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21.
以东农253为试验材料,在玉米6叶期喷施吨田宝(DTB)、DCPTA和ETH复配剂(KP)两种化控剂,对照为清水。结果表明,DTB和KP均可提高春玉米根系伤流量,特别是生育后期的流量,分别比对照提高了72.34%和129.78%;提高了伤流液中矿质元素的流量,氨基酸的总流量也得到相应的提高,特别是丝氨酸的流量。内源激素IAA、CTK和ABA流量在各时期均有增加;GA流量在乳熟期得到显著提高,拔节期、抽雄吐丝期和灌浆初期均低于对照,之后得到显著提高。对内源激素比值均有不同程度的影响,改变了激素间的平衡水平;提高了行粒数和百粒重,产量分别比对照提高了13.89%和21.06%。相关性分析表明,玉米根系伤流量及其组分与产量密切相关,表明化控剂具有调控根系伤流量、矿质元素和内源激素流量的作用,对促进地上部生长发育和产量的形成有重要作用。  相似文献   
22.
[目的]分析沙地柏液流通量变化特征及主要影响因子,为沙地植被的保护提供理论依据。[方法]以鄂尔多斯高原沙地植被的优势种沙地柏为研究对象,利用热扩散(TDP)技术监测生长季沙地柏的液流动态,通过相关分析和回归分析等研究其与气象因子的关系。[结果]晴天沙地柏的液流通量为单峰曲线,干旱时为双峰曲线。雨天沙地柏的液流通量为单峰或双峰曲线。晴天沙地柏液流通量的最大值是2.30~23.38 g/(cm~2·h)。沙地柏液流通量对降雨的响应具有1~4 d的时滞。生长季沙地柏液流通量与光合有效辐射、水汽压亏缺、气温和风速均呈显著正相关,而与相对湿度和降雨量呈显著负相关。[结论]鄂尔多斯高原沙地柏的液流通量随天气而变化。太阳辐射和水分是沙地柏液流通量的主要影响因子。建议当地加强对沙地柏灌丛的保护,防止由于过度水分消耗导致的植被退化。  相似文献   
23.
A vineyard of Vitis vinifera cv. Sangiovese was surveyed for incidence of esca and xylem sap collection. Sap samples were collected from healthy vines and from those with dual infection by Phaeomoniella chlamydospora (Pch) and Togninia minima (Tmi) or triple infection by Pch, Tmi and Fomitiporia mediterranea (Fme), during each early spring in a 3-year period (2001–2003). In order to analyse the possible trends in the climatic data, temperature and rainfall were assessed. At sap harvesting, aliquots of sap were assayed for phytotoxicity and extracted with ethyl acetate for phytotoxin recovery. Moreover, the exopolysaccharide (EPS) content was evaluated on several sap samples during the bleeding period. Conidia of Pch and Tmi, mycelium of Fme and their secondary metabolites were found in the sap of the esca-affected vines, indicating that the pathogens and their by-products together with some defence substances were accumulated and then translocated. Bioactivity tests showed toxicity of the sap from esca-affected vines to healthy detached leaves of cv. Sangiovese. The daily amount of sap, the pH, and the volume (Jv) and solute (Js) fluxes were analysed as a function of the infecting fungi. Pullulan, glucogalactomannan(s) and arabinogalactan(s) are the main EPS in the esca-infected vines, whereas in the sap of healthy vines no traces of pullulan were found. Scytalone and isosclerone usually produced in vitro by Pch and Tmi were also detected in the sap of vines infected by Pch and Tmi or by Pch, Tmi and Fme. The endogenous phytohormone content of healthy vines evaluated by the cutting bioassay was different from that of infected vines. Four phenolics belonging to three classes e.g., benzoic acid derivatives, stilbenes and flavonol-glycosides were separated and identified by HPLC.  相似文献   
24.
用营养液培养方法研究了黄瓜地上部对根系缺铁适应性反应的调节。缺铁导致植株根系Fe  相似文献   
25.
《Plant Production Science》2013,16(4):437-445
abstract

Nodal root anatomy was compared among twelve upland and lowland rice (Oryza sative L.) varieties with tropical origin which were grown in hydroponic culture and under field conditions. The traditional upland japonica varieties showed the largest diameter of root, stele, and xylem vessel followed by modern upland varieties. There was a clear varietal difference in the ratio of stele to root diameter, which was associated with the genetic group rather than with the ecosystems. The japonica varieties had a significantly larger stele diameter relative to the root diameter than indica and aus varieties. The indica and aus varieties displayed more xylem vessels per unit area of stele than the japonica varieties, but the diameter of xylem vessel was smaller. Equivalent xylem vessel diameter (De) was more dependent on the number of xylem in the indica varieties than in the japonica varieties. Distinctly different types of sclerenchyma anatomy were identified among the varieties. The development of sclerenchyma was classified into four different types based on thickening of cell wall in the outer cortical parenchyma and the number of sclerenchymatous cell layers. Like the xylem anatomy, the varietal differences in sclerenchyma development were more associated with genetic group rather than the ecotype. The japonica varieties had higher frequency of the types which have a doubled cell layer in sclerenchyma with thick cell wall than indica and aus. The difference among the genetic groups was nearly consistent across growing conditions, aerobic and submerged soils. These results indicated that sclerenchyma development is controlled by a genetic factor.  相似文献   
26.
《Plant Production Science》2013,16(3):235-242
Abstract

The objective of this study was to clarify the effects of soil temperature in the stage from late tillering to panicle initiation (SI) and during the grain-filling stage (SII) on grain setting, dry matter production, photosynthesis, non-structural carbohydrate (NSC), xylem exudation and abscisic acid (ABA) levels in rice (Oryza sativa L. cv. Koshihikari). Rice plants were exposed to four different soil temperatures during SI or SII: 17.5, 25, 31.5 and 36.5°C (ST18, ST25, ST32 and ST37, respectively). The yield, yield components, grain filling and quality in SI were negatively influenced by high soil temperature of 37°C. On the other hand, there was no significant difference in those characters among temperature treatments in SII. The root/shoot ratio was smallest in the ST37 plants in both SI and SII, mainly due to their lighter root weight. At 7 days after initiation of treatment (DAT) in both SI and SII, the photosynthetic and xylem exudation rate tended to increase slightly as soil temperature increased up to 32°C. At 21 DAT, however, the photosynthetic rate was lowest in ST37, with concurrent decrease of diffusion conductance and SPAD value. In addition, decrease of NSC concentration in stem and xylem exudation rate, and increase of ABA level in leaves and xylem exudate were observed in ST37 plants at 21 DAT. These results suggested that high soil temperature before heading especially influenced yield, grain quality and plant growth. Possible mechanisms of the effect of soil temperature are discussed.  相似文献   
27.
A study was carried out in an alley cropping system in the Eastern Maize Belt of the United States with the objective of quantifying the competition for water between trees (black walnut (Juglans nigra L.) and red oak (Quercus rubra L.) and maize (Zea mays L.). Spatial and temporal variation in soil moisture, tree and maize rooting patterns, tree and maize water uptake, and maize leaf area expansion were determined in three treatments; barrier (polyethylene root barriers separating maize and tree roots), trench (trenching without a polyethylene barrier), and no barrier (control). Significant temporal variation in soil moisture was observed in both black walnut and red oak alley cropping systems. The barrier and trench treatments resulted in higher soil moisture in the maize alley and lower soil moisture in the tree row than the no barrier treatment. Uptake of water by maize was higher in the barrier than the no barrier treatment. However, tree water uptake was higher in the no barrier treatment than in the barrier treatment because tree roots utilized water from the maize alley. Maize leaf area was negatively impacted by water stress in the no barrier treatment. Quantification of rooting patterns revealed that maize and tree roots were concentrated in the top 30 cm soil layer where water fluctuations were greatest. The barrier and trench treatments successfully eliminated the belowground root competition between trees and maize and resulted in greater leaf area and higher grain yields than the no barrier treatment. Thus, competition for water rather than competition for light seems to be critical in defining the productivity and sustainability of this alley cropping system.This revised version was published online in November 2005 with corrections to the Cover Date.  相似文献   
28.
A preliminary field study was conducted on root mass of young hybrid polar trees (Populus deltoides x P. nigra) using the electrical capacitance method. The objective of this study was to develop a simple calibration relationship that would enable root mass (fresh or dry) to be estimated for young hybrid poplar trees grown in mineral soils using simple, non-intrusive measurements of electrical capacitance. For first-year potted saplings (n = 33), strong linear and positive correlations were found between both root dry mass (adjusted r2 = 0.895, P<0.001) and root fresh mass (adjusted r2 = 0.866, P<0.001) and root electrical capacitance for the particular DN hybrid poplar clone studied. When augmented with data from third-year DN saplings grown in a more harsh landfill environment, a somewhat less strong curvilinear relationship was indicated with root dry mass (adjusted r2 = 0.780, P<0.001, n = 50). This rapid field method may be capable of providing adequate estimates of root mass for young trees in a variety of applications, such as afforestation, agroforestry or phytoremediation studies. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   
29.
运用Granier热扩散式探针法对湿地松(Pinus elliottii)树干液流密度进行长期连续测定,并对其周围多个气象要素和土壤要素进行同步测定。湿地松生长旺季不同月份晴天液流密度日变化规律基本一致,但液流启动、到达峰值的时间以及开始升高、开始下降的时间间隔存在差异。样木解析结果表明,处于低龄期的湿地松,整个木质部都可看作边材,边材面积和胸径可用二次函数很好地拟合。方差分析结果表明:不同胸径湿地松树干液流密度不存在显著性差异,与胸径无紧密关系。回归分析结果表明:湿地松日累计液流量与边材面积呈显著的线性相关关系,相关关系的判定系数达0.99。另外,单位边材面积日累计液流量与入选各气象因素的相关性显著,相关程度大小顺序为光合有效辐射>冠层相对湿度>冠层温度。结合边材面积-胸径回归方程和样木胸径调查资料,分别采用2种方法推算整个标准地的耗水量。经比较,2种方法所得结果差别不大,各自适用于一定的范围。  相似文献   
30.
应用热扩散式树干茎流计(TDP)对辽宁省章古台樟子松人工固沙林生长季期间树干液流速率进行了连续5年的测定,结合同步观测的降水、林冠截留量、林内蒸发散量和土壤水分含量,利用水量平衡的方法,推算了现阶段樟子松应有的合理密度。结果表明:4月上中旬沙地樟子松液流启动,10月中下旬液流基本结束,生长季(4-10月)各月平均液流速率分别为2.58、4.78、5.19、5.01、4.84、4.30、1.93 cm·h-1,以6月份的最高,其次依次为7、8、5、9月份,4、10两月平均液流速率较低。通过推算,径阶14、16、18、20 cm的樟子松纯林的合理密度分别应为688、531、422、344株·hm-2,现有同径阶的林分普遍存在密度过大的问题。研究结果对于现有林分的科学经营具有重要的指导意义。  相似文献   
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