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作 者:李彩霞[1] 周新国[1] 王和州 郭冬冬[1] 郭树龙[1] 陈金平[1] 姜新[1]
机构地区:[1]中国农业科学院农田灌溉研究所/农业部作物需水与调控重点实验室,河南新乡453003
出 处:《麦类作物学报》2013年第6期1232-1236,共5页Journal of Triticeae Crops
基 金:农业部"十二五"公益性行业(农业)科研专项(201203077;201203032);农业部现代农业产业技术体系建设专项(CARS-3-1-30)
摘 要:为了探讨淹水对花后冬小麦根区土温及籽粒灌浆的影响,在淮北平原涝渍易发地河南商丘市,对处于花后灌浆阶段的冬小麦进行淹水试验。结果表明,淹水使小麦百粒重降低,花后灌浆阶段淹水1d、3d和5d使乳熟期的小麦百粒重比非淹水处理分别降低6.93%、10.35%和10.31%;淹水使小麦灌浆速率受到抑制,淹水5d、3d、1d和CK的平均单粒灌浆速率分别为1-36、1.39、1.52和1.61mg·d^-1,淹水超过5d使小麦的乳熟时间推后。淹水使10~40cm土层间温差变小,淹水时间越长,10~40cm土温降低越多,淹水结束后土温回升也越快。花后淹水使小麦干物质量及籽粒产量降低,淹水5d以上使小麦地上、地下部分干物质量显著降低。因此,小麦花后灌浆阶段淹水会影响根区环境和地上部干物质的形成,并最终影响籽粒灌浆及产量。In order to investigate the effects of water flooding on root zone soil environment and grain filling of winter wheat at grain filling period, a field experiment with water flooding treatments for 1 day (F1), 3 days (F3), and 5 days (F5) applied at grain filling stage was carried out in Shangqiu, one of the water flooding-prone zones in Huaibei Plain. Results showed that the 100-grain weight of win- ter wheat at mild-rape stage was decreased by water flooding applied at grain filling stage. The 100- grain weight of F5, F3 and F1 flooding teatments at harvest was lower than that of CK by 6.93%, 10.35 %, and 10.31%, respectively. The grain filling rate of wheat was restrained by water flooding. Mean grain filling rate of wheat inF5, F3, F1 andCK was 1.36,1.39,1.52,1.61 mg· d 1, respec- tively. The milk-rape period was delayed for 5 days by water flooding. Difference in soil temperature between 10 cm and 40 cm soil layer was decreased by water flooding. The longer water flooding, the more decrease in soil temperature of the 10-40 cm soil layer. During the water logging period, diur- nal soil temperature in 10 cm soil layer was higher than that in CK. Dry matter and grain yield of winter wheat was decreased by water flooding applied at grain filling stage. Biomass of root and shoot of winter wheat was decreased significantly by water flooding for 5 days. Therefore, water flooding ap- plied at grain filling stage had effects on the root zone environment and above-ground biomass forma- tion, then grain filling and grain yield.
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