首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 171 毫秒
1.
对3个品种(GT1、RRIM600、PR107)巴西橡胶(Hevea brasiliensis)实生苗进行不同N素(0%N,50%N,100%N)处理,分析比较叶片SPAD值、N素营养和农艺性状的变化及其关系。结果表明:(1)缺N胁迫明显降低了叶片SPAD值、叶片N含量和硝酸还原酶活性,缩小了叶蓬距、叶面积,且影响幅度随胁迫强度的加大而增大;(2)不同品种橡胶树实生苗对缺N胁迫的响应程度不同,总体上GT1较为敏感,PR107次之,RRIM600较不敏感;(3)橡胶树实生苗叶片SPAD值、叶蓬距、叶面积与叶片N含量、硝酸还原酶活性之间均呈显著或极显著正相关。因此,有可能采用测定叶片SPAD值、叶蓬距和叶面积等简易方法判断橡胶树新生叶蓬的N素营养状况。  相似文献   

2.
采用低温恒温槽处理离体叶片后测定其电解质外渗率,并结合Logistic方程得出低温半致死温度的方法,评价农业部景洪橡胶树种质资源圃中的30个橡胶树品种的抗寒性。结果表明,品种‘RRIM712’、‘云研80-1983’、‘云研77-4’、‘PR107’、‘RRIM524’抗寒性强,低温半致死温度在-4~0℃之间;品种‘云研76-398’、‘RRIM523’抗寒性弱,低温半致死温度在4~7℃之间;其他品种抗寒性居中。橡胶树在低温胁迫下,超氧阴离子的产生速率与橡胶树的抗寒性无直接关系,但不同温度下的变化幅度越小,抗寒性越高;SOD活性随温度降低迅速提高,CAT随温度降低表现出活性降低的趋势。  相似文献   

3.
生长光强对六个橡胶树品种幼苗光合特性的影响   总被引:1,自引:0,他引:1  
研究了6个橡胶树品种幼苗(适应1年后)在不同生长光强(100%、50%、25%和5%自然光)下的叶片光合系统对光强和CO2浓度的响应特性。结果表明,6个橡胶树品种对不同的光环境均表现出较强的适应性。在不同生长光强下,橡胶树幼苗叶片的最大光合速率(Pmax)、光补偿点(LCP)、暗呼吸速率(Rd)、磷酸丙糖利用速率(TPU)、最大羧化速率(Vcmax)和最大电子传递速率(Jmax)以及叶绿素含量(Chl)均有显著差异(P<0.05),而光饱和点(LSP)和AQY(表观量子效率)则无显著差异。相同生长光强下,6个橡胶树品种间叶片的最大光合速率(Pmax)、暗呼吸速率(Rd)、磷酸丙糖利用速率(TPU)、最大电子传递速率(Jmax)和叶绿素含量(Chl)有显著差异(P<0.05),其光补偿点(LCP)、最大羧化速率(Vcmax)和表观量子效率(AQY)则无显著差异。综合比较各参数,RRIM600、云研77-4和PR107适宜于相对光强为100%~50%的植胶环境,而云研77-2、GT1和热研523适宜于相对光强为50%~25%的植胶环境。  相似文献   

4.
云南保存橡胶树魏克汉种质资源亲子系谱分析   总被引:1,自引:0,他引:1  
对“农业部景洪橡胶树种质资源圃”(云南景洪)保存的290份魏克汉种质资源进行了亲子系谱分析。结果表明,无性系GT1、PR107、PB86、RRIM600、云研277-5、PB5/51、IAN873的后代为210份,占72.41%。从表型看,魏克汉种质资源群体变异丰富,实际上遗传基础很窄。本文以GT1、PR107、PB86、RRIM600、云研277-5、PB5/51、IAN873为主线建立了亲子系谱图,并对部分种质资源的性状进行了分析,获得一些性状的传递遗传规律,供育种工作者参考。  相似文献   

5.
以橡胶树(Hevea brasiliensis Muell.Arg.)RRIM600、GT1、RRII105、IAN873、RRIM712、PB217等6个品种为对象,对不同品种橡胶树雌花分布和座果位置进行了观察和统计。结果表明:不同橡胶树品种间,圆锥花序上雌花的个数、雌花在花序上的位置分布和结果侧枝上的花序数存在极显著差异。雌花和果实在圆锥花序上的分布规律相似,主要分布在圆锥花序的顶端和下部;结果花序主要分布在结果侧枝的下部,圆锥花序距离树干越远,则花序结果的几率越小。因此,在橡胶树杂交育种时,可以只对相关品种座果率高的结果侧枝相应位置上的花序及花序上相应的雌花进行授粉,而摘掉其余座果率低的花序和雌花,从而提高杂交育种效率和效果。  相似文献   

6.
选取西双版纳地区丛林式橡胶林为研究对象,以纯橡胶林为对照,分别在2016年干季(3月)和雨季(5、6、7月)进行取样,测定两个样地内植物叶片δ13C值,比较植物水分利用效率,测定叶片C、N、P含量,计算叶片N/P值,分析植物对养分的利用与竞争关系,并综合分析植物水分利用效率与养分之间的相关性。结果表明,干季橡胶树受到干旱胁迫,其水分利用效率显著高于雨季,此时叶片N、P含量也显著高于雨季;丛林式橡胶林内橡胶树水分利用效率低于纯橡胶林内橡胶树,叶片N、P含量和N/P值均高于纯橡胶林中橡胶树;两个样地内不同植物与不同时间的水分利用效率,叶片C、N、P含量和N/P值均存在显著差异;相关性分析表明,水分利用效率与叶片N、P含量呈正相关,与叶片C含量、N/P值呈负相关。因此,丛林式橡胶林内橡胶树能更好地应对干旱,具有较强的养分获取能力。该研究揭示了丛林式橡胶林内植物水分利用效率以及养分利用特征,表明丛林式橡胶林是一种值得推广的农林复合生态系统。  相似文献   

7.
不同割制对橡胶树胶乳矿质养分流失的影响   总被引:15,自引:1,他引:14  
曹建华  蒋菊生    杨怀  林位夫  陈俊明 《生态学报》2008,28(6):2563-2563~2570
为了研究不同割胶制度对胶乳矿质养分流失的影响,以成龄橡胶无性系PR107为研究材料,在1a的不同月份研究了5种割胶制度下干胶中矿质养分N、P、K、Ca、Mg的流失情况,分析了外界因素(如割胶频率、乙烯利刺激强度、月平均温、月降雨量等)对橡胶树胶乳养分流失量的影响情况,并建立了胶乳养分流失量与外界因素的直线回归方程,结果表明:(1)不论是传统割胶还是乙烯利刺激割胶,PR107胶乳中矿质养分的流失量大小顺序为:N>K>P>Mg>Ca;(2)与传统割胶相比,4种乙烯利刺激割制对PR107胶乳中矿质养分的流失量具有极显著的影响(P<0.01),加速了橡胶树养分的流失,其中N素增加了1.01~1.26倍,P素增加了1.19~1.53,K 素增加了1.26~1.58倍,Ca素增加了0.69~1.14倍,Mg素增加了1.02~1.51倍.在一定范围内,随着刺激强度或割胶频率的增加,每刀流失的养分数量呈下降趋势,但胶乳养分流失的总量却增加.(3)胶乳养分流失量与外界因素的直线回归方程达显著水平,在一定程度上可用于预测胶乳养分的流失量.  相似文献   

8.
研究了 0~ 2 0 0mmol/L的NaCl胁迫下耐盐性不同的水稻品种Pokkali(耐盐 )和Peta(盐敏感 )根系、叶片和叶绿体中Na 、K 和Cl-含量的变化及其与叶片光合作用的关系。结果表明 :随着NaCl胁迫时间和浓度的增加 ,供试 2个品种在根、叶片和叶绿体中Na 、Cl-含量增加 ,K 含量下降。耐盐品种体内Na 、Cl-含量增加或K 含量减少的幅度小于盐敏感品种。在 2 0 0mmol/L的NaCl胁迫下盐敏感品种根、叶片和叶绿体中的Na /K 分别是耐盐品种的 2 0 8%、30 8%和 2 97%。与Na 相比 ,耐盐品种根系对K 的吸收和向叶片运输的选择性 (SK ,Na)较强。但在经过0、10 0和 2 0 0mmol/L的NaCl处理后 2个品种叶绿体中的Na /K 均高于叶片 (SK ,Na均小于 1)。盐胁迫下水稻叶绿体中Na 、Cl-含量和Na /K 与叶片净光合速率呈极显著负相关。  相似文献   

9.
盐胁迫下施肥对棉花生长及氮素利用的影响   总被引:1,自引:1,他引:0  
利用海水配制不同含盐量(0、0.15%、0.3%)的土壤盆栽棉花,在可移动遮雨棚内研究了不同施肥(N、NK、NP、NPK)处理对棉花生长、氮素吸收与利用的影响.结果表明: 盐胁迫和施肥均影响棉花生物产量、棉株氮素农学利用效率、氮素生物利用效率和氮素积累量,且两者存在显著的互作效应.施肥能提高盐胁迫下棉株氮素利用效率及氮素积累量,并显著增产,不同施肥处理中以N、P、K肥料配合施用的效果最好;施肥效果受盐胁迫程度的影响,低盐胁迫(0.15%)下的施肥效果好于中度盐胁迫(0.3%).  相似文献   

10.
依托长期定位试验(包括6个施肥处理:CK,不施肥;M,施循环猪圈肥;NP,施N、P化肥;NPK,施N、P、K化肥;NPK+M,N、P、K化肥+循环猪圈肥;PK,施P、K化肥),研究了不同施肥制度对下辽河平原地区潮棕壤固定态铵含量的影响及其变化过程。结果表明:随着种植时间推移,不同施肥模式下固定态铵含量均呈先降低而后逐渐稳定的趋势。与试验初期固定态铵含量相比,试验进行22年后,不同施肥处理固定态铵有18.0%~38.7%的释放。施用氮肥会导致土壤固定态铵含量降低;钾肥则能阻碍固定态铵释放,延缓其降低过程;单纯施用循环猪圈肥对固定态铵含量无显著影响;而施用N、P、K化肥基础上配施循环猪圈肥不仅可提高作物产量,且可使土壤固定态铵库保持在较高水平,有利于构建土壤氮素养分库,应为本地区旱田农业生产中的最佳施肥模式。  相似文献   

11.
Two NPK factorial trials, one in Vietnam and one in The Netherlands were (re-)analyzed to find causes of success or failure with regard to sustained soil productivity, using the concept of crop nutrient equivalents (CNE). A (k)CNE is the quantity of a nutrient that, under conditions of balanced nutrition, has the same effect on yield as 1 (k)g of nitrogen. The percentages the nutrients take in the (k)CNE sum of N, P and K are plotted along the sides of a triangle. Soil, crop and input NPK are indicated in the triangle. Balanced crop NPK is found in the centre of the triangle, and required NPK inputs are on a straight line in the extension of the line trough the point of soil NPK and the centre. Experimental inputs were compared with inputs required for balanced NPK. In Vietnam, responses to P and soil available N:P:K pointed to severe shortage of P. Rice yields increased over time in dry but not in wet seasons. The lower yields in wet seasons were ascribed to insufficiently long periods between the dry and the next wet seasons for replenishment of labile soil P. In the Netherlands, four crops were grown in rotation on a former sea bottom. Only N had a strong effect on yield. Soil available N:P:K revealed low N, very high K and medium P. Recovery of fertilizer N was high because of capillary rise of groundwater and absence of leaching. In both trials, first-season chemical crop analysis would directly have detected disproportions of soil available N, P and K. This knowledge could have improved the experimental designs, optimized nutrient use efficiency and minimized losses of N and K to the environment.  相似文献   

12.
In many areas, decreases in the stratospheric ozone layer have resulted in an increase in ultraviolet-B (UV-B, 280-315 nm) radiation reaching the Earth's surface. The present study was conducted to evaluate the interactive effects of supplemental UV-B (sUV-B) and mineral nutrients on a tuber crop, potato (Solanum tuberosum L. var Kufri Badshah), under natural field conditions in a dry tropical environment. The nutrient treatments were the recommended dose of NPK (F(o)), 1.5 times the recommended dose of NPK (F(1)), 1.5 times the recommended dose of N (F(2)) and 1.5 times the recommended dose of K (F(3)). The response of potato plants to sUV-B varied with nutrient treatment and concentration. sUV-B adversely affected growth, yield and quality of tubers, causing an increase in reducing sugars in the tubers and thus reducing the economic value. Growth and fresh weight of tubers was maximal with sUV-B at 1.5 times recommended NPK, but the dry weight of tubers were highest with the recommended NPK dose. Reducing sugar content was lower in potato plants treated with sUV-B and the recommended NPK than with sUV-B and 1.5 times the recommended NPK. This study thus clearly shows that growing potato with 1.5 times the recommended NPK or 1.5 times the recommended dose of N/K does not alleviate the sUV-B induced changes in yield and quality of tubers compared to the recommended NPK dose.  相似文献   

13.
This study was carried out to evaluate the effect of N, P, and K on the growth of Caesalpinia echinata plants and on the anatomical and chemical characteristics of their stems. Eight-month-old plants were grown in polyethylene pots of 8 L containing soil. The pots were arranged in randomized blocks where they received N, P, and K in isolated form, and NPK combined in 10:10:10 and 04:14:08 ratios. The applications were repeated at intervals of 90 days for 450 days, between January 2008 and April 2009. The nitrogen fertilization (N) and in the form NPK 04:14:08 provided greater stem growth and leaf area, but with lower values of Dickson quality index, which suggests lower survival potential under field conditions. Fertilizations do not influence the insoluble lignin concentration and the components of cellulose and hemicelluloses of the secondary xylem of the stem. In the stem bark, however, the levels of xylose, glucose, and insoluble lignin were higher in P and K when compared to N and the NPK forms. Nevertheless, the levels of xylose and insoluble lignin in all the treatments were lower than those in the control group. Concerning anatomical characteristics, there was higher diameter of the vessel element and reduced length of its cells for the NPK combination. All the fertilizing formulas reduced fiber wall thickness of the secondary xylem compared to control. The results suggest phosphate fertilization as the most recommended for growing C. echinata plants with increased chances of survival under field conditions.  相似文献   

14.
Current and projected increases in ultraviolet‐B (UV‐B; 280–315 nm) radiation may alter crop growth and yield by modifying the physiological and biochemical functions. This study was conducted to assess the possibility of alleviating the negative effects of supplemental UV‐B (sUV‐B; 7.2 kJ m?2 day?1; 280–315 nm) on radish (Raphanus sativus var Pusa Himani) by modifying soil nitrogen (N), phosphorus (P) and potassium (K) levels. The N, P and K treatments were recommended dose of N, P and K, 1.5 times recommended dose of N, P and K, 1.5 times recommended dose of N and 1.5 times recommended dose of K. Plants showed variations in their response to UV‐B radiation under varying soil NPK levels. The minimum damaging effects of sUV‐B on photosynthesis rate and stomatal conductance coupled with minimum reduction in chlorophyll content were recorded for plants grown at recommended dose of NPK. Flavonoids increased under sUV‐B except in plants grown at 1.5 times recommended dose of N. Lipid peroxidation (LPO) also increased in response to sUV‐B at all NPK levels with maximum at 1.5 times recommended dose of K and minimum at recommended dose of NPK. This study revealed that sUV‐B radiation negatively affected the radish plants by reducing the photosynthetic efficiency and increasing LPO. The plants grown at 1.5 times recommended dose of NPK/N/K could not enhance antioxidative potential to the extent as recorded at recommended dose of NPK and hence showed more sensitivity to sUV‐B.  相似文献   

15.
Biofertilizers are a promising approach to substantially improve nutrient recovery and crop production. Moreover, zinc (Zn) deficiency is one of the key abiotic factors limiting global rice production. However, the effect of Zn-biochemical co-fertilization on rice production and nutrients recovery and surplus under semi-arid environmental conditions is not fully obvious. Two years field experiment was conducted to evaluate the effect of Zn-biochemical (nitrogen “N”, phosphorus “P”, and potassium “K”) co-fertilization on yield and yield components, physico-chemical characteristics, and nutrient recovery and surplus as well as farm profitability of four rice (Oryza sativa L.) cultivars treated with two Zn levels (no Zn application, and 600 mg chelated Zn L?1 as a foliar application) and six fertilization regimes (no fertilizers application, biofertilizers, 25% NPK plus biofertilizers, 50% NPK plus biofertilizers, 75% NPK plus biofertilizers, and 100% NPK). Biofertilizers mixture (cerealin, phosphorine, and potassiomage) were used. The results revealed that chemical constituents, growth attributes, yield, yield components, nutrients uptake (N, P, K, and Zn), and nutrients recovery (N, P, and K) significantly increased due to Zn foliar application. Biofertilizers replacement for 25% of inorganic NPK combined with Zn provides the highest nutrients uptake through increasing N, P, and K recovery by 57–94%, 61–128%, and 45–69%, respectively in the four rice cultivars compared with 100% NPK treatment. This improvement in nutrients uptake and recovery was attributed to decrease nutrients surplus by 64–78%, 46–53%, and 50–59%, respectively. Additionally, Zn-biochemical co-fertilization improves growth attributes, yield, and yield components of rice cultivars through producing more contents of chlorophyll a and b, carotenoids, total carbohydrates, and total amino acids than using 100% NPK alone. All previous characteristics significantly affected by the cultivated rice variety. The net return under the treatment of 75% NPK plus biofertilizers plus Zn foliar application was 21.5–27.5% higher than the treatment of 100% NPK. Therefore, our findings suggest that biofertilizers replacement for 25% of inorganic NPK combined with Zn foliar application supplies a financially attractive choice to substantially enhance nutrient recovery and production of rice, while effectively reducing nutrients loss.  相似文献   

16.
为明确长期氮磷钾肥配施下贵州典型黄壤玉米产量、氮磷钾肥增产效应及土壤养分的演变特征,利用国家贵阳黄壤肥力与肥效长期定位试验,研究氮磷钾平衡施肥(NPK)与缺素施肥(N、NK、NP、PK)对玉米相对产量、氮磷钾肥增产贡献率及土壤氮磷钾素养分可持续性指数等的影响.结果表明: 氮磷钾平衡施肥有显著增产效果,玉米相对产量均值为:NPK>NP>NK>PK>CK;氮、磷、钾肥增产贡献率和农学利用率均为氮肥>磷肥>钾肥,施肥依存度为氮、磷、钾肥配施>氮肥>磷肥>钾肥,但缺磷处理(NK)玉米相对产量以每年1.4%的速度极显著下降,磷肥贡献率和依存度则以每年2.3%和1.4%的速度极显著上升,最终磷肥对玉米生产的影响逐渐与氮肥持平;缺磷处理土壤pH值和有机质含量均最低,而缺氮处理则较高;施用化学磷肥可提高黄壤磷素可持续性指数,但氮肥和钾肥对黄壤氮素和钾素可持续性指数无显著影响.综上,平衡施肥是贵州典型黄壤地区玉米高产的重要保障,其中磷肥与氮肥同等重要,但长期单施化肥尤其是缺磷处理不利于黄壤养分的可持续利用.  相似文献   

17.
The impact of supplemental ultraviolet-B (sUV-B; 280–315 nm; +7.2 kJ m?2 d?1) radiation was studied on various physiological parameters, antioxidative potential and metabolites of Solanum tuberosum L. cv. Kufri Badshah plants under varying levels of soil NPK. The N, P and K treatments were: the recommended dose of N, P and K; 1.5 times the recommended dose of N, P and K; 1.5 times the recommended dose of N and 1.5 times the recommended dose of K. The recommended NPK level provided maximum protection to photosynthetic assimilation under sUV-B radiation, while stomatal conductance was best at 1.5 times the recommended NPK. Carbon dioxide assimilation declined maximally at 1.5 times the recommended N/K under sUV-B radiation. Plants grown at the recommended NPK and 1.5 times the recommended NPK levels showed higher superoxide dismutase, peroxidase and ascorbate peroxidase activities under sUV-B radiation compared to 1.5 times the recommended N/K levels. sUV-B significantly increased total phenolics and flavonoids in plants at the recommended and 1.5 times the recommended NPK, while flavonoids declined at 1.5 times the recommended N. This study clearly showed that NPK amendment provided maximum protection to photosynthetic assimilation of potato plants under sUV-B radiation, activating the antioxidative defense system as well as flavonoids. NPK at 1.5 times the recommended dose, however, did not cause any additional benefit to photosynthetic carbon fixation; hence the recommended dose of NPK is found to be the best suited dose of fertilizer under ambient as well as sUV-B regime.  相似文献   

18.
调查和分析测定同一产区不同土壤类型的黄花蒿土壤和植株不同部位的养分含量及青蒿素含量,并对其进行相关分析和因子分析,结果表明,青蒿素含量与土壤Ca的含量有显著的正相关关系,与根N、茎N素含量以及植株地下部和地上部的N素含量比有显著的负相关关系,与茎部和叶部的N素含量比有极显著负相关关系;黄花蒿植株叶片的N含量与土壤P含量有显著的正相关关系;影响青蒿素含量的主要因子是黄花蒿植株体内的养分含量,其次是土壤的养分含量以及土壤和植株等综合因子。通过施肥、适当补充土壤中的Ca和P素营养,改善土壤养分状况等各种途径来调节植株体内的养分,降低地下部和地上部的N素含量比值,茎叶部N素含量比值,提高青蒿素的含量,增施K肥,有利于黄花蒿的生长。  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