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1.
采用大田种植和盆栽方法,分别研究了不同的立地类型(平地、阳坡、阴坡和坡地)和土壤类型(砂土、壤土和黏土)对产自河南省方城县的"裕丹参"(Salvia miltiorrhiza Bunge)生长和有效成分含量的影响效应.结果表明:在不同立地条件下,"裕丹参"的各项生长和根系产量指标以及根系中丹参酮ⅡA和丹酚酸B含量均有明显差异.随种植时间的延长,平地、阳坡和坡地种植的"裕丹参"单株地上部干质量均逐渐降低,而阴坡种植的单株地上部干质量先升高后逐渐降低;但在不同立地类型下,单株根系干质量和丹酚酸B含量均随种植时间的延长逐渐升高,而丹参酮ⅡA含量则先降低后升高.采收期,平地种植的"裕丹参"的单株地上部干质量、单株根系干质量和鲜质量以及根系鲜产量均最高,平地和坡地种植的"裕丹参"根直径较大,阳坡种植的"裕丹参"根长最长,阳坡和坡地种植的"裕丹参"单株根数、根系中丹参酮ⅡA和丹酚酸B含量也较高,而阴坡种植的"裕丹参"的各项生长和根系产量指标以及丹参酮ⅡA和丹酚酸B含量均最低.在不同类型土壤中,"裕丹参"的根系性状和根系中丹参酮ⅡA和丹酚酸B含量总体上差异显著,其中,用砂土种植的"裕丹参"的根直径、根长、单株根系鲜质量和干质量以及根系中丹参酮ⅡA和丹酚酸B含量均最高,但单株根数最少;用黏土种植的"裕丹参"根系生长总体最差,但单株根数最多;用壤土种植的"裕丹参"根系中丹参酮ⅡA和丹酚酸B含量则最低.综合研究结果显示:"裕丹参"适宜种植于砂土的坡地或阳坡.  相似文献   

2.
断根对不同苗情花生根系生长分布与衰老特性的影响   总被引:2,自引:0,他引:2  
采用箱式栽培方法,研究了花生不同苗情下断根对其根系生长分布和衰老特性的影响.结果表明:旺苗、壮苗和弱苗3种苗情下花生断根对其根系均起到先抑制后促进生长的作用,尤其促进了花生根系向深层土壤的生长;断根对调节根系在土壤中的生长分布效应以旺苗和壮苗较大,对弱苗的调节效应相对较小.与对照相比,3种苗情下花生断根后根系活性、超氧化物歧化酶(SOD)和过氧化物酶(POD)活性均先降低后增加;断根对根系活性、SOD和POD活性的降低幅度以弱苗最大,旺苗最小,壮苗居中;而后期提高幅度则以旺苗和壮苗较大,弱苗最小.断根能够提高后期根系活性,延缓花生根系衰老.  相似文献   

3.
高肥力土壤条件下不同基因型花生对氮素利用的差异   总被引:3,自引:0,他引:3  
在桶栽条件下,利用15N示踪技术,选用20个基因型花生为供试材料,研究了高肥力土壤条件下不同基因型花生对氮素利用的差异.结果表明:高肥力土壤条件下花生氮素营养以土壤氮为主,根瘤固氮次之,肥料氮最低.不同基因型间花生对全氮、肥料氮、土壤氮和根瘤固氮的吸收和积累均存在显著差异,基因型间遗传变异以根瘤固氮最大,肥料氮和土壤氮相当.氮素荚果生产效率和氮肥利用率基因型间差异显著,最高值分别为最低值的3.6和2.1倍.全氮、肥料氮、土壤氮和根瘤固氮的氮素收获指数基因型间均存在显著遗传变异,且以根瘤固氮的氮素收获指数基因型间遗传变异最大.花生荚果产量与不同氮源氮素积累量及氮素收获指数、氮素荚果生产效率和氮肥利用率呈显著或极显著正相关.依据花生对不同氮源氮素吸收积累和荚果产量筛选出全氮高积累高产型、肥料氮高积累高产型、土壤氮高积累高产型和根瘤固氮高积累高产型四大类型花生,其中四大类型特征兼有的有4个花生基因型.  相似文献   

4.
魏金连  潘晓华 《生态学杂志》2009,28(12):2521-2525
利用2间玻璃室内夜间不同的温度条件,研究了水稻生长期间夜温升高对双季早、晚稻物质生产和养分积累的影响.结果表明:播种-幼穗分化期夜温升高增加早稻的干物质积累,而减少晚稻的干物质积累;幼穗分化期-抽穗的夜温升高对早、晚稻的干物质积累均有一定的负作用;抽穗后的夜温升高对早稻物质生产影响较小,但降低其茎鞘物质的转运,而晚稻的干物质生产和茎鞘物质的转运均提高.在早稻幼穗分化前夜温适度升高有利于提高根系活力,促进植株养分的积累,但不利于晚稻植株养分的积累;幼穗分化-抽穗期间的夜温升高均不利于早、晚稻植株的养分积累;灌浆结实期的夜温升高会造成早稻根系早衰,不利于养分吸收,但有利于保持晚稻根系较高活力,促进养分吸收.试验证明,不同生育阶段的夜温升高对双季水稻不同生育阶段的干物质生产和养分吸收的影响是不同的.  相似文献   

5.
土壤容重对花生根系生长性状和内源激素含量的影响   总被引:1,自引:0,他引:1  
本文采用柱栽方法,研究了不同土壤容重对花生根系生长性状和内源激素含量的影响。结果表明:在花生苗期,较低的土壤容重利于花生根系生长,根系中生长素(IAA)、赤霉素(GA_3)、细胞分裂素(ZR)含量升高,而脱落酸(ABA)含量下降。适宜的土壤容重(1.2~1.3 g·cm~(-3))下,花生根系保持较高的IAA、GA_3、ZR含量和较低的ABA含量,有利于根系生长和保持较好的根系形态。根系IAA、GA_3、ZR含量与根系干重、总长度、体积和表面积均呈显著或极显著正相关,ABA含量则相反。IAA/ABA、ZR/ABA、GA_3/ABA也与根系干重、总长度、体积和表面积呈显著或极显著正相关。据此可见,土壤容重为1.2~1.3 g·cm~(-3)可维持有利于花生根系生长的内源激素水平。  相似文献   

6.
赵洁丽  刘勤  张斌  胡锋  毕利东 《生态学杂志》2007,26(9):1344-1349
选用多年夏花生-冬蔬菜种植制度下的典型红壤旱坡地,通过田间试验,研究了5种氮肥水平下花生根系的形态特征、固氮能力、植株生物量以及荚果产量。结果表明:不同氮肥施用量对花生植株生物量及荚果产量影响均不显著(P=0.091);而不同处理的土壤固氮酶活性与氮肥施用量间呈极显著的负相关(R2=0.88,P=0.005);单株花生根系总长度、总表面积、总分叉数及根尖条数均随氮肥施用量的增加而减小,且与单株花生根瘤生物量呈极显著(P<0.001)正相关。  相似文献   

7.
三种根系分泌脂肪酸对花生生长和土壤酶活性的影响   总被引:4,自引:0,他引:4  
刘苹  赵海军  仲子文  孙明  庞亚群  马征  万书波 《生态学报》2013,33(11):3332-3339
为了探讨花生连作后土壤中脂肪酸类物质的累积与花生连作障碍间的关系,为花生连作障碍机理的研究提供新的理论依据,以田间土壤为介质,采用盆栽试验的方法研究了花生根系分泌物中3种长链脂肪酸,即:豆蔻酸、软脂酸和硬脂酸的混合物,对花生植株生长、产量和土壤酶活性的影响。结果表明,当土壤中脂肪酸的初始含量较低时(80 mg/kg土),对花生植株的生长和产量有微弱的促进作用(P>0.05),当土壤中脂肪酸的初始含量较高时(160 mg/kg土和240 mg/kg土),显著抑制了花生植株的生长和产量(P<0.05)。叶片叶绿素含量、根系活力、土壤酶(蔗糖酶、脲酶、磷酸酶)活性在低脂肪酸含量处理下升高,在高脂肪酸含量处理下显著降低(P<0.001)。光合产物、根际有效养分的减少和根系养分吸收能力的降低,可能是导致花生植株生长和产量降低的原因之一。花生连作土壤中豆蔻酸、软脂酸和硬脂酸的累积与花生的连作障碍有着密切关系。  相似文献   

8.
丘陵红粘土旱地冬小麦根系生长规律的研究   总被引:9,自引:0,他引:9       下载免费PDF全文
 对豫西丘陵红粘土旱地小麦根系生长规律进行的研究结果表明:初生根、次生根长度和根条数均随生育期后延而增加,根系最大入土深度可达340cm,根系生物量(Y,kg·hm-2的增长为5次曲线方程:Y=495.195-40.980X+1.3530X2-0.014985X3+0.0000699X4+0.000000116X5,表现出越冬前和冬后至抽穗期两个增长高峰,各生育期根条数和根系生物量在土体中的分布均符合Y=ae-bx的由上到下的负指数递减方程;土壤含水量与根系生长的关系表现为,当土壤含水量低于16%时,根系和地上部分均不能正常生长,根系入土深度(Y,cm)和根尖处土壤含水量(X,%)的函数关系为:Y=2.009e0.2204X;次生根的发生与主茎叶片数没有明显的对应关系,而与分蘖的发生相对应,根系干物质积累与地上部分干物质积累存在着正向协同关系;初生根条数增加可显著增加成穗数,次生根条数增加则主要对穗粒数和千粒重有促进作用;用叶面宝、磷酸二氢钾等微肥、激素浸种可有效增加根的数量和根系入土深度,促进根系干物质和地上部分干物质的积累,增加成穗数和穗粒数,显著提高小麦产量。  相似文献   

9.
棉花花生间作是充分利用土地资源、缓解棉油争地矛盾的重要种植方式。在大田栽培条件下,以‘花育25’和‘聊棉19’为试验材料,设置花生和棉花种植比例分别为4∶4(H4M4)、6∶4(H6M4)和4∶2(H4M2)3种间作模式,以单作花生(DH)和单作棉花(DM)为对照,研究不同花生棉花间作比例对花生生育后期生理特性、产量及经济效益的影响。结果表明: 与花生单作相比,棉花花生间作促进了花生茎秆的生长,但降低了叶面积指数、主茎绿叶数和干物质积累总量,易造成花生的旺长和倒伏。不同间作模式相比,H6M4和H6M4的花生叶片叶绿素含量、净光合速率、硝酸还原酶活性和根系活力显著高于H4M4,并提高了超氧化物歧化酶、过氧化物酶和过氧化氢酶活性,降低了丙二醛含量。不同间作模式显著降低了花生产量和棉花产量,但经济总产值较单作棉花增加。各间作模式间相比,在H6M4间作模式中,花生减产幅度最小,经济总产值显著高于其他处理且土地当量比大于1,具有明显的间作优势。说明在花生棉花间作种植体系中,适当减小棉花在间作中所占的比例能够维持花生较高的光合能力,促进根系对养分的吸收,有利于延缓衰老,减弱对花生产量的影响。  相似文献   

10.
小麦行距配置对套种花生生理特性和产量的影响   总被引:1,自引:0,他引:1  
以大花生品种早熟型‘山花108’和晚熟型‘780-15’为试验材料,设置小麦3种行距配置(25 cm、30 cm、大小行40 cm+20 cm)和2种花生种植方式(麦套、夏直播),探讨不同种植模式对夏花生产量构成、光合特性、抗氧化活性和干物质积累与分配的调控作用.结果表明: 适当扩大小麦行距、相同平均行距下选用大小行种植,可提高套种花生荚果产量和籽仁产量,增大叶面积指数和干物质积累量,增强光合能力,同时提高超氧化物歧化酶、过氧化物酶和过氧化氢酶活性,降低丙二醛含量.麦套花生产量高于夏直播花生并且以大小行处理产量最高.与小麦行距30 cm相比,大小行处理山花108和780-15两品种花生荚果产量和籽仁产量分别提高6.3%、13.3%和7.7%、16.5%.表明大小行种植有助于扩大光合面积,提高净光合速率,增加干物质积累量,同时缓解花生植株个体与群体间的矛盾,延缓衰老,从而提高麦套花生产量.  相似文献   

11.
为明确不同土壤质地条件下不同品种冬小麦(Triticum aestivum)的氮代谢和利用特征, 筛选与土壤质地相适宜的高产和氮高效利用的优质小麦品种, 采用大田试验的方法, 在同一生态类型区砂土、壤土和黏土3种质地土壤上, 以当地生产上大面积应用的强筋小麦‘郑麦366’ (‘ZM366’)和中筋小麦‘矮抗58’ (‘AK58’)、‘周麦22’ (‘ZM22’)为材料, 系统地研究了土壤质地对不同冬小麦品种主要生育时期叶片氨同化关键酶谷氨酰胺合成酶(GS)活性、游离氨基酸含量、花前和花后不同器官氮素积累和分配、氮素再分配等氮代谢过程及产量、品质和氮素利用效率等的影响。结果表明: 在这3种土壤质地上, 不同品种冬小麦旗叶GS活性和游离氨基酸含量均呈倒“V”型变化特征。各品种小麦旗叶GS活性、游离氨基酸含量大小及达到最大值的时期不一样, 砂土条件下峰值早于壤土10天左右出现, 且在5月22日已检测不到GS活性和游离氨基酸含量。花前和花后小麦地上部及各器官氮积累量(NA)、氮再分配量(NR)、成熟期籽粒产量和氮素当季利用率(NUE)均以壤土上为最高。氮素转运率(NRE)、花前再分配氮素对籽粒氮素的贡献率(NRC)、氮素生理效率(NPE)、氮收获指数(NHI)以砂土上为最高。其中, 砂土上NRC达82.46%-95.84%, 是花后的7倍左右; 壤土和黏土条件下花后吸收的氮素在籽粒氮素的积累中占有较大的比例, 贡献率分别为36.6%和29.2%。同一土壤质地上3个品种比较, 在砂土上, GS活性、游离氨基酸含量、籽粒产量、蛋白质含量及NUENPE以‘郑麦366’最高, 而壤土上以‘矮抗58’最高, 黏土上则以‘周麦22’最高。因此, 在生产上应培育和选择与土壤质地相适应的小麦品种, 砂土地种植‘郑麦366’, 壤土条件下种植‘矮抗58’, 黏土条件下种植‘周麦22’, 可以在获得较高产量和品质的同时, 提高氮素利用效率。  相似文献   

12.
Gill  J. S.  Sivasithamparam  K.  Smettem  K. R. J. 《Plant and Soil》2000,221(2):113-120
The effect of different soil textures, sandy (97.5% sand, 1.6% silt, 0.9% clay), loamy sand (77% sand, 11% silt, 12% clay) and a sandy clay loam (69% sand, 7% silt, 24% clay), on root rot of wheat caused by Rhizoctonia solani Kühn Anastomosis Group (AG) 8 was studied under glasshouse conditions. The reduction in root and shoot biomass following inoculation with AG-8 was greater in sand than in loamy sand or sandy clay loam. Dry root weight of wheat in the sand, loamy sand and sandy clay loam soils infested with AG-8 was 91%, 55% and 28% less than in control uninfested soils. There was greater moisture retention in the loamy sand and sandy clay loam soils as compared to the sand in the upper 10–20 cm. Root penetration resistance was greater in loamy sand and sandy clay loam than in sand. Root growth in the uninfested soil column was faster in the sand than in the loamy sand and sandy clay loam soils, the roots in the sandy soil being thinner than in the other two soils. Radial spread of the pathogen in these soils in seedling trays was twice as fast in the sand in comparison to the loamy sand which in turn was more than twice that in the sandy clay loam soil. There was no evidence that differences among soils in pathogenicity or soil spread of the pathogen was related to their nutrient status. This behaviour may be related to the severity of the disease in fields with sandy soils as compared to those with loam or clay soils. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

13.
为探讨连作花生土壤中酚酸类物质的累积与花生连作障碍的关系,通过大田盆栽试验,研究了对羟基苯甲酸、肉桂酸对花生花针期(出苗后45 d)、结荚初期(出苗后75 d)、结荚末期(出苗后105 d)根部土壤养分、酶活性及产量的影响.结果表明: 经两种酚酸类物质处理后,花生根部土壤养分和酶活性均发生了明显的变化,以在花针期受到的影响最大,土壤碱解氮、有效磷、有效钾和土壤脲酶、蔗糖酶、中性磷酸酶活性均显著降低;到花生结荚初期和结荚末期,两种物质对土壤养分、酶活性的抑制作用有减弱趋势.初始含量相同时,肉桂酸的化感作用相对较强.高浓度(80 mg·kg-1干土)对羟基苯甲酸、肉桂酸处理分别使每盆花生荚果产量降低了45.9%、52.8%,单株结果数降低了46.2%、48.9%.  相似文献   

14.
Limited information is available for soybean root traits and their plasticity under drought stress. To date, no studies have focused on examining diverse soybean germplasm for regulation of shoot and root response under water limited conditions across varying soil types. In this study, 17 genetically diverse soybean germplasm lines were selected to study root response to water limited conditions in clay (trial 1) and sandy soil (trial 2) in two target environments. Physiological data on shoot traits was measured at multiple crop stages ranging from early vegetative to pod filling. The phenotypic root traits, and biomass accumulation data are collected at pod filling stage. In trial 1, the number of lateral roots and forks were positively correlated with plot yield under water limitation and in trial 2, lateral root thickness was positively correlated with the hill plot yield. Plant Introduction (PI) 578477A and 088444 were found to have higher later root number and forks in clay soil with higher yield under water limitation. In sandy soil, PI458020 was found to have a thicker lateral root system and higher yield under water limitation. The genotypes identified in this study could be used to enhance drought tolerance of elite soybean cultivars through improved root traits specific to target environments.  相似文献   

15.
The effects of soil compaction and mechanical damage to stools at harvesting on the growth and biomass production of short rotation coppice (SRC) of willow (Salix viminalis L.) were monitored on clay loam (CL) and sandy loam (SL) soils. Moderate compaction, more typical of current harvesting situations did not reduce biomass yields significantly. Even heavy compaction only reduced stem biomass production by about 12% overall; effects were statistically significant only in the first year of the experiment on sandy loam. Heavy compaction increased soil strength and bulk density down to 0.4 m depth and reduced soil available water and root growth locally. Soil loosening treatments designed to alleviate the effects of heavy compaction did not markedly improve the growth of willow on compacted plots. Hence the focus fell on harvesting. Extensive mechanical damage to stools caused a 9% and 21% reduction in stem dry mass on the clay loam and sandy loam soils as a result of fewer stems being produced. The particularly severe effect on the sandy loam soil probably resulted from a combination of dry conditions in the year of treatment, root damage and soil compaction under stools and might have been aggravated by the young age of the plants (1 year) at the time of treatment.  相似文献   

16.
The efficiency of Trichoderma harzianum (MIAU 145 C) in promoting kidney bean (cv. Goli) growth in different soil texture (sandy loam, loam and clay loam) and organic matter content (0.5 and 2% of leaf litter) was assessed in a factorial experiment in the absence of Meloidogyne javanica. In another factorial experiment, the effect of soil texture, soil organic content and control measure (no control, 10?ml of T. harzianum containing 106 spore ml?1 and 2?mg ai cadusafos kg?1 soil) was determined on nematode-infected kidney bean’s growth, fungus controlling activity and M. javanica reproduction. Except for the shoot length, the fungus improved plant growth. Clay loam was not a proper soil type for the cultivation of kidney bean plants (even in the soil without nematode), but the plant grew better in sandy loam and loam soil. The presence of leaf litter in the soil enhanced plant growth, increased fungal efficiency and increased nematode reproduction. It seems that T. harzianum can activate the plant defence system in sandy loam soil. T. harzianum was more effective in sandy loam or loam soil containing 2% organic matter (leaf litter) and reduced the reproduction factor of the nematode in the tested soil textures equally to the chemical nematicide treatment.  相似文献   

17.
Extension growth of willow (Salix viminalis L.) and changes in soil water were measured in lysimeters containing clay and sandy loam soils with different amendment and watering treatments. No water uptake was found below 0.3 m in the nutritionally poor unamended clay; amendment with organic matter to 0.4 m depth resulted in water extraction down to 0.5 m depth whereas in the sandy loam, there was greater extraction from all depths down to 0.6 m. With water stress, wilting of plants occurred when the volumetric soil water content at 0.1 m was about 31% in the clay and 22% in the sandy loam. Compared with shoots on plants in the amended clay, those in the unamended treatment showed reduced extension growth, little increase in stem basal area (SBA) and a small shoot leaf area, resulting from a reduced number of leaves shoot−1 and a small average area leaf−1. Water stress also reduced shoot extension growth, SBA gain and the leaf area on extension growth. Shoot growth rates were significantly correlated with air temperature and base temperatures between 2.0 and 7.6 °C were indicated for the different treatments. These studies have helped to explain some of the large treatment effects described previously on biomass production and plant leaf area.  相似文献   

18.
Background and AimsPrevious laboratory studies have suggested selection for root hair traits in future crop breeding to improve resource use efficiency and stress tolerance. However, data on the interplay between root hairs and open-field systems, under contrasting soils and climate conditions, are limited. As such, this study aims to experimentally elucidate some of the impacts that root hairs have on plant performance on a field scale.MethodsA field experiment was set up in Scotland for two consecutive years, under contrasting climate conditions and different soil textures (i.e. clay loam vs. sandy loam). Five barley (Hordeum vulgare) genotypes exhibiting variation in root hair length and density were used in the study. Root hair length, density and rhizosheath weight were measured at several growth stages, as well as shoot biomass, plant water status, shoot phosphorus (P) accumulation and grain yield.Key ResultsMeasurements of root hair density, length and its correlation with rhizosheath weight highlighted trait robustness in the field under variable environmental conditions, although significant variations were found between soil textures as the growing season progressed. Root hairs did not confer a notable advantage to barley under optimal conditions, but under soil water deficit root hairs enhanced plant water status and stress tolerance resulting in a less negative leaf water potential and lower leaf abscisic acid concentration, while promoting shoot P accumulation. Furthermore, the presence of root hairs did not decrease yield under optimal conditions, while root hairs enhanced yield stability under drought.ConclusionsSelecting for beneficial root hair traits can enhance yield stability without diminishing yield potential, overcoming the breeder’s dilemma of trying to simultaneously enhance both productivity and resilience. Therefore, the maintenance or enhancement of root hairs can represent a key trait for breeding the next generation of crops for improved drought tolerance in relation to climate change.  相似文献   

19.
Summary The effects of winter waterlogging and a subsequent drought on the growth of winter barley and winter wheat have been examined. We used lysimeters containing soil monoliths with facilities to control the water table and a mobile shelter to control rainfall. Winter wheat was grown on a clay and on a sandy loam, but winter barley only on the clay soil. Lysimeters were either freely-drained during the winter or waterlogged with the water table 10 cm below the soil surface from 2 December until 31 March (that could occur by rainfall with a return period of 2 to 3 years). The lysimeters then were either irrigated so that the soil moisture deficit did not exceed 84 mm, or subjected to drought by limiting rainfall (equivalent to a 1 in 10 dry year in the driest area of England) so that the deficits reached maximum values of 150 mm in the clay and 159 mm in the sandy loam by harvest.Winter waterlogging restricted tillering and restricted the number of ears for all crops; grain yield of the winter barley was decreased by 219 g/m2 (30%), and that of winter wheat by 170 g/m2 (24%) and 153 g/m2 (21% on the clay and sandy loam respectively.The drought treatment reduced the straw weight of winter barley by 75 g/m2 (12%) but did not significantly depress the grain yield. For winter wheat on the clay, where the soil was freely-drained during the winter, drought depressed total shoot weight by 344 g/m2 (17%) and grain weight by 137 g/m2 (17%), but after winter waterlogging, drought did not further depress total or grain weight. In contrast, the winter wheat on the sandy loam was not significantly affected by drought.From these results, which are discussed in relation to other experiments in the United Kingdom, it seems that winter waterlogging is likely to cause more variation in the yield of winter barley and winter wheat than drought.  相似文献   

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