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111.
腐皮镰孢引起的菜豆根腐病是一种世界性病害,在菜豆生产中危害严重。为对其有效的生物防治,针对菜豆根腐病利用枯草芽孢杆菌进行了拮抗机制及应用的研究。结果表明:YB5能有效抑制菌丝生长、孢子产生和萌发。YB5的无菌滤液对高温敏感。YB5菌液对种子发芽没有抑制作用,且能促进根系的发育。YB5菌液及无菌滤液对菜豆腐皮镰孢根腐病的盆栽均具有较好的防效,YB5菌液防效可达94.6%。 相似文献
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M. Rokebul Anower M. D. Peel I. W. Mott Y. Wu 《Journal of Agronomy and Crop Science》2017,203(6):506-518
We previously reported an alfalfa half‐sib family, HS‐B, with improved salt tolerance, compared to parental plants, P‐B. In this study, we conducted additional experiments to address potential physiological mechanisms that may contribute to salt tolerance in HS‐B. Vegetatively propagated HS‐B and P‐B plants were treated with a nutrient solution (control) or a nutrient solution containing NaCl (EC = 12 dS/m). Shoots and roots were harvested at various time points after treatment for quantification of proline, soluble sugar, and H2O2 using spectrophotometers. Subcellular localization and quantification of Na in roots were conducted using a Na+‐specific dye under a confocal microscope. HS‐B produced 86 and 89% greater shoot and root dry biomass, respectively, compared to parental plants, P‐B, under salinity in the greenhouse. Under saline conditions the HS‐B shoots accumulated 115% and roots 55% more soluble sugars than P‐B counterparts. The non‐saline HS‐B shoots, however, showed 72% less soluble sugars than the non‐saline P‐B plants. Under saline conditions HS‐B accumulated 39% less proline in shoots, while roots accumulated 56% more proline, compared to their P‐B parents. HS‐B plants also showed a greater reduction of stomatal conductance under mild saline stress. HS‐B shoots and roots contained 3–4 times less reactive oxygen species (H2O2) after salt treatment compared to P‐B plants. Sodium localization and distribution analysis using Na+‐specific dye revealed HS‐B plants accumulated 88% and 48% less Na+ in stele and xylem vessels compared to P‐B. The study provides insights into the potential mechanisms that may contribute to salt tolerance in HS‐B: maintaining RWC by accumulating soluble sugars while reducing transpiration, maintaining healthy status by reducing oxidative stresses, and preventing salt toxicity by reducing accumulation of Na+ inside root cells and xylem. 相似文献
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为解决减量施肥造成北方寒地水稻肥料供给不足和产量低的问题,以纳米碳增效剂为材料,采用仪器快速检测和植株常规测定分析方法,研究纳米碳添加的常规施肥和减量施肥模式对水稻产量性状和肥料利用效率的影响。结果表明:与常规施肥(CK)相比,纳米碳添加的常规施肥模式(SM-A)、减施氮肥10%(SM-B)和减施氮肥20%(SM-C)对水稻植株形态特征、光合生理特性、产量性状和肥料利用效率产生显著的影响,其中以SM-B增幅最大,SM-A次之,SM-C最小;SM-A、SM-B和SM-C增加经济效益分别为563.56、1374.20和-1391.08元/hm 2,以SM-B增效值最高。本研究表明,SM-B能改善生育期光合生理特性,提高植株产量和肥料利用效率,是寒地水稻较为理想的减量施肥安全利用模式。 相似文献
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对农林废弃物菠萝皮进行化学改性处理,以去除大气中的TVOC有害气体,减轻大气污染的同时实现废弃物的多次循坏再利用,为吸附剂的研究与空气净化提供借鉴。利用二次正交旋转回归以及单因素实验对皂化改性菠萝皮吸附剂的制备工艺以及吸附条件优化;对渣粒径、温度和加入量进行单因素分析;利用吸附等温、动力模型拟合试验探究机理;通过BET、SEM及FTIR对样品进行表征;采用横向对比试验与其他材料对比吸附效果并探讨吸附剂的重复利用能力。结果表明:无水乙醇与氢氧化钠体积比为1:2.8,浸泡时间为6 h,离心时间为13 min,预测值Ymax=8.2759%;渣粒径60目、温度22℃、加入量3g为最佳单因素条件;吸附过程更符合Freundlich等温模型(R2=0.9926),吸附状态为多分子层多位点吸附;遵循二级动力学模型(R2=0.9757),即以化学吸附为主的物理化学双重吸附过程;比表面积显著增大、孔隙率升高,表面褶皱增多,且酰胺N-H基团、-OH等有效基团参与吸附;横向对比试验证明吸附效果在1%水平上显著优于其他四种吸附材料,即改性菠萝皮>硅藻土>活性炭>竹炭>树脂,且至少可重复利用7次以上。 相似文献
119.
Lihua Ning Guizhen Kan Wenkai Du Shiwei Guo Qing Wang Guozheng Zhang Hao Cheng Deyue Yu 《Breeding Science》2016,66(2):191-203
Tolerance to low-phosphorus soil is a desirable trait in soybean cultivars. Previous quantitative trait locus (QTL) studies for phosphorus-deficiency tolerance were mainly derived from bi-parental segregating populations and few reports from natural population. The objective of this study was to detect QTLs that regulate phosphorus-deficiency tolerance in soybean using association mapping approach. Phosphorus-deficiency tolerance was evaluated according to five traits (plant shoot height, shoot dry weight, phosphorus concentration, phosphorus acquisition efficiency and use efficiency) comprising a conditional phenotype at the seedling stage. Association mapping of the conditional phenotype detected 19 SNPs including 13 SNPs that were significantly associated with the five traits across two years. A novel cluster of SNPs, including three SNPs that consistently showed significant effects over two years, that associated with more than one trait was detected on chromosome 3. All favorable alleles, which were determined based on the mean of conditional phenotypic values of each trait over the two years, could be pyramided into one cultivar through parental cross combination. The best three cross combinations were predicted with the aim of simultaneously improving phosphorus acquisition efficiency and use efficiency. These results will provide a thorough understanding of the genetic basis of phosphorus deficiency tolerance in soybean. 相似文献
120.
Genotypic Variation for Tolerance to Transient Drought During the Reproductive Phase of Brassica rapa 下载免费PDF全文
Y. M. Guo N. C. Turner S. Chen M. N. Nelson K. H. M. Siddique W. A. Cowling 《Journal of Agronomy and Crop Science》2015,201(4):267-279
Brassica rapa L. is a genetically diverse parent species of the allotetraploid species, oilseed rape (B. napus) and a potential source of drought tolerance for B. napus. We examined the effect of a 13‐day drought stress period during the early reproductive phase, relative to a well‐watered (WW) control, on subsequent growth and development in nine accessions of B. rapa and one accession of Brassica juncea selected for their wide morphological and genetic diversity. We measured leaf water potential, stomatal conductance, water use, and leaf and bud temperatures during the stress period and aboveground dry weight of total biomass at maturity. Dry weight of seeds and reproductive tissue were not useful measures of drought tolerance due to self‐incompatibility in B. rapa. The relative total biomass (used as the measure of drought tolerance in this study) of the 10 accessions exposed to drought stress ranged from 47 % to 117 % of the WW treatment and was negatively correlated with leaf‐to‐air and bud‐to‐air temperature difference when averaged across the 13‐day stress period. Two wild‐type (B. rapa ssp. sylvestris) accessions had higher relative total and non‐reproductive biomass at maturity and cooler leaves and buds than other types. We conclude that considerable genotypic variation for drought tolerance exists in B. rapa and cooler leaves and buds during a transient drought stress in the early reproductive phase may be a useful screening tool for drought tolerance. 相似文献