首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   494篇
  免费   37篇
  国内免费   14篇
林业   8篇
农学   70篇
  19篇
综合类   201篇
农作物   78篇
畜牧兽医   6篇
园艺   4篇
植物保护   159篇
  2023年   3篇
  2022年   15篇
  2021年   14篇
  2020年   8篇
  2019年   12篇
  2018年   9篇
  2017年   14篇
  2016年   22篇
  2015年   27篇
  2014年   18篇
  2013年   24篇
  2012年   29篇
  2011年   33篇
  2010年   28篇
  2009年   31篇
  2008年   18篇
  2007年   24篇
  2006年   31篇
  2005年   29篇
  2004年   18篇
  2003年   13篇
  2002年   10篇
  2001年   16篇
  2000年   9篇
  1999年   11篇
  1998年   6篇
  1997年   10篇
  1996年   10篇
  1995年   8篇
  1994年   11篇
  1993年   5篇
  1992年   3篇
  1991年   10篇
  1990年   9篇
  1989年   5篇
  1981年   1篇
  1955年   1篇
排序方式: 共有545条查询结果,搜索用时 93 毫秒
91.
 从油菜植株体内分离出的内生细菌BY-2,经过生物学鉴定为枯草芽孢杆菌(Bacillus subtilis)。用BY-2回接油菜,重新分离到具有BY-2相同形态特征和抑制病原真菌能力的内生菌株。油菜接种后的第10 d,体内的BY-2菌数达(2.24~9.02)×103 cfu/g鲜植株,25 d仍然保持在(3.13~8.59)×103 cfu/g鲜植株。BY-2与油菜核盘菌[Sclerotinia sclerotiorum(Lib.) de Bary]对峙培养可以形成直径为3.1 cm的抑菌圈;可使油菜核盘菌菌丝细胞浓缩变短,细胞壁破裂,原生质外溢,从而抑制真菌生长发育;同时还能抑制菌核的萌发,抑制率达60%~70%;在油菜离体叶片试验中,BY-2对菌核病的防治效果达100%。  相似文献   
92.
核盘菌致病性分化研究   总被引:4,自引:0,他引:4  
为了解核盘菌的致病性分化,本研究用活体定位穿刺接种法,以油菜为供试寄主,对采自四川省10个地区23个县、9种寄主的108个菌株进行了致病性测定,结果表明,所有菌株对供试油菜品种均能致病,但各菌株所致病斑长度差异很大(2.7~82.0 mm),说明核盘菌种群内存在明显的致病性分化,这种分化与地理来源和寄主来源没有明显的关系。  相似文献   
93.
Indoor and field experiments were conducted to evaluate the efficacy of applying the mycoparasite Coniothyrium minitans to the aerial parts of rapeseed plants at the flowering stage to control sclerotinia diseases caused by Sclerotinia sclerotiorum. Under controlled conditions, a petal inoculation technique was used to determine the effect of conidial suspensions of C. minitans on suppression of sclerotinia leaf blight. Results showed that C. minitans was effective in inhibiting infection initiated by ascospores of S. sclerotiorum on flower petals by restricting mycelial growth of the pathogen. Suppression of lesion development was related to the conidial concentration of C. minitans, with larger lesions at low concentration (5×103conidia ml−1), but smaller lesions at high concentration (5×104 conidia ml−1 or higher). When C. minitans-treated rapeseed leaves were inoculated with mycelia of S. sclerotiorum, C. minitans failed to prevent infection of leaves, but caused a significant reduction in number of sclerotia produced on the diseased leaves. No significant difference in efficacy was detected between the two isolates of C. minitans, LRC 2137 and Chy-1, on the two rapeseed cultivars, Westar (spring type) and Zhongyou 821 (winter type). Results of field trials showed a significant reduction of stem rot of rapeseed in four (1997, 1999, 2003 and 2004) out of five years by aerial application of C. minitans, compared with controls. No significant difference in suppressive efficacy was observed between the treatments of C. minitans (106 conidia ml−1), C. minitans (106 conidia ml−1) + benomyl (50 μg ml−1) and benomyl (100 μg ml−1) in 2003, and between the treatments of C. minitans (106 conidia ml−1), C. minitans (106 conidia ml−1) + vinclozolin (100 μg ml−1) and vinclozolin (500 μg ml−1) in 2004. Sclerotia of S. sclerotiorum collected from diseased plants in plots treated with C. minitans in 1999, 2000 and 2003, or with C. minitans + benomyl in 2003 were infected by C. minitans at frequencies ranging from 21.3 to 54.5%. This study concludes that aerial spraying of C. minitans is an effective method for controlling sclerotinia diseases of rapeseed.  相似文献   
94.
Acquired resistance triggered by elicitins in tobacco and other plants   总被引:17,自引:0,他引:17  
Elicitins are a family of proteins excreted byPhytophthora spp. They exhibit high sequence homology but large net charge differences. They induce necrosis in tobacco plants which then become resistant to the tobacco pathogenPhytophthora parasitica var.nicotianae. In stem-treated plants, resistance was not restricted to the site of elicitin application, but could be demonstrated by petiole inoculation at all levels on the stem. Resistance was already maximum after two days and lasted for at least two weeks. It was effective not only towardsP. p. var.nicotianae infection, but also against the unrelated pathogenSclerotinia sclerotiorum. In contrast to dichloroisonicotinic acid, an artificial inducer of systemic acquired resistance, which was increasingly effective with doses ranging from 0.25 to 5mole per plant, the basic elicitin cryptogein exhibited a threshold effect, inducing near total resistance and extensive leaf necrosis above 0.1 nmole per plant. Between 1 and 5 nmole, acidic elicitins (capsicein and parasiticein) protected tobacco plants with hardly any necrotic symptom. Elicitins exhibited similar effects in various tobacco cultivars andNicotiana species, although with quantitative differences, but induced neither necrosis nor protection in other SolanaceÆ (tomato, petunia and pepper). Among 24 additional species tested belonging to 18 botanical families, only some BrassicaceÆ, noticeably rape, exhibited symptoms in response to elicitins, in a cultivar-specific manner. Elicitins appear to be natural specific triggers for systemic acquired resistance and provide a tool for unraveling the mechanisms leading to its establishment.Abbreviations AR acquired resistance - HR hypersensitive response - INA 2,6-dichloroisonicotinic acid - Ppn Phytophthora parasitica var.nicotianae - SAR systemic acquired resistance  相似文献   
95.
农抗2-16防治油菜菌核病效果研究   总被引:3,自引:0,他引:3  
利用农抗2┐16防治油菜菌核病效果良好。在油菜盛花期喷施农抗2┐16水剂100、150倍液,对油菜菌核病防效分别达82.6%和78.1%,其防效高于40%治萎灵可湿性粉剂(900g/hm2)和50%多菌灵可湿性粉剂(3000g/hm2),低于36%粉霉灵悬浮剂(1500ml/hm2)。喷施农抗2┐16,能有效地减轻主茎发病,降低病情指数。  相似文献   
96.
盾壳霉控制油菜菌核病菌再侵染及其叶面存活动态的研究   总被引:16,自引:0,他引:16  
 本文评估了施于油菜(Brassica napus)叶片上的盾壳霉(Coniothyrium minitans)控制油菜菌核病菌再侵染能力,探讨了其作用机理,并测定了盾壳霉分生孢子在油菜叶面上的存活动态。结果如下:叶面上的盾壳霉对油菜菌核病菌的初侵染影响较小,但在高剂量(> 106孢子/ml)时可以控制病斑的扩展。所有供试剂量的盾壳霉均可不同程度地控制再侵染。盾壳霉分生孢子可在叶面病部迅速萌发,48 h和72 h时孢子萌发率分别为51%和95%,而在健康叶面上6 d未能检测到萌发的孢子。自携带盾壳霉的叶面病部不能分离到核盘菌,表明叶面上的盾壳霉已寄生并破坏了核盘菌再侵染菌丝。自油菜叶面上分离到的盾壳霉菌落数随时间延长而降低,但其分生孢子至少可以在叶面上存活28 d。这即表明,在叶面上适时适量地添加盾壳霉可以控制油菜菌核病的为害。  相似文献   
97.
核盘菌对菌核净的抗药性机制初探   总被引:26,自引:10,他引:16  
经药剂筛选获得对菌核净不同表型的核盘菌(Sclerotinia sclerotiorum ) 抗药性突变体。与敏感亲本菌株相比, 抗药突变体MN 61 (MR ) 和MN 91 (HR) 在含1% 和8% 葡萄糖的PDA 上生长受到抑制,MN 113 (LR) 只对1% 葡萄糖敏感。通过测定抗药突变体MN 61 和野生敏感菌株PN 061 的电导率, 发现抗药突变体能在更短的时间里渗出更多的电解质。抗药突变体苯丙氨酸解氨酶活性比敏感亲本菌株高出1 倍以上, 当用不同浓度菌核净处理或饥饿处理时, 抗药突变体和敏感亲本菌株PAL 活性均上升, 但抗药突变体的酶活始终高于敏感亲本菌株。  相似文献   
98.
紫花苜蓿菌核病病原鉴定及其主要生物学特性   总被引:5,自引:2,他引:5  
菌株NJ1分离自苏南丘陵地区苜蓿菌核病株.通过病原菌致病性测定和形态学特征观察,结合病原菌核糖体转录间隔区(ITS)序列分析,将病原菌鉴定为三叶草核盘菌(Sclerotinia trifoliorum).对该病原菌生物学特性研究表明,菌株NJ1菌丝生长最适温度为18~23℃;最适pH值为5~9;病原菌对硫酸铵利用能力强,对L-半胱氨酸利用能力差;对甘露醇和乳糖利用最好,D-果糖和D-木糖利用较差,不能利用柠檬酸.  相似文献   
99.
The effects of different inocula of the mycoparasite Coniothyrium minitans on carpogenic germination of sclerotia of Sclerotinia sclerotiorum at different times of year were assessed. A series of three glasshouse box bioassays was used to compare the effect of five spore-suspension inocula of C. minitans , including three different isolates (Conio, IVT1 and Contans), with a standard maizemeal–perlite inoculum. Apothecial production, as well as viability and C. minitans infection of S. sclerotiorum sclerotia buried in treated soil, were assessed. Maizemeal–perlite inoculum at 107 CFU per cm3 soil reduced sclerotial germination and apothecial production in all three box bioassays, decreasing sclerotial recovery and viability in the second bioassay and increasing C. minitans infection of sclerotia in the first bioassay. Spore-suspension inocula applied at a lower concentration (104 CFU per cm3 soil) were inconsistent in their effects on sclerotial germination in the three box bioassays. Temperature was an important factor influencing apothecial production. Sclerotial germination was delayed or inhibited when bioassays were made in the summer. High temperatures also inhibited infection of sclerotia by C. minitans . Coniothyrium minitans survived these high temperatures, however, and infected the sclerotia once the temperature decreased to a lower level. Inoculum level of C. minitans was an important factor in reducing apothecial production by sclerotia. The effects of temperature on both carpogenic germination of sclerotia and parasitism of sclerotia by C. minitans are discussed.  相似文献   
100.
油菜菌核病菌对多菌灵和乙霉威的抗药性机理   总被引:1,自引:0,他引:1  
生物测定结果表明,油菜菌核病菌田间菌株对多菌灵(MBC)敏感性表型呈多样性,即存在MBCS、MBCLRLR、MBCHRHR和MBCVHR表型.而对乙霉威(DIE)则只检测到DIES和DIEHR表型.MBCS、MBCLR和MBCHR菌株中除JD2-3菌株为DIES外,其余菌株均为DIEHR,MBCVHR菌株对DIE表现为DIES.MBC和DIE之间存在典型的负相关交互抗性.序列分析结果表明,表型为MBCVHRDIES菌株的β-微管蛋白基因,第198位氨基酸由Glu(GAG)突变为Ala(GCG);表型为MBCHRDIEHR菌株的β-微管蛋白基因的突变位点在第200位,由Phe(TTC)突变为Tyr(TAC);而表型为MBCSDIES和MBCLRDIEHR的菌株在所扩增的β-微管蛋白基因片段中未发生突变.初步表明,β-微管蛋白基因198和200位氨基酸的突变是引起油菜菌核病菌对多菌灵抗药性呈多样性的分子机理.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号