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国家自然科学基金(30671203)

作品数:3 被引量:54H指数:3
相关作者:姜培坤吴家森徐秋芳叶正钱金松恒更多>>
相关机构:浙江林学院更多>>
发文基金:国家自然科学基金浙江省森林培育重中之重学科开放基金浙江省科技攻关计划更多>>
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覆盖与施肥处理对雷竹林土壤水溶性有机氮的影响被引量:21
2009年
谢秉楼吴家森徐秋芳姜培坤
关键词:雷竹土壤有机肥化肥
施肥对板栗林土壤水溶性有机氮的影响被引量:7
2008年
In order to investigate effect of fertilization on water-soluble organic N (WSON) in the soils under chestnut stands,a fertilization experiment was carried out in Lin-an county in Zhejiang province. The results of this study showed that fertilization increased WSON in the soils under chestnut stands. Excessive chemical fertilizer addition or combined application of chemical fertilizers and organic manure had most strong effects by increasing the concentrations of WSON in the soils respectively by 5.68 and 1.94 times,compared with the unfertilized control,There was no difference in WSON concentrations in the soils among the treatments with routine chemical fertilizer rate,organic manure alone and unfertilized control. Excessive fertilizer application induced the highest ratio of WSON/total N (5.76%),which was markedly greater than that done by other three treatments. The ratio of WSON/hydrolyzed N ranged from 9.34% to 37.04% with average value of 26.78%. The highest ratio of hydrolyzed N/total N (37.04%) was found from the treatments of excessive fertilizer application and the ratio was markedly greater than that of other three treatments. The correlation analysis showed that there were significant correlations between WSON and soil total N,hydrolyzed N,water soluble total N,water soluble NH4+-N or water soluble NO3-N. The corresponding correlation coefficients were 0.565 1,0.918 6,0.998 6,0.9939 and 0.5401,respectively.
盛卫星姜培坤吴家森徐秋芳
关键词:板栗化肥有机肥
低磷胁迫对山核桃幼苗根系形态和生理特征的影响被引量:26
2010年
通过水培实验比较了山核桃Carya cathayensis幼苗在正常供磷(0.10mmol·L-1)和低磷胁迫(0.02mmol·L-1)条件下的根系形态、磷营养特点、叶片光合作用以及叶片和根系分泌酸性磷酸酶活性的差异。结果表明,低磷处理显著降低山核桃植株干质量、磷质量分数和磷积累量(P<0.05);与正常供磷相比,低磷处理条件下山核桃根长、根表面积和根体积显著降低(P<0.05);低磷处理显著降低山核桃叶片光合速率和气孔导度(P<0.05),但对叶片胞间二氧化碳摩尔分数无显著影响,这表明低磷胁迫对山核桃叶片光合速率的抑制作用主要是由于非气孔因素引起的。低磷胁迫使山核桃叶片酸性磷酸酶活性和根系分泌酸性磷酸酶活性显著增加(P<0.05),分别为正常供磷处理下的135%和159%,这表明磷缺乏诱导酸性磷酸酶活性的增加可能是山核桃适应低磷胁迫的机制之一。
李永夫金松恒叶正钱黄坚钦姜培坤
关键词:森林生物学山核桃低磷胁迫根系形态酸性磷酸酶
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