。每天,白天和夜间的平均温度为1.5°C,平均使花前期的长度分别缩短12.7、8.3和10.7 d(P <0.05),但对花后期的长度没有显着影响。增温并没有显着改变地上生物量的产量,但在AW,DW和NW地块上,谷物产量分别比未加热的地块高出16.3%,18.1%和19.6%(P <0.05)。变暖还显着增加了植物氮的吸收和总生物量氮的积累。但是,变暖显着降低了谷粒中的氮含量,而增加了叶和茎中的氮含量。总之,我们的结果证明了变暖对谷物淀粉和蛋白质沉积的不同影响,强调需要进一步了解变暖对小麦植物C和N代谢的基础机理。

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