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1.
Xenocoumacin1(Xcn1)是嗜线虫致病杆菌产生的一种水溶性小肽类抗菌化合物,对真菌和细菌具有广谱的抑菌活性,在农业病害防治中具有良好的开发和应用前景。本文综述了Xcn1化合物的合成和降解机制、合成调控机制、抗菌作用机制以及防控植物疫病的研究进展,并展望了高产Xcn1生产菌株的改良和产业化应用前景。 相似文献
2.
Tohir A BOZOROV Rustam M USMANOV YANG Honglan Shukhrat A HAMDULLAEV Sardorbek MUSAYEV Jaloliddin SHAVKIEV Saidgani NABIEV ZHANG Daoyuan Alisher A ABDULLAEV 《干旱区科学》2018,10(3):441-456
Drought is a common abiotic stress that considerably limits crop production. The objective of this study is to explore the influence of water deficiency on the yield, physiologic and metabolomic attributes in upland cotton cultivars(Gossypium hirsutum L). Cotton cultivars, 'Ishonch' and 'Tashkent-6' were selected to study the relationships among their physiologic, metabolomic and yield attributes during water deficiency. Deficit irrigation was designed by modifying the traditional watering protocol to reduce water use. Results indicate that cotton cultivars respond differently to water deficit stress. Water deficit significantly influenced plant height, the number of internodes, and sympodial branches in both cultivars. However, yield components such as the number of bolls, boll seed, lint mass, and individual plant yield were significantly reduced only in 'Tashkent-6'. The leaf area decreased and the specific leaf weight increased in 'Ishonch' under deficit irrigation conditions. However, 'Tashkent-6' demonstrated significant water loss compared to 'Ishonch', and both cultivars showed reduced transpiration rates. Untargeted metabolite profiles of leaves showed clear separation in 'Ishonch', but not in 'Tashkent-6' under deficit irrigation compared to full irrigation. The individual metabolites such as proline and galactinol showed strong association with yield under water deficit stress. Moreover, this study indicates that leaf area and transpiration intensity influence yield during water deficiency. In summary, the correlation among morpho-physiologic, metabolic, and yield components significantly varied between the two cultivars under water deficiency. The flowering stage was sensitive to water stress for both cultivars. The direct relationship between physiology, metabolism, and yield may be a useful selection criterion for determining candidate parents for cotton drought tolerance breeding. 相似文献
3.
水稻灌浆期穗颈瘟发生对产量及茎节代谢产物的影响 总被引:1,自引:0,他引:1
【目的】检测自然条件下稻瘟病感病品种茎节的代谢产物,从代谢物角度解析水稻品种感病和产量降低的原因,为粳稻品种感病机理研究和生态防控提供理论依据。【方法】以稻瘟病感病品种辽星1号和粳型恢复系C418为材料,灌浆期调查穗颈瘟发病率,同时采用气相色谱-质谱(GC-MS)非靶向代谢组学方法检测感病茎节和正常茎节的代谢产物,利用主成分分析(PCA)感病茎节与正常茎节之间代谢物组成,利用偏最小二乘法判别分析(PLS-DA)的变量权重值(VIP>1.0)进行两者之间差异代谢产物种类的筛选,比较两者糖类物质和氨基酸类物质的差异,从代谢物角度解析水稻品种产量降低的原因。成熟期进行结实率、千粒重、粒长、糙米率等产量和品质性状测定。【结果】辽星1号和C418穗颈瘟发病率分别为57.23%和82.94%。穗颈瘟显著降低一次枝梗整精米率、二次枝梗的结实率、千粒重、长宽比和整精米率,其他性状无显著差异。辽星1号和C418的茎节GC-MS检测均定性到358种代谢产物,感病茎节上调了73.46%和67.88%的代谢产物。PCA和PLS-DA分析可以将感病茎节和正常茎节的代谢产物清楚分开,辽星1号和C418的感病茎节和正常茎节之间具有明显不同的代谢产物表型,与正常茎节相比,辽星1号感病茎节诱导61种代谢产物相对含量显著变化,C418感病茎节诱导47种代谢产物相对含量显著变化,两个品种共有显著变化的代谢产物30种。其中,次生代谢产物香草酸、α-生育酚、脱氢抗坏血酸、三十烷醇、大豆苷元和N-乙酰-d-甘露糖胺的相对含量显著下调,辽星1号分别下调了87.03%、96.29%、77.95%、74.56%、86.48%和82.68%,C418分别下调了99.92%、99.68%、97.26%、86.67%、94.96%和76.74%。正常茎节中辽星1号这6种次生代谢产物的相对含量分别是C418的2.64、2.39、2.39、2.27、3.09和2.56倍;感病茎节上调了63.33%的糖类物质和68.42%的氨基酸类物质,糖类物质上调了1.02—17.92倍,氨基酸类物质上调了1.05—13.12倍,其中C418糖类物质上调的幅度更大。【结论】穗颈瘟发生显著改变了感病品种辽星1号和C418的茎节代谢产物组成,感病品种可能通过香草酸、α-生育酚、脱氢抗坏血酸、三十烷醇、大豆苷元和N-乙酰-d-甘露糖胺相对含量的变化调控茎节对稻瘟病的防御反应。感病茎节通过积累大量的糖类物质和氨基酸类物质,降低其向籽粒转运,抑制了产量形成。 相似文献
4.
本研究首次建立了一种超高效液相色谱-串联质谱法(UHPLC-MS/MS)同时测定柑橘中草甘膦及其代谢物N-乙酰草甘膦?氨甲基磷酸(AMPA)和N-乙酰AMPA?样品经过0.5%甲酸水提取, 以十八烷基硅烷键合硅胶柱(C18)净化, 利用水和200 mmol/L碳酸氢铵溶液(含0.1%氨水)作为流动相梯度洗脱, 在多反应监测模式下定量分析?结果表明, 草甘膦及其代谢物在0.05~1 mg/kg范围内线性关系良好, 相关系数均大于0.99; 草甘膦及其3个代谢物在柑橘全果和果肉基质中3个加标水平下回收率为 70.5%~109.5%, 相对标准偏差(RSD)为0.6%~10.1%, 定量限为0.05 mg/kg?本方法的前处理样品无需衍生, 简便?快捷?高效?准确可靠, 可用于柑橘中草甘膦及其代谢物N-乙酰草甘膦?AMPA和N-乙酰AMPA的定量检测? 相似文献
5.
建立了动物源食品中酰胺醇类药物(氯霉素CAP、甲砜霉素TAP、氟苯尼考FF)及其代谢物(氟苯尼考胺FFA)残留检测的超高效液相色谱-串联质谱(UPLC-MS/MS)法。样品经氨化乙酸乙酯提取,正已烷脱脂,氨化乙酸乙酯反萃取,电喷雾正/负离子多反应监测(MRM)模式检测。四种药物在0.2~50μg/L的系列浓度范围呈线性相关,样品中CAP的检测限为0.1μg/kg,定量限为0.2μg/kg;TAP、FF、FFA检测限为0.5μg/kg,定量限为1.0μg/kg。在0.2~5μg/kg的添加浓度范围内平均回收均为80%~120%,变异系数均小于15%。结果表明该方法简单快速、灵敏度高、重复性好,适用于动物源食品中酰胺醇类及其代谢物残留检测。 相似文献
6.
7.
Multi-species tree-shrub-grass riparian buffer systems have been recognized as one of the most cost-effective bioremediation
approaches to alleviate nonpoint source agricultural pollution in heavily fertilized systems. However, highly concentrated
herbicides in surface and subsurface water and shade cast by trees along the stream bank usually compromise the effectiveness
of these systems. Greenhouse trials and field lysimeter studies were conducted to evaluate the tolerance of orchard grass
(Dactylis glomerata), smooth bromegrass (Bromus inermis), tall fescue (Festuca arundinacea), timothy (Phleum pratense), and switchgrass (Panicum virgatum) ground covers to atrazine and Balance™ (isoxaflutole) plus their capacity to sequester and degrade these herbicides and
their metabolites. Their ability to remove soil nitrate was also quantified. Concentrations of atrazine, Balance™ and their
metabolites in the leachate, soil and plant samples were determined by solid phase extraction followed by high performance
liquid or gas chromatographic analyses. Distribution of the herbicides and metabolites in the system was calculated using
a mass balance approach. Herbicide bioremediation capacity of each lysimeter treatment was determined by the ratio of metabolites
to parent herbicide plus metabolites. Bioremediation of nitrate was quantified by comparing nitrate reduction rates in grass
treatments to the bare ground control. Based on this herbicide tolerance, bioremediation data and shade tolerance determined
in a previous study, it was established that switch grass, tall fescue and smooth bromegrass are good candidates for incorporation
into tree-shrub-grass riparian buffer systems designed for the bioremediation of atrazine, Balance™ and nitrate. 相似文献
8.
中的鞘氨醇类代谢产物 总被引:2,自引:0,他引:2
从中国香港红树林的两株南海海洋真菌(2526#和1850#)的代谢产物中分离到4个化合物,通过完整的波谱数据分别解析为鞘氨醇类化合物N-(2’,3‘-二羟基二十四碳酰基)-1,3-二羟基-2-氨基十八烷(A)、n-(2’,3‘-二羟基二十六碳酰基)-1,3-二羟基-2-氨基十八烷(B)、2‘-dehydroxycerebroside D(C)和cerebroside D(D)。化合物A和B未见文献报道。 相似文献
9.
10.
暗黑链霉菌PY-1活性产物分析及其对葡萄霜霉病田间防效评价 总被引:2,自引:0,他引:2
为探究暗黑链霉菌Streptomyces atratus PY-1对葡萄霜霉病菌Plasomopara viticola的抑制作用,通过扫描电镜观察PY-1发酵滤液对葡萄霜霉病菌孢子囊的影响,检测PY-1的活性物质种类,并测定其对葡萄霜霉病的田间防效。结果表明,PY-1发酵滤液能够导致葡萄霜霉病菌孢子囊和孢子囊梗出现褶皱、破裂和畸形,进而使其丧失侵染功能。PY-1菌株代谢产物中包含几丁质酶、蛋白酶、嗜铁素、1-氨基环丙烷-1-羧酸脱氨酶、氰化氢、吲哚乙酸,不含纤维素酶。PY-1菌株对葡萄霜霉病具有较好的田间防效,发酵原液对葡萄霜霉病的田间中期防效可达到89.17%以上,末期防效达86.28%以上,比52.5%噁唑菌酮·霜脲氰2 000倍液的防效略低,但显著高于58%甲霜·锰锌1 000倍液的防效;PY-1菌株发酵液稀释700倍后对葡萄霜霉病的末期防效与甲霜锰锌1 000倍液防效相当。表明PY-1菌株具有研制防治葡萄霜霉病生防制剂的潜力。 相似文献