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1.
Microorganisms play a key role in the response of soil ecosystems to the rising atmospheric carbon dioxide (CO2) as they mineralize organic matter and drive nutrient cycling. To assess the effects of elevated CO2 on soil microbial C and N immobilization and on soil enzyme activities, in years 8 (2006) and 9 (2007) of an open-top chamber experiment that begun in spring of 1999, soil was sampled in summer, and microbial biomass and enzyme activity related to the carbon (C), nitrogen (N) and phosphorus (P) cycling were measured. Although no effects on microbial biomass C were detected, changes in microbial biomass N and metabolic activity involving C, N and P were observed under elevated CO2. Invertase and dehydrogenase activities were significantly enhanced by different degrees of elevated CO2. Nitrifying enzyme activity was significantly (P < 0.01) increased in the August 2006 samples that received the elevated CO2 treatment, as compared to the samples that received the ambient treatment. Denitrifying enzyme activity was significantly (P < 0.04) decreased by elevated CO2 treatments in the August 2006 and June 2007 (P < 0.09) samples. β-N-acetylglucosaminidase activity was increased under elevated CO2 by 7% and 25% in June and August 2006, respectively, compared to those under ambient CO2. The results of June 2006 samples showed that acid phosphatase activity was significantly enhanced under elevated CO2. Overall, these results suggested that elevated CO2 might cause changes in the belowground C, N and P cycling in temperate forest soils.  相似文献   

2.
Land degradation causes great changes in the soil biological properties.The process of degradation may decrease soil microbial biomass and consequently decrease soil microbial activity.The study was conducted out during 2009 and 2010 at the four sites of land under native vegetation(NV),moderately degraded land(LDL),highly degraded land(HDL) and land under restoration for four years(RL) to evaluate changes in soil microbial biomass and activity in lands with different degradation levels in comparison with both land under native vegetation and land under restoration in Northeast Brazil.Soil samples were collected at 0-10 cm depth.Soil organic carbon(SOC),soil microbial biomass C(MBC) and N(MBN),soil respiration(SR),and hydrolysis of fluorescein diacetate(FDA) and dehydrogenase(DHA) activities were analyzed.After two years of evaluation,soil MBC,MBN,FDA and DHA had higher values in the NV,followed by the RL.The decreases of soil microbial biomass and enzyme activities in the degraded lands were approximately 8-10 times as large as those found in the NV.However,after land restoration,the MBC and MBN increased approximately 5-fold and 2-fold,respectively,compared with the HDL.The results showed that land degradation produced a strong decrease in soil microbial biomass.However,land restoration may promote short-and long-term increases in soil microbial biomass.  相似文献   

3.
Microbial activity in soil is known to be controlled by various factors. However, the operating mechanisms have not yet been clearly identified, particularly under climate change conditions, although they are crucial for understanding carbon dynamics in terrestrial ecosystems. In this study, a natural incubation experiment was carried out using intact soil cores transferred from high altitude(1 500 m) to low(900 m) altitude to mimic climate change scenarios in a typical cold-temperate mountainous area in Japan. Soil microbial activities, indicated by substrate-induced respiration(SIR) and metabolic quotient(q CO2), together with soil physicalchemical properties(abiotic factors) and soil functional enzyme and microbial properties(biotic factors), were investigated throughout the growing season in 2013. Results of principal component analysis(PCA) indicated that soil microbial biomass carbon(MBC) andβ-glucosidase activity were the most important factors characterizing the responses of soil microbes to global warming. Although there was a statistical difference of 2.82 ℃ between the two altitudes, such variations in soil physical-chemical properties did not show any remarkable effect on soil microbial activities, suggesting that they might indirectly impact carbon dynamics through biotic factors such as soil functional enzymes. It was also found that the biotic factors mainly controlled soil microbial activities at elevated temperature,which might trigger the inner soil dynamics to respond to the changing environment. Future studies should hence take more biotic variables into account for accurately projecting the responses of soil metabolic activities to climate change.  相似文献   

4.
Investigating the effects of residue chemical composition on soil labile organic carbon(LOC) will improve our understanding of soil carbon sequestration.The effects of maize residue chemical composition and soil water content on soil LOC fractions and microbial properties were investigated in a laboratory incubation experiment.Maize shoot and root residues were incorporated into soil at 40%and 70% ?eld capacity.The soils were incubated at 20?C for 150 d and destructive sampling was conducted after 15,75,and 150 d.Respiration,dissolved organic carbon(DOC),hot-water extractable organic carbon(HEOC),and microbial biomass carbon(MBC)were recorded,along with cellulase and β-glucosidase activities and community-level physiological pro?les.The results showed that the cumulative respiration was lower in root-amended soils than in shoot-amended soils,indicating that root amendment may be bene?cial to C retention in soil.No signi?cant differences in the contents of DOC,HEOC and MBC,enzyme activities,and microbial functional diversity were observed between shoot- and root-amended soils.The high soil water content treatment signi?cantly increased the cumulative respiration,DOC and HEOC contents,and enzyme activities compared to the low soil water content treatment.However,the soil water content treatments had little in?uence on the MBC content and microbial functional diversity.There were signi?cantly positive correlations between LOC fractions and soil microbial properties.These results indicated that the chemical composition of maize residues had little in?uence on the DOC,HEOC,and MBC contents,enzyme activities,and microbial functional diversity,while soil water content could signi?cantly in?uence DOC and HEOC contents and enzyme activities.  相似文献   

5.
Cropping activities may affect soil microbial activities and biomass,which would affect C and N cycling in soil and thus the crop yields and quality.In the present study,a combination of microcalorimetric,enzyme activity(sucrase,urease,catalase,and fluorescein diacetate hydrolysis),and real-time polymerase chain reaction(RT-PCR) analyses was used to investigate microbial status of farmland soils,collected from 5 different sites in Huazhong Agriculture University,China.Our results showed that among the 5sites,both positive and negative impacts of cropping activities on soil microbial activity were observed.Enzyme activity analysis showed that cropping activities reduced soil sucrase and urease activities,which would influence the C and N cycles in soil.Much more attentions should be given to microbial status affected by cropping activities in future.According to the correlation analysis,fluorescein diacetate hydrolysis showed a significantly(P 0.05) negative correlation with the time to reach the maximum power output(R ——0.898),but a significantly(P 0.05) positive correlation with bacterial gene copy number(R = 0.817).Soil catalase activity also showed a significantly(P 0.05) positive correlation with bacterial gene copy number(R = 0.965).Using combined methods would provide virtual information of soil microbial status.  相似文献   

6.
To show the vegetation succession interaction with soil properties, microbial biomass, basal respiration, and enzyme activities in different soil layers (0--60 cm) were determined in six lands, i.e., 2-, 7-, 11-, 20-, 43-year-old abandoned lands and one native grassland, in a semiarid hilly area of the Loess Plateau. The results indicated that the successional time and soil depths affected soil microbiological parameters significantly. In 20-cm soil layer, microbial biomass carbon (MBC), microbial biomass nitrogen (MBN), MBC/MBN, MBC to soil organic carbon ratio (MBC/SOC), and soil basal respiration tended to increase with successional stages but decrease with soil depths. In contrast, metabolic quotient (qCO2) tended to decrease with successional stages but increase with soil depths. In addition, the activities of urease, catalase, neutral phosphatase, β-fructofuranosidase, and carboxymethyl cellulose (CMC) enzyme increased with successional stages and soil depths. They were significantly positively correlated with microbial biomass and SOC (P < 0.05), whereas no obvious trend was observed for the polyphenoloxidase activity. The results indicated that natural vegetation succession could improve soil quality and promote ecosystem restoration, but it needed a long time under local climate conditions.  相似文献   

7.
The mineral fertilizers(NPK) and pesticide,including herbicides,insecticides and fungicides,were applied alone or in combination and the soil sampling was done at different growth stages during the crop cycle to study the changes in soil organic matter,microbial biomass and their activity parameters in a paddy soil with different nutrient and pest management practices in a hybrid rice double-cropping system.A consistent increase in the electron transport system(ETS) activity was measured during the different crop growth stages of rice.The use of fertilizers(NPK) alone or with pesticides increased ETS activity,while a decline of ETS activity was noticed with pesticides alone as compared with the control.Nearly an increasing trend in soil phenol content was observed with the progression of crop growthstages,while the usage of pesticides alone caused maximum increments in the soil phenol content.The soil protein content was found nearly stable with fertilizers and/or pesticides application at various growth stages in both crops taken.But notable changes were noticed at different growth stages probable because of fluctuations in moisture and temperature at particular stages,which might have their effects on N mineralization.Marked depletions in the phospholipid content were found with the advancement of crop growth stages,while the incorporation of fertilizers and/or pesticides also produced slight changes,in which a higher decline was noticed with pesticide application alone compared with the control.  相似文献   

8.
The effects of root activity on microbial response to cadmium (Cd) loading in the rhizosphere are not well understood. A pot experiment in greenhouse was conducted to investigate the effects of low Cd loading and root activity on microbial biomass and community structure in the rhizosphere of pakchoi (Brassica chinensis L.) on silty clay loam and silt loamy soil. Cd was added into soil as Cd(NO3)2 to reach concentrations ranging from 0.00 to 7.00 mg kg-1. The microbial biomass carbon (MBC) and community structure were affected by Cd concentration, root activity, and soil type. Lower Cd loading rates (〈 1.00 mg kg-1) stimulated the growth of pakchoi and microorganisms, but higher Cd concentrations inhibited the growth of microorganisms. The content of phospholipid fatty acids (PLFAs) was sensitive to increased Cd levels. MBC was linearly correlated with the total PLFAs. The content of general PLFAs in the fungi was positively correlated with the available Cd in the soil, whereas those in the bacteria and actinomycetes were negatively correlated with the available Cd in the soil. These results indicated that fungi were more resistant to Cd stress than bacteria or actinomycetes, and the latter was the most sensitive to Cd stress. Microbial biomass was more abundant in the rhizosphere than in the bulk soil. Root activity enhanced the growth of microorganisms and stabilized the microbial community structure in the rhizosphere. PLFA analysis was proven to be sensitive in detecting changes in the soil microbial community in response to Cd stress and root activity.  相似文献   

9.
半干旱退化土壤中施入城市垃圾的长期效应研究   总被引:1,自引:0,他引:1  
The addition of municipal solid wastes (MSW) is considered as a possible strategy for soil rehabilitation in southeast Spain. The objective of this study was to evaluate the long-term (17 years) effect of five doses of MSW addition on the microbiological, biochemical, and physical properties of semiarid soil. Increased values of several parameters that serve as indicators of general microbiological activity, such as, basal respiration, adenosine triphosphate (ATP) or dehydrogenase activity;microbial population size (microbial biomass C), and extracellular hydrolase activity related to macronutrient cycles, such as, urease, β-glucosidase, and N-α-benzoyl-L-argininamide protease, were observed in the amended soils. The highest MSW doses showed the highest values in these hydrolase activities. The incorporation of municipal waste resulted in a more dense development of the plant cover, 50% greater in higher doses than in the control treatment, which generated a substantial increase in several C fractions. Total organic carbon reached 12 g kg-1 soil with the highest MSW doses, compared to 4.30 g kg-1 soil in the control treatment. The physical properties of the soil were also improved, showing greater percentage of stable aggregates and water holding capacity. Positive correlation coefficients between C fractions and parameters related to microbial activity and aggregate stability were observed. Although these improvements were greater in the soils receiving the highest doses of organic amendment, the increases were not proportional to the amount added, demonstrating the existence of a threshold, above which an increase in the amount of organic matter added is not reflected in an increase in the soil's physical, biochemical, and microbiological properties. However, the addition of municipal solid wastes proved its suitability for improving soil quality, thereby indicating the potential of such an amendment, to prevent desertification in Mediterranean areas such as those studied.  相似文献   

10.
人工林代替天然林后土壤碳库的变化   总被引:19,自引:8,他引:19  
Changes in soil carbon pools under Chinese fir (Cunninghamia lanceolata) and bamboo (Phyllostachys pubescent) plantations substituted for a native forest (Quercus acutissima, Cyclobalanopsis glauca, Cas-tanops~.s sclerophyUa, Platycarya strobilacea, Lithocarpus glaber) were studied on the hills with acid parent rock and soils classified as red soils (Ferrisols) in Huzhou, Zhejiang Province of east China. It was found that total soil organic carbon (TSOC), easily oxidisable carbon (EOC) and water-soluble organic carbon(WSOC) under bamboo plantation were increased, but microbial biomass carbon (MBC) was decreased. On the contrary, Chinese fir induced declines of all fractions of C including TSOC, EOC, WSOC and MBC.The percentages of the active fractions of soil C (EOC and WSOC) were increased in the plantations as compared to the native broad-leaved forest, but proportions of soil organic C as MBC were decreased. It could be concluded that bamboo plantation had a great ability of not only fixing C but also accelerating soil C pool cycle, improving nutrient and microorganism activity; therefore, it is a good ecosystem and could be recommended for wide development. Chinese fir would shrink the soil C pool and deteriorate sou biological fertility, so it did not benefit CO2 fixing and land sustainable utilization.  相似文献   

11.
Vigna unguiculata(L.)Walp (cowpea)is a tropical legume of very high nutrive and economic values.A laboratory experiment.was conducted to evaluate the BNF (biological nitrogen fixation) effciency of 4 strains of Bradyrhizobium sp.(VUXYI,VUIE1,VUMDS1 and VUID1).From the results obtained these strains were classified into efficiency groups,with VUID1 being the most efficient and VUXY1 the least efficient.the effect of inoculation was tested on 2 cowpea varieties in a field experiment.Remarkable increases in nodulation biomass and crop yield were observed.An increase from 58% ti 81% in dry seed was obtained for the two varieties.A significance test revealed a signifecantly positive correlation between nodulation and biomass.  相似文献   

12.
泽兰实蝇(Procecidochares utilis Stone)是目前入侵杂草紫茎泽兰(Eupatorium adenophorum Spreng)的一种重要天敌, 但在重金属污染的矿区泽兰实蝇对紫茎泽兰的植株寄生率明显降低。故利用同心圆采样法在云南兰坪金顶铅锌矿区5 km范围内采集土壤、紫茎泽兰及泽兰实蝇并测定重金属含量, 以研究重金属在土壤 紫茎泽兰茎 泽兰实蝇系统中的生物富集效应, 探讨重金属胁迫影响泽兰实蝇控制效果的机制。结果表明: 土壤 紫茎泽兰茎 泽兰实蝇系统中Pb、Zn和Cd含量随着距矿中心距离的增加而极显著下降, Cd、Pb和Zn在土壤 紫茎泽兰茎系统中的富集系数分别为0.205~0.614、0.058~0.079和0.222~0.398, 平均值分别为0.453、0.067和0.315, 在紫茎泽兰茎 泽兰实蝇系统中的富集系数分别为1.06~7.69、9.68~20.13和1.13~1.56, 平均值分别为2.47、12.83和1.42。Cd和Zn属于强聚集, Pb属于很强聚集的元素。本研究结果证明, Pb、Zn和Cd可以在土壤 紫茎泽兰茎 泽兰实蝇系统逐级传递富集, 并初步阐明了重金属Cd、Pb和Zn在土壤 紫茎泽兰 泽兰实蝇系统中的传递规律。这丰富了重金属污染的生态毒理学效应, 为进一步研究重金属胁迫影响泽兰实蝇控制效果的机制奠定了基础。  相似文献   

13.
茄二十八星瓢虫对雷公藤和曼陀罗提取物的敏感性   总被引:1,自引:0,他引:1  
为研究寄主植物对茄二十八星瓢虫药剂敏感性及体内酶活力的影响,采用浸渍法分别测定了取食茄子、马铃薯、番茄和龙葵的茄二十八星瓢虫幼虫(以下简称幼虫)对雷公藤和曼陀罗提取物的敏感性,用生化方法测定了雷公藤和曼陀罗提取物对幼虫体内乙酰胆碱酯酶(AChE)和主要解毒酶活性的影响。结果表明,雷公藤提取物对取食茄子、马铃薯、番茄和龙葵的幼虫LC50值分别为1.407 9 mg.L-1、1.595 8 mg.L-1、1.464 7 mg.L-1和1.109 7 mg.L-1,相对毒力指数为78.82、69.54、75.76和100;曼陀罗提取物对取食茄子、马铃薯、番茄和龙葵的幼虫LC50值分别为0.641 7 mg.L-1、0.610 3 mg.L-1、0.758 0 mg.L-1和0.488 3 mg.L-1,相对毒力指数为76.09、80.01、64.42和100;取食龙葵的幼虫对2种植物提取物的敏感性显著高于取食茄子、马铃薯和番茄的幼虫。取食4种寄主植物的幼虫体内靶标酶AChE和主要解毒酶谷胱甘肽-S-转移酶(GST)、羧酸酯酶(CarE)、多功能氧化酶(MFO)活力顺序均为茄子>马铃薯>番茄>龙葵。其中,取食番茄和龙葵的幼虫体内AChE和GST活力显著低于取食茄子和马铃薯的幼虫,取食马铃薯、番茄和龙葵的幼虫CarE活力显著低于取食茄子的幼虫,取食4种寄主植物的幼虫MFO活力差异达极显著水平。雷公藤和曼陀罗提取物对幼虫体内AChE和GST、CarE和MFO活性均有抑制作用。其中,对取食马铃薯幼虫的AChE活力抑制作用最强,其次为取食茄子和番茄的幼虫,对取食龙葵的幼虫抑制作用最低。雷公藤和曼陀罗提取物对取食龙葵幼虫CarE活力的抑制作用最强,而对取食马铃薯的幼虫MFO活力的抑制作用最强。寄主植物中的次生物质对解毒酶的诱导或抑制可能是引起药剂敏感性差异的主要原因。  相似文献   

14.
G. KAUR  M. S. REDDY 《土壤圈》2015,25(3):428-437
A two-year field study was conducted to test the effects of two phosphate-solubilizing bacteria (PSB), Pantoea cypripedii (PSB-3) and Pseudomonas plecoglossicida (PSB-5), inoculated singly or together with rock phosphate (RP) fertilization on maize and wheat cropping cycle by comparing with chemical P fertilizer (diammonium phosphate, DAP), mainly in the crop yield, soil fertility and economic returns. Inoculation of PSB together with RP fertilization increased the crop growth in terms of shoot height, shoot and root dry biomass, grain yield and total P uptake in both maize and wheat crops compared to the other treatments. Soil fertility in the context of available P, enzyme activities and PSB population in both maize and wheat crops was significantly improved with PSB inoculation together with RP fertilization compared to DAP treatment. The combined use of PSB inoculation and RP fertilization was more economical due to minimal cost and maximum returns. These results suggested that PSB inoculation along with RP fertilization would be an appropriate substitute for chemical phosphate fertilizer application in sustainable agriculture systems.  相似文献   

15.
化感小麦种质资源的筛选与评价   总被引:4,自引:1,他引:3  
以国内外90份不同小麦为材料,采用土壤-琼脂三明治法和田间杂草调查法,对不同小麦种质资源进行化感潜力评价,筛选出具有较强化感潜力的小麦品种。土壤-琼脂三明治法测试结果表明,不同小麦品种的化感潜力存在明显差异,对莴苣根长抑制率IR在10.1%和69.1%之间;筛选出“115/青海麦”、“92L89”、“百泉3199”、“81-214”和“92H31”5个强化感潜力的小麦品种,其对莴苣根长抑制率依次为69.1%、68.5%、68.7%、69.1%和65.2%,筛选出“抗10103(80)”和“A246”2个弱化感潜力的小麦品种,抑制率IR依次为10.1%和12.2%;田间杂草调查评价和土壤-琼脂三明治法表现出相似趋势,检测结果也得到了琼脂迟播共培法的佐证,表明采用土壤-琼脂三明治法筛选化感小麦种质资源是可行的。这为小麦化感作用研究提供了重要的种质资源,也为化感小麦种质资源的筛选提供方法借鉴。  相似文献   

16.
超干处理两种落叶松种子的生理生化特征研究   总被引:1,自引:0,他引:1  
采用硅胶干燥法, 将两种落叶松种子含水量由自然含水量降至5%以下, 测定不同含水量种子老化前后的发芽势、发芽率、发芽指数、活力指数、相对电导率、脱氢酶和异柠檬酸裂解酶活性。结果表明: 长白落叶松种子含水量降至3.02%时, 种子各发芽指标在老化前后保持在较高水平, 且老化前的活力指数及老化后的发芽率、发芽指数、活力指数显著高于自然干燥种子; 在此含水量下, 老化后种子脱氢酶和异柠檬酸裂解酶活性显著高于自然干燥种子, 相对电导率比后者低, 说明长白落叶松种子以含水量为3.02%时储藏较为适宜。兴安落叶松种子含水量为2.63%时, 各发芽指标均高于自然干燥种子, 且老化前除发芽势外各发芽指标及老化后各发芽指标差异显著; 此含水量下, 老化后种子脱氢酶和异柠檬酸裂解酶活性显著高于自然干燥种子, 相对电导率比后者低, 比其他含水量种子表现出更强的抗老化能力, 说明兴安落叶松种子较适宜在2.63%含水量下储藏。  相似文献   

17.
在盆栽条件下试验研究了5种葫芦科(Cucurbitaceae)蔬菜对2种丛枝菌根(Arbuscular Mycorrhiza,AM)真菌的依赖性。结果表明,AM真菌Glomus mosseae(G.m)和Gigaspora rosea(Gi.r)均能有效地促进葫芦科蔬菜的生长,显著增加叶面积和植株干物质量,提高叶片的光合速率,降低气孔阻力。供试葫芦科蔬菜对菌根的依赖程度顺序为黄瓜>西瓜>苦瓜>葫芦>南瓜。5种葫芦科蔬菜对AM的依赖性与AM真菌对根系的浸染率呈正相关关系,符合直线回归方程:y=117.19+0.7468x。  相似文献   

18.
A field experiment was conducted at the G.B.Pant University Research Station,Ujhani(U.P.)in rainy (Kharif) season of the year 1994-1995 to study the effect of Rhizobium,VAM(vesicular arbuscular myc-orrhiza) and PSB(phophate solubilizing bacteria) inoculation,with and without P,on blackgram(Vigna mungo L.) seed yield.Phosphorus application in sol with medium P content(5.4 mg kg^-1) increased nodulation,grain yield,N and P in plant and grain over no phosphorus control.Forty kilograms of P2O5 each hactare recorded an increase of 20.6% in nodule dry weight,significant increases of 0.35 g kg^-1 in N concentration and 1.28 g kg^-1 in P concentration of plant over 20 kg P2O5 ha^-1 ,Similar significan increases of 0.5 g kg^-1 in grain yield and 0.54 and 0.23 g kg^-1 in N and P concentrations of the grain,respectively,over 20 kg P2O5 ha^-1 were also obtained with higher dose.Inoculation of Rhizobium VAM PSB at all the stages of plant growth recorded maximum increaes in all the parameers studied .Dual inoculation of Rhizobium with either VAM or PSB was generally significan in the effect and better than that of VAM PSB,however,P accumulation in plat and grain was more with VAM PSB.A mong single inoculations,Rhizobium gave highest and 21.0% more nodule number,34.7% more nodule dry mass,0.73 g kg^-1 more N in grain and 4.2% higher grain yield over PSB.PSB.however,registered significant increases in P concentration in plant and grain over VAM and Rhizobium.  相似文献   

19.
营养生态条件对蜜蜂球囊菌生长及产孢的影响   总被引:7,自引:0,他引:7  
从碳源、氮源、维生素、矿质元素等方面研究了营养生态条件对蜜蜂球囊菌(Ascosphaera apis Olive & Spiltoir)生长及产孢的影响.结果表明,营养生态条件的变化对蜜蜂球囊菌的影响极大.A.apis菌丝体生长最好的碳源是果糖,产孢量最高的是葡萄糖,不利用山梨糖和甘露糖;该菌优先利用有机氮源 ,不利用无机氮源中NaNO2、H2NCSNH2;维生素对A.apis 产孢量有极为显著的影响,复合维生素比单一维生素能更好地促进菌丝体生长, 尤其对产孢更为有利;矿质元素中Mg2+、P5+、K+、Zn2+促进菌丝体生长和孢子的形成,Na+对菌丝体的生长有抑制作用.  相似文献   

20.
低温对日光温室砂糖橘成花诱导及生理反应的影响   总被引:1,自引:0,他引:1  
为探索日光温室柑橘花芽进行形态分化的适宜升温时期, 以4年生枳砧砂糖橘幼树为试验材料, 采用离体培养方法, 研究日光温室砂糖橘对低温诱导的成花响应。结果表明: 15 ℃/10 ℃(昼12 h/夜12 h)低温处理720 h, 便能诱导砂糖橘离体茎段腋芽成花, 处理960 h后砂糖橘离体茎段腋芽成花率呈下降趋势, 而萌芽率急剧上升, 成花率与萌芽率呈负相关。日光温室砂糖橘秋梢11月初开始形成花芽, 整个冬季秋梢成花率呈升高趋势, 平均成花率表现为2月>1月>12月。5~20 ℃低温累计小时数达到1 309 h后, 成花率趋于稳定, 达到40.51%。有叶花/无叶花比值与<5 ℃低温累计小时数呈极显著负相关。砂糖橘成花率与枝条C/N呈正相关, 与脯氨酸含量呈极显著正相关。砂糖橘枝条C/N和脯氨酸含量的变化对低温诱导砂糖橘成花表现出一种积极响应。因此, 在确定花芽萌发升温时间时, 枝条C/N和脯氨酸含量变化可以作为判定指标。  相似文献   

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