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21.
以云南、四川主栽的4个葡萄品种为试材,在常规用药方式基础上辅以微生态制剂,测定其对葡萄酸腐病和黑曲霉病防控效果及对果实品质的影响,以期为有效防控葡萄酸腐病和黑曲霉病的发生,解决生产实践中的具体问题提供科学参考依据。结果表明:微生态制剂能提高葡萄果粒大小和百粒质量,同时增加糖酸比。在传统用药基础上使用绿康威,对葡萄酸腐病和黑曲霉病的防效最佳,分别达52.3%和42.4%;在传统用药基础上使用绿地康3号,其防效为31.3%和21.9%,均表现出良好的防效;前期使用化学药剂,后期单独使用微生态制剂对酸腐病的防效不太明显。  相似文献   
22.
电动汽车的推广依赖于整个电动汽车生态系统,只有整个健康的生态系统才能有效促进电动汽车的发展。电动汽车生态系统包括政府的推动、电动汽车用户的意愿、充电运营公司的运营方式、供电公司的运营方式和电动汽车动力电池的回收等,其中各个环节相互影响。从电动汽车的各个生态环节的目前研究现状及对电动汽车发展的影响进行研究,得出电动汽车发展需要注意的几个问题。  相似文献   
23.
以'意大利耐抽薹'生菜(Lactuca sativa L.)为试材,采用水培法,设置不同光质(红蓝光比例为4∶1、1∶2和全红光、全蓝光)和外源锌浓度(0、0.5、1.0 mg·L-1 ZnSO4·7H2O),研究不同光质下外源锌对水培生菜生长和品质特性的调控效应,以期为植物工厂在不同光质下施加外源锌提高蔬菜产量和品质提供参考依据.结果 表明:高比例红光会促进生菜生物量、可溶性糖和还原糖的积累,并降低硝酸盐的含量,其中以红蓝光比例为4∶1的光质处理效果最好;高比例蓝光会促进光合色素和可溶性蛋白质含量的增加,其中以全蓝光处理效果最好,但全蓝光处理会对植株的生长产生抑制作用.从光质与Zn的互作效果看,光质对生菜生长和品质的影响起主导作用,外源Zn起调节作用.综合考虑,红蓝光比例为4∶1光质下根施0.5 mg·L-1 ZnSO4·7H2O处理对生菜的生长发育、产量提高以及品质改善的促进作用最佳.  相似文献   
24.
[目的]由于软枣猕猴桃在初代培养中外植体诱导率极低且快繁效果差,因此进行其组织培养技术体系的研究,以期解决其人工种植的难题.[方法]本研究以软枣猕猴桃展叶为外植体,通过采用不同消毒试剂及消毒处理时间,筛选出最佳的灭菌程序;将不同培养基与不同浓度的KT、2,4-D组合,筛选出最佳的初代培养基配方.[结果]选用展叶为外植体,75%CH3CH2OH处理30 s后以10%NaClO处理20 min,0.1%HgCl2处理15 min后无菌水冲洗3~4次,接至pH=5.8的MS+1 mg·L-1 KT+0.5 mg·L-12,4-D+3%白糖+0.55%琼脂培养基上,置于光照2500 lx、8 h·d-1,26℃下培养8 d后有少部分愈伤组织出现,60 d后平均单芽愈伤组织达0.8 g以上,平均单个愈伤组织长度0.7~1.4 cm,属中块愈伤组织.[结论]以本实验得出的愈伤组织培养方法进行培养,可有效提高诱导率,达到快繁的目的.  相似文献   
25.
研究了11个葡萄品种3年生树在四川乐山地区避雨栽培条件下的花芽分化表现。结果表明,结果母枝的花芽分化率,魏可、维多利亚、黑芭拉多、金手指、金优2号和巨玫瑰6个品种的都高于50%,较易形成花芽;户太8号、巨峰、夏黑的在43%~48%;美人指和红指较难形成花芽。结果母枝不同节位的花芽分化率,多数品种在第3节位≥50%;结果枝上花穗着生节位在第3.8~4.9节,其中双花率以巨玫瑰、巨峰和户太8号较高,分别为83.45%、73.61%和73.06%。以结果母枝的花芽分化率≥50%节位作为冬剪的最低节位,则金优2号、户太8号、巨玫瑰、金手指、维多利亚5个品种在第3~4节,黑芭拉多和巨峰2个品种在第2~3节,魏可在1~2节。夏黑表现花芽分化率较低,为43.33%,可能与夏黑不耐弱光有关,设施栽培时应加强透光性。  相似文献   
26.
为了研究不同小麦品种萌发期的耐盐性,为小麦萌发期耐盐性鉴定提供快速、准确的鉴定方法和理论依据。本研究以40个冬小麦品种为试验材料,通过主成分分析法(PCA)与神经网络自组织映射(SOM)聚类分析法,研究盐胁迫对40个小麦品种萌发期各项形态指标的影响。主成分分析法结果表明,发芽势、发芽率、最长根长、第一片叶长及胚芽鞘长在PCA下载荷量最大;根据SOM聚类分析结果,‘德抗961’等4个小麦品种属于高度耐盐品种,‘济麦22’等14个小麦品种属于耐盐性品种,‘济麦20’等16个品种属于中等耐盐性品种,‘鲁麦21’等6个小麦品种属于盐敏感性品种。发芽势、发芽率、最长根长、第一片叶长、胚芽鞘长能够作为萌发期小麦耐盐性筛选的主要评价指标,并且结合主成分、SOM聚类分析方法进行小麦萌发期耐盐性鉴定更为科学、方便。  相似文献   
27.
The objective of this study was to investigate the characteristics of ruminal microbial communities of alpacas (Lama pacos) and sheep (Ovis aries) fed three diets with varying ratios of roughage (corn stalk) to concentrate, 3:7 (LS), 5:5 (MS) and 7:3 (HS). Six alpacas (one-year-old and weighing 29.5 ± 7.1 kg) and six sheep (one-year-old and weighing 27.9 ± 2.7 kg) were used in this study, in a replicated 3 × 3 Latin square experiment. Total protozoa concentration was determined under the microscope; total fungi and methanogens were assessed using quantitative polymerase chain reaction and expressed as a percentage of total bacterial 16S rRNA gene copies; bacterial communities were investigated by targeted 16S rRNA gene (V3–V4 region) sequencing. The percentage of fungi was significantly higher in alpacas than in sheep under the LS diet, while the concentration of protozoa was significantly lower in alpacas under HS, MS and LS diets. The alpha diversity including Shannon, Chao l and ACE indices of bacterial communities was higher in alpacas than in sheep, under the LS diet. A total of 299 genera belonging to 22 phyla were observed in the forestomach of alpaca and sheep, with Bacteroidetes and Firmicutes dominating both animal species. Phyla Armatimonadetes and Fusobacteria, as well as 64 genera, were detected only in alpacas, whereas phyla Acidobacteria and Nitrospira, as well as 44 genera, were found only in sheep. The abundance of cellulolytic bacteria, including Butyrivibrio and Pseudobutyrivibrio, was higher in alpacas than in sheep under all three diets. These differences in the forestomach microbial communities partly explained why alpacas displayed a higher poor-quality roughage digestibility, and a lower methane production. Results also revealed that the adverse effects of high-concentrate diets (70%) were lesser in alpacas than in sheep.  相似文献   
28.
[Objective] The aim of this study is to evaluate nitrogen efficient cotton germplasms and improve nitrogen use efficiency. [Method] Eighty cotton germplasms were selected and evaluated in the hydroponic experiment under low (0.25 mmol·L-1) and high (5 mmol·L-1) nitrogen concentration. Different traits for screening were identified and nitrogen use efficiency types were classified. Field experiments were also performed for comparison and confirmation of the identified germplasms. [Result] The results showed that there were significant differences in the total plant dry matter, shoot nitrogen accumulation and nitrogen absorption efficiency in cotton germplasms at the two nitrogen levels. Based on coefficient of variation, principal component analysis and correlation, six traits including total plant dry matter, shoot dry matter, root dry matter, total nitrogen accumulation, shoot nitrogen accumulation and nitrogen absorption efficiency were used as screening indicators. According to the Heatmap clustering analysis and the nitrogen efficiency comprehensive index, two germplasms (Lu05R59 and CCRI 69) were identified as low nitrogen tolerant and nitrogen efficient, and two germplasms (Coker 201 and Xinluzhong 30) as low nitrogen sensitive and nitrogen inefficient. The results of field experiment were consistent with the results of the hydroponic culture at the seedling stage. [Conclusion] It was finally determined that Lu05R59 and CCRI 69 were the low nitrogen tolerant and nitrogen efficient germplasms, and Coker 201 and Xinluzhong 30 were low nitrogen sensitive and nitrogen inefficient germplasms. The results of these studies provide the possibility for screening and rapid identification of nitrogen use efficiency in cotton at the seedling stage, and provide the ideal materials and theoretical basis for further study of cotton nitrogen efficient.  相似文献   
29.
The species Pseudogymnoascus is known as a psychrophilic pathogenic fungus with a ubiquitous distribution in Antarctica. Meanwhile, the study of its secondary metabolites is infrequent. Systematic research of the metabolites of the fungus Pseudogymnoascus sp. HSX2#-11, guided by the method of molecular networking, led to the isolation of one novel polyketide, pseudophenone A (1), along with six known analogs (2–7). The structure of the new compound was elucidated by extensive spectroscopic investigation and single-crystal X-ray diffraction. Pseudophenone A (1) is a dimer of diphenyl ketone and diphenyl ether, and there is only one analog of 1 to the best of our knowledge. Compounds 1 and 2 exhibited antibacterial activities against a panel of strains. This is the first time to use molecular networking to study the metabolic profiles of Antarctica fungi.  相似文献   
30.
The prognosis of liver cancer was inferior among tumors. New medicine treatments are urgently needed. In this study, a novel exopolysaccharide EPS364 was purified from Vibrio alginolyticus 364, which was isolated from a deep-sea cold seep of the South China Sea. Further research showed that EPS364 consisted of mannose, glucosamine, gluconic acid, galactosamine and arabinose with a molar ratio of 5:9:3.4:0.5:0.8. The relative molecular weight of EPS364 was 14.8 kDa. Our results further revealed that EPS364 was a β-linked and phosphorylated polysaccharide. Notably, EPS364 exhibited a significant antitumor activity, with inducing apoptosis, dissipation of the mitochondrial membrane potential (MMP) and generation of reactive oxygen species (ROS) in Huh7.5 liver cancer cells. Proteomic and quantitative real-time PCR analyses indicated that EPS364 inhibited cancer cell growth and adhesion via targeting the FGF19-FGFR4 signaling pathway. These findings suggest that EPS364 is a promising antitumor agent for pharmacotherapy.  相似文献   
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