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Effect of asymmetric warming on rice (Oryza sativa) growth characteristics and yield components under a free air temperature increase apparatus

机译:非对称升温对游离空气温度升温装置中水稻(Oryza Sativa)生长特性和产量部件的影响

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Climate warming shows great diurnal variations with higher warming rate at nighttime, and consequently causes significant impacts on rice growth and grain yield. The objective of this study was to determine the effects of asymmetric warming (all-day warming, AW; daytime warming from 7: 00 to 19: 00, DW; and nighttime warming from 19: 00 to 7: 00, NW; and a control, CK) on rice growth characteristics and yield. Two bucket warming experiments were performed in Nanjing in Jiangsu Province, China under Free Air Temperature Increases (FATI) in 2013 and 2014. The daily mean temperatures in the rice canopy in the AW, DW and NW plots were 2.0 degrees C, 1.1 degrees C and 1.3 degrees C higher, respectively, than those in the CK plots. Asymmetric warming reduced the maximum tillers and effective tillers in the order CK>DW>NW>AW. In the AW, DW and NW treatments, the effective tillers were decreased by 18.57%-37.77% in both years. Asymmetric warming also decreased plant height, the Absolute Growth Rate (AGR), the Soil and Plant Analyzer Development (SPAD) value, the Leaf Area Index (LAI) and the Net Photosynthetic Rate (Pn). The order of the plant height and Pn values were also in the order CK>DW>NW>AW. The warming treatments affect the length of rice growth. The length from the transplanting date to the heading date was shortened by 3.5 days, 2.5 days and 3.0 days on average in the AW, DW and NW plots, respectively, in both years, while the length from the heading date to the maturation date did not show obvious changes. The aboveground biomass in the maturation stage declined by 13.38%, 3.56% and 6.22%, and the grain yield was decreased by 10.07%, 5.06% and 7.89% on average in the AW, DW and NW plots, respectively, in both years. There was a decreasing trend in the panicle number, grain number per panicle and grain filling rate, whereas irregular changes in the 1000-grain weight were observed in the warmed plots. Our results suggested that under the predicted climate warming, rice productivity would be further declined in the Yangtze River Basin.
机译:气候变暖表现出夜间温暖率较高的差异变化,因此对水稻生长和籽粒产量具有显着影响。本研究的目的是确定不对称变暖的影响(全天变暖,AW;白天从7:00变暖到19:00,DW;和夜间温暖从19:00到7:00,NW;和一个对照,CK)水稻生长特征及产量。中国在江苏省南京进行两次铲斗加温实验,2013年和2014年的自由气温(Fati)在江苏省自由气温增加和1.3摄氏度分别比CK图中的1.3度。不对称的升温降低了订单中的最大分蘖和有效分蘖,CK> DW> NW> AW。在AW,DW和NW治疗中,两年内有效分蘖减少了18.57%-37.77%。不对称升温也降低了植物高度,绝对生长速率(AGR),土壤和植物分析仪开发(SPAD)值,叶面积指数(LAI)和净光合速​​率(PN)。植物高度和PN值的顺序也在顺序CK> DW> NW> AW中。变暖的处理会影响水稻生长的长度。从移民日期到标题日期的长度分别在AW,DW和NW地块中平均缩短了3.5天,2.5天和3.0天,同时从标题日期到成熟日期的长度没有明显的变化。成熟阶段的地上生物质下降了13.38%,3.56%和6.22%,谷物产量分别在AW,DW和NW地块中平均下降了10.07%,5.06%和7.89%,两年。穗数呈下降趋势,粒子数和谷物灌装速率,而在温热的地块中观察到1000粒重量的不规则变化。我们的结果表明,在预测的气候变暖下,长江盆地的水稻生产力将进一步下降。

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