Soybean Dongnong 47 was subjected to the experiments of increasing UV-B radiation and water stress on soybean yield components in different growth periods. The results showed that 100-seed weight greatly increased dur...Soybean Dongnong 47 was subjected to the experiments of increasing UV-B radiation and water stress on soybean yield components in different growth periods. The results showed that 100-seed weight greatly increased during the early stage of pod filling in the treatment of weak UV-B radiation, seed number per plant as well as seed weight per plant and Dongnong47 yield also increased, while the yield and yield components of Dongnong47 during the blossom to mature period were negatively affected in the treatment of intensive UV-B radiation. 100-seed weight of Dongnong47 all increased in the double factor treatments of UV-B radiation and water stress, with the drought intensified, seed number per plant, seed weight per plant and yield of Dongnong47 decreased, the change of 100-seed weight were various and the antagonistic action of UV-B radiation and water stress were related with their intensity.展开更多
在元阳梯田地方水稻品种——白脚老粳的拔节孕穗期、抽穗扬花期和成熟期,通过小区实验研究不同UV-B辐射强度(0、5.0、10.0 k J·m^(-2))对水稻根系低分子量有机酸(LMWOAs)分泌量和根际7个类群微生物数量的影响,并对水稻LMWOAs分泌...在元阳梯田地方水稻品种——白脚老粳的拔节孕穗期、抽穗扬花期和成熟期,通过小区实验研究不同UV-B辐射强度(0、5.0、10.0 k J·m^(-2))对水稻根系低分子量有机酸(LMWOAs)分泌量和根际7个类群微生物数量的影响,并对水稻LMWOAs分泌量和根际微生物数量进行相关分析。结果表明:UV-B辐射增强导致水稻根系草酸和琥珀酸分泌量增加,酒石酸和苹果酸分泌量下降。水稻根际细菌、真菌、自生固氮菌、纤维分解菌、无机磷细菌和钾细菌的数量均在成熟期最大,拔节孕穗期次之,抽穗扬花期最小;但放线菌数量在拔节孕穗期最大,抽穗扬花期次之,成熟期最小。UV-B辐射增强不改变根际微生物数量随生育期进程的动态变化规律,但导致水稻根际7个类群微生物的数量显著或极显著增加。水稻根系草酸分泌量与根际自生固氮菌、纤维分解菌数量呈显著正相关,琥珀酸分泌量与自生固氮菌数量呈显著正相关,与细菌、真菌、纤维分解菌、无机磷细菌和钾细菌数量呈极显著正相关。综上可知UV-B辐射增强影响大田水稻根际微生物的数量,与其改变水稻根系低分子量有机酸的分泌量密切相关。展开更多
植被吸收光合有效辐射(Absorbed Photosynthetically Active Radiation,APAR)是植被进行光合作用中实际吸收的太阳辐射量,是植被净第一性生产力的重要指标,也是生态系统的功能模型、作物生长模型、净初级生产力模型、气候模型等的重要...植被吸收光合有效辐射(Absorbed Photosynthetically Active Radiation,APAR)是植被进行光合作用中实际吸收的太阳辐射量,是植被净第一性生产力的重要指标,也是生态系统的功能模型、作物生长模型、净初级生产力模型、气候模型等的重要参数。因此高空间分辨率和精确性的植被吸收光合有效辐射对于高精度的区域生产力及光能利用率的研究具有重要意义。对CASA(Carnegie-Ames-Stanford Approach)模型进行了改进,利用30m×30m的数字高程模型(Digital Elevation Model,DEM)数据直接计算太阳辐射,从而将其作为CASA模型的输入参数。结合多源遥感数据、气象数据,研究2015-2020年江汉平原APAR的时空分布及其影响因素。顾及江汉平原的土地利用分布特点,着重分析了江汉平原农田APAR的时空特性,研究结果较好的反映了江汉平原APAR分布。实验结果表明:(1)2015-2020年APAR年总值在3.42×10^(13)MJ-3.73×10^(13)MJ之间,总体空间分布与植被类型的分布情况相符;(2)农田月均APAR值在4月、7月高于其他月份,表现出“双峰”的特征;(3)在空间分布上,水田APAR表现出明显的纬度地带性,而旱地APAR正好相反,这可能源于种植结构重心转移;(4)通过借助地理探测器,着重考虑与植被生长相关的12个因子(包括≧10℃积温、年总日照时数、年均气温、年总降雨量、农田种植结构、年散射辐射、农田施肥、土壤类型、土壤质地(砂土、粉砂土、黏土))进行分析,结果表明这12个因素对APAR空间变异性都具有很明显的影响。对CASA的改进方法可以适用于大范围高空间精度的计算。展开更多
基金Supported by Postdoctoral Fund of Settling Down in Heilongjiang Province (LBH-Z05086)Scientific Research Fund of Northeast Agricultural University
文摘Soybean Dongnong 47 was subjected to the experiments of increasing UV-B radiation and water stress on soybean yield components in different growth periods. The results showed that 100-seed weight greatly increased during the early stage of pod filling in the treatment of weak UV-B radiation, seed number per plant as well as seed weight per plant and Dongnong47 yield also increased, while the yield and yield components of Dongnong47 during the blossom to mature period were negatively affected in the treatment of intensive UV-B radiation. 100-seed weight of Dongnong47 all increased in the double factor treatments of UV-B radiation and water stress, with the drought intensified, seed number per plant, seed weight per plant and yield of Dongnong47 decreased, the change of 100-seed weight were various and the antagonistic action of UV-B radiation and water stress were related with their intensity.
文摘在元阳梯田地方水稻品种——白脚老粳的拔节孕穗期、抽穗扬花期和成熟期,通过小区实验研究不同UV-B辐射强度(0、5.0、10.0 k J·m^(-2))对水稻根系低分子量有机酸(LMWOAs)分泌量和根际7个类群微生物数量的影响,并对水稻LMWOAs分泌量和根际微生物数量进行相关分析。结果表明:UV-B辐射增强导致水稻根系草酸和琥珀酸分泌量增加,酒石酸和苹果酸分泌量下降。水稻根际细菌、真菌、自生固氮菌、纤维分解菌、无机磷细菌和钾细菌的数量均在成熟期最大,拔节孕穗期次之,抽穗扬花期最小;但放线菌数量在拔节孕穗期最大,抽穗扬花期次之,成熟期最小。UV-B辐射增强不改变根际微生物数量随生育期进程的动态变化规律,但导致水稻根际7个类群微生物的数量显著或极显著增加。水稻根系草酸分泌量与根际自生固氮菌、纤维分解菌数量呈显著正相关,琥珀酸分泌量与自生固氮菌数量呈显著正相关,与细菌、真菌、纤维分解菌、无机磷细菌和钾细菌数量呈极显著正相关。综上可知UV-B辐射增强影响大田水稻根际微生物的数量,与其改变水稻根系低分子量有机酸的分泌量密切相关。