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水稻覆膜湿润栽培体系中的作物生长速率和氮素吸收速率 被引量:21
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作者 刘军 刘美菊 +6 位作者 官玉范 曹峻 戢正华 李家军 汪晓春 沈康荣 林杉 《中国农业大学学报》 CAS CSCD 北大核心 2010年第2期9-17,共9页
湖北省十堰市地处秦巴山区,水稻是该地区十分重要的粮食作物。季节性缺水和生长前期低温是制约当地水稻生产的主要因素,覆盖地膜是解决上述问题的常用方法。然而,由于覆膜后追肥困难,生产上往往采用一次性基施氮肥,由此可能造成覆膜水... 湖北省十堰市地处秦巴山区,水稻是该地区十分重要的粮食作物。季节性缺水和生长前期低温是制约当地水稻生产的主要因素,覆盖地膜是解决上述问题的常用方法。然而,由于覆膜后追肥困难,生产上往往采用一次性基施氮肥,由此可能造成覆膜水稻前期生长过旺,后期出现缺氮的现象,该体系内的氮素吸收利用规律报道较少。2004—2006年,在湖北省十堰市布置了田间试验,研究覆膜湿润栽培体系中水稻生长速率、产量形成和氮素吸收的基本规律,为进一步优化水稻覆膜湿润栽培体系提供理论基础。试验共包括4个处理:1)常规淹水种植,不施氮肥;2)覆膜湿润栽培,不施氮肥;3)常规淹水种植,一次性基施氮肥150kg/hm2;4)覆膜湿润栽培,一次性基施氮肥150kg/hm2。测定了水稻鲜干重、分蘖动态、叶面积、籽粒产量及其构成因子、作物生长速率和氮素吸收速率。研究结果表明:不施用氮肥条件下,与常规淹水处理相比,覆膜湿润栽培显著地提高了水稻地上部生物量、有效穗数、穗实粒数、结实率和籽粒产量,收获指数无显著差异。一次性基施氮肥后,覆膜水稻前期的生长速率和氮素吸收速率显著高于相应的淹水处理,表现出旺长趋势;而后期则低于淹水处理,且穗实粒和收获指数均有下降的趋势,进而造成覆膜水稻籽粒产量增加不显著。总之,覆膜后一次性基施氮肥导致水稻生长前期大量吸收氮素、生长过旺,而后期缺氮、分蘖成穗率和结实率下降,影响了水稻覆膜湿润栽培增产潜力的发挥。 展开更多
关键词 水稻 覆膜湿润栽培 节水 作物生长速率 氮素吸收速率
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Study on intermittent irrigation for Paddy Rice: Ⅱ. Crop Responses 被引量:3
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作者 LUJUN T.HIRASAWA 《Pedosphere》 SCIE CAS CSCD 2001年第3期227-234,共8页
Effect of intermittent irrigation on the production of paddy rice was studied in a well-puddled paddy field with four treatments and 2 replicates: continuous flooding irrigation (CFI), and intermittent irrigation Ⅱ-... Effect of intermittent irrigation on the production of paddy rice was studied in a well-puddled paddy field with four treatments and 2 replicates: continuous flooding irrigation (CFI), and intermittent irrigation Ⅱ-O, Ⅱ-1 and Ⅱ-2, in which plants were re-irrigated when the soil water potential fell below 0, -10, and -20 kPa, respectively, at soil depth of about 5 cm. Results showed that the reduction in soil water potential to about -10 or -20 kPa did not significantly affect the number of grains and the percentage of ripened grains. While, a lower crop growth rate (CGR) resulted from a decrease in the net assimilation rate (NAR) during intermittent irrigation Ⅱ-1 and Ⅱ-2, and there was also a reduction in the leaf area index (LAI) during intermittent irrigation Ⅱ-2. Senescence of lower leaves on stems was promoted in treatments Ⅱ-1 and Ⅱ-2 at the ripening stage. Early senescence at ripening stage and water stress around midday decreased the rate of photosynthesis in leaves, causing the lower NAR. These physiological responses of the plants were responsible for the reduction in the dry matter production and grain yield in the intermittent irrigation treatments. 展开更多
关键词 crop growth rate intermittent irrigation net assimilation rate paddy rice yield components
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The negative effects of soil microorganisms on plant growth only extend to the first weeks 被引量:1
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作者 Jing Zhang Peter G.L.Klinkhamer +1 位作者 Klaas Vrieling T.Martijn Bezemer 《Journal of Plant Ecology》 SCIE CSCD 2022年第4期854-863,共10页
Soil biotic communities can strongly impact plant performance.In this paper,we ask the question:how longlasting the effect of the soil microbial community on plant growth is.We examined the plant growth rates at three... Soil biotic communities can strongly impact plant performance.In this paper,we ask the question:how longlasting the effect of the soil microbial community on plant growth is.We examined the plant growth rates at three stages:early,mid and late growth.We performed two growth experiments with Jacobaea vulgaris,which lasted 49 and 63 days in sterilized soil or live soil.In a third experiment,we examined the effect of the timing of soil inoculation prior to planting on the relative growth rate of J.vulgaris with four different timing treatments.In all experiments,differences in biomass of plants grown in sterilized soil and live soil increased throughout the experiment.Also,the relative growth rate of plants in the sterilized soil was only significantly higher than that of plants in the live soil in the first two to three weeks.In the third experiment,plant biomass decreased with increasing time between inoculation and planting.Overall,our results showed that plants of J.vulgaris grew less well in live soil than in sterilized soil.The negative effects of soil inoculation on plant mass appeared to extend over the whole growth period but arise from the negative effects on relative growth rates that occurred in the first weeks. 展开更多
关键词 plant–soil interactions relative growth rate plant performance pathogenic soil microbial community
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