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61.
双季稻区稻水象甲的生物学特性研究   总被引:5,自引:0,他引:5  
稻水象甲在浙江双季稻区每年发生2代,以成虫滞育越冬。春季越冬成虫迁入早稻田繁殖,形成1代致害种群;夏季1代成虫生殖滞育,绝大部分个体(95%以上)迁出早稻田行夏蛰并越冬;秋季2代成虫羽化后,大部分迁飞山上草地越冬。  相似文献   
62.
大米加工副产品大米粉长期以来被添加到米糠中利用,显著降低了其利用率。本试验用三头施以回直肠吻合术猪,采用单因子设计,以大米粉为半纯合日粮,无氮日粮由醋酸纤维素提供粗纤维来测定内源值,测定了大米粉的猪回肠末端氨基酸表观消化率和真消化率。大米粉的回肠末端氨基酸的表观消化率的平均值为76.20%,真消化率的平均值为85.86%。这些数据可为我国氨基酸消化率数据库提供参考,并且可作为以可消化氨基酸为基础配制日粮时的依据。  相似文献   
63.
稻瘟菌激发子CSB I专化性及相关性质研究   总被引:5,自引:1,他引:5  
 以一套水稻抗稻瘟病近等基因系为材料,接种稻瘟菌(Magnaporthe grisea)细胞壁来源的糖蛋白激发子CSB I,其诱导植保素的积累在高度非亲和性互作水稻远高于亲和性互作水稻;研究同时表明,CSB I可专化性诱导完全非亲和性互作和高度非亲和性互作水稻的过敏性坏死反应;表明该激发子具有小种-品种专化性。经热、胰蛋白酶和过碘酸钠处理后的生物活性检测结果表明,CSB I的活性位点为糖基部分。经pH稳定性检测,CSB I在酸性及相对弱碱性条件下较稳定;而在强碱性条件下,激发子活性下降较多,甚至完全丧失。对CSB I诱导活性的有效浓度测定表明,激发子诱导水稻叶片酶活性升高的最低有效浓度为0.07~0.70 nmol/L。  相似文献   
64.
稻曲病侵染时期和流行因素研究   总被引:3,自引:0,他引:3  
分期接种试验的结果表明,稻曲病对水稻的侵染时期,主要在孕穗末期至破口期,病菌侵入籽粒在水稻开花前。3a的系统调查和对比分析结果说明,水稻穗期最高气温>32℃的天数少,降雨量大,有利病菌的侵入和发展流行,品种间抗(耐)病性差异显著。近年来稻曲病发生严重的主要原因是单季晚稻的大面积种植,穗期气候条件适宜病害发生流行。  相似文献   
65.
在旱作条件下,对转甜菜碱醛脱氢酶(BADH)基因水稻的3个品系(52-7、51-15、51-22)、受体亲本中花8号(ck1)和当地推广的以色列陆稻白珍珠(ck2)的籽粒灌浆特性进行了比较分析。结果表明:5个品种(系)的强、弱势粒灌浆过程均符合Richards模型,强、弱势粒灌浆为异步灌浆型。三个转BADH基因品系与其受体亲本相比,强、弱势粒的灌浆速率提高,活跃灌浆期延长,灌浆高峰期的籽粒重增加;籽粒灌浆中、后期,强势粒的灌浆天数缩短,强、弱势粒的平均灌浆速率提高,且不同粒位籽粒灌浆速率差异减小,最终使不同粒位籽粒大小的差异缩小和粒重增加。最大灌浆速率、平均灌浆速率和灌浆高峰期的粒重与千粒重存在显著正相关。  相似文献   
66.
针对水稻病虫害防治中长期存在控害保产与生产无公害稻米矛盾比较突出的问题,研究提出了几种效果显著的非化学控害增产技术。其中,利用水稻遗传背景、对病虫抗感水平等差异显著的水稻品种多样性种植,控制稻瘟病的效果达42.12%~76.68%,抑制白背飞虱若虫数量增长效果明显,增产糯稻或优质稻600~1050 kg/hm2,平均增收约1 500元/hm2;稻鱼共育控制稻飞虱的效果为63.77%~86.89%,对纹枯病病株抑制率70.52%,控制稻田杂草效果为89.57%,平收获鲜鱼319.5~1 177.5 kg/hm2,水稻产量比对照区增产7.05%~10.11%;稻鸭共育控制稻飞虱效果63.73%~77.18%,控制稻螟效果30.11%,控制纹枯病效果19.33%~67.03%,对稻田杂草控制效果91.96%,减少施肥30.6%、农药59.3%,减少投入1 987.05元/hm2。  相似文献   
67.
检疫害虫稻水象甲的控制技术研究进展   总被引:5,自引:0,他引:5  
稻水象甲(Lissorhoptrus。oryzophilus Kuschel)是一种毁灭性的水稻害虫,也是一种重要的检疫害虫。近年来在很多省市发生为害,且发生程度不断加重并呈扩大蔓延趋势。本文概述了近年来稻水象甲大发生危害的情况及原因,深入分析了其发生规律,提出了加强植物检疫、农业防治、化学防治、生物防治、物理防治等综合治理的措施。  相似文献   
68.
Three field experiments were carried out in organically grown winter wheat in Denmark. The treatments were sowing time (normal or late sowing) and false seedbed, row width (12 and 24 cm) and weed control method [untreated; mechanical weed control (weed harrowing at 12 cm supplemented with inter‐row hoeing at 24 cm); and herbicide weed control]. Weed biomass in midsummer was greatest on plots sown at the normal sowing time (compared with delayed sowing) and was reduced by mechanical or chemical weed control (compared with untreated plots). Row width alone had no influence on weed biomass, but in the experiment with high weed pressure, the more intensive mechanical weed control used at a row width of 24 cm reduced weed biomass. Normal sowing time tended to give higher yields, but this was only statistically significant in one of the three experiments. Wide rows gave a yield decrease in the experiment with low weed pressure. The effect of weed control on yield was dependent on the weed pressure. At low weed pressure, mechanical weed control caused a yield decrease compared with untreated or herbicide treated. At intermediate weed levels there were no differences, whereas at high weed pressure, mechanical weed control and herbicide treatment caused a yield increase compared with untreated. False seedbeds were shown to contribute to a decrease in the soil seed reserve.  相似文献   
69.
Leptochloa chinensis is a new weed that has been found with increasing frequency in Italian rice paddies. The germination ecology of L. chinensis seeds was studied in order to investigate the development mechanisms and survival strategy of this weed in rice paddies of northern Italy. Leptochloa chinensis seeds showed no dormancy and exhibited germination even in anoxic conditions. Germination was strongly influenced by temperature (minimum around 15°C; optimal 25–35°C) and light (phytochrome dependent). Temperature fluctuation caused an increase of seed germination in the dark. Seed burial also strongly inhibited germination and emergence of this species. At 5 cm seed burial only 5% of seedlings emerged in flooded conditions, while at the same depth, but with no flooding, no seedling emergence was observed. This phenomenon was not due to oxygen depletion, as germination was not inhibited by complete anoxia, as demonstrated by the fact that some seedlings did emerge in flooding conditions when water was no deeper than 6 cm. Seed burial and concomitant flooding induced an unusual germination: first coleoptile emergence and subsequently emergence of the radicle was observed. The possible exploitation of this knowledge for weed management is discussed.  相似文献   
70.
A hydrophilic form of acetylcholinesterase (AChE) was purified from N-methyl carbamate susceptible (SA) and highly N-methyl carbamate-resistant (N3D) strains of the green rice leafhopper (GRLH), Nephotettix cincticeps Uhler. Both of purified AChE from SA and N3D strains displayed the highest activities toward acetylthiocholine (ATCh) at pH 8.5. In the SA strain, the optimum concentrations for ATCh, propionylthiocholine (PTCh), and butyrylthiocholine (BTCh) were about 1 × 10−3, 2.5 × 10−3, and 1 × 10−3 M, respectively. However, in the N3D strain, substrate inhibition was not identified for ATCh, PTCh, and BTCh to 1 × 10−2 M. The Km value in the SA strain was 51.1, 39.1, and 41.6 μM and that in the N3D strain was 91.8, 88.1, and 85.2 μM for ATCh, PTCh, and BTCh, respectively. The Km value in the N3D strain indicated about 1.80-, 2.25-, and 2.05-fold lower affinity than that of the SA strain for ATCh, PTCh, and BTCh, respectively. The Vmax value in the SA strain was 70.2, 30.5, and 4.6 U/mg protein and that in the N3D strain was 123.0, 27.0, and 14.5 U/mg protein for ATCh, PTCh, and BTCh, respectively. The Vmax value in the N3D strain was 1.75- and 3.15-fold higher for ATCh and BTCh than that in the N3D strain. However, it was 1.13-fold lower for PTCh. The increased activity of AChE in the N3D strain is due to the qualitatively modified enzyme with a higher catalytic efficiency. The bimolecular rate constant (ki) for propoxur was 27.1 × 104 and 0.51 × 104 M−1 min−1 in the SA and N3D strain and that for monocrotophos was 0.031 × 104 and 2.0 × 104 M−1 min−1 in the SA and N3D strain. AChE from the N3D strain was 53-fold less sensitive than SA strain to inhibition by propoxur. In contrast, AChE from the N3D strain was 65-fold more sensitive to inhibition by monocrotophos than AChE from the SA strain. This indicated negatively correlated cross-insensitivity of AChE to propoxur and monocrotophos.  相似文献   
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