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1.
土壤pH值与镉含量对水稻产量和不同器官镉累积的影响   总被引:1,自引:0,他引:1  
为探明水稻产量与镉积累分配对土壤pH值和镉含量的响应,以3个籽粒Cd含量差异明显的晚稻品种(天优华占,TY;星2号,X2;湘晚籼13号,XW)为试验材料,分别于不同pH值稻田研究土壤镉(Cd)含量对水稻产量和不同器官Cd累积的影响,并比较了品种间差异。结果表明,水稻产量因土壤pH值下降而下降,且品种间降幅差异明显,以X2最大(21.72%33.81%),XW最小(3.05%17.71%);添加0.5 mg·kg-1Cd时水稻减产不显著,但添加1.0 mg·kg-1Cd时各品种均显著减产,且其降幅与品种和土壤pH值有关,X2和XW在酸化条件下降幅较大,而TY在正常pH条件下降幅较大。植株(整株)Cd含量存在品种间差异,各品种植株Cd含量均随着土壤Cd浓度的提高与土壤pH值的下降而显著提高,且植株Cd含量峰值因土壤酸化而提前。水稻器官间Cd含量依次表现根>茎>穗>叶,各器官Cd含量均随着土壤Cd浓度提高而显著增大,但增大倍数存在器官间差异;品种间器官Cd含量差异明显,营养器官表现为X2>TY>XW,而稻穗表现为TY>X2>XW。水稻各器官及全株Cd累积量均随着土壤Cd浓度提高和土壤pH值降低而显著增大,成熟期累积量表现为茎>穗>根>叶;品种间Cd累积量差异明显,营养器官和整株Cd累积量表现为X2>XW>TY,而穗Cd累积量表现为TY>X2>XW。Cd分配比例一般以茎为最高,叶最低,土壤酸化使茎、叶所占比例增大,根、穗所占比例降低;品种间Cd分配比例存在一定差异,穗Cd所占比例表现为TY>X2>XW。可见,水稻产量与器官间Cd累积分配规律受到土壤Cd含量和pH值的影响显著,同时也具有明显的品种间差异。本研究为不同水稻品种在不同pH值与Cd含量稻田上的应用提供了理论依据。  相似文献   

2.
采用盆栽方法研究了水分处理对专用小麦各营养器官氮含量积累、运转和子粒蛋白质的影响。结果表明,在不同的水分处理中,开花后随着时间的推移小麦叶鞘和茎中氮含量逐渐降低,而根中氮含量先下降后上升。(1)80%FC提高了各专用小麦叶鞘氮含量;豫麦34茎中氮含量在各处理下差异不大,豫麦49在60%FC下提高茎中氮含量,豫麦50茎氮含量在40%FC下最高。(2)各营养器官氮转运量品种间表现为豫麦50〉豫麦49〉豫麦34,各品种间不同水分处理下各营养器官氮转运量均为80%FC〉60%FC〉40%FC。(3)各品种叶鞘氮转运效率为80%FC〉60%FC〉40%FC;但不同品种间各水分处理下茎氮转运效率因存有差异,豫麦34为:40%FC〉60%FC〉80%FC,豫麦49为:60%FC〉40%FC〉80%FC,豫麦50为:60%FC〉80%FC〉40%FC。(4)各营养器官及总转运氮对籽粒的贡献率为80%FC〉60%FC〉40%FC,各品种器官转运量和贡献率均为:叶鞘〉茎,器官转运效率为:茎〉叶鞘。(5)对豫麦34,蛋白质含量和产量均以60%FC为好,且蛋白产量达显著性差异;豫麦49和豫麦50,蛋白质含量以40%FC最高,蛋白质产量以80%FC最高。豫麦49差异均达到显著水平,豫麦50蛋白质产量达极显著水平。  相似文献   

3.
荣思川  师尚礼  孙灿灿 《土壤》2016,48(5):931-938
通过高效液相色谱(HPLC)法测定不同试验地间18个苜蓿(Medicago sativa L.)品种植株及根际土壤中主要酚酸和香豆素物质的含量,分析其在不同品种苜蓿植株中的分布特征及不同试验地间差异。经过ASE 350型加速溶剂萃取仪萃取苜蓿植株及根际土壤中酚酸类和香豆素物质,萃取液存放于2oC冰箱,并用0.45μm有机滤膜过滤后通过HPLC测定自毒物质含量。结果显示,18个苜蓿品种中香豆素、阿魏酸、绿原酸、咖啡酸的含量存在差异,其中香豆素、绿原酸含量显著高于阿魏酸、咖啡酸含量。各苜蓿品种间单一自毒物质含量差异显著(P0.05),香豆素、阿魏酸、绿原酸和咖啡酸的总含量差异明显。武威试验地酚酸和香豆素物质平均含量比会宁试验地低4.01%。研究表明:不同苜蓿品种间香豆素、阿魏酸、绿原酸、咖啡酸物质总含量差异显著;苜蓿植株中香豆素、阿魏酸、绿原酸、咖啡酸物质总含量与根际土壤中含量差异极显著。  相似文献   

4.
采用野外调查与室内分析相结合的方法分析了湖北省恩施烟区土壤有效锌含量和烤烟锌含量状况及其相互关系,结果表明:(1)恩施烟区土壤有效锌含量偏低,平均值为(1.00±0.51)mg·kg-1,变幅为0.17~2.49mg·kg-1,变异系数为54.26%.所取129个土壤样本有62.79%有效锌含量在临界值1.0 mg·kg-1以下,部分烟区存在缺锌现象.不同海拔土壤有效锌含量表现为高海拔>中海拔>低海拔.(2)恩施烟区烤烟锌含量平均为(29.18±7.99)nag·kg-1,变幅为15.40~54.73 mg·kg-1,变异系数为27.38%,与巴西优质烤烟锌含量(10.15~31.64 nag·kg-1)的符合频率为63.79%.品种、海拔间锌含量差异显著,等级间则差异不显著,品种间表现为K326>云烟87>云烟85;海拔间表现为高海拔>中海拔>低海拔;等级间表现为B2F>C3F>X2F.(3)烤烟锌含量与土壤有效锌含量均随着海拔高度的升高而增加,且烤烟锌含量随着土壤有效锌含量的升高而升高.  相似文献   

5.
研究不同比例海淡混合水4年灌溉对库拉索芦荟全叶鲜重、叶片含水量和叶片中可溶性糖、多糖和芦荟甙含量的影响。结果表明:10%、25%海水灌溉下,芦荟的全叶鲜重与对照(淡水)差异不显著,50%、75%和100%海水灌溉下的全叶鲜重显著下降,分别较对照降低11%、28%和46%。10%、25%、50%、75%海水灌溉下,芦荟的全叶干重与对照(淡水)差异不显著,100%海水灌溉下的全叶干重显著下降,较对照降低14%。CK、10%、25%、50%海水处理的地上部含水量之间差异不显著,75%、100%海水处理下,其地上部含水量显著下降。在地上部不同叶位的叶片中,老叶随着海水胁迫强度的增加,其含水量下降幅度较大,而幼叶和中部叶含水量下降幅度较小。海水灌溉处理下叶片可溶性糖含量显著高于淡水灌溉处理,在海水灌溉各处理间,随海水比例增大,芦荟叶片中可溶性糖含量呈逐渐显著增加趋势,经过4年比例海淡混合水连续灌溉,芦荟叶片中多糖含量与淡水灌溉处理没有显著差异,但芦荟甙含量随海水灌溉强度的增加而增加,75%海水处理达最大值。不同比例海淡混合水灌溉芦荟的试验是可行的,可以节约淡水,并在一定的海水稀释配比下(75%海水)可以提高芦荟的主要药用功效成份芦荟甙的含量。  相似文献   

6.
【目的】 调查高产小麦品种籽粒氮含量差异,探讨引起籽粒氮含量差异的主要农学和营养学因素,对于品种选育和优化养分管理,提高旱地小麦产量与营养品质有重要意义。 【方法】 于2013—2016年,以我国不同麦区的123个小麦品种为供试材料,在陕西渭北旱塬连续三年开展田间试验。设置施肥 (N 150 kg/hm2、P2O5 100 kg/hm2) 和不施肥对照两个处理,收获后测产。在产量高于平均值的品种中,籽粒含氮量列前10名的定义为高氮品种,后10名的为低氮品种。分析了高产小麦品种植株和籽粒氮、磷、钾含量,干物质累积,产量构成及氮磷钾吸收利用的关系。 【结果】 小麦籽粒含氮量与产量呈极显著负相关,高产品种平均产量为6.9 t/hm2,籽粒产量每增加1000 kg/hm2,含氮量平均降低1.1 g/kg。高产品种间籽粒氮含量差异显著,高氮品种的籽粒含氮量平均分别为24.2 g/kg,低氮品种平均为19.4 g/kg,相差24.7%。两组品种的产量、生物量和产量构成因素差异均不显著,高氮品种的产量、生物量、收获指数、穗数和穗粒数对氮肥响应更敏感,施肥后分别显著增加70.0%、60.2%、9.8%、51.6%和14.3%,高氮品种营养器官含氮量较高,施肥后可显著增加150.0%;高、低氮品种籽粒的磷钾含量无显著差异,施肥后钾含量增加幅度均大于磷含量增加。高氮品种施肥后地上部氮、磷吸收量高于低氮品种,籽粒积累量增加幅度高于营养器官;籽粒钾吸收量无论施肥与否均显著低于低氮品种。施肥后,高氮品种地上部氮磷钾吸收量增幅高于低氮品种,营养器官的增幅高于籽粒。两类品种的氮磷收获指数无显著差异,但高氮品种的钾收获指数三年平均显著低于低氮品种。 【结论】 旱地土壤养分供应充足条件下,高产小麦高、低籽粒氮品种的产量、穗数、穗粒数和千粒重均无显著差异,但高籽粒氮品种对施肥响应更敏感。高产小麦品种间籽粒氮含量存在显著差异,高氮品种的籽粒含磷量高,含钾量低。施肥后,高氮品种的籽粒氮含量提高,磷、钾含量降低。高氮品种具有较高的地上部氮磷钾吸收量,但其向籽粒的转移能力并无优势。因此,在高产优质品种选育中,应进一步提升品种的氮磷钾收获指数,促进养分向籽粒分配,同时生产中需优化肥料投入,促进籽粒氮磷钾吸收与利用,实现产量和籽粒氮磷钾含量同步提高。   相似文献   

7.
为了探究不同种类有机物料及同种有机物料的不同形态对原生盐碱地土壤腐殖质结合形态及组成的影响。以吉林省西部地区原生盐碱地为研究对象,采用连续3年的大田试验,通过大田取样和室内分析相结合的方式对其进行研究。试验设颗粒秸秆(KL)、正常玉米秸秆(JG)、羊粪(YF)、牧草(MC)和对照(CK)5个处理,采用Anderson结合态腐殖质分组法提取土壤腐殖质,研究了不同有机物料对原生盐碱地土壤腐殖质结合形态及组成的影响。结果表明:(1)施加不同有机物料较CK处理均提高了原生盐碱地土壤腐殖质含量,促进土壤中各种结合形态腐殖质含量的增加,其中KL、MC、YF 3个处理间松结合态腐殖质含量差异不显著,但相比CK处理均差异显著。对联结合态腐殖质含量影响较大,各处理间均差异显著。KL处理与其他处理稳结合态腐殖质含量差异显著,其中JG、MC、YF 3个处理间差异不显著,但相比CK处理均差异显著。紧结合态腐殖质含量各处理同CK相比差异显著,KL处理同JG处理差异显著,其他处理间差异不显著。(2)不同有机物料均能提高松/紧比值和松/稳比值,有利于腐殖质的更新及土壤肥力的提高。(3)对胡富比(H/F)的影响则表现为各处理同CK处理相比差异显著,胡富比(H/F)的增加表征着富里酸的缩合转化,进一步形成结构复杂,芳香化程度高胡敏酸,增加了土壤胡敏酸含量,促进土壤腐殖质的聚合程度以及腐殖化度的提高。综合得出,有机物料能够增加原生盐碱地土壤腐殖质含量,提高各结合形态腐殖质含量。同种有机物料不同形态作用差异显著,中颗粒秸秆(正常玉米秸秆经过粉碎高温高压处理,长2cm、直径0.5cm的圆柱形颗粒)效果远好于其他处理。  相似文献   

8.
不同花生品种氮代谢相关酶活性的研究   总被引:8,自引:0,他引:8  
为研究不同品种花生各器官中氮代谢酶活性的差异及与籽仁蛋白质含量间的关系,采用田间小区试验,利用高产大花生品种(花育22号)和小花生品种(白沙1016)研究了两品种不同生长发育时期植株各器官中可溶性蛋白质(Pro)含量、硝酸还原酶(NRase)、谷氨酰胺合成酶(GS)和谷氨酸脱氢酶(GDH)活性的变化。结果表明,两粒型花生品种各器官的Protein、NRase、GS、GDH活性变化态势大致相同,但其含量的高低有异;各器官中的各指标含量均以小花生品种白沙1016较高。各器官中NRase活性随生育期的推进呈渐降趋势,籽仁中NRase活性远高于其他营养器官;两粒型品种叶片、茎和根中GS活性的变化趋势均呈单峰曲线,其峰值均出现在结荚期;叶片GDH活性以苗期较高,花针期最低,之后又迅速升高。茎和根中GDH活性均呈V字型曲线变化,根中峰谷滞后于茎,出现在饱果期,而籽仁中GDH活性成熟期略有升高。各器官中蛋白质含量与GS和GDH活性间的相关关系不明显,但与其相应器官中的NRase活性表现显著或极显著相关。  相似文献   

9.
花后土壤干旱和渍水对不同专用小麦籽粒品质的影响   总被引:18,自引:4,他引:18  
在温室盆栽条件下,以4个籽粒蛋白质含量不同的小麦基因型为材料,研究了花后土壤干旱(SRWC=45%~50%)、渍水和适宜水分条件(SRWC=75%~80%)下小麦籽粒主要品质特性。干旱显著提高各品种籽粒蛋白质含量、谷蛋白含量及谷蛋白/醇溶蛋白比值,并显著提高面粉干/湿面筋含量。渍水显著降低了籽粒谷蛋白含量及谷蛋白/醇溶蛋白比值。干旱和渍水均显著降低籽粒淀粉产量和支链淀粉含量,直链淀粉含量提高,从而不同程度地降低籽粒直/支链淀粉比。干旱和渍水对各品种籽粒面筋指数、沉降值和降落值的影响因品种而异。与对照相比,干旱和渍水下小麦籽粒各品质性状间的相关性降低,表明土壤水分逆境下各籽粒品质特征值与正常水分条件下差异明显,从而改变了专用小麦的籽粒品质特性。  相似文献   

10.
不同品种粳稻的锌强化方法研究   总被引:1,自引:0,他引:1       下载免费PDF全文
通过比较不同锌肥施用方式对不同粳稻品种产量以及稻米锌含量的影响,筛选高效锌水稻品种和最佳锌施用方式。在田间试验条件下,分析9个粳稻品种的稻米产量和锌含量对S(锌肥土施)、SB(锌肥土施结合孕穗期喷施)、SF(锌肥土施结合扬花期喷施)和SBF(锌肥土施结合孕穗期和扬花期喷施)4种锌肥施用方式的响应,结果表明,各水稻品种稻米的锌含量在18.1~29.3 mg·kg~(-1)之间,吉洋1号、吉农大809、吉粳302、吉宏6号、长粳717和稻花香2号为高锌品种,吉农大899为中锌品种,平粳8号和吉粳515为低锌品种。锌肥土施对大多数水稻品种无显著增产作用,不同品种的稻米锌含量在施用锌肥后平均增幅为18.0%;S、SB、SF和SBF处理的稻米锌含量分别较不施锌处理提高了8.3%、17.4%、19.5%和27.0%,但3个喷施处理间的平均锌含量无显著差异。锌肥土施结合叶面喷施能显著提高稻米中的锌含量,不同施用方式的施锌效果因品种而异。选择富锌高产品种,锌肥土施结合适当生育期叶面喷施,可实现增产和稻米锌强化,实现水稻高产优质种植。  相似文献   

11.
Regular consumption of fruit and vegetables is associated with a lower risk of some chronic diseases including various forms of cancer and cardiovascular diseases. The health-promoting potential of these foods may be due, in part, to the phytochemical bioactive compounds present in the plants. Fruit of Euphoria longana Lam. (longan) are consumed throughout Asia and are a major crop in Thailand. In the present study phytochemicals were extracted with 70% methanol from peel, pulp, and seed tissues of longan fruit, and the major components were identified as gallic acid, corilagin (an ellagitannin), and ellagic acid. A high-through-put reversed phase HPLC method was developed to determine the content of these three compounds in different parts of the longan fruit and among different cultivars. The analyses showed that there was a large variation in the contents of gallic acid, corilagin, and ellagic acid in different plant tissues and cultivars. Seed contained the highest levels of the three phenolics, and pulp contained the lowest. Among commercial cultivars, Biewkiew and Edor contained the highest levels of gallic and ellagic acid while Srichompoo contained the highest content of corilagin. These three cultivars may be used in directed breeding and cultivation programs and to develop concentrated longan seed extracts to promote good health. Utilization of this byproduct material will support the use of thousands of tons of waste longan seeds after the production of canned longan pulp.  相似文献   

12.
Three sulfur (S) treatements were imposed by applying gypsum to three broccoli cultivars (Claudia, Marathon, and TB-234) known to differ in glucoraphanin content of mature seeds. The S treatments were control (very low added S), low S (23 kg S ha(-)(1)), and high S (92 kg S ha(-)(1)). The gypsum applications during the early vegetative phase of the three broccoli cultivars increased S uptake and the glucoraphanin content in each plant organ. There were significant genotypic differences for the content of both S and glucoraphanin in all plant organs at different growth stages with gypsum applications. A large increase in S and glucoraphanin content was found in the green heads of broccoli and mature seeds. S present in glucoraphanin accounted for only 4-10% of total S content in broccoli heads. However, S present in glucoraphanin in mature seeds accounted for 40-46% of the total S in the seeds of moderate and high glucoraphanin cultivars (Marathon and TB-234). The partitioning of S into glucoraphanin also increased with gypsum applications. Differences in S uptake, S distribution between organs, and partitioning of S into glucoraphanin largely explained the differences in glucoraphanin content in the green heads and mature seeds for the three broccoli cultivars and three S treatments.  相似文献   

13.
小白菜适当增铵下硝酸盐累积机理研究   总被引:14,自引:6,他引:14  
利用NO3--N/NH44+-N为100∶0和75∶25的营养液对两个硝酸盐累积能力显著不同的小白菜品种(上海青和亮白叶1号)进行培养,测定了小白菜叶片、叶柄及根系硝酸盐含量、硝态氮和铵态氮吸收量及各部位硝酸还原酶活性,以探讨适当增铵降低小白菜硝酸盐含量以及小白菜不同品种和不同器官累积硝酸盐能力差异的机理。结果表明,适当增铵使叶片、叶柄和根系硝酸盐含量分别降低了22%、15%和22%,而硝态氮吸收量则降低了7.5%。小白菜各器官硝酸盐含量为叶柄叶片根系。叶片硝酸还原酶活性分别是叶柄和根系的27和9倍,呈现叶片根系叶柄,叶片是硝态氮的主要还原器官。亮白叶1号叶片、叶柄及根系硝酸盐含量分别较上海青高3%、38%和34%,硝态氮吸收量仅较上海青高11%;而叶片、叶柄及根系硝酸还原酶活性则分别较后者降低44%、56%和38%。适当增铵减少硝态氮吸收量是增铵降低硝酸盐含量的主要原因。不同器官的功能与结构的不同决定其累积硝酸盐能力的不同;不同品种硝酸盐累积的差异取决于还原硝态氮能力的差异。  相似文献   

14.
The objective of this study was to monitor the changes in isoflavone content in different plant organs (leaves, stems, roots) during the crop growth stage of three cultivars of Lupinus albus (white lupin) under field conditions, taking into account sowing time effects (autumn and early spring) and cultivar effects. Three sampling dates (from late vegetative to late grain growth stages) were evaluated. Seven isoflavones and four flavonoids were identified by LC-ESI-MS analysis. The isoflavone content was higher in leaves than in stems, and it was highest before flowering, whereas it decreased during maturity. Autumn-sown plants showed higher isoflavone content than early spring-sown plants, especially in late vegetative and early reproductive stages. Genistein 7- O-glucoside was the main isoflavone of leaves and stems in the late vegetative stages of early spring sowing, whereas genistein was the main isoflavone under autumn sowing. Variation among cultivars affected only marginally the total isoflavone content. No isoflavones were detected in seeds.  相似文献   

15.
The effect of potassium (K) supply on dry matter accumulation and partitioning of biomass between different among parts of cotton (Gossypium hirsutum L.) was determined under irrigated conditions. The treatments were four cotton cultivars (CIM-448, CIM-1100, Karishma, and S-12), four K rates (0, 62.5, 125, and 250 kg K ha−1), and two K-fertilizer sources (K2SO4, KCl). Sequential harvests were collected at four stages of growth, viz first flower, peak flowering, first boll split, and maturity. The dry weights (DW) of vegetative and reproductive organs were determined. Maximum total DW was obtained at 125 days after planting, and then it declined because of leaf senescence at maturity. Cultivars differed significantly among themselves in the production of total DW and its partitioning between different organs. The addition of K fertilizer increased DW substantially at various stages of growth. Potassium fertilizer stimulated cotton plant to translocate resources towards reproductive organs rather than vegetative organs. Crop receiving 250 kg K ha−1 allocated 77% more dry matter into reproductive organs. The K-sources produced a little effect on the allocation of DW in various parts of the plant. Maximum reproductive–vegetative ratio (RVR) was maintained by cv CIM-448 and minimum in cv CIM-1100. Data showed that a shift in DW allocation into reproductive organs was dependent upon sustained supply of K+ throughout the season. There were positive significant correlations (0.86, 0.71, and 0.90) between seed cotton yield and total DW, vegetative DW, and reproductive DW, respectively.  相似文献   

16.
不同施氮量及种植密度对小麦开花期氮素积累转运的影响   总被引:9,自引:3,他引:6  
本文以小麦品种‘周麦22’为材料,研究了不同施氮量[0 kg(N)?hm~(-2)、120 kg(N)?hm~(-2)、240 kg(N)?hm~(-2)和360 kg(N)·hm~(-2),以N0、N1、N2和N3表示]和种植密度(225×104基本苗?hm~(-2)、375×10~4基本苗?hm~(-2)和525×104基本苗?hm~(-2),以M_1、M_2和M_3表示)处理下小麦植株地上部不同空间分布各器官的氮素含量及其转运特性。结果表明:施氮量、种植密度及二者互作对开花期、成熟期植株地上部各器官氮素含量的影响均达显著水平。不同施氮量及种植密度处理小麦开花期至成熟期各营养器官氮含量和积累量下降。开花期和成熟期,植株单茎氮积累量为7.27~59.65 mg?茎-1和8.48~60.83 mg?茎-1,以N_0M_3处理最低,以N_3M_2最高。从空间位置看,植株地上部各营养器官开花期氮含量、氮积累量及花后氮转运量和对籽粒氮的贡献率均随空间位置下移而降低。营养器官氮含量、积累量及转运量随施氮量增加而呈递增趋势,上部和中部营养器官氮转运率高于50%。营养器官对籽粒氮的总贡献率高于67%。增施氮肥配套合理的种植密度,可以促进植株地上各营养器官氮的积累和转运,对植株下部器官氮积累转运的作用尤为明显,高肥及中密度处理(N3M2)下倒四叶、倒四节及余叶和余节氮含量和积累量增加,缩小了与上部各器官的差异。植株地上部群体氮素转运量为28.56~549.49 kg·hm~(-2),亦随施氮量增加而增加,以穗部和茎节氮转运量较高。施氮量对籽粒产量、蛋白质含量及蛋白质产量影响显著。施氮量与种植密度互作对籽粒蛋白质含量及产量影响显著,种植密度对籽粒蛋白质产量的影响亦达显著水平。从氮素转运和产量性状来看,施用氮肥240 kg·hm~(-2)配套225×10~4基本苗?hm-2的种植密度是黄淮小麦玉米两熟区小麦生产较为适宜的栽培模式。  相似文献   

17.
以3 个芭蕉芋栽培品种为试材,研究了芭蕉芋发棵结芋期和子芋完熟期生物量的构成特点及各器官矿质元素含量、 积累和分配规律,以期为芭蕉芋科学管理和合理施肥提供依据。结果表明,发棵结芋期,芭蕉芋干物质量为54.99~62.21g/plant,叶片是干物质主要的分配器官; 子芋完熟期,芭蕉芋的干物质量是发棵结芋期的 4 倍多,根茎为干物质的主要分配器官。发棵结芋期,3 个芭蕉芋品种平均每株累积吸收N 497.4mg~598.8mg、 P 128.7mg~223.1mg、 K 2021.2.mg~2450.3mg、 Ca 496.0 mg~577.3 mg、 Mg 526.7 mg~804.5 mg,氮以叶片中含量最高,磷、 钾和镁以茎中含量最高,根系内钙含量最高; 子芋完熟期,芭蕉芋平均每株累积N 1116.2~1210.8mg、 P 852.6~907.5mg、 K 4528.9~5055.2 mg、 Ca 919.2~991.7mg、 Mg 888.2~1369.0 mg,氮以叶片含量最高,钾含量以根系最高,磷含量以茎、 叶中最高,根茎内镁含量高。生育期内构建相同生物量,Xingyu-1需要的 K、 Ca 和 Mg 比其他 2个品种多,N和P与其他2个品种相当,但Xingyu-1 的根茎干物质分配率高,生产相同质量的干根茎,Xingyu-1 需要的N、 P、 K 低于其他 2 个品种。  相似文献   

18.
滴灌施氮对苹果氮素吸收和利用的影响   总被引:3,自引:1,他引:2  
以8年生嘎富苹果/八棱海棠(Malus robusta Rehd)为试材,研究了滴灌施肥下不同滴头数量对其滴施15N-尿素的吸收、分配与利用特性。结果表明:不同滴头数量处理,果实成熟期植株各器官Ndff%差异显著,DF2(两个滴头滴灌施肥处理)各器官Ndff%显著高于DF1(一个滴头滴灌施肥处理)和CK,DF1和CK差异不显著。3个处理均以果实的Ndff %值最高,分别为3.84%、3.14%和3.16%;新梢旺长期和果实膨大期DF2处理果实的Ndff%低于DF1和CK,但在果实成熟期Ndff %超过DF1和CK,DF1和CK 差异不显著。果实成熟期生殖器官分配率最高,营养器官和贮藏器官均较低,处理间差异不显著。DF2处理的15N利用率为38.95%,显著高于DF1(27.68%)和CK(23.69%)。随生长期的推移,各处理间020cm和2040cm土层硝态氮含量变化趋势一致,均呈双峰趋势,峰值分别出现在新梢旺长期和果实膨大期;6080cm和80100cm土层硝态氮含量变化趋势也一致,均变化较为平缓,而4060cm土层硝态氮含量变化差异显著,DF2处理明显高于DF1和CK。  相似文献   

19.
ABSTRACT

Environmental stress strongly affects the fundamental processes of plant biology. This study was to investigate the growth, yield, carbon (C) and nitrogen (N) assimilation and partitioning of two canola (Brassica napus L.) cultivars (Qinyou 10 and Ningza 1838) under low and high soil salt-ion concentration levels (LSSC and HSSC) of 2.512 and 4.722 g kg?1, respectively. There was no cultivar effect on agronomic traits other than the 1000-seed weight which was not affected by soil salinity. The increase of soil salt-ion concentration greatly reduced plant height, the numbers of primary branches, pods per plant or per hectare and the resultant seed yield. The C and N accumulations for whole plant and in different organs decreased significantly as soil salinity increased. The suppressive effects of high soil salinity were more strongly on C accumulation than N accumulation, and more obviously in shells and seeds than in roots, stems and leaves. As soil salinity increased, the C and N partitioning in vegetative organs of roots, stems, and leaves was enhanced greatly, while the C partitioning in shells and seeds and the N partitioning in seeds decreased significantly, suggesting an inhibition of C and N transporting from vegetative organs to reproductive organs. Our study revealed the high soil salinity profoundly suppressed canola growth and yield formation, by reducing C and N accumulations in all organs and alleviating C and N partitioning in reproductive organs.  相似文献   

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