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Integrative impacts of rotational tillage on wheat yield and dry matter accumulation under corn-wheat cropping system

机译:玉米种植体系旋转耕作对小麦产量和干物质积累的综合影响

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摘要

Significant efforts have been made on the assessment of tillage impacts on crop growth during the current season; however, few studies have quantified the impacts on the succeeding crop growth under multiple cropping systems. Based on a multiple-year field experiment under corn-wheat cropping system in North China Plain, therefore, we examined the integrative impacts of annual rotational tillage on wheat growth and soil properties. The annual rotational tillage treatments consisted of two tillage regimes (i.e. N: no-tillage; and SR: sub-soiling with rotary tillage) in the corn season followed by three tillage practices (i.e. sTR: strip rotary tillage; R: rotary tillage; and SR: sub-soiling with rotary tillage) in the wheat season, respectively. The results showed that the N SR rotational tillage of N in the corn season and SR in the wheat season significantly reduced soil penetration resistance and promoted soil water usage of 60-100 cm soil layers during wheat season. Meanwhile, soil NO3--N concentration in the depth of 40-140 cm was significantly lower under the N-SR than other tillage practices except for the N-R (P & 0.01). Average results of two-year dry matter accumulation and translocation showed that N-SR stimulated wheat biomass production and promoted the contribution of post-anthesis dry matter to the grain (P & 0.01). Consequently, wheat yield was the highest under the N-SR (P & 0.01). Our findings indicate that the annual rotational tillage of no-tillage in the corn season and sub-soiling with rotary tillage in the wheat season can promote wheat growth through enhancing deep soil water and N uptake.
机译:对当前季节作物增长的耕作影响进行了重大努力;然而,很少有研究已经量化了多种种植系统下对后续作物生长的影响。基于北中国玉米小麦种植制度下的多年田间试验,因此,我们研究了年旋转耕作对小麦生长和土壤性质的综合影响。年度旋转耕作治疗包括两个耕种制度(即N:No-Tillage;和SR:旋转耕作与旋转耕作)在玉米季,然后进行三个耕作实践(即STR:条带旋转耕作; R:旋转耕作;和SR:分别用旋转耕作沉浸在小麦季节。结果表明,小麦季节中N的N SR旋转耕作,小麦季节中的SR显着降低了土壤渗透性,促进了小麦季节60-100厘米土层的土壤水分用法。同时,在N-Sr下,40-140厘米深度的土壤NO3 - N浓度明显低于N-R(P& 0.01)的其他耕作实践。两年干物质积累和易位的平均结果表明,N-SR刺激小麦生物量产生并促进了破裂后干物质对晶粒的贡献(P& 0.01)。因此,小麦产率在N-Sr(P& 0.01)下是最高的。我们的研究结果表明,在小麦季节的玉米季节和旋转耕作中的每年旋转耕作和亚污染,可以通过增强深层土壤水和N吸收来促进小麦生长。

著录项

  • 来源
    《Soil & Tillage Research》 |2018年第2018期|共9页
  • 作者单位

    Chinese Acad Agr Sci Key Lab Crop Physiol &

    Ecol Minist Agr Inst Crop Sci Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Key Lab Crop Physiol &

    Ecol Minist Agr Inst Crop Sci Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Key Lab Crop Physiol &

    Ecol Minist Agr Inst Crop Sci Beijing 100081 Peoples R China;

    Dongping Cty Agr Bur Beijing 271500 Peoples R China;

    Dongping Cty Agr Bur Beijing 271500 Peoples R China;

    Dongping Cty Agr Bur Beijing 271500 Peoples R China;

    Dongping Cty Agr Bur Beijing 271500 Peoples R China;

    Chinese Acad Agr Sci Key Lab Crop Physiol &

    Ecol Minist Agr Inst Crop Sci Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Key Lab Crop Physiol &

    Ecol Minist Agr Inst Crop Sci Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Key Lab Crop Physiol &

    Ecol Minist Agr Inst Crop Sci Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Key Lab Crop Physiol &

    Ecol Minist Agr Inst Crop Sci Beijing 100081 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    Dry matter accumulation; Dry matter translocation; Grain yield; Soil management; Rotational tillage;

    机译:干物质积累;干物质易位;籽粒产量;土壤管理;旋转耕作;

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