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1.
耕作措施对冬小麦田杂草生物多样性及产量的影响   总被引:2,自引:0,他引:2  
在连续5a秸秆全量还田的免耕、旋耕、耙耕、深松和常规耕作试验地中,设置了除草和不除草处理,研究了其对杂草总密度、优势杂草种类、生物多样性指数和冬小麦产量的影响,并分析了杂草与小麦间的竞争关系。结果表明,麦田杂草主要有7种,分别是麦蒿(Descuminia sophia (L.) Webb ex Prantl)、荠菜(Capsella bursa-pastoris (L.) Medik)、燕麦(Avena sativa L.)、田旋花(Convolvulus arvensis L.)、刺儿菜(Cirsium setosum (Willd.) Bieb.)、繁缕(Stellaria media (L.) Vill.)、麦家公(Lithospermum arvense L.)。在未除草条件下,免耕、深松的杂草总密度显著提高;而在除草条件下,杂草密度显著下降。免耕、深松、常规耕作在未除草条件下,优势杂草种类为麦蒿、荠菜,旋耕、耙耕条件下的优势杂草为麦蒿;而除草后各处理的优势杂草均只有麦蒿。耙耕、常规耕作措施在未除草条件下杂草群落具有较高的物种丰富度和均匀度。无论哪种耕作措施,除草能提高冬小麦产量,其中以深松耕作结合除草处理的小麦产量最高。在小麦抽穗期,未除草处理杂草株高接近或高于小麦株高,会造成杂草与小麦间的光竞争,对小麦的生长状况有显著影响,从而导致小麦产量降低。  相似文献   

2.
保护性耕作对陇东黄土高原轮作田杂草的影响   总被引:1,自引:0,他引:1  
以陇东黄土高原旱地连续12年保护性耕作为基础,通过田间取样调查,研究了4种耕作措施下冬小麦-箭筈豌豆-玉米轮作田中杂草的组成和群落特征.结果表明: 不同作物生长期的杂草种类、密度和群落特征各异.免耕使冬小麦生长期杂草密度显著增大,轮作箭筈豌豆后免耕处理的杂草密度变小;秸秆覆盖显著降低了玉米生长期的杂草密度,玉米生长期免耕+秸秆覆盖处理的杂草密度最低.冬小麦和箭筈豌豆轮作前后杂草的群落多样性特征完全相反,从冬小麦生长期到箭筈豌豆生长期,免耕处理杂草群落的多样性指数先高于常规耕作处理,后期低于常规耕作处理;玉米生长期免耕处理的多样性指数均大于其他3种处理.因此,免耕和秸秆覆盖在一些作物生长期能抑制杂草的发生和分布,3种作物轮作对杂草防治具有明显作用.  相似文献   

3.
在半湿润地区的土垫旱耕人为土上,以冬小麦品种小偃22为指示作物,通过田间小区试验研究了不同施肥条件下冬小麦田间杂草种群的组成以及在4个生育期(越冬期、返青期、拔节期、成熟期)田间杂草密度和生物量的变化.结果表明:(1)在冬小麦全生育期内共发现以猪殃殃、麦家公、婆婆纳、播娘蒿、泽漆、荠菜等为主的17种杂草,不同生育期杂草的优势种群不同,而且杂草总密度表现为越冬期>返青期>拔节期,生物量表现为拔节期>返青期>越冬期;(2)与不施肥处理(P0N0)比较,单施氮肥增加了杂草密度和生物量,在氮磷配施条件下,氮肥对生物量有极显著影响且随施氮量增加表现为减小趋势,其中PN45处理的杂草生物量最大并比P0N0增加51.8%;施磷对杂草生物量有极显著影响,其中单施磷比P0N0处理增加44.0%,PN135处理比P0N135处理增加24.0%.(3)低密度播种比正常密度播种能显著增加杂草生物量,平均增加幅度达82.9%.结果表明,通过增施氮肥和适当增加种植密度,可在一定程度上控制杂草发生,促进作物良好生长.  相似文献   

4.
不同小麦品种对播娘蒿的影响   总被引:2,自引:0,他引:2  
播娘蒿是黄淮麦区主要田间杂草,在管理粗放的麦田,播娘蒿密度可达100株·m-2以上,严重影响了小麦的产量和品质。因此,对小麦-杂草复合体中杂草的生长发育规律进行研究,寻找降低草害的有效途径引起许多学者极大关注[1,2],而目前有关防除麦田杂草的研究多集中于化学防治方面[3]。然而,出于环境保护和经济成本上的考虑,化学除草受到了挑战。研究人员[4,5]发现,不同物种在竞争力上存在差异,禾谷类作物属于竞争力很强的作物[6],冬小麦及冬黑麦又是其中竞争力最强的物种。就小麦栽培种而言,存在着不同的品种类型,研究不同小麦品种对杂草的抑制作…  相似文献   

5.
农田杂草是农业生态系统的重要组成部分。有机农田杂草控制是农业生产的一大难题,通过施肥方式改变杂草的竞争格局有望成为杂草控制的新途径。以暖温带有机玉米田为研究对象,设置了5种不同处理,即不施肥对照处理(CK)、施用牛粪处理(CM)、施用蚯蚓处理过的牛粪处理(EM)、免耕秸秆不覆盖处理(NT)和免耕秸秆覆盖处理(NS),研究不同耕作和施肥方式对田间杂草密度、生物量、生物多样性及作物产量的影响。结果表明,在有机玉米农田内共发现杂草17种,CK杂草总密度最高,但杂草总生物量和生物多样性指数较低。EM杂草总生物量和牛筋草(Eleusine indica)生物量最高,分别比CK增加了192.6%和224.8%(P〈0.01),物种丰富度和生物多样性指数较低,优势集中度指数较高。NS杂草总密度、总生物量和生物多样性与NT相比显著降低。此外,EM玉米(Zea mays)产量比CK高40.2%(P〈0.01),比CM高19.6%(P〈0.01)。施用蚯蚓处理过的牛粪不仅提高了玉米产量,而且可以促进优势种杂草的生长,提高杂草群落的优势集中度。  相似文献   

6.
土壤耕作及秸秆还田对夏玉米田杂草生物多样性的影响   总被引:9,自引:0,他引:9  
于2008年夏玉米(Zea mays)生长期间,在连续5a秸秆全量还田的免耕、旋耕、耙耕、深松和常规耕作试验地中,研究了杂草总密度、优势杂草种类、生物多样性指数、杂草生物量和夏玉米产量。调查共记录杂草种类13种,秸秆全量还田时,免耕显著提高杂草的总密度;无秸秆还田时,常规耕作的杂草密度高于免耕、旋耕、耙耕和深松。秸秆全量还田后,免耕和深松条件下,杂草优势种为马唐和旱稗,旋耕和耙耕条件下为马唐、旱稗和牛筋草;常规耕作条件下,优势杂草为马唐、苘麻、旱稗和香附子。无秸秆还田条件下,免耕和常规耕作增加了杂草优势种的数量。秸秆全量还田后,免耕、耙耕和深松等耕作措施导致杂草群落的物种丰富度及均匀度均较高。无论哪种耕作条件,5a连续秸秆还田能够显著提高夏玉米籽粒产量和生物学产量,其中尤以常规耕作秸秆全量还田处理产量最高,且田间杂草的生物学产量与夏玉米的生物学产量呈显著负相关关系。  相似文献   

7.
2种杂草水提液对小麦种子萌发及幼苗生长的影响   总被引:11,自引:2,他引:9  
以2种麦田伴生杂草播娘蒿(Descurainiasophia)和猪殃殃(Galiumtricorne)为供体,以关中地区15个主要的小麦(Triticumaestivum)栽培品种为受体,采用室内生物测定法,比较了2种杂草水提液对不同小麦品种种子萌发及幼苗生长的影响.结果表明:(1)播娘蒿水提液对所有小麦品种的发芽率、发芽势和发芽指数均具有显著的抑制作用,猪殃殃水提液对这3项指标的抑制作用相对较弱,甚至对某些品种的这3项指标没有影响或具有促进作用.(2)2种杂草水提液对供试15个小麦品种的活力指数,以及根长、苗高、根鲜重、苗鲜重等生长指标均表现出抑制作用,且同一种杂草水提液对不同小麦品种的影响程度存在差异.(3)以播娘蒿和猪殃殃的响应指数值(RI)为指标分别将15个小麦品种聚类为强、中、弱三组,并发现2种杂草水提液分别对小偃22和西农979的化感作用均较弱,即这2个品种对播娘蒿和猪殃殃的化感作用均具有较强抗性.  相似文献   

8.
探讨免耕对作物根系生长和产量以及土壤物理性质的影响可以为科学管理保护性耕作提供依据。本文对相关文献进行整合分析发现,免耕显著降低玉米根长、根长密度和根表面积,降幅分别为13.8%、15.7%和22.8%,而免耕对玉米根系生物量、生物量密度和比根长影响不显著;免耕显著降低了玉米产量,降幅达8.4%,并与土壤p H有关(pH7.0,P0.05; pH≥7.0,P0.05)。免耕显著增加土壤容重和穿透阻力,增幅为3.5%、13.0%;减少了土壤含水量。沿土壤剖面,免耕对生物量密度的影响从负效应(10~20 cm,-22.2%)、无影响(0~10 cm和20~30 cm,P0.05)到正效应(30~40 cm,33.3%),而对生物量密度在水平分布上无影响;免耕显著增加了土壤容重(0~20 cm)和穿透阻力(0~10 cm)。鉴于免耕对玉米产量和土壤物理环境的负效应,建议实践中由常规耕作转变为免耕后同时结合秸秆覆盖(或还田)策略,未来应加强研究作物根系属性对保护性耕作的响应与适应机制,以及免耕/秸秆还田等多策略的长期观测试验研究,为农业可持续发展提供理论和实践参考。  相似文献   

9.
耕作方式对华北寒旱区燕麦田杂草群落结构的影响   总被引:1,自引:0,他引:1  
为了明确不同耕作方式对燕麦田杂草群落结构及作物生产的影响,依托华北寒旱区定位10年的免耕、深松、翻耕田间试验,并设置10年免耕后翻耕和10年深松后翻耕处理,监测了2种土壤类型下燕麦田不同耕作方式的杂草总密度、优势杂草种类、杂草多样性指数和生物量以及燕麦产量.结果表明: 区域杂草群落结构以狗尾草为主;长期免耕下燕麦田不同生育期杂草密度为翻耕的2.20~5.14倍,而长期免耕或深松后翻耕处理的杂草密度与翻耕差异不显著.免耕下砂质栗钙土与壤质草甸栗钙土燕麦田的杂草Shannon多样性指数分别达0.429和0.531,免耕下杂草生物量是翻耕处理的1.35和2.26倍,而燕麦生物产量较翻耕处理减少22.3%和46.2%.表明耕作方式与土壤类型共同决定杂草群落特征.华北寒旱区长期免耕具有促进农田植物群落自然演化、容蓄多年生宿根类杂草的特征,而翻耕具有降低一年生杂草密度、灭除浅位性宿根杂草、激发深位性宿根杂草的特征;杂草多样性与作物高产性相悖演化.  相似文献   

10.
外来杂草反枝苋对农作物的化感作用及其风险评价   总被引:4,自引:0,他引:4  
利用改进的差时播种共培法,以麦田伴生恶性杂草播娘蒿为对照,在实验室条件下研究反枝苋根系分泌物及其不同浓度残枝浸提液对小麦、玉米、油菜种子萌发及生长的影响.结果显示:(1)反枝苋幼苗的根系分泌物能够显著抑制作物根长和苗高的生长;(2)反枝苋不同浓度浸提液均能抑制作物种子的萌发,其抑制作用随浓度的增加而增强;(3)除0.025 g·mL-1处理对小麦根长和苗高、玉米苗高有促进作用外,其余各浓度反枝苋浸提液对作物幼苗的根长和苗高有不同程度的抑制,且对根长的抑制作用更强;(4)反枝苋对作物幼苗的抑制作用强于恶性杂草播娘蒿,风险评估定量分析结果认定反枝苋为陕西省高度危险性植物.  相似文献   

11.
Han HF  Ning TY  Li ZJ  Tian SZ  Wang Y  Zhong WL  Tian XX 《应用生态学报》2011,22(5):1183-1188
在秸秆全量还田的试验田中(从2004年起),于2008-2009年及2009-2010年冬小麦生育期间,研究了不同耕作措施(旋耕、耙耕、免耕、深松和常规耕作)和杂草管理对冬小麦田土壤水分及有机碳的影响.结果表明:在未除草条件下,免耕、深松的杂草总密度显著提高;而在除草条件下,杂草密度显著下降.小麦从拔节期到灌浆期0~60 cm土层水分含量呈明显波动变化,田间保留一定量的杂草可增加不同耕作方式0~20 cm的土壤水分含量,表现出一定的土壤水分保持效应.保留杂草仅提高了拔节期0~20 cm土层的土壤有机碳含量;而在抽穗期和灌浆期,0~20、20~40和40~60 cm土层有机碳含量均低于去除杂草处理.去除杂草条件下,深松显著提高了冬小麦籽粒产量;保留杂草条件下,旋耕的籽粒产量最高,常规耕作产量最低.  相似文献   

12.
保护性耕作和杂草多样性是现代生态农业关注的热点问题.尽管保护性耕作下农田杂草多样性有所提高,但耕作方式与养分管理方式对农田杂草群落多样性的交互影响尚未探明.本研究以山东省济南市一块连续3年施行不同耕作方式(免耕、深松、旋耕、深耕)和不同养分管理措施(农户常规:年施氮肥480 kg·hm-2,高产高效:年施氮肥360 kg·hm-2,优化管理:年施氮肥300 kg·hm-2)的冬小麦-夏玉米轮作农田为研究样地,调查并比较了不同管理模式下农田春季杂草群落特征.结果表明: 该冬小麦-夏玉米农田春季杂草群落共发现杂草15种,其中优势物种为马唐和稗;与深耕和旋耕相比,免耕和深松下杂草密度较高.在群落多样性方面,深耕处理下的物种丰富度和均匀度最低,而群落优势度高于其余3种耕作方式;在养分管理中,随着施肥量的增加,物种丰富度和均匀度均升高;深耕和旋耕处理下,随着施肥量的增加,群落优势度升高;而在免耕深松处理下,群落优势度会随着施肥量的增加而减少.在杂草群落生物量方面,免耕和深松的生物量显著高于深耕和旋耕,农户常规处理均高于其余两种养分管理方式,杂草生物量最高的组合是免耕+农户常规.免耕和施肥将提高农田春季杂草群落丰富度、均匀度和生产力.  相似文献   

13.
Water availability directly influences interactions and competition between weeds and crops. This article is based on the idea that relative water content (RWC) indicates the water uptake within plants and that it is possible to explain the water relationships between plants that are growing together. A field experiment carried out for 3 years (2013–2014, 2014–2015 and 2015–2016) compared the short-term effects of years and tillage systems on wheat grain yield, weed density, wheat-RWC, weed-RWC and soil water content (SWC), at tillering and flowering stages in a winter wheat monoculture system. The three tillage treatments were conventional tillage (CT), minimum tillage (MT) and no-tillage (NT). Wheat grain yield was low all years of study, because of low interannual rainfall, and we did not observe differences between tillage systems. Weed density was also affected by year and not by tillage systems. Lowest winter rainfall (73.4 mm from Nov to Feb) in the last year of the study (2015–2016), decreased the weed density in all tillage systems. Despite the rainfall variability over the 3 years of study, the NT system presented higher weed density (73 plants/m2) than MT and CT systems (39.83 and 46.33 plants/m2). We also observed a higher number of weed species for the NT system, facilitated by a high soil water storage in this system. The wheat-RWC, at tillering stage, varied with years and tillage systems; we found that high winter rainfall (2013–2014) led to higher values in CT (64.5%) compared with MT (52.9%) and NT plots (52.9%). Weed-RWC values did not vary and SWC was greater in NT than in CT and MT. At flowering stage, the year (2015–2016) with highest spring rainfall favoured higher wheat-RWC in NT (56.9%) compared with CT (48.3%). However, the lowest spring rainfall coincided with the lowest weed-RWC, (18% in NT plots) and SWC was always higher in NT soils. The results showed that climatic conditions affected the water competence dynamics between weeds and wheat in different ways. Seemingly, weeds can tolerate a lack of water availability until crop tillering stage independently of tillage system; however, the competition for water was not a problem as crops overcame the high weed density by flowering stage.  相似文献   

14.
Soil tillage and nitrogen (N) management effects on weed species composition were evaluated in 2013 and 2014 on a clayey soil after 5‐years of organic management at the Royal Agricultural University's Harnhill Manor Farm, UK. Three tillage systems – Conventional Tillage (CT), and High and Low Intensity Non‐inversion Tillage (HINiT & LINiT) – were compared at four N fertiliser rates of 0, 70, 140 and 210 kg N ha?1. Broad‐spectrum herbicide was applied before soil operations across the site in both years. Previous organic management legacy of high weed biomass promoted greater weed prevalence in 2013 while 2‐years of herbicide inclusion reduced weed biomass. Contrasting weather conditions across the seasons affected weed incidence. In the 2014 wet season, early weed dry weight (DM) was higher under HINiT than CT and LINiT, while no differences were observed in the 2013 dry year. At midseason, weed DM was higher under HINiT than CT and LINiT in both years, which was related to higher DM of the dominant weeds Stellaria media (L.) Vill. and Sinapis arvensis L. Grass weed DM was higher under non‐inversion tillage than CT. N fertilisation increased midseason total weed DM and weed prevalence at harvest. Spring wheat yield was the highest under CT while LINiT produced 17% higher yields than HINiT. Despite higher but still tolerable weed prevalence under both non‐inversion tillage systems and with the application of N, weeds alone was not the only yield‐limiting factor. However, results show that CT is the most reliable option for weed control in changing weather, while N fertilisation rates needs to be considered.  相似文献   

15.
以陇东黄土旱塬已进行7年的田间定位试验为基础,分析了免耕和传统耕作条件下5个施肥处理冬小麦收获期土壤水分、土壤容重(2011年)及土壤养分和产量(2005-2011年)变化,探讨了耕作方式和施肥对冬小麦-春玉米轮作农田土壤蓄水保墒效果及土壤肥力和产量的影响.结果表明: 2011年免耕条件下0~200 cm各土层土壤含水量、0~20 cm和20~40 cm土层土壤容重及土壤有机质、速效氮、速效磷含量均高于传统耕作.相同耕作条件下氮磷化肥与有机肥配施处理的土壤有机质、速效氮、速效磷含量高于其他施肥处理;不同耕作方式及施肥处理下速效钾呈逐年减少的趋势;传统翻耕处理的产量高于免耕,相同耕作条件下氮磷化肥与有机肥配施处理产量最高,不施肥对照产量最低.不同耕作方式和施肥处理的土壤蓄水保墒能力和肥力效应以免耕优于传统翻耕,产量以传统翻耕下有机无机肥配施处理最好.  相似文献   

16.
稻鸭共作能有效控制稻田杂草的危害, 但是它对后茬小麦田杂草的影响及其控制作用尚没有详细的报道。我们于2000-2012年对江苏丹阳稻鸭共作兼秸秆还田的有机稻麦连作田土壤杂草种子库进行了连续13年的观察实验。结果显示, 稻鸭共作兼秸秆还田的措施使看麦娘(Alopecurus aequalis)、通泉草(Mazus japonicus)、碎米荠(Cardamine hirsuta)等18种麦田主要杂草的种子库均有较大幅度的降低, 总体的降低幅度高达97%。除了Pielou指数处于小幅波动状态外, 麦田杂草群落多样性指数整体呈下降趋势。丰富度下降表明杂草种子库向种类少、多样性低的方向演变。从Bray-Curtis指数和Jaccard相似性指数也可以得到同样的结论。可见, 连续稻鸭共作兼秸秆还田能够降低下茬的麦田土壤里杂草种子密度及多样性, 控制杂草危害。  相似文献   

17.
Aims Understanding the response of farmland weed community assembly to fertilization is important for designing better nutrient management strategies in integrated farmland ecological systems. Many studies have focused on weed characteristics, mainly crop–weed competition responses to fertilization or weed communities alone. However, weed community assembly in association with crop growth is poorly understood in the agroecosystems, but is important for the determination of integrated weed management. Biodiversity promotes ecosystem productivity in the grassland, but whether it applies to the agroecosystems is unclear. Based on an 11-year field experiment, the cumulative effects of different fertilization patterns on the floristic composition and species diversity of farmland weed communities along with wheat growth in a winter wheat–soybean rotation were investigated.Methods The field trial included five fertilization patterns with different combinations of N, P and K fertilizers. Species composition and diversity of weed communities, aboveground plant biomass and nutrient accumulation of weeds and winter wheat, light penetration to the ground surface and wheat yield were measured at each plot in 2009 and 2010. Multivariate analysis, regression and analysis of variance were used to analyze the responses of these parameters to the different fertilization treatments.Important findings Four dominant weeds (Galium aparine L., Veronica persica Poir., Vicia sativa L. and Geranium carolinianum L.) accounted for ~90% of the total weed density in the 2 years of experimental duration. The residual weed community assembly was influenced primarily by topsoil available nutrients in the order P> N> K. Competition for nutrients and solar radiation between crops and weeds was the main indirect effect of fertilization on the changes in weed community composition and species diversity. The indices of species diversity (species richness, Shannon–Wiener, Pielou and Simpson indices) showed significant linear relationships with wheat yield. The balanced fertilization treatment was more efficient at inhibiting the potential growth of weeds because of solar radiation being intercepted by wheat. These results support the conclusion that wheat yield is favored by balanced fertilization, whereas the weed community is favored by PK fertilization in terms of density and diversity. However, the negative effects on wheat yield may be compromised by simultaneous positive effects of weed communities in the fertilization treatments, for instance, the NP and NK treatments, which are intermediate in terms of increasing wheat production and to a level maintaining a diverse community.  相似文献   

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