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A range of agricultural practices influence soil microbial communities, such as tillage and organic C inputs, however such effects are largely unknown at the initial stage of soil formation. Using an eight-year field experiment established on exposed parent material (PM) of a Mollisol, our objectives were to: (1) to determine the effects of field management and soil depth on soil microbial community structure; (2) to elucidate shifts in microbial community structure in relation to PM, compared to an arable Mollisol (MO) without organic amendment; and (3) to identify the controlling factors of such changes in microbial community structure. The treatments included two no-tilled soils supporting perennial crops, and four tilled soils under the same cropping system, with or without chemical fertilization and crop residue amendment. Principal component (PC) analysis of phospholipid fatty acid (PLFA) profiles demonstrated that microbial community structures were affected by tillage and/or organic and inorganic inputs via PC1 and by land use and/or soil depth via PC2. All the field treatments were separated by PM into two groups via PC1, the tilled and the no-tilled soils, with the tilled soils more developed towards MO. The tilled soils were separated with respect to MO via PC1 associated with the differences in mineral fertilization and the quality of organic amendments, with the soils without organic amendment being more similar to MO. The separations via PC1 were principally driven by bacteria and associated with soil pH and soil C, N and P. The separations via PC2 were driven by fungi, actinomycetes and Gram (−) bacteria, and associated with soil bulk density. The separations via both PC1 and PC2 were associated with soil aggregate stability and exchangeable K, indicating the effects of weathering and soil aggregation. The results suggest that in spite of the importance of mineral fertilization and organic amendments, tillage and land-use type play a significant role in determining the nature of the development of associated soil microbial community structures at the initial stages of soil formation.  相似文献   
3.
旨在为合理使用钝化剂及水稻糙米镉(Cd)含量与Cd在水稻体内富集和转移的关系提供一定的理论依据。从6种钝化剂中筛选出能够抑制糙米Cd积累的材料,通过对不同超标程度水稻组的产量、糙米Cd含量、各个器官对Cd的富集系数和转移系数进行统计分析,探讨不同钝化剂对Cd在水稻体内转移和富集的影响。结果表明:与对照相比,低、中浓度C材料和FA材料能够降低糙米中Cd浓度;FB材料和中、高浓度FD材料会促使糙米中Cd的积累。水稻各器官对Cd富集能力,无超标水稻为根茎米叶糠,超标水稻为根茎米糠叶;Cd向糙米的转移途径中,在不超标水稻组中糠—米的转移能力最强,在超标水稻组中叶—米的转移能力最强。  相似文献   
4.
[Objective]The aim was to explore the feasibility of applying oyster shell soil amendment for tomato production in order to determine proper quantity of the soil conditional.[Method]Field tests were performed to research effects of the soil conditioner on tomato yield,quality and soil p H.[Result]The results showed that tomato yield increased in the treatment groups with oyster shell soil amendment.The group SC50 increased the most by 16.5%than the control group.Based on normal fertilization,tomato growth was promoted by the soil amendment,and per tomato weight and lycopene content both improved during peak-fruiting period.Besides,soil p H value was enhanced by the soil amendment also.[Conclusion]It can be concluded that the effect was the best when soil conditioner was applied at 750 kg/hm2.  相似文献   
5.
Application of hydrophilic polymers composed of cross‐linked polyacrylate can improve soil water‐holding capacity and accelerate the restoration of post‐mining substrates. In this work, we studied the persistence of a polyacrylate polymer incorporated into a soil and its impact on plant nutrients at a reclamation site of former lignite mining in Lusatia (Germany). In contrast to autumn application, the incorporation of the polymer enhanced the sequestration of plant‐derived carbon in the soil, which was reflected by a significant increase in the concentration of a lignin marker. Attenuated total reflexion–Fourier transform infrared spectra (ATR‐FTIR) and total elemental contents in the applied polymer suggested an intensive cation exchange between the polymer framework and the soil‐forming substrate. In addition, there was an enrichment of carbonaceous material, which seems to reduce the swelling and thus the water‐holding capacity of the cross‐linked polyacrylate. Conversely, this process protected the polymer structure from rapid decomposition.  相似文献   
6.
研究了优培-海藻生物有机肥(Y)、微生物菌肥(W)和腐植酸有机肥对日光温室土壤的理化性质、有效态微量元素含量、酶活性以及番茄品质等方面的影响,旨在探索快速、简易且廉价的土壤改良方法,为日光温室土壤改良及有机蔬菜生产提供理论依据。结果表明,不同土壤改良剂对土壤p H无显著影响,在番茄生育期内土壤p H值始终在7.0以上,没有出现酸化问题;拉秧后,除中量腐植酸有机肥(FM)外,其他各处理均能有效降低土壤EC值并达到极显著水平;各处理对提升有效态Mn、Zn和Fe含量的效果不显著,其中,仅高量腐植酸有机肥处理(FH)能同时提高开花结果盛期0~20 cm和20~40 cm土层的有效态Zn含量,与CK相比,分别增加10.8%和13.2%;不同土壤改良剂均可提高土壤脲酶和蔗糖酶活性;不同土壤改良剂对碱性磷酸酶的酶活性影响较小;微生物菌肥对酸性磷酸酶和过氧化氢酶的酶活性影响相对明显;不同土壤改良剂均能提高番茄可溶性固形物、可溶性糖、可滴定酸和维生素C的含量,其中,中量腐植酸有机肥处理提高了番茄的糖酸比。土壤改良剂可有效改善日光温室土壤特性及番茄品质。  相似文献   
7.
为探讨化学改良剂对苏打盐碱土稻田生态系统中氟迁移的影响,采用盆栽试验,研究硫酸铝、脱硫石膏和有机复合改良剂作用下的土壤各形态氟含量变化,以及土壤氟向水体和地上部植株的迁移情况。结果表明,化学改良剂影响苏打盐碱土—水—作物系统中氟的迁移及生物有效性。种稻后各改良剂处理的土壤水溶态氟变化范围为8.33~20.90 mg/kg,与对照相比,均呈下降趋势,其中硫酸铝处理下降得最多,降低60.15%;可交换态氟和有机束缚态氟呈增加趋势,其中有机复合改良剂处理增加得最多,分别为79.54%和86.37%;种稻前后铁锰氧化物结合态氟变化较复杂,其中硫酸铝处理无显著变化,对照处理和有机复合改良剂处理分别增加19.05%和42.03%,而脱硫石膏处理下降22.79%;残余态氟和总氟含量呈下降趋势,其中有机复合改良剂处理的残余态氟降低得最多,为35.50%,硫酸铝处理的总氟降低得最少,为10.47%,其余处理降幅为12.50%~12.55%。在水稻种植过程中,土壤中氟向水中累积释放总量为对照>有机复合改良剂>脱硫石膏>硫酸铝,与对照相比,其他3个处理分别降低3.25%,5.13%和5.1...  相似文献   
8.
采用盆栽试验研究3种钝化剂(粉煤灰、磷灰石和膨润土)对黑土中铜(Cu)的化学形态、生物积累和有效性的影响。结果表明:3种钝化剂能显著降低Cu污染黑土中水提取态(DW)、TCLP提取态和二乙基三胺五乙酸-三乙醇胺(DTPA-TEA)提取态Cu含量,其中以膨润土的效果最为明显;Tessier连续提取测定发现,3种钝化剂显著降低非残留态Cu(水溶态和交换态、碳酸盐结合态、铁锰氧化物结合态和有机结合态)含量(p<0.01),增加残留态Cu含量,表明3种钝化剂通过改变黑土中Cu的化学形态,降低了黑土中Cu的可淋失性和生物有效性;与对照相比,添加钝化剂能显著降低水稻地上部分的Cu含量(p<0.01),如在400Cu mg/kg处理的土壤上,添加2.5%的粉煤灰、磷灰石和膨润土使米粉中的Cu含量分别降低21.8%,22.7%和31.9%。土壤中可淋失态和生物有效态Cu的分析表明,钝化剂主要是通过改变土壤中Cu的化学形态,降低土壤中Cu的生物有效性,以降低Cu在水稻中的积累;试验表明,Cu污染土壤中施用钝化剂可以修复Cu污染,降低水稻Cu污染风险。  相似文献   
9.
土壤改良剂对燕麦土壤理化性状及微生物量碳的影响   总被引:11,自引:1,他引:11  
采用聚丙烯酸钾、聚丙烯酰胺、腐殖酸钾、聚丙烯酸钾+腐殖酸钾和聚丙烯酰胺+腐殖酸钾复配5种土壤改良剂,研究其对燕麦土壤理化性状及微生物量碳的影响。结果表明,不同土壤改良剂均能提高土壤有机质、碱解氮、速效磷和速效钾含量,各指标分别比对照增加了8.24%~30.22%,7.60%~19.29%,5.15%~29.45%和27.86%~68.86%;各土壤改良剂处理0-60cm各土层土壤容重均有不同程度的降低,其中,聚丙烯酸钾+腐殖酸钾均降低幅度最大,各处理间差异不显著;各土壤改良剂均能显著提高0-10cm,10-20cm和20-40cm各土层>0.25mm团聚体含量,其中>2mm和2~1mm土壤团粒结构增幅较大,聚丙烯酸钾+腐殖酸钾和聚丙烯酰胺+腐殖酸钾复配处理显著高于单施处理;土壤改良剂能促使燕麦全生育期内0-10cm,10-20cm和20-40cm各土层的土壤微生物量碳含量显著提高,复配较单施效果显著,随着土壤深度增加土壤微生物量碳逐层递减;各土壤改良剂处理籽粒产量和生物产量均显著高于对照,其中聚丙烯酸钾+腐殖酸钾和聚丙烯酰胺+腐殖酸钾籽粒产量较其他处理高,分别为4 694.2kg/hm2和4 566.9kg/hm2,较对照增产21.66%和18.36%,两处理生物产量也表现较佳。  相似文献   
10.
基质改良和耐性物种选择是重金属矿业废弃地生态修复的关键。本文通过室内盆栽试验,以4kg尾矿为植物盆栽基质,分别加入腐熟鸡粪0、8、16、32g混匀,记作MA0(CK)、MA8、MA16、MA32处理方式,研究不同比例腐熟鸡粪改良对铜尾矿基质中无机氮组分及3种豆科植物决明(Cassia tora)、田菁(Sesbania cannabina)、菽麻(Crotalaria juncea)生长发育的影响。结果表明,添加鸡粪改良处理后,3种豆科植物生长的尾矿基质中均以硝态氮为有效氮的主要形态,总无机氮含量为17.96~44.82mg·kg-1。其中菽麻MA32处理组尾矿基质中铵态氮含量(5.31mg·kg-1)最高,菽麻MA16处理组尾矿基质中硝态氮含量(43.06mg·kg-1)和总无机氮含量(44.82mg·kg-1)最高。MA16处理时,田菁和菽麻叶绿素a、叶绿素b、叶绿素a+b值均表现最大。3种豆科植物叶绿素a/b为0.92~1.08。在同一鸡粪比例处理中,菽麻叶绿素a、叶绿素b、叶绿素a+b值均显著高于决明和田菁(P〈0.05)。鸡粪改良铜尾矿基质能够促进3种豆科植物生长,植物株高、冠幅、根长均增加,并且随着生长期延长,增加明显。其中MA32处理菽麻70d株高(94.40cm)最大,阻止尾矿风蚀水蚀的效果最好。综合分析表明,MA16处理方式可作为鸡粪改良铜尾矿基质理想的比例模式,菽麻可作为铜尾矿生态修复优选植物种。  相似文献   
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