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1.
为了解决马铃薯致病疫霉侵染马铃薯导致其死亡,进而造成马铃薯单位种植产量低的问题。本文从拮抗菌入手,归纳分析细菌类拮抗菌中的主要拮抗菌中芽孢杆菌、假单胞菌和粘细菌对马铃薯致病疫霉的抑制作用。同时,在总结前人研究的基础上,笔者认为在拮抗菌应用方面,可以采用多对一的新型平板对峙筛菌模式来模拟复杂条件下拮抗菌的拮抗作用,以期得到稳定的拮抗菌;并指出应从定植能力和根际微生物影响方面对拮抗菌实际应用的可行性进行研究;此外,提出未来对拮抗菌抑制马铃薯致病疫霉的探究应从表型层面的研究深入到分子层面,以期能成功从源头找寻抑制马铃薯致病疫霉的答案。 相似文献
2.
太原市五种园林地被植物抗旱性评价及抗旱指标筛选 总被引:1,自引:0,他引:1
以5种地被植物为试材,采用盆栽控水模拟干旱胁迫(连续干旱0、5、10、15、20 d),分别测定5种地被植物的叶片相对含水量(RWC)、电导率(REC)、丙二醛(MDA)、可溶性蛋白质含量(SPC),并利用隶属函数分析、相关性分析、主成分分析、聚类分析、逐步回归分析对其抗旱性进行综合评价及抗旱指标筛选,以期为太原市园林地被植物的合理养护和筛选应用提供参考依据.结果表明:干旱条件下,不同生理指标所反映供试植物的抗旱性不同,且部分指标之间呈显著相关.主成分分析将12个单项指标归纳成3个综合因子,分别为伤害程度因子、叶绿素因子、水分状况和光化学效率因子,代表了抗旱性97.422%的数据信息,"金冠"玉簪和德国鸢尾分别在3个主因子上抗旱性最强.通过聚类分析,将5种地被植物分为3类,其中"金冠"玉簪、德国鸢尾和八宝景天归为抗旱型类群.逐步回归分析表明,RWC、离体叶片失水速率(RWL)、SPC和PSⅡ最大光化学效率(Fv/Fm)可作为评价参试地被植物抗旱性的重要指标. 相似文献
3.
4.
岩溶流域典型农业区水体氢氧同位素的空间异质性及形成机制 总被引:1,自引:0,他引:1
分别于平水期和枯水期采集了花溪河流域典型农业区地表水和地下水样品。利用氢氧同位素示踪技术,结合土地利用类型对研究区不同水体的补给来源、季节变化及主要影响过程进行了分析,并对不同水体氢氧同位素值进行了空间插值分析,同时对其形成机制进行了分析,阐明了不同土地利用类型影响下的主要水文过程。结果表明:(1)研究区不同水体的主要补给来源为当地大气降水,月亮湖水库受蒸发作用影响明显,地表水和地下水的δD和δ~(18)O整体上呈现平水期高于枯水期的特征。(2)地下水的δD和δ~(18)O在枯水期与平水期均呈现明显的空间分异性特征,西部水田/水库集中区富集,东部旱地集中区贫化,土地利用对研究区环境水文过程影响明显。该研究结果有助于了解不同土地利用方式下地表水对地下水的影响,为流域管理提供科学依据。 相似文献
5.
[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
6.
Wang Zhun Zhang Hengheng Dong Qiang Gui Huiping Wang Xiangru Pang Nianchang Li Yongnian Niu Jing Jin Dingsha Wang Sujie Zhang Xiling Song Meizhen 《棉花学报》2021,32(6):538-551
[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
7.
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
8.
Bing Liu Muhamed Jamal Hosen Talukder Eeva Terhonen Maija Lampela Harry Vasander Hui Sun Fred Asiegbu 《Soil Use and Management》2020,36(1):123-138
The microbial community structure and function under forest in tropical peatlands are poorly understood. In this study, we investigated the microbial community structure and diversity in natural peat swamp forest soil, disturbed peat soil and mineral soil in Central Kalimantan, Indonesia, using 454 pyrosequencing. The results showed that the natural peat soil had the greatest fungal species richness (Chao1), which was significantly (p < .05) larger than that in the other two soils. Community structure of both fungi and bacteria in natural peat soil differed significantly from that in the disturbed peat soil (p = .039 and p = .045, respectively). Ascomycota (40.5%) was the most abundant phylum across the three soils followed by Basidiomycota (18.8%), Zygomycota (<0.1%) and Glomeromycota (<0.1%). The linear discriminant analysis with effect size (LEfSe) showed that Ascomycota (p < .05) and genus Gliocephalotrichum (p < .05) dominated in natural peat soil. Functionally, pathotrophs were more abundant in disturbed peat soil (p < .05). Proteobacteria (43.8%) were the most abundant phylum followed by Acidobacteria (32.6%), Actinobacteria (9.8%), Planctomycetes (1.7%). Methylocystis, Telmatospirillum, Syntrophobacter, Sorangium and Opitutus were the more abundant genera in disturbed peat soil, whereas Nevskia and Schlesneria were more abundant in mineral soil and natural peat soil, respectively. The natural peat forest soil supported a more diverse microbiology; however, the land use of such a soil can change its microbial community structure. The results provide evidence that the disturbance of tropical peat land could lead to the introduction and spread of a large number of fungal diseases 相似文献
9.
Zidi Jin Long Liu Cheng Xu Chunchi Yan Shuo Li Tuoyu Geng Daoqing Gong 《Animal Science Journal》2021,92(1):e13672
Goose fatty liver is a specific type of nonalcoholic fatty liver that is protected from harmful effects associated with severe steatosis. Our previous findings suggest that suppression of the complement C5 may be relevant, but the mechanism is unclear. Therefore, in this study, we first verified the expression pattern of complement genes (including C5) during goose fatty liver formation and then determined the liver fat content and fatty acid composition by high-performance liquid chromatography (HPLC), followed by selecting the differential metabolites to treat HepG2, goose and mouse primary hepatocytes, aiming to explore the mechanism of C5 and inflammation suppression in goose fatty liver. The data confirmed the suppression of complement genes (including C5) in goose fatty livers. Moreover, fat content was significantly higher in fatty liver versus normal ones, with oleic acid and palmitic acid dominantly accounting for the difference. In line with this, high concentration of palmitate led to down regulation of C5 expression in goose primary hepatocytes whereas upregulation in mouse primary hepatocytes and HepG2 cells. In conclusion, regulation on C5 expression by fatty liver related factors including high level of palmitic acid may contribute to the protection of goose liver from severe hepatic steatosis. 相似文献
10.