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1.
张建军  樊廷录  赵刚  党翼  王磊  李尚中 《作物学报》2017,43(7):1077-1086
在陇东黄土旱塬覆盖黑垆土大田,利用陇鉴301进行了连续10年的定位试验,观测长期施用不同氮源有机肥(发酵有机肥、农家肥)或小麦秸秆还田各处理对冬小麦产量相关性状和水分利用效率的影响。结果显示,小麦产量和水分利用效率年际间变化较大,与降雨量有直接关系;不同有机氮源替代部分含氮化肥处理对提高冬小麦产量和水分利用效率具有明显作用。在干旱、平水和丰水年型,较不施肥对照分别增产53.1%~103.7%、40.3%~79.3%和73.1%~94.8%,较单施化肥对照分别增产6.6%~41.8%、7.0%~36.8%和-2.9%~9.3%。以发酵有机肥做替代物处理的产量和水分利用效率最高,增产幅度最大,10年平均产量较不施肥和单施化肥对照分别增加88.9%和25.4%,水分利用效率和边际水分利用率也最高,分别为10.8 kg mm~(-1) hm~(-2)和1.03 kg m~(-3);并且产量构成因素和植株生理指标也优于其他处理。因此,发酵有机肥是陇东半湿润偏旱雨养农业区(年降水量约550 mm)冬小麦生产上替代部分含氮化肥的首选有机氮源。  相似文献   
2.
A field experiment was conducted in 2003 and 2004 growing seasons to evaluate the effects of regulated deficit irrigation on yield performance in spring wheat (Triticum aestivum) in an arid area. Three regulated deficit irrigation treatments designed to subject the crops to various degrees of soil water deficit at different stages of crop development and a no-soil-water-deficit control was established. Soil moisture was measured gravimetrically in the increment of 0–20 cm every five to seven days in the given growth periods, while that in 20 increments to 40, 40–60, 60–80, and 80–100 cm depth measured by neutron probe. Compared to the no-soil-water-deficit treatment, grain yield, biomass, harvest index, water use efficiency (WUE), and water supply use efficiency (WsUE) in spring wheat were all greatly improved by 16.6–25.0, 12.4–19.2, 23.5–27.3, 32.7–39.9, and 44.6–58.8% under regulated deficit irrigation, and better yield components such as thousand-grain weight, grain weight per spike, number of grain, length of spike, and fertile spikelet number were also obtained, but irrigation water was substantially decreased by 14.0–22.9%. The patterns of soil moisture were similar in the regulated deficit treatments, and the soil moisture contents were greatly decreased by regulated deficit irrigation during wheat growing seasons. Significant differences were found between the no-soil-water-deficit treatment and the regulated soil water deficit treatments in grain yield, yield components, biomass, harvest index, WUE, and WsUE, but no significant differences occurred within the regulated soil water deficit treatments. Yield performance proved that regulated deficit irrigation treatment subjected to medium soil water deficit both during the middle vegetative stage (jointing) and the late reproductive stages (filling and maturity or filling) while subjected to no-soil-water-deficit both during the late vegetative stage (booting) and the early reproductive stage (heading) (MNNM) had the highest yield increase of 25.0 and 14.0% of significant water-saving, therefore, the optimum controlled soil water deficit levels in this study should range 50–60% of field water capacity (FWC) at the middle vegetative growth period (jointing), and 65–70% of FWC at both of the late vegetative period (booting) and early reproductive period (heading) followed by 50–60% of FWC at the late reproductive periods (the end of filling or filling and maturity) in treatment MNNM, with the corresponding optimum total irrigation water of 338 mm. In addition, the relationships among grain yield, biomass, and harvest index, the relationship between grain yield and WUE, WsUE, and the relationship between harvest index and WUE, WsUE under regulated deficit irrigation were also estimated through linear or non-linear regression models, which indicate that the highest grain yield was associated with the maximum biomass, harvest index, and water supply use efficiency, but not with the highest water use efficiency, which was reached by appropriate controlling soil moisture content and water consumption. The relations also indicate that the harvest index was associated with the maximum biomass and water supply use efficiency, but not with the highest water use efficiency.  相似文献   
3.
地膜覆盖栽培是有效保持寒旱区土壤水热条件、促进作物生产的措施之一。为解决长期覆盖普通地膜造成的土壤地膜残留污染及生物降解地膜破裂,且成本高的问题,通过多年试验研究,从地膜选择、肥料配比、绿色地膜复合覆盖技术、田间管理、地膜回收、秸秆与生物降解地膜还田等方面总结了寒旱区玉米普通地膜与生物降解膜覆盖栽培技术。  相似文献   
4.
A better understanding of the fate of fertilizer nitrogen (N) is critical to design appropriate N management strategies in plastic-mulched croplands. We evaluated the effects of plastic mulch on urea-N recovery by crops and loss from soil in furrow-ridge plots, with and without maize (Zea mays L.) cropping, in a semi-arid rain-fed site in China. We applied the same rate of urea-N (281 kg ha−1) to all treatments during the preparation of the furrow-ridges in 2011 and 2012 but 15N-labeled the urea in 2011 only. We used transparent film to cover all soil surfaces in the mulched treatments and seeded maize in furrows in treatments with crop. In 2011, plastic mulch increased the total N uptake in the aboveground biomass of maize by 53%, whereas it decreased the in-season labeled-N uptake by 19%, compared to non-mulched treatment. At harvest in 2011, in mulched treatments the total labeled-N remaining in the 0−170 cm soil layer was 25% greater whereas unaccounted labeled-N was 69% less, than in non-mulched treatments, regardless of whether maize was cropped. In 2012 the effect of mulch on total maize N uptake was comparable to that in 2011, but the residual soil labeled-N uptake by maize was 63% higher in mulched compared to non-mulched treatment. At harvest in 2012, plastic mulch increased total labeled-N remaining in the 0−170 cm depth in cropped soils and unaccounted labeled-N in non-cropped soils, compared with no mulch. Our results indicate that plastic mulch profoundly changes the fate of urea-N in maize production in cold and dry croplands.  相似文献   
5.
为研究补播禾草对玛曲高寒沙化草地各经济类群地上生物量的影响,于2006年和2007年在甘肃玛曲高寒沙化草地进行了禾草补播试验。结果表明:补播禾草可增加高寒沙化草地草群高度和植被盖度。补播当年,莎草类地上生物量降低,禾草类地上生物量增加。补播第二年,各经济类群地上生物量都增加,禾草类的地上生物量增加最多,占到总生物量的50%左右。其中,中华羊茅(Festuca sinensis)、草地早熟禾(Poa pratensis)和垂穗披碱草(Elymus natans)混播的处理,禾草类和豆科类比对照分别高出34.56%和96.37%,是玛曲高寒沙化草地较好补播处理。补播作为改良天然草场的有效措施,对增加草群高度、覆盖度和提高草地地上生物量具有积极作用。  相似文献   
6.
氮素对小麦幼苗叶片气体交换和能量转化特性的调控   总被引:3,自引:1,他引:3  
利用LI-6400光合仪和Mini-PAM型便携式荧光仪检测不同氮素水平对旱地(定西35号,耐旱)和水地(宁青4号,不耐旱)小麦幼苗光合与荧光及瞬时水分利用效率(IWUE)的影响。结果表明,耐旱品种对氮素处理比较敏感。耐旱和不耐旱小麦幼苗叶片光合速率(Pn)、气孔导度(Gs)、电子传递速率(ETR)、胞间CO2浓度(Ci)和光化学猝灭系数(qP)、气孔限制值(Ls)对3个氮素水平的响应基本一致:2个品种N15(15mmol.L-1)处理的Pn、Gs、ETR显著高于N5(5mmol.L-1)和N30(30mmol.L-1)处理;N5处理的Ci和qP高于N15和N30处理,且3个氮素处理间差异极显著;N30处理的Ls高于N5和N15处理,各处理间差异极显著。2个品种的PSⅡ总光化学量子产量(Yield)和IWUE对3个氮素的响应不同:水地品种N15处理的Yield和N30处理的IWUE最高,而旱地品种N5处理的Yield和N15处理的IWUE最高。  相似文献   
7.
制种玉米种子乳线发育的水氮效应   总被引:2,自引:0,他引:2  
乳线是判定玉米成熟度的重要指标之一,为明确灌水和施氮对制种玉米种子乳线发育的影响,以‘郑单958’和‘先玉335’制种玉米为研究对象,设置充分灌溉(6 000 m3·hm?2,W6000)、中度胁迫(4 500 m3·hm?2,W4500)、重度胁迫(3 000 m3·hm?2,W3000)3个灌水梯度,不施氮[0 kg(N)·hm?2,N0]、中氮[225 kg(N)·hm?2,N225]、高氮[450 kg(N)·hm?2,N450]3个施氮水平,研究不同水氮应用对制种玉米种子乳线发育进程、籽粒含水量、百粒重、籽粒脱水和灌浆速率的影响。结果表明,不同制种组合在不同水氮条件下种子乳线发育表现出明显差异;不同水氮条件下‘郑单958’乳线发育进程历时18~24 d,较‘先玉335’的33~36 d短;随灌水量增加,‘郑单958’种子乳线发育有延迟趋势,而‘先玉335’种子乳线受灌水量影响不显著;在乳线同一发育阶段,灌水和施氮均对籽粒含水量无显著影响,百粒重均表现为施氮处理显著高于不施氮;不同灌水处理间,‘郑单958’种子在重度胁迫条件下的脱水速率显著高于中度胁迫和充分灌溉,施氮量间无显著差异,‘先玉335’种子脱水速率各灌水量间无显著差异;‘郑单958’种子的灌浆速率各灌水处理间无显著差异,充分灌水条件下,不施氮处理灌浆速率显著高于施氮处理,而‘先玉335’灌浆速率随灌水量增加而增加,同一灌水条件下均是中氮处理高于不施氮和高氮处理;‘郑单958’种子每脱水1%,籽粒百粒重增加幅度在0.37~0.88 g,而‘先玉335’在0.43~1.34 g。因此,‘郑单958’种子乳线发育受灌水影响显著,水分亏缺致使种子脱水加速,乳线进程加快;‘先玉335’种子乳线发育受氮素影响显著,氮素不足和过量均影响种子灌浆,延迟乳线发育。  相似文献   
8.
甘肃淫羊藿资源分布及产地土壤养分状况调查   总被引:2,自引:0,他引:2  
根据前期资料,结合现场调查,对甘肃淫羊藿资源分布及产地土壤养分进行了分析。结果表明:甘肃产地淫羊藿质量较好,陇南市、甘南州以及定西市南部的岷县、漳县为主要分布区域,兰州市兴隆山马衔山脉沿线也有少量分布。淫羊藿产区土壤环境为弱碱性,有机质、全氮、碱解氮、速效钾含量较高,速效磷含量低。  相似文献   
9.
施肥方式对旱地土壤酶活性和养分含量的影响   总被引:10,自引:3,他引:7  
为了明确不同施肥方式下旱地土壤酶活性与养分间的相互关系,以30年(1979-2008)肥料长期定位试验地为基础,研究了不同施肥方式下旱地小麦田耕层(0~20cm)土壤酶活性与养分的变化趋势及其相关性。结果表明,相比单施氮肥和氮磷配施,小麦秸秆与氮磷配施的土壤蔗糖酶、磷酸酶、过氧化物酶和多酚氧化酶活性以及土壤中全氮、全磷和有机质含量提高,但全钾含量降低。相关分析表明:土壤中的蔗糖酶活性与磷酸酶和过氧化物酶的活性,磷酸酶与过氧化物酶活性之间相关显著,相关系数依次为0.6747、0.5878、0.6414(n=9),其余酶活性之间相关不显著。土壤蔗糖酶、过氧化物酶活性与土壤全氮含量,土壤磷酸酶活性与土壤全磷和有机质含量高度正相关,相关系数分别为0.9969、0.9997、0.9998、0.9863(n=9);多酚氧化酶活性与土壤中的全磷和有机质含量密切负相关,相关系数分别为0.9945、0.9587(n=9),而蔗糖酶、磷酸酶、过氧化物酶和多酚氧化酶活性与土壤中的全钾含量相关性较低。  相似文献   
10.
以马铃薯-大豆套作模式为研究对象,通过2年的大田试验,分析不同熟期大豆品种与马铃薯组合后系统内作物干物质和养分积累的特性与种间竞争补偿的相互关系,阐明间套作系统种间竞争力弱化和恢复补偿能力提高的作用机理,为实现间套作可持续发展提供科学依据。结果表明:套作马铃薯干物质及养分积累无显著变化,而套作大豆变化显著。出苗60 d内套作大豆干物质积累量是同期单作的43.74%,出苗后80~100 d,晚熟品种干物质积累量相对于中熟和早熟提高的幅度分别为35.54%~59.22%和65.56%~70.81%,大豆收获时,晚熟品种干物质积累接近单作,两者间差异不显著。共生期,套作大豆N、P、K积累量较同期单作降低的幅度分别为31.43%~41.44%、21.17%~25.36%和23.23%~35.6%,晚熟品种与中熟、早熟品种间差异达到显著水平。共生期结束后,套作大豆养分吸收量较单作显著增加,收获时,晚熟品种N、P、K养分积累量接近单作,两者间差异不显著。综上,在该群体中,马铃薯是核心作物,共生期处于竞争优势(APS>0、CRPS>0),而大豆处于竞争弱势(APS<0、CRPS<0),选择晚熟大豆品种与马铃薯组合可弱化种间竞争力和营养竞争比率,还有利于马铃薯收获后恢复补偿能力的发挥。  相似文献   
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