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101.
为探究氮素形态对菠菜生长和品质的影响,试验采用盆钵培养的方法,在总氮浓度为15 mmol/L的条件下,设置了5种NO_3~--N与NH_4~+-N配比(分别为100:0、75:25、50:50、25:75和0:100),测定了5种铵硝配比条件下菠菜生长与品质相关指标。结果表明:与NH_4~+-N相比,NO_3~--N更有利于菠菜生长与Vc积累。适当增加NH_4~+-N比例后,Vc含量虽显著降低,但对菠菜的生长却无显著影响,并可显著降低可食用部分硝酸盐含量。因此,为了提供高产、低硝酸盐的优质菠菜,笔者认为适宜的NO_3~--N?NH_4~+-N为50:50。 相似文献
102.
103.
研究旨在通过分期播种试验,得到水稻‘甬优15’在本地播种最适宜播期,以提高其产量及品质。根据2016—2020年龙游国家农业气象试验站‘甬优15’分期播种试验数据和2018—2019年水稻品质数据,通过对比试验,得到‘甬优15’的产量与品质和播期的关系。结果表明:(1)播期对‘甬优15’的全生育天数和灌浆期天数有一定影响,主要表现为播期越晚全生育天数减少,灌浆期延长;(2)22℃是灌浆期水稻正常发育阈值,低于22℃的灌浆期平均气温会明显增加水稻灌浆乳熟时间;(3)‘甬优15’水稻直链淀粉含量普遍在10%左右,较易糊化,蛋白质含量接近7%,口感与营养含量较为平衡;(4)当播期推迟至6月中旬之后,‘甬优15’产量有明显降低,品质也有所下降;(5)‘甬优15’播种期控制在5月下旬6月上旬,能明显改善龙游本地单季晚稻产量。 相似文献
104.
为探讨外源硒对60Co-γ辐射下菜豆幼苗生长以及生理的影响,以菜豆品种‘13-6-1-2’和‘紫冠’为试验材料,通过外源喷施50 μg/mL的亚硒酸钠(Na2SeO3)溶液,研究60Co-γ辐射(120 Gy)下外源Se对菜豆的表型、抗氧化酶活性(POD、SOD、CAT)、丙二醛(MDA)、叶绿素以及硒含量的影响。结果显示,60Co-γ辐射下外源硒显著提高了菜豆幼苗体内的硒含量,也不同程度提高了抗氧化酶活性及MDA和叶绿素的含量。研究表明,叶面喷施适当浓度的外源硒可以促进菜豆的生长发育,提高菜豆自身的硒含量,提高其抗氧化能力,缓解60Co-γ射线对菜豆幼苗生长的影响。 相似文献
105.
Adventitious shoot regeneration from mature stored cotyledons of Japanese plum (Prunus salicina Lind1) was achieved in vitro. The influences of the presence and absence of the light, different concentrations of thidiazuron (TDZ) and benzyladenine (BA) in the culture media, TDZ pretreatments and different basal salts on shoot regeneration were evaluated. TDZ was more effective in inducing shoot regeneration from mature stored cotyledons than BA. Dark incubation significantly increased the regeneration frequencies. Quoirin/Lepoivre (QL) basal salts stimulated shoot regeneration more than woody plant (WPM) or B5 salts did. The frequency of adventitious shoot formation varied among the varieties and the regeneration ability appeared to be genotype depended. The frequency of regeneration under the optimum tested conditions for ‘Bruce’, ‘Shiro’, ‘Redheart’, ‘Gladstone’ and ‘Early Golden’ cotyledons were 66.7%, 46.7%, 43.3%, 26.7% and 6.7%, respectively. 相似文献
106.
Previous experiments demonstrated that treatment of longan trees with potassium chlorate (KClO3) induces “off season floral induction” (FI) even in the absence of the naturally required cool temperature [Manochai, P., Sruamsiri, P., Wiriya-alongkorn, W., Naphrom, D., Hegele, M., Bangerth, F., 2005. Year around off season flower induction in longan (Dimocarpus longan, Lour.) trees by KClO3 applications: potentials and problems. Sci. Hortic. 104, 379–390]. Potassium chlorate, however, cannot replace the presence of functional mature leaves and sufficient light intensity. Here we examined in more detail the effect of shade (about 10% of natural sunlight) on KClO3 affected hormone concentrations/transport of leaves and shoot apical buds (SAB) and their interactions with FI. 相似文献
107.
The Andean seed crop quinoa (Chenopodium quinoa Willd.) is traditionally grown under drought and other adverse conditions that constrain crop production in the Andes, and it is regarded as having considerable tolerance to soil drying. The objective of this research was to study how chemical and hydraulic signalling from the root system controlled gas exchange in a drying soil in quinoa. It was observed that during soil drying, relative gs and photosynthesis Amax (drought stressed/fully watered plants) equalled 1, until the fraction of transpirable soil water (FTSW) decreased to 0.82 ± 0.152 and 0.33 ± 0.061, respectively, at bud formation, indicating that photosynthesis was maintained after stomata closure. The relationship between relative gs and relative Amax at bud formation was represented by a logarithmic function (r2 = 0.79), which resulted in a photosynthetic water use efficiency WUEAmax/gs of 1 when FTSW > 0.8, and increased by 50% with soil drying to FTSW 0.7–0.4. Mild soil drying slightly increased ABA in the xylem. It is concluded that during soil drying, quinoa plants have a sensitive stomatal closure, by which the plants are able to maintain leaf water potential (ψl) and Amax, resulting in an increase of WUE. Root originated ABA plays a role in stomata performance during soil drying. ABA regulation seems to be one of the mechanisms utilised by quinoa when facing drought inducing decrease of turgor of stomata guard cells. 相似文献
108.
MdMYB1转录因子调控红星苹果果实着色的计算机模拟分析及表达验证 总被引:1,自引:0,他引:1
从‘红星’苹果(Malus domestica‘Delicious’) 果实中克隆获得了MdMYB1基因, 通过生物信息学分析( in silico analysis) 和活体细胞融合蛋白荧光观察, 确定其编码蛋白定位于细胞核。同时, 克隆了MdDFR和MdUFGT基因的启动子, 模拟分析表明2个基因的启动子序列中含有MYB结合的顺式作用元件。为了探讨MdMYB1转录因子是否调控MdDFR和MdUFGT基因的表达, 对不同光照条件下果皮花青素含量和基因表达进行了检测, 结果表明光照能够诱导花青素积累, 并迅速启动3个基因表达, 且3个基因表现出高度相似的表达模式, 表明MdMYB1转录因子可能直接调控MdDFR和MdUFGT基因的表达。 相似文献
109.
黄瓜根际促生菌的促生效应与防病作用 总被引:3,自引:0,他引:3
对黄瓜植物根际促生菌(PGPR)菌株的分离筛选、分类鉴定以及人们对其促生防病作用的应用和防病机制的研究现状进行了综述,以期为新型PGPR制剂的进一步研制、开发和应用提供参考. 相似文献
110.
Lincoln Zotarelli Johannes M. Scholberg Rafael Muñoz-Carpena 《Agricultural Water Management》2009,96(1):23-34
Florida is the largest producer of fresh-market tomatoes in the United States. Production areas are typically intensively managed with high inputs of fertilizer and irrigation. The objectives of this 3-year field study were to evaluate the interaction between N-fertilizer rates and irrigation scheduling on yield, irrigation water use efficiency (iWUE) and root distribution of tomato cultivated in a plastic mulched/drip irrigated production systems. Experimental treatments included three irrigation scheduling regimes and three N-rates (176, 220 and 230 kg ha−1). Irrigation treatments included were: (1) SUR (surface drip irrigation) both irrigation and fertigation line placed right underneath the plastic mulch; (2) SDI (subsurface drip irrigation) where the irrigation line was placed 0.15 m below the fertigation line which was located on top of the bed; and (3) TIME (conventional control) with irrigation and fertigation lines placed as in SUR and irrigation being applied once a day. Except for the “TIME” treatment all irrigation treatments were controlled by soil moisture sensor (SMS)-based irrigation set at 10% volumetric water content which was allotted five irrigation windows daily and bypassed events if the soil water content exceeded the established threshold. Average marketable fruit yields were 28, 56 and 79 Mg ha−1 for years 1-3, respectively. The SUR treatment required 15-51% less irrigation water when compared to TIME treatments, while the reductions in irrigation water use for SDI were 7-29%. Tomato yield was 11-80% higher for the SUR and SDI treatments than TIME where as N-rate did not affect yield. Root concentration was greatest in the vicinity of the irrigation and fertigation drip lines for all irrigation treatments. At the beginning of reproductive phase about 70-75% of the total root length density (RLD) was concentrated in the 0-15 cm soil layer while 15-20% of the roots were found in the 15-30 cm layer. Corresponding RLD distribution values during the reproductive phase were 68% and 22%, respectively. Root distribution in the soil profile thus appears to be mainly driven by development stage, soil moisture and nutrient availability. It is concluded that use of SDI and SMS-based systems consistently increased tomato yields while greatly improving irrigation water use efficiency and thereby reduced both irrigation water use and potential N leaching. 相似文献