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1.
为明确土壤调理剂对重金属污染土壤上生姜的营养品质和安全性的影响及作用机制,采用生姜土壤盆栽试验,比较研究了3种土壤调理剂(硅酸钾、麦饭石、贝壳粉)对土壤硒镉有效性以及生姜硒镉积累、生长发育和营养品质的影响。试验结果表明:3种土壤调理剂均能显著提高生姜硒含量,同时显著降低镉含量。与对照(不添加土壤调理剂)相比,施用0.2%硅酸钾调理剂效果最佳,分别使生姜地上部位和姜块硒含量提高了165.01%和111.36%,镉含量降低了71.96%和65.15%;另外,施用3种土壤调理剂可显著提高姜块产量、品质及养分吸收。与对照相比,产量提高了23.93%~67.67%,可溶性糖、可溶性蛋白和姜黄素含量分别提高了2.34%~6.00%、154.72%~602.83%和11.05%~33.43%,氮、磷、钾养分含量分别提高了10.28%~14.42%、24.62%~34.87%、28.81%~29.01%;施用3种土壤调理剂还可提高姜块过氧化物酶(POD)和过氧化氢酶(CAT)活性,降低丙二醛(MDA)含量;与对照相比,3种土壤调理剂增加土壤pH 0.35~0.53个单位,土壤有效态镉含量降低了16.92%~22.76%,有效态硒含量增加了3.60%~10.99%。研究表明,施用土壤调理剂能够降低土壤有效态镉含量、活化土壤有效态硒,从而降低生姜镉含量并提高硒含量和姜块营养品质,可实现镉污染土壤安全利用,保障生姜优质安全生产。  相似文献   
2.
【目的】研究毛竹(Phyllostachys edulis)入侵亚热带北缘落叶阔叶林对土壤理化性质和土壤胞外酶活性的影响,为探究毛竹入侵条件下森林生态系统养分循环过程与固碳潜力及森林的毛竹入侵治理提供科学依据。【方法】在毛竹入侵样带上,选择落叶阔叶林(麻栎林Quercus acutissima)、竹阔混交林(混交林)和毛竹林3种林分为研究对象,采集其林下地表0~10 cm土壤,进行土壤理化性质和土壤酶活性的测定,包括土壤pH、含水率和有机碳、全氮、NH+4-N、NO-3-N、全磷、有效磷含量,以及β-葡糖苷酶(BG)、β-N-乙酰氨基葡萄糖苷酶(NAG)、亮氨酸氨基肽酶(LAP)、酸性磷酸酶(AcP)、酚氧化物酶(POX)、过氧化物酶(PER)活性和酶计量(VC/NVN/PVC/P),比较不同林分的土壤指标。【结果】①随着毛竹入侵,毛竹林土壤pH值和含水率显著增大,且与混交林、麻栎林差异显著(P<0.05);其土壤有机碳、NO-3-N和全氮含量显著下降(P<0.05),NH+4-N、有效磷和全磷含量与混交林、麻栎林差异不显著。②土壤碳、氮和磷循环相关的水解酶(BG、NAG+LAP、AcP)活性均随毛竹入侵呈下降趋势,氧化酶(POX、PER)活性变化趋势与之相反;酶计量分析表明,毛竹林土壤的VN/P显著低于混交林和麻栎林(P<0.05),而VC/NVC/P在不同林分间差异不显著。③酶活性的矢量分析表明,毛竹林土壤微生物的磷限制程度高于混交林和麻栎林。④土壤水解酶活性与土壤有机碳、NO-3-N、全氮、有效磷含量或pH有显著相关关系,氧化酶活性与土壤性质相关性总体不显著。【结论】毛竹林取代落叶阔叶林(麻栎林)后,土壤有机碳和养分含量及相关水解酶活性降低,不利于原有落叶阔叶林土壤碳库与养分库的保存。  相似文献   
3.
研究测土配方施肥对玉米生长性状、产量、经济效益和养分利用率的影响,进而指导阿克苏市玉米科学合理施肥,提高化肥利用率,减少化肥投入,实现玉米化肥减量增效的目标。以金谷玉6号玉米为试验材料,设置不施肥(CK)、无氮(PK)、无磷(NK)、无钾(NP)和氮磷钾(NPK)5个处理,在收获期对玉米株高、径粗、穗长、穗粒数、百粒重、产量、平均产值、净收入和养分利用率等指标进行测定。实验结果表明:全年施肥量为尿素29.78kg/667m2,重过磷酸钙25kg/667m2,硫酸钾10.4kg/667m2,对玉米的生长、产量和经济效益均有促进作用。玉米氮肥的利用率为36.26%,磷肥的利用率为17.39%,钾肥的利用率为41.99%。  相似文献   
4.
目的研究不同前作对土壤生物化学性质的影响。方法利用化学和酶学分析及16S多样性测序技术,分析种植7年的不同前作[荞麦(FB)、油菜(FR)、小麦(FW)和绿肥(FG)]烟田土壤的养分、酶活性及细菌群落结构组成。结果(1) FR烟田土壤的有机质、全氮、碱解氮和有效磷含量最高,分别为30.04 g/kg、1.62 g/kg、143.50 mg/kg和88.09 mg/kg,FG烟田次之,但FG烟田速效钾的含量最高(240.10 mg/kg);FG烟田土壤蛋白酶和磷酸酶的活性最高,分别为709.02 μg/(g·d)(酪氨酸)和306.60 μg/(g·h)(对硝基酚),而其脲酶和蔗糖酶的活性仅低于FW烟田,且无显著性差异(P>0.05)。(2)在细菌群落组成上,FB、FG、FW和FR烟田分别检测出770、670、654和597属,归属于Actinobacteria、Proteobacteria、Chloroflexi和Acidobacteria等36门,其中Actionbacteria和Proteobacteria相对丰度最高,分别为26.87%~45.21%和25.82%~30.69%,TreptomycesBradyrhizobiumBacillusMycobacterium等拮抗菌和BradyrhizobiumRhizobiumPaenibacillus等固氮菌在FB烟田土壤细菌群落的相对丰度最高。结论不同前作对烟田土壤理化性质、酶活性和细菌群落结构的影响不同,绿肥提高了土壤有机质和养分含量以及酶活性;而荞麦改善和提高了烟田土壤细菌种群结构和多样性。  相似文献   
5.
Effects of varying the proportions of NO3 and NH4+ in the growth medium on seedling growth and tomato fruit yield (Lycopersicon esculentum L. cv. Trust F1) were investigated in greenhouse hydroponic experiments. The presence of NH4+ as the sole N source (11 mM) was toxic: it curtailed growth and decreased chlorophyll content of the leaves. However, at low concentration (10 % of total N), the presence of NH4+, with or without added dissolved inorganic carbon (DIC), increased vegetative growth and fruit yield by ˜ 15 %, and enhanced taste/flavor of the fruits. In DIC‐enriched treatment, pH was maintained at 5.8 by addition of KHCO3 or as CaCO3. The presence of NH4+, at 10 % of total N, inhibited NO3 uptake rates by ˜ 27 %. The rates of uptake of NO3 and NH4+ were comparable (13.3 and 14.2 mmol plant—1 d—1, respectively, in the presence of DIC, and 14.7 and 14.0 mmol plant—1 d—1, respectively, in the absence of DIC), despite such a large difference in their concentrations in the nutrient feed solution. A higher proportion of NH4+ (up to 50 % of total N) had no further significant effect upon early vegetative growth, but in a long‐term experiment resulted in a high incidence of blossom end‐rot (BER) disease, thereby severely curtailing fruit yield. The presence of even 1.1 mM NH4+ reduced Ca2+ and Mg2+ accumulation in the leaves as well as in fruits.  相似文献   
6.
 稻曲病是一种水稻穗部病害,在世界各水稻主产区均有发生,已成为世界性病害,在我国也属于水稻主要病害之一。稻曲病的发生严重影响水稻产量和稻米品质。研究其病原菌致病机制,对找寻防治药物的特异性靶标具有重要作用,可为抗病分子育种提供新的思路,为稻曲病菌防治药剂研发提供新的靶标。本文综述了稻曲病菌侵染过程、致病相关基因功能研究、水稻响应稻曲病菌侵染等方面的研究进展,提出进一步研究的策略。现有研究表明,稻曲病菌能成功侵染水稻孕穗期雄蕊的花丝引起发病。病原菌可通过抑制多个水稻免疫途径实现成功侵染;还可模仿胚珠受精激活水稻灌浆、糖代谢等途径为稻曲球的形成提供营养物质;全基因组测序完成和基因编辑技术在基因敲除中的成功应用,为稻曲病菌功能基因研究提供了很好的基础。稻曲病菌独特的侵染过程和营养利用机制是未来研究的重要方向。  相似文献   
7.
Altitude affects leaf stoichiometry by regulating temperature and precipitation, and influencing soil properties in mountain ecosystems. Leaf carbon concentration(C), leaf nitrogen concentration(N),leaf phosphorous concentration(P), and their stoichiometric ratios of Leontopodium lentopodioides(Willd.)Beauv., a widespread species in degraded grasslands, were investigated to explore its response and adaptation strategy to environmental changes along four altitude gradients(2500, 3000, 3500, and 3...  相似文献   
8.
冀北山地华北落叶松林生态系统水化学特征   总被引:6,自引:0,他引:6  
降水是森林生态系统的一个主要的养分输入源,观测并分析降水化学对于准确地估算森林生态系统养分循环的养分元素浓度显得极为重要。对冀北山地华北落叶松林穿透雨、树干茎流和枯透水中的Ca、Fe、K、Mg、Mn、Zn共6种养分元素进行了测定。结果表明:(1)大气降水经过林冠层后其水化学特征明显发生了变化,化学元素含量均有不同程度增加,含量排序为Ca〉K〉Mg〉Fe〉Mn〉Zn,其中Mn元素的增长倍数最多,但6月份Mn和Zn元素浓度都出现负增长。树干茎流各项指标均增长很多,化学元素含量排序为Ca〉K〉Mg〉Mn〉Fe〉Zn。枯落物水中K和Ca元素浓度增加最大。(2)大气降雨中Zn的变异系数最大,达2.853;K和Ca元素的变异系数最小,为0.158,0.163。落叶松林穿透雨、树干茎流和枯透水中最大变异系数分别为Fe元素3.115,Mg元素为1.288,Fe元素为2.139。(3)经过淋洗后水样中各元素的浓度均有所增加,穿透水、树干茎流和枯透水中K、Ca增加较多,Fe、Zn的淋溶量较少。  相似文献   
9.
Abstract

When sugarbeet seedlings are transferred from a complete nutrient solution to one from which Ca has been withheld, the rootlets and tops fail to develop. The same transfer at the eight‐leaf stage causes the rootlets to become stubby and swollen at the tips and blade expansion becomes modified; particularly the upper portions of the blades attaining nearly full development, which pucker and often develop a cupping or hooding effect; a unique symptom characteristic of Ca deficiency. As each new leaf develops, the blade area becomes smaller until only a black tip remains at the apex of the petiole, which is the symptom referred to as tip‐burn for this petiole and the successively . shorter petioles formed as Ca deficiency increases in severity. Strangely, these symptoms also appear during periods of rapid growth when the nutrient solution contains as much as 10 to 28 milliequivalents per liter of Ca or when soils are high in Ca. This implies that Ca absorption and possibly translocation limits the Ca supply at the growing point. Increasing Mg in the nutrient solution decreases Ca uptake and increases Ca deficiency. Potassium deficiency, unexpectedly, induces Ca deficiency apparently by decreasing the translocation of Ca to the growing point.

These phenomena suggest the hypothesis that when ion absorption takes place from the root exchange site that has the affinity for H > Ca > Mg > K > Na, then the H generated internally replaces, and the roots absorb, Na, K and Mg preferentially. Externally, Ca would be adsorbed preferentially from the nutrient solution by the exchange complex, and with the addition of Mg, it would compete for the common adsorption site of Ca and limit Ca absorption internally. Under these conditions potassium‐deficient nutrient solutions would not induce Ca deficiency by decreasing Ca absorption but rather by decreasing Ca translocation. Theoretically, Ba would replace H more readily than Ca on the exchange complex, and therefore, Ba would be adsorbed preferentially and Ca uptake would increase. This effect of Ba was verified experimentally.

Since the translocation of 45Ca to the growing point was found to be unrestricted under Ca‐sufficient and Ca‐deficient conditions and since the formation of insoluble Ca compounds such as phosphate or oxalate did not account for the Ca deficiency at the growing point, the cause of the Ca deficiency at the growing point is most likely the higher priority of the storage root for Ca over tops when leaf blades and storage root are both expanding rapidly. However, Ca retransport from older to younger parts of the sugarbeet plant may be restricted by the formation of Ca phosphate under Ca‐deficient conditions and Ca oxalate under Ca‐sufficient conditions.

Calcium deficiency increases net photosynthesis per unit blade area initially, probably because of blade puckering, but not on a per unit chlorophyll basis.  相似文献   
10.
Recent lysimeter studies have demonstrated that the nitrification inhibitor, dicyandiamide (DCD), can reduce nitrate (NO) leaching losses from cow urine patches in grazed pasture systems. The objective of this study was to quantify the effects of fine particle suspension (FPS) DCD on soil mineral N components, pasture yield, nutrient uptake and pasture quality under grazed pasture conditions. A field study was conducted on the Lincoln University dairy farm, Canterbury, New Zealand, from 2002 to 2006. FPS DCD was applied to grazed pasture plots at 10 kg ha?1 in early May in addition to applied cow urine patches at a nitrogen (N) loading rate of 1000 kg N ha?1, with DCD reapplied in early August. Soil mineral N levels in the urine patches were monitored. Pasture yield, N and cation concentrations and uptake were measured in treatment urine patches and inter‐urine areas of the pasture. Comparisons were made with control plots which did not receive DCD. NO levels under the DCD‐treated urine patches (0–7.5 cm) were in the order of 10 kg N ha?1 compared with 40–80 kg N ha?1 under untreated patches, and soil ammonium (NH) levels were consistently higher under the DCD‐treated patches. The DCD significantly and consistently increased pasture yield in both the urine patches, and inter‐urine areas of the pasture in all 4 years of the trial. Mean annual dry matter (DM) yields over 4 years were inter‐urine areas, 10.3; inter‐urine + DCD, 12.4; urine, 12.4 and urine +DCD 16.0 t DM ha?1, representing an average DM yield increase of 20 and 29% in inter‐urine and urine patch areas, respectively. On a whole paddock basis, the increase in annual DM yield resulting from DCD application was estimated to be 21%. N, calcium (Ca), magnesium (Mg) and potassium (K) concentrations in pasture were unaffected by treatment with DCD; however, total annual uptake of these nutrients by pasture was significantly higher in all years where DCD had been applied. Pasture DM, protein, carbohydrate, metabolizable energy and fibre levels and sward clover content were not affected by treatment with DCD. The results demonstrate the agronomic value of the DCD treatment in addition to the environmental benefits in a grazed pasture system.  相似文献   
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