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31.
Powdery scab of potato, once established in a field, is difficult to control because of the longevity of the resting spores (cystosori) of the causal organism, Spongospora subterranea f.sp. subterranea. Host resistance is likely to be the most efficient in a long-term control strategy for preventing build-up of field inoculum and spread of the disease. Resistance screening of potato cultivars is mostly done in laborious field trials where disease development is likely to be unpredictable. A bioassay with potato tissue cultured plantlets and cystosori as inoculum is described and was tested for its potential to screen potato cultivars at an early stage for their relative susceptibility to powdery scab by comparing the lab results with field data. With cystosori inoculum of Swiss origin, the laboratory test showed clear differences between the potato cultivars in the severity of zoosporangial root infection which correlated better with ranked tuber infection data, compared to root galling. There are apparent differences in the relative trends in susceptibility between roots and tubers of five selected cultivars when using naturally infested soil instead of prepared cystosori as inoculum in the lab bioassay. Furthermore, differences in the severity of zoosporangial root infection of two selected cultivars were found when cystosori from different countries where used as inoculum. A possible host genotype × pathogen interaction is discussed. The bioassay has the potential to screen and select for resistant material at an early breeding stage thus making field trials not unnecessary but more economical. It will allow the use of a standard set of pathogen collections and facilitate testing for inoculum virulence in infested soils.  相似文献   
32.
苜蓿根和根颈腐烂病病原及防治研究进展   总被引:8,自引:2,他引:8  
孟嫣  李敏权 《草业科学》2005,22(5):89-92
综述了国内外苜蓿Medicago sativa根和根颈腐烂病的病原研究、品种抗病性鉴定及其防治方法的研究进展,为该病害的进一步研究提供理论依据.  相似文献   
33.
植物化感作用影响因素的再认识   总被引:23,自引:13,他引:23  
黄高宝  柴强  黄鹏 《草业学报》2005,14(2):16-22
土壤养分、酶、微生物、本底特性,根茬还田、水分、植物根系、种植体系和种植模式与化感作用的互作关系,表明这些因子可通过对土壤养分有效性、微生物种群结构、土壤酶活性和化感物质浓度的影响而对化感作用产生直接或间接影响,这些可为通过化感作用途径构建高效农田生态系统提供新的思路.  相似文献   
34.
匍匐翦股颖草坪根系对城市生活污水的净化效应   总被引:3,自引:1,他引:3  
针对匍匐翦股颖草坪根系对生活污水的净化效应进行了初步的探索,结果表明,城市生活污水能显著促进匍匐翦股颖地上部分叶片的生长,其叶片生长量随着其处理的进程而逐渐增加,至第6周时叶片生长量比净水灌溉的对照增加了75.6%;根系生长在污水灌溉与净水灌溉之间未显示出明显的差异;匍匐翦股颖草坪根系对生活污水中总氮(TN)、总磷(TP)、化学耗氧量(CODCr)的去除率分别达到了71.0%、53.1%、82.8%,而无草坪的裸土对TN、TP、CODCr的去除率只有24.6%、13.0%、44.2%.结果显示了匍匐翦股颖草坪根系对生活污水有着较好的净化效果,有望在城市生活污水处理中应用.  相似文献   
35.
在实验室内模拟的盐分条件下,用不同浓度的Na Cl盐溶液对4个紫花苜蓿品种(中苜1号、中苜3号、中草3号和陇东苜蓿)种子萌发期进行盐胁迫处理。结果表明:低浓度(0.2%和0.4%)的盐溶液对苜蓿的发芽率和幼苗苗高抑制作用不显著,对幼根具有一定的刺激作用。0.8%和1.0%的Na Cl溶液处理下发芽率、0.6%的Na Cl溶液处理下的幼苗苗高和幼根生长量可以作为苜蓿种子萌发期耐盐性鉴定指标。对四个紫花苜蓿品种的发芽率、幼苗苗高、幼根生长量、耐盐半致死浓度四个指标进行综合分析,结果表明:中苜1号耐盐性最强,其次是中苜3号和中草3号,陇东苜蓿最弱。  相似文献   
36.
盐胁迫对菘蓝幼苗生长和抗性生理的影响   总被引:2,自引:0,他引:2  
以“定蓝1号”为试验材料,采用不同浓度NaCl溶液(0,30,60,90,120和150 mmol·L-1)对菘蓝幼苗进行处理,胁迫14 d后测定了其生长指标、生物量积累、叶片相对含水量、根系活力、根质膜透性、渗透调节物质含量以及抗氧化酶活性等指标,分析不同程度盐胁迫对菘蓝幼苗生长和抗性生理的影响。结果表明:NaCl胁迫对菘蓝幼苗株高和根长都有抑制作用,对根和叶的物质积累也有显著影响,并随浓度的递增呈降低的趋势;菘蓝幼苗叶片相对含水量和根系活力均随NaCl浓度的增加呈现下降趋势,而根质膜透性、叶片脯氨酸含量则呈升高趋势;丙二醛(MDA)含量、组织自动氧化速率(RAD)、过氧化物酶(POD)活性和超氧化物歧化酶(SOD)活性都随NaCl浓度的增加呈先升高后降低的趋势。但当NaCl浓度低于90 mmol·L-1时,菘蓝幼苗的生长没有受到盐胁迫的明显抑制,根系活力降低不明显,脯氨酸、丙二醛含量和保护酶活性也未显著升高,说明菘蓝幼苗对低浓度盐环境具有一定的耐受性。  相似文献   
37.
The purpose of this study was to investigate the effect of seminal plasma (SP) from bulls of known fertility on bovine endometrial epithelial cells (bEEC) in culture. The bEEC from passage 5, approximately 5.0–13 × 105 cells per flask, were challenged with SP from bulls of high or low fertility (n = 3 and 2, respectively) or PBS (control), at 1% (75 μl) or 4% (300 μl) and were incubated for 72 hr (n = 13 per challenge). Total cell number and viability of bEEC after challenge with 1% SP from either high‐ or low‐fertility bulls (75H or 75L, respectively) did not differ from controls. In contrast, challenge with 4% of SP from high‐ or low‐fertility bulls (300H or 300L) negatively affected bEEC cell number and viability. Challenge with 300 L had a greater adverse effect than 300H. These results suggest that the negative effect of bovine SP on bEEC is both dose‐dependent and fertility‐dependent.  相似文献   
38.
Trace minerals feeding had significant effects on sperm production and fertility with better absorption and proper utilization within the body for optimum reproductive function. Several studies have shown that more influenced trace elements in the diets of animals are copper (Cu) and zinc (Zn). Bucks showing deficiency of this mineral might affect the quality of semen production which in turn would affect the fertility. This experiment was thus designed to test the effects of organic Cu and Zn supplementation on antioxidants enzyme activities and sperm functional attributes in fresh semen of bucks. Forty bucks (n = 40, Aged 5 months) were assigned to ten groups of four animals in each group, supplemented (for a period of 8 months) with different levels of organic Zn: 20 mg (T2), 40 mg (T3) and 60 mg (T4), organic Cu: 12.5 mg (T5), 25 mg (T6), 37.5 mg (T7) and combined organic Zn and Cu: 20 + 12.5 mg (T8), 40 + 25 mg (T9), 60 + 37.5 mg (T10), respectively, per kg dry matter and no additional mineral diet (control; T1). One hundred and sixty semen samples were collected through electro‐ejaculator and analysed for sperm quantity, quality, acrosome intactness and plasma membrane integrity and correlated with the catalase, superoxide dismutase, glutathione peroxidase and glutathione reductase enzyme activities in seminal plasma. The results indicated organic Cu and zinc supplemented bucks produced more sperm cells, had higher sperm concentrations, maintained higher (< .01) sperm livability, plasma membrane and acrosome integrities, more motility and velocity. The increased antioxidant enzyme activities, reduced oxidative stress and lowered lipid peroxidation were positively correlated (< .05) with the sperm functional attributes. In conclusion, organic Cu and Zn supplement to male goats showed protective roles against oxidative damage and maintained better fresh semen characteristics.  相似文献   
39.
Translocations of the short arm of rye (Secale cereale L.) chromosome 1 (1RS) in wheat (Triticum aestivum L. cv. Pavon 76) are known to increase root biomass. Such an increase enhances water and nutrient uptake and may improve grain yield. Two greenhouse experiments and a field experiment were carried out at the University of California, Riverside, in 2012 and 2013 under well‐watered and terminal drought treatments to evaluate phenotypic characters associated with varying dosages of 1RS, including grain yield. The genotypes used were cultivar Pavon 76 (R0), Pavon 76/Pavon1RS.1AL (F1 hybrid) with a single dosage of 1RS (R1A), Pavon 1RS.1AL with two dosages of 1RS (R2A), Pavon 1RS.1DL (R2D) also with two dosages of 1RS and Pavon 1RS.1AL‐1RS.1DL (R4AD) with four dosages of 1RS. There was a significant positive correlation between number of dosages of 1RS and root biomass. However, no correlation was found between root biomass and grain yield per plant. Drought in the field experiment reduced grain yield significantly. Under well‐watered field conditions, grain yield of R2A (215.9 g plant?1) was significantly greater than those of R2D (191.8 g plant?1) and R4AD (161.7 g plant?1). Also, grain yield of R4AD was significantly less than those of F1, Pavon 76 and R2D under well‐watered conditions. Under drought field conditions, no significant differences were found among the genotypes for grain yield was found between F1 (14.7 g plant?1) and R4AD (12.4 g plant?1). Harvest index was significantly greater in well‐watered (44.2 %) than in drought (34.6 %) field conditions. On average, genotypes F1 (42.3 %) and R2A (40.6 %) had higher harvest index than R2D (38.3 %) and R4AD (35.5 %) in the field. Also, Pavon 76 (40.2) and R2D (38.3) had higher harvest index than R4AD. Drought tolerance was lowest for R4AD due to its relatively lower grain yield potential. In general, Pavon 1RS.1AL carrying two dosages of 1RS showed higher grain yield under wet treatments. Pavon 1RS.1AL‐1RS.1DL carrying four dosages of 1RS produced the largest shoot and root biomasses, but the least grain yield.  相似文献   
40.
根腐病是严重威胁三七生产的重要因素之一,常年发病率在5%~20%。其中,由假单胞杆菌(Pseudomon adaceae)引起的细菌性根腐病,因叶片出现缺水萎蔫症状时才能发现,目前尚无有效的预防措施。为探究细菌性根腐病对三七光合生理特性的影响,从而为三七病害生理学研究提供理论基础,本文以2年生三七为材料,设置2个处理[发病植株和健康对照植株(CK)],研究细菌性根腐病对三七形态结构、光合特性和光系统功能的影响。结果表明:1)根腐病导致三七的主根褐变腐烂,须根断损,茎基部腐烂中空,叶片萎蔫,各器官含水量比CK显著降低(P≤0.05);而株高、叶面积和叶片解剖结构(上表皮厚度、下表皮厚度、栅栏组织厚度和海绵组织厚度)在两处理间均无显著差异。2)发病植株叶片叶绿素含量、净光合速率(P_n)、气孔导度(G_s)、水分利用效率(WUE)和表观叶肉导度(AMC)显著低于CK(P≤0.05),且CK叶片胞间CO_2浓度(C_i)与P_n呈反比。3)发病植株叶片的光系统Ⅰ(PSⅠ)反应中心P700最大荧光信号(P_m)根腐病初期暂不受影响,而叶片暗适应下最大量子效率(F_v/F_m)、光系统Ⅱ(PSⅡ)电子传递速率[ETR(Ⅱ)]、PSⅡ实际光化学量子产量[Y(Ⅱ)]、PSⅠ电子传递速率[ETR(Ⅰ)]、PSⅠ周围的环式电子流(CEF)和PSⅠ实际光化学量子产量[Y(Ⅰ)]均显著低于CK(P≤0.05);参与调节性能量耗散的量子产量[Y(NO)]则显著高于CK(P≤0.05);发病植株的快速叶绿素荧光动力学曲线上出现K相,且显著高于CK(P≤0.05)。总的来看,细菌性根腐病对三七发病植株各器官的损伤严重程度为根茎叶,且根腐病导致发病植株叶片叶绿素降解, PSⅡ受到不可逆损伤, PSⅠ的电子传递被抑制,且叶肉细胞CO_2的同化能力降低,根腐病限制三七正常进行光合作用的条件。  相似文献   
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