首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 993 毫秒
1.
闵红  张丹  绳金房  唐娜  韩纯洁 《微生物学通报》2011,38(11):1673-1678
从土壤肥力与微生物因子探索连茬障碍机理,以期为其提供科学依据。研究草莓番茄轮作(RST)、番茄连作4年(CT4)和番茄连作10年(CT10)3种蔬菜种植模式根际与非根际土壤微生物区系及生理菌群,并对土壤肥力与微生物生物因子进行主成分分析。结果表明根际土壤微生物三大类群和生理菌群数量均高于非根际,根际效应显著。番茄连作根际与非根际土壤细菌和放线菌数量呈现先增加后减少趋势;真菌数量呈线型增加趋势,CT4和CT10在根际与非根际较RST分别增加9.09%和2.11%、75.48%和57.72%。番茄连作根际土壤硝化细菌和好气性自生固氮菌数量的减少,氨化细菌与好气性纤维素分解菌在短期连作表现为增加长期减少的变化趋势;解钾菌、无机磷和有机磷细菌数量在根际与非根际土壤均减少。在6种研究的种植模式中,RST根际土壤状况最好,其次为CT4的根际与RST非根际土壤,CT10的根际土壤、CT4与CT10非根际土壤状况最差。结论是蔬菜连作造成土壤质量下降,连作年限越长下降越显著。  相似文献   

2.
烟草根际微生物研究   总被引:33,自引:1,他引:32  
刘训理  王超  吴凡  薛东红  陈凯 《生态学报》2006,26(2):552-557
利用选择性培养基,对土壤肥力肥沃、中等、贫瘠的烟区根际细菌、真菌和放线菌进行了分离和测数。根据菌体形态及培养特征、生理生化指标及16S rDNA部分序列分析等,对根际自生固氮菌、磷细菌、钾细菌进行了鉴定和分类。主要结果为:土壤肥沃的烟区根际细菌的数量最多,土壤贫瘠的烟区数量最少;土壤贫瘠烟区根际真菌的数量较多,中等和肥沃烟区的较少;根际故线菌的数量随土壤肥力的降低而依次减小。从不同肥力烟区分离的根际自生固氮菌、磷细菌、钾细菌以革兰氏阴性杆菌为主,分别属于10个属。土壤的肥沃程度对根际3类细菌的种类和数量都有影响,总体上看,土壤肥沃和中等的条件下,细菌类群的多样性和丰富度较大,而贫瘠土壤细菌类群的优势度较大。  相似文献   

3.
嫁接对铜胁迫下黄瓜根际土壤微生物特性和酶活性的影响   总被引:2,自引:0,他引:2  
采用盆栽试验方法,研究了嫁接(以黑籽南瓜为砧木)对铜胁迫下黄瓜根际土壤微生物生物量、微生物种群数量和土壤酶活性的影响.结果表明: 铜胁迫下黄瓜根际土壤微生物生物量碳(MBC)和微生物生物量氮(MBN)含量显著下降,基础呼吸和代谢熵显著上升,但嫁接黄瓜根际土壤MBC和MBN含量显著高于自根黄瓜,而基础呼吸和代谢熵则显著低于自根黄瓜.铜胁迫下,根际土壤放线菌和自生固氮菌的数量显著下降,真菌数量显著上升,而细菌数量变化不显著;嫁接黄瓜根系土壤细菌、放线菌、自生固氮菌的数量显著高于自根黄瓜,而真菌数量显著低于自根黄瓜.嫁接黄瓜根际土壤脲酶、磷酸酶、蔗糖酶、过氧化氢酶活性在铜胁迫下显著高于自根黄瓜.试验结果证明嫁接使铜胁迫下黄瓜根际土壤微生物环境和酶活性得到了改善和提高,从而提高了黄瓜植株对铜胁迫的抵抗力.  相似文献   

4.
太子参连作对根际土壤微生物的影响   总被引:2,自引:0,他引:2  
采用微生物培养法和末端限制性片断长度多态性(T-RFLP)技术分析连作对太子参根际土壤微生物多样性的影响。结果表明:连作导致太子参根际土壤细菌和好气性自生固氮菌数量极显著下降,相反,真菌、放线菌、厌气性纤维素分解菌数量极显著增加,而硝化细菌数量变化不显著。T-RFLP分析显示:与太子参-水稻-太子参轮作的土壤相比,太子参连作的土壤细菌种(属)略有减少,其中致病菌和病原菌种(属)增多,并出现一些具拮抗功能的链霉菌属(种);真菌种(属)则表现出上升的趋势,但未检索到与植物致病相关的真菌种(属)。  相似文献   

5.
连作对芝麻根际土壤微生物群落的影响   总被引:16,自引:0,他引:16  
华菊玲  刘光荣  黄劲松 《生态学报》2012,32(9):2936-2942
采用稀释平板计数法研究了不同连作年限处理芝麻根际土壤细菌、真菌、放线菌、芽孢杆菌、尖孢镰刀菌(FO)和青枯劳尔氏菌(RS)数量的变化情况。结果表明,随着连作年限的增加,芝麻根际土壤中细菌和放线菌的数量下降,而真菌的数量则呈上升趋势。新种芝麻地根际土壤芽孢杆菌数量显著高于连作2a处理和连作5a处理,而连作2a处理又显著高于连作5a处理;连作5a芝麻根际土壤尖孢镰刀菌数量显著高于新种地、轮作1a和连作2a等3个处理;轮作1a、连作2a及连作5a等3个处理青枯劳尔氏菌数量显著高于新种地处理。说明连作导致土壤微生物环境恶化,引起根际微生物区系结构发生定向改变。连作2a与轮作1a相比,各菌群(类群)数量差异均不显著。  相似文献   

6.
本溪山樱根际与非根际解磷细菌群落结构及动态变化   总被引:7,自引:0,他引:7  
利用选择性培养基,对不同基质中的本溪山樱(Cerasus sachalinensis) 根际与非根际解磷细菌进行了分离、鉴定和分类,分析了3种不同基质中根际与非根际解磷细菌数量和类群的变化.结果表明,从3种不同配比的基质中分离纯化获得的解磷细菌分别属于13个属,以芽孢杆菌属(Bacillus)、假单胞菌属(Pseudomonas)和沙雷铁氏菌属(Serratia)为主.其中添加炉渣的基质最适于解磷细菌的生长与繁殖,其种群数量最高,但类群的多样性指数低于另外两种土壤.本溪山樱不同生育期根际与非根际解磷细菌种群数量不同,新梢停长期根际中定殖的解磷细菌种群最多(共分离到6个菌属),新梢迅速生长期和落叶期较少,萌芽期最少.根际土壤解磷细菌多样性亦随生育期发生变化,新梢迅速生长期最高,落叶期次之,新梢停长期最低.非根际土壤则有随生育期逐渐减小的趋势.解磷细菌的根际效应较明显  相似文献   

7.
棉花根际亲和性高效促生细菌的分离筛选   总被引:3,自引:0,他引:3  
为了从棉花根际土壤筛选能与棉花凝集素具有亲和作用的高效促生细菌,以选择性培养基从棉花根部初步筛选具有固氮能力、解磷能力及解钾能力的促生细菌,再以异硫氰酸磺(FITC)标记的棉花凝集素为复筛工具,从棉花根际促生细菌中筛选能与棉花凝集素结合的亲和性菌株,分别挑选2株固氮菌、2株解磷细菌和2株解钾细菌作为微生物肥料接种到棉花根部进行盆栽试验.观察其在根部定殖情况.结果是在选择性平板上有20%~30%的菌株具有凝集素染色阳性.盆栽试验显示,接种的6株亲和性菌株能在棉花根部成功定殖,根际细菌数量约是灭活对照的`0倍.通过初步鉴定,固氮菌株N1111为固氮菌属(Azotobacter),N2121属于德克斯氏菌属(Derxia);解磷菌株P2126属于黄单胞菌属(Xanthomonas),P1108菌株为假单胞菌属(Pseudomonas);解钾菌株K2204和K2116属于芽孢杆菌属(Bacillus).  相似文献   

8.
采用宏基因组测序技术,研究了杨树人工林Ⅰ代林地和连作Ⅱ代林地根际土和非根际土、Ⅱ代林地主伐后轮作花生地和轮荒地土壤中解磷微生物类群特征及磷酸酶基因丰度变化.结果表明: 参与磷循环微生物共9属,芽孢杆菌属和假单胞菌属为优势菌群.土壤解磷微生物丰度大小顺序为轮荒地>轮作花生地>Ⅱ代林地>Ⅰ代林地;主伐更新后轮作花生地和轮荒地芽孢杆菌属和假单胞菌属丰度显著升高,节杆菌属、慢生根瘤菌属、链霉菌属丰度显著降低;但在人工林根际土壤中,与Ⅰ代林根际相比,Ⅱ代林根际土壤与此规律相反.在根际与非根际土壤中,芽孢杆菌属和假单胞菌属丰度为根际小于非根际,节杆菌属、慢生根瘤菌属、链霉菌属丰度为根际大于非根际.磷酸酶基因总丰度为Ⅰ代林地>轮荒地>Ⅱ代林地>轮作花生地,且在Ⅰ、Ⅱ代林中根际效应明显,但Ⅱ代林根际与非根际差异缩小且部分磷酸酶基因的根际丰度低于非根际丰度.解磷微生物数量与酚酸含量呈显著负相关,与pH值呈正相关.  相似文献   

9.
细菌是土壤最重要的组成部分,土壤细菌的群落结构对土壤的健康至关重要,可以直接影响植物的生长。胡萝卜的长年连作导致其产量低、质量差等一系列问题的发生,连作问题已成为不可忽视的问题。本研究通过HiSeq PE250高通量测序和生物信息学方法获得了玉米胡萝卜轮作种植和胡萝卜连作种植中胡萝卜根际和非根际土壤细菌的组成结构。研究结果表明,相较于胡萝卜连作,玉米胡萝卜轮作种植改变了胡萝卜根际土壤细菌的组成和群落多样性。RM.M (玉米胡萝卜轮作根际土壤样品)样品中的优势菌门为放线菌门和厚壁菌门,RM.R (胡萝卜连作根际土壤样品)的优势菌门是变形菌门;有益菌如芽孢杆菌属和根瘤菌属在玉米胡萝卜轮作种植中的胡萝卜根际富集。RM.M与RM.R的细菌类群差异显著,群落多样性较低;NRM.M(玉米胡萝卜轮作非根际土壤样品)和NRM.R (胡萝卜连作非根际土壤样)的细菌类群差异不明显,群落多样性较高。与连作根际土壤相比,轮作根际土壤中有益菌的相对丰度较大,细菌相对丰度明显增加。本研究结果对通过调节根际土壤细菌组成来保证胡萝卜产量和质量的稳定,解决连作问题具有重要的意义。  相似文献   

10.
接种促生菌对花生根际土壤微生物及营养元素的影响   总被引:2,自引:0,他引:2  
植物根际促生菌是一类可促进植物生长的有益细菌,有效的根际促生菌剂可以减少化肥施用。以束村氏菌属(Tsukamurella sp.)P9、伯克霍尔德氏菌属(Burkholderia sp.)P10、以及P9和P10混合菌液作为接种菌株,研究促生菌对花生生长、植株及土壤营养、根际土壤微生物类群及功能的影响。30 d盆栽实验结果表明,接种组的花生鲜重、株高及根长均显著提高;根际土壤细菌总数、固氮菌和溶磷菌数均明显高于未接种组;氮循环功能菌群数量有不同程度提高,土壤蔗糖酶、脲酶及过氧化氢酶均高于对照;土壤碱解氮及速效钾显著提高,植株营养指标有所提升,尤以P10接种效果更优。本研究初步结论表明2株促生菌通过活化土壤微生物、提高植株的有效营养元素含量,促进了花生的生长。  相似文献   

11.
[背景] 小麦/玉米轮作是中国粮食作物主要种植模式之一,目前对小麦/玉米轮作田根际土壤微生物差异变化缺乏全面的了解。[目的] 明确小麦/玉米根际土壤微生物差异变化并了解其潜在功能。[方法] 以小麦/玉米根际土壤为材料,运用细菌16S rRNA基因和真菌rDNA ITS基因测序,分析小麦/玉米根际土壤微生物多样性。[结果] 玉米季微生物丰富度高于小麦季,而多样性无明显差异。放线菌门(Actinobacteria)、变形菌门(Proteobacteria)、酸杆菌门(Acidobacteria)和绿弯菌门(Chloroflexi)为小麦季和玉米季根际土壤的优势细菌门,优势真菌门为子囊菌门(Ascomycota)。小麦季和玉米季共有细菌和真菌分别是631个和261个,小麦季特有细菌和真菌分别是38个和58个,玉米季特有细菌和真菌分别是25个和39个。LEfSe分析(LDA阈值为2)细菌和真菌表明,放线菌纲(Actinobacteria)和微囊菌目(Microascales)在小麦季富集,鞘脂单胞菌目(Sphingomonadales)和银耳纲(Tremellomycetes)在玉米季富集。小麦季、玉米季微生物代谢功能不同,与小麦季相比,玉米季养分循环的代谢通路丰富度较高,而参与氧化应激的代谢通路丰富度较低。[结论] 该研究结果对指导小麦/玉米轮作田管理具有理论和实践意义。  相似文献   

12.
人参生理生态的研究   总被引:5,自引:0,他引:5  
聂绍荃  何小双 《植物研究》1992,12(4):417-432
人参是我国极其珍贵的药用植物之一。本文从生理生态的角度对其在生长季的各种环境因子的变化规律及光合生理进程作了较为全面、系统的定位定量研究。根据不同观测点的试验数据,得出了有利于人参生长的最适环境范围,为人参的栽培提供了理论依据及基础资料。  相似文献   

13.
Crop rotation   总被引:4,自引:0,他引:4  
Crop rotation has been used for thousands of years. During the 1950s and early 1960s, it was felt that synthetic fertilizers and pesticides could forever replace crop rotation without loss of yield, but that opinion has changed. The current consensus is that crop rotation increases yield and profit and allows for sustained production. For example, maize, in a 2‐year rotation with soybean, yields 5 to 20% more than continuous maize, and no amount of fertilizer or pesticide can compensate completely for that difference. It is not well understood what causes the rotation effect, but improvements in soil physical properties and soil organic matter probably play a beneficial role in rotations that include multiple years of sod, pasture, or hay. Short rotations such as maize‐soybean actually result in a degradation in those same factors, yet the rotation effect still is realized. Recent information suggests that soilborne pathogens may be responsible for the yield depression seen with continuous monoculture.  相似文献   

14.
Witt  C.  Cassman  K.G.  Olk  D.C.  Biker  U.  Liboon  S.P.  Samson  M.I.  Ottow  J.C.G. 《Plant and Soil》2000,225(1-2):263-278
The effects of soil aeration, N fertilizer, and crop residue management on crop performance, soil N supply, organic carbon (C) and nitrogen (N) content were evaluated in two annual double-crop systems for a 2-year period (1994–1995). In the maize-rice (M-R) rotation, maize (Zea mays, L.) was grown in aerated soil in the dry season (DS) followed by rice (Oriza sativa, L.) grown in flooded soil in the wet season (WS). In the continuous rice system (R-R), rice was grown in flooded soil in both the DS and WS. Subplot treatments within cropping-system main plots were N fertilizer rates, including a control without applied N. In the second year, sub-subplot treatments with early or late crop residue incorporation were initiated after the 1995 DS maize or rice crop. Soil N supply and plant N uptake of 1995 WS rice were sensitive to the timing of residue incorporation. Early residue corporation improved the congruence between soil N supply and crop demand although the size of this effect was influenced by the amount and quality of incorporated residue. Grain yields were 13-20% greater with early compared to late residue incorporation in R-R treatments without applied N or with moderate rates of applied N. Although substitution of maize for rice in the DS greatly reduced the amount of time soils remained submerged, the direct effects of crop rotation on plant growth and N uptake in the WS rice crops were small. However, replacement of DS rice by maize caused a reduction in soil C and N sequestration due to a 33–41% increase in the estimated amount of mineralized C and less N input from biological N fixation during the DS maize crop. As a result, there was 11–12% more C sequestration and 5–12% more N accumulation in soils continuously cropped with rice than in the M-R rotation with the greater amounts sequestered in N-fertilized treatments. These results document the capacity of continuous, irrigated rice systems to sequester C and N during relatively short time periods. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

15.
Soil microbiological and chemical aspects were evaluated to determine the effects of conservation tillage and crop rotation on soil fertility over a 16-year period. A field trial was established to compare two cropping systems (continuous soybean and maize/soybean, soybean/maize rotation). In addition, maize (Zea mays L.) and soybean (Glycine max L., Merr) were grown in two different tillage systems: no tillage and reduced tillage. Soil populations of Trichoderma spp., Gliocladium spp. and total fungi were more abundant when maize or soybean were under conservation tillage and in the maize/soybean and soybean/maize rotation, than in continuous soybean. Furthermore, higher levels of microbial respiration and fluorescein diacetate hydrolysis (FDA), were recorded under no tillage systems. However, soil counts of Actinomycetes and Pythium spp., and Pythium diversity together with soil microbial biomass were not affected by the field treatments. To establish a correlation with soil biological factors, soil chemical parameters, such as pH, organic matter content, total N, electrical conductivity, N–NO3 and P were also quantified, most of the correlations being significantly positive. Under no tillage there was a clear increase of the amount of crop residues and the C and N soil content due to the presence of residues. Also the distribution of crop residues in surface soil due to zero tillage and the quality of these residues, depending on the crop rotation employed, improved on soil biological and chemical characteristics. Crop yield was also enhanced by zero tillage through the management of residues. Although yield values were not directly associated with the development of microorganisms, both yield and microorganisms were influenced by crop management. These results suggest that measuring soil properties over a long period helps to define effective management strategies in order to preserve soil conditions.  相似文献   

16.
Summary Distribution of nitrates in soil profiles under eight different crop rotations was studied after the harvest of various constituent crops. Nitrate distribution patterns at different dates reveal that maximum leaching loss of nitrates occurs from rotations consisting of heavily fertilized shallow rooted crops like potato. Wheat and maize, in a rotation reduce nitrate leaching to deeper soil layers because of their deep and extensive rooting systems. In rainy season, when maximum movement of nitrates occurs in the profile, raising of deep rooted crops like maize leaves for leaching only a small amount of nitrates as compared to crops like groundnut and soybean with shallow rooting systems and low N-requirement. Summer season crops like moong, cowpeas and maize (fodder), do not alter nitrate distribution patterns, unless a large amount of nitrates is present in the profile prior to their sowing.Post-graduate student and Professor of Soils, respectivelyPost-graduate student and Professor of Soils, respectively  相似文献   

17.
Increased use of N fertilizer and more intensive cropping due to the rising food demand in the tropics requires design and evaluation of sustainable cropping systems with minimum soil acidification. The objectives of this study were to quantify acidification of an Oxic Kandiustalf with different types of N fertilizer in two cropping systems under no-tillage and its effect on crop performance. Chemical soil properties in continuous maize (Zea mays L.) and maize-cowpea (Vigna unguiculata (L.) Walp) rotation were determined with three N sources (urea (UA), ammonium sulfate (AS) and calcium ammonium nitrate (CAN)) in Nigeria, West Africa, during five years. Chemical soil properties were related to grain yield and diagnostic plant nutrient concentrations. For the three N sources, the rate of decline in soil pH in maize-cowpea rotation was 57±7.5% of that in continuous maize, where double the amount of N fertilizer was applied. The rate of soil acidification during the five years was greater for AS than for UA or CAN in continuous maize, and not different for UA and CAN in both cropping systems. With AS, soil pH decreased from 5.8 to 4.5 during five years of continuous maize cropping. Exchangeable acidity increased with N fertilization, but did not reach levels limiting maize or cowpea growth. Return of residues to the soil surface may have reduced soluble and exchangeable Al levels by providing a source of organic ligands. Soil solution Mn concentrations increased with N fertilization to levels likely detrimental for crop growth. Symptoms of Mn toxicity were observed on cowpea leaves where AS was applied to the preceding maize crop, but not on maize plants. Soil acidification caused significant reductions in exchangeable Ca and effective CEC. Main season maize yield with N fertilization was lower with AS than with UA or CAN, but not different between UA and CAN during the six years of cropping. The lower maize grain yield with AS than with the other N sources was attributed to lower pH and a greater extractable Mn concentration with AS. When kaolinitic Alfisols are used for continuous maize cropping, even under no-tillage with crop residues returned as mulch, the soil may become acidifed to pH values of 5.0 and below after a few years. The no-till cereal-legume rotation with judicial use of urea or CAN as N sources for the cereal crop is a more suitable system for these poorly buffered, kaolinitic soils than continuous maize cropping. The use of AS as N source should be avoided. H Marschner Section editor  相似文献   

18.
蚯蚓对秸秆还田土壤细菌生理菌群数量和酶活性的影响   总被引:7,自引:0,他引:7  
在连续7a稻麦轮作系统中,通过测定作物收获后表层土壤(0-20cm)中4种细菌生理菌群数量和4种酶活性的变化,研究接种蚯蚓(Metaphire guillelmi)对秸秆(表施或混施)还田土壤的细菌生理菌群数量和酶活性的影响。试验设5个处理:对照、秸秆表施、秸秆混施、秸秆表施且接种蚯蚓、秸秆混施且接种蚯蚓。结果表明,单独秸秆还田促进了土壤氨化细菌、固氮菌、纤维素分解菌和无机磷分解菌数量增加,且土壤酶活性显著地增强;在秸秆表施方式下,接种蚯蚓使得上述4种细菌生理菌群微生物的数量增加;秸秆混施方式下,接种蚯蚓增加氨化细菌和无机磷分解菌数量,且土壤蛋白酶和蔗糖酶活性显著地增强(P0.05)。另外,蚓粪中4种细菌生理菌群微生物数量和水解酶活性都远远高于其周围土壤。在秸秆还田的作物轮作系统中,蚯蚓活动进一步增加土壤微生物数量和酶活性,对改善农田土壤肥力有着重要意义。  相似文献   

19.
基于T-RFLP方法的连栽杉木根际土壤细菌群落变化研究   总被引:1,自引:0,他引:1  
运用末端限制性片段长度多态性技术(T-RFLP),研究福建省尤溪国有林场的多代连栽杉木根际土壤细菌群落变化特征。结果表明:杉木多代连栽后根际微生态失衡,表现为碳循环菌和氮循环菌等有益菌数量减少,病原菌数量增加。在不同代数杉木土壤中,4种内切酶消化后产生的末端限制性片段(T-RFs)数量具有显著差异,第一代杉木(first Chinese fir rotation plantation,FCP)最高,第二代杉木(second Chinese fir rotation plantation,SCP)次之,第三代杉木(third Chinese fir rotation plantation,TCP)最少。土壤理化性质结果表明连栽导致土壤养分逐代降低,除土壤碳氮比与细菌群落多样性呈显著负相关外,土壤养分含量指标与细菌群落多样性呈显著正相关。T-RFLP实验共鉴定出细菌门类12门,其中厚壁菌门、蓝藻门、放线菌门和变形菌门是主要优势菌群。随栽植代数的增加,变形菌门细菌比例递增,而厚壁菌门细菌比例递减。土壤细菌群落多样性指数,表现为随栽植代数增长而减少,呈现FCPSCPTCP趋势,与T-RFs片段数量变化趋势基本一致,表明多代连栽降低了杉木根际土壤细菌群落多样性。依据功能性不同,可将鉴定出的细菌划分为5类:碳循环功能菌、硫循环功能菌、氮循环功能菌、纤维降解菌及病原菌。连栽导致碳循环菌和氮循环菌相对含量降低,硫循环菌和纤维降解菌相对含量提高,病原菌相对含量随栽植代数增加而上升。  相似文献   

20.
Zhang LH  Li J  Jia ZK  Liu BF  Zhao HL  Shang JX 《应用生态学报》2011,22(7):1750-1758
通过2007—2010年田间定位试验,研究了平衡施肥、常规施肥和无肥(或低肥)条件下,免耕、深松和翻耕处理对渭北旱塬冬小麦-春玉米轮作田土壤贮水量、作物产量、水分利用效率(WUE)和纯收益的影响.结果表明:休闲期免耕处理蓄水保墒效果最好,深松次之,翻耕最差;轮作田生育期内免耕和深松处理0~200 cm平均土壤贮水量分别较翻耕提高6.7%和1.9%;各施肥条件下作物产量、WUE和纯收益均以深松处理最高,且以平衡施肥深松处理表现最好,2007—2008年冬小麦、2009年春玉米、2009—2010年冬小麦产量分别为6909、9689、5589 kg.hm-2,WUE分别为18.5、25.2、23.0 kg.hm-2.mm-1,纯收益分别为5034、5045、7098元.hm-2.因此,平衡施肥与深松组合处理的蓄水保墒和增产增收效果最好,是渭北旱塬冬小麦-春玉米轮作田较适合的施肥耕作模式.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号