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911.
植物源调节剂对水稻的影响   总被引:1,自引:0,他引:1  
植物源调节剂是利用艾蒿为主要原料,首次用提取的混合物研制成的一种植物生长调节剂,使用80mg/L的植物源调节剂混合物水溶液,分别在水稻苗期、拔节期、孕穗期叶面喷洒,清水对照。结果表明:植物源调节剂使水稻增产11.38%,千粒重增加11.45%。株干重增加了17.1%。在灌浆期连续测定表明:相对于CK,穗粒重增加10.9%,叶绿素含量提高14.41%。品质分析结果为:可溶性糖含量提高15.57%、游离氨基酸含量提高18.52%、淀粉含量提高1.59%,可溶性蛋白质降低22.17%、粗纤维降低1.95%、粗脂肪降低1.22%。该植物源调节剂对水稻的生长和产量都有显著的促进效应。  相似文献   
912.
青藏高原东南部天然草地主要有毒植物调查研究   总被引:2,自引:0,他引:2  
对青藏高原东南部的川西北天然草地主要有毒植物的种类、毒物成分和分布作了系统的调查与研究,首次报道了该区域天然草地有毒植物名录,统计出该区主要有毒植物226种,隶属于33科77属。有毒植物所含主要毒物成分可分为生物碱、苷类化合物、萜类化合物、苯酮类化合物、酚类及其衍生物和简单有机物等6大类。有毒植物在亚高山草甸草地中分布最多,有157种,其次是亚高山灌丛草地、高山草甸草地、高山灌丛草地和高寒沼泽化草甸草地。本调查研究为青藏高原东南部天然草地主要有毒植物的防除和开发利用奠定了基础。  相似文献   
913.
22种植物提取物及其6种化合物对鱼类指环虫的杀灭研究   总被引:8,自引:0,他引:8  
将感染有指环虫的金鱼投放在加有一定浓度的植物提取物或化合物的水体中,控制一定的水体条件,显微镜下定期观察鱼鳃上的指环虫数量,统计杀虫率。结果表明:22种植物中蛇床提取物的杀灭指环虫效果最好,其最高杀灭率为100%;其次是两面针、木通、吴茱萸、牛心朴子,最高杀虫率均为80%;夹竹桃、徐长卿的最高杀虫率均为70%;草果、苦木、北乌头、滨蒿、蒺藜、白芷、山柰、榧的最高杀虫率在48 h内均在20%~50%;在测试浓度范围内,生姜、辣椒、仙茅、大风子、泽漆、相思子和雷丸没有明显杀虫活性。6种植物化合物作用48 h时川楝素的杀灭指环虫活性最高,最高杀灭率为100%;其次是鬼臼毒素、烟碱和槟榔碱,杀虫率在30%~50%;青蒿素和苦参碱在鱼中毒浓度下对指环虫仍然没有杀灭效果。根据以上结果,蛇床、两面针、木通、吴茱萸、牛心朴子、夹竹桃、徐长卿等植物和化合物川楝素对鱼类指环虫具有较好的杀灭作用。  相似文献   
914.
The molecular basis for the transport of manganese across membranes in plant cells is poorly understood. We have found that IRT1, an Arabidopsis thaliana metal ion transporter, can complement a mutant Saccharomyces cerevisiae strain defective in high-affinity manganese uptake (smf1). The IRT1 protein has previously been identified as an iron transporter. The current studies demonstrated that IRT1, when expressed in yeast, can transport manganese as well. This manganese uptake activity was inhibited by cadmium, iron(II) and zinc, suggesting that IRT1 can transport these metals. The IRT1 cDNA also complements a zinc uptake-deficient yeast mutant strain (zrt1zrt2), and IRT1-dependent zinc transport in yeast cells is inhibited by cadmium, copper, cobalt and iron(III). However, IRT1 did not complement a copper uptake-deficient yeast mutant (ctr1), implying that this transporter is not involved in the uptake of copper in plant cells. The expression of IRT1 is enhanced in A. thaliana plants grown under iron deficiency. Under these conditions, there were increased levels of root-associated manganese, zinc and cobalt, suggesting that, in addition to iron, IRT1 mediates uptake of these metals into plant cells. Taken together, these data indicate that the IRT1 protein is a broad-range metal ion transporter in plants.  相似文献   
915.
A real‐time polymerase chain reaction (PCR) assay using a TaqMan® probe was developed to detect the causal agent of wilt and crown rot of basil from infected plants and seed in Italy. The aim of the study was to diminish testing time, previously performed using nested‐PCR, and to create the conditions for future automation. The sensitivity of the assay was shown to be similar to the detection limit of the available nested‐PCR procedure. The advantages of real‐time PCR system include halving of the testing time, as well as the ability to identify both internally and externally infected seed to the sensitivity of 1 pg of genomic DNA. The assay was able to detect the presence of the pathogen in infected seed up to a sensitivity of 24 (SD: ±10) CFU per 100 seeds.  相似文献   
916.
Summary Multiple shoots were induced from cotyledonary nodes of grasspea (Lathyrus sativus L.) derived from 7-d-old in vitro seedlings on Murashige and Skoog (MS) medium containing N6-benzyladenine (BA), kinetin, or thidiazuron, BA being the most effective. Among the five genotypes tested, shoot proliferation frequency was the highest (93.3%) for IC-120487, giving the maximum number of shoots (11.3 shoots per explant) on MS medium augmented with 2.0 mgl−1 (8.87 μM) BA. Shoot cultures were established by repeatedly subculturing the original cotyledonary nodes on fresh medium after each harvest of the newly formed shoots. Thus 30–40 shoots were obtained in 2 mo. from a single cotyledonary node. Up to 81.8% of the shoots developed roots following transfer to half-strength MS medium containing 0.5 mgl−1 (2.85 μM) indole-3-acetic acid. Plantlets were successfully acclimatized and established in soil.  相似文献   
917.
Stomata are natural openings in the plant epidermis responsible for gas exchange between plant interior and environment. They are formed by a pair of guard cells, which are able to close the stomatal pore in response to a number of external factors including light intensity, carbon dioxide concentration, and relative humidity (RH). The stomatal pore is also the main route for pathogen entry into leaves, a crucial step for disease development. Recent studies have unveiled that closure of the pore is effective in minimizing bacterial disease development in Arabidopsis plants; an integral part of plant innate immunity. Previously, we have used epidermal peels to assess stomatal response to live bacteria (Melotto et al. 2006); however maintaining favorable environmental conditions for both plant epidermal peels and bacterial cells has been challenging. Leaf epidermis can be kept alive and healthy with MES buffer (10 mM KCl, 25 mM MES-KOH, pH 6.15) for electrophysiological experiments of guard cells. However, this buffer is not appropriate for obtaining bacterial suspension. On the other hand, bacterial cells can be kept alive in water which is not proper to maintain epidermal peels for long period of times. When an epidermal peel floats on water, the cells in the peel that are exposed to air dry within 4 hours limiting the timing to conduct the experiment. An ideal method for assessing the effect of a particular stimulus on guard cells should present minimal interference to stomatal physiology and to the natural environment of the plant as much as possible. We, therefore, developed a new method to assess stomatal response to live bacteria in which leaf wounding and manipulation is greatly minimized aiming to provide an easily reproducible and reliable stomatal assay. The protocol is based on staining of intact leaf with propidium iodide (PI), incubation of staining leaf with bacterial suspension, and observation of leaves under laser scanning confocal microscope. Finally, this method allows for the observation of the same live leaf sample over extended periods of time using conditions that closely mimic the natural conditions under which plants are attacked by pathogens.  相似文献   
918.
919.
甜菜夜蛾对不同寄主植物的产卵和取食选择   总被引:4,自引:0,他引:4  
张娜  郭建英  万方浩  吴刚 《昆虫学报》2009,52(11):1229-1235
为了探讨甜菜夜蛾Spodoptera exigua对不同寄主植物的产卵选择及成虫产卵选择与幼虫取食选择间的关联度, 本研究选取玉米、豇豆、甘蓝、黄瓜、棉花、辣椒和番茄7种植物进行了选择性和非选择性实验研究, 并采用Y型嗅觉仪测定了成虫对其中3种寄主植物及其挥发物抽提物的趋性。结果表明:在田间非选择性实验中, 甜菜夜蛾在不同寄主植物上的落卵量依次为:玉米>辣椒>棉花>黄瓜、豇豆、番茄>甘蓝。Y型嗅觉仪的行为测定表明, 雌成虫对玉米及其挥发物抽提物的趋性最强, 黄瓜次之, 对甘蓝的趋性最弱, 这与雌虫的产卵选择性一致。不同龄期甜菜夜蛾幼虫对寄主植物的取食选择性有所不同, 且随观测时间的延长有所改变;低龄幼虫对豇豆、玉米和黄瓜的选择性较强, 对甘蓝、番茄、辣椒和棉花的取食选择性则较弱, 高龄幼虫对辣椒也具有较强的选择性;5龄幼虫对寄主植物的选择性不如低龄幼虫明显。结果显示, 甜菜夜蛾对不同寄主植物的产卵选择性显著不同, 植物抽提物在雌成虫的产卵选择中具有重要作用, 甜菜夜蛾对寄主植物的产卵选择性和幼虫取食选择性并不一致。  相似文献   
920.
濒危植物长叶榧的光合生理生态特性   总被引:3,自引:0,他引:3  
王强  金则新  郭水良  管铭  王兴龙 《生态学报》2014,34(22):6460-6470
利用Li-6400 XT便携式光合作用仪对林窗、林缘、林下3种生境中的长叶榧(Torreya ackii)在春、夏、秋、冬4个季节里的光合生理生态指标进行测定,探讨3种生境中长叶榧光合能力的季节变化及其对不同光环境的响应,分析其濒危机制,为长叶榧的迁地保护和种群的繁衍复壮提供理论依据。结果显示:(1)林窗、林缘的长叶榧净光合速率(Pn)日变化在夏季呈"双峰"曲线,其它3个季节均呈"单峰"曲线;林下的Pn日变化在4个季节均呈"单峰"曲线。(2)3种生境中最大净光合速率(Pnmax)、光饱和点(LSP)、表观量子效率(AQY)、最大羧化速率(Vcmax)、最大电子传递速率(Jmax)、磷酸丙糖利用率(TPU)均为夏季最高,使得夏季有较强的光合作用能力,但夏季林窗、林缘的长叶榧出现光合"午休"现象,光补偿点(LCP)、暗呼吸速率(Rd)也较高,使得夏季林窗生境的长叶榧日均Pn明显低于于秋季,林缘的日均Pn与秋季差异不显著。(3)4个季节的日均Pn、Pnmax、LSP、Vcmax、Jma、TPU均为林窗最高,林窗与林下差异显著,表明长叶榧具有阳性植物的特点,适宜生长在光照较强的林窗生境。(4)在生长旺盛的夏、秋季,长叶榧的LSP比伴生物种低,LCP比伴生物种高,对光适应的生态幅度较窄;与伴生物种相比,长叶榧的Pn较低,光合能力较弱,在激烈的种间竞争中处于不利地位,可能成为其濒危的一个重要原因。  相似文献   
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