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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   
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Waterlogging is a main factor causing rapeseed (Brassica napus L.) yield loss, and reasonable nitrogen (N) applications can compensate for this loss. To investigate the effects of N rates on seed yield of waterlogged rapeseed, the waterlogging-tolerant rapeseed variety ZS 9 and sensitive variety GH01 were waterlogged for 0 and 10 days with five leaves at the seedling stage under four N rates (0, 90, 180 and 270 kg/ha). Waterlogging significantly decreased seed yield, while N application can alleviate the yield loss. The yield decrease rate of waterlogged GH01 was greater than that of ZS 9 under the same N rate. During the seedling and bolting stage, the leaf photosynthetic rate (Pn) and ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) activity increased, while activities of adenosine diphosphate glucose pyrophosphorylase (AGPase), sucrose synthase (SuSy) and sucrose phosphate synthase (SPS) decreased with more N under the same watering conditions. Compared to the plants without waterlogging, the leaf Pn and Rubisco activity, starch and sucrose contents of waterlogged rapeseed decreased at the two stages; activities of AGPase, SuSy and SPS of waterlogged rapeseed decreased at the seedling while increased at the bolting stage for both the two varieties. At the flowering stage, the Pn, the activities of Rubisco, AGPase, SuSy, SPS and contents of sucrose, starch increased with more N application for both ZS 9 and GH01. Compared to the plants without waterlogging, the Pn and Rubisco activity for waterlogged plants of the two varieties increased; the waterlogged plants of tolerant variety had higher activities of AGPase, SuSy and SPS, while those of sensitive variety was significantly lower. However, the decreased starch and sucrose content were found in both tolerant and sensitive varieties. The activities of AGPase, SuSy and SPS at flowering were highly positively correlated with yield under the interactive effects of N and waterlogging. These results suggested that the flowering stage is the most important stage that N had the positive regulation on waterlogged rapeseed growth. The carbohydrates translocation from leaves to seeds of the tolerant variety were enhanced after waterlogging, while that of the sensitive variety was still inhibited. This was the main reason for the difference in yield between the two waterlogged varieties.  相似文献   
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全面客观评价生态资源承载能力,进而为区域可持续发展提供理论依据。以甘肃省迭部县为例,首先,采用压力-状态-响应(P-S-R)模型构建生态承载力评估指标体系,运用层次分析法(Analytic Hierarchy Process,AHP)确定各指标权重,评估生态环境承载力现状;其次,在生态功能区层面对迭部县水源涵养功能及生物多样性功能进行评价;最后,对生态承载力状况进行成因解析。研究结果表明:(1)迭部县整体生态承载力得分为0.239,处于“较强”承载力状态,构成整体生态承载力的生态弹性力、资源和环境承载力和人类社会影响力得分分别为0.222、0.062和0.063。(2)2016年,迭部县单位面积水源涵养量为111.76 mm,水源涵养功能处于“高”状态,其中,水源涵养功能较高地区主要集中在以草地和针阔混交林为主的区域。(3)自然栖息地面积占迭部县总面积的83.67%,其自然栖息质量指数(Natural Habitant Quality Index,NHQI)处于“高”状态。(4)从自然和经济2个因素进行分析,发现迭部县生态环境条件较好,但林草地面积已呈现出逐渐减少状态,因此需要通过合理科学的开发引导,发展文化旅游事业,推动迭部县的可持续发展。  相似文献   
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朱自果  阴启忠  张庆田  韩真  张倩  李勃 《园艺学报》2020,47(12):2290-2300
以欧洲葡萄‘粉红亚都蜜’(Vitis vinifera‘Yatomo Rose’)为材料,利用荧光定量PCR技术和转基因技术研究葡萄NAC转录因子DRL1基因对逆境的响应。欧洲葡萄‘粉红亚都蜜’在激素和逆境胁迫下,DRL1表达呈下降趋势,其中以ABA和干旱胁迫处理最为显著。在ABA处理下DRL1转基因烟草株系种子萌发率和根长均高于野生型。干旱处理下,转基因植株对干旱的耐受性降低,同时胁迫相关基因NtLEA5、NtP5CR1、NtPSCS1、NtERD10C和NtDREB3的表达水平比野生型显著下降。此外,DRL1转基因烟草茎中柱发育受到抑制,尤其是导管横切面积仅为野生型的58%。以上结果表明,DRL1基因可能作为1个负向调节子参与植物的干旱胁迫。  相似文献   
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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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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 (< .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 (= .039 and = .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 (< .05) and genus Gliocephalotrichum (< .05) dominated in natural peat soil. Functionally, pathotrophs were more abundant in disturbed peat soil (< .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   
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为探究体细胞克隆荷斯坦奶牛出生后死亡的原因,对新生后死亡的克隆荷斯坦公牛和自然繁殖的荷斯坦公犊的主要组织器官进行比较。通过解剖和石蜡切片-HE(hematoxylin-eosin staining)染色技术,对主要的组织器官结构进行观察和分析。结果表明,新生后死亡的克隆荷斯坦公牛肺部结构清晰;肝脏的肝细胞明显肿大,出现脂肪轻度变性;肾小管上皮细胞出现变性;心肌的肌纤维间空隙增大;骨骼肌纤维间隙明显,空泡变性,这可能导致该克隆牛犊肌肉无力并功能不全;淋巴结皮髓质界限不分明,淋巴小结细胞较稀疏,生发中心不明显,淋巴窦细胞较少;脾脏内红细胞较少,这说明该克隆牛的造血功能可能不完善;胸腺的皮质部分和髓质部分界限不明显,嗜酸性胸腺小体不易辨认,可能发育不全。该克隆公牛免疫器官出现不同程度的发育不全现象较严重,这有可能是其出生后死亡率高的主要原因。  相似文献   
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捕食线虫性真菌的分离培养及分布规律   总被引:6,自引:1,他引:5  
对自然界中的捕食线虫性真菌进行了分离和种属区分,并对分布规律进行了研究。从土壤、粪便等材料中获得了2类活性较强的捕食线虫性菌株:即套捕型(hooping)捕食线虫性真菌和粘捕型(sticking)捕食线虫性真菌。主要的代表种类有3种。这些捕食线虫性真菌在捕食性结构分生孢子形态及某些生物学特性上有一定差异。套捕型捕食线虫性真菌代表种为少孢节丛孢菌(Arthrobotrys oligospara)和梨形指环菌(Dactylaria pyriformis),它们以菌环、菌网作为捕食性结构(器官),以套捕方式杀灭线虫幼虫。梨形指环菌可产生多量厚垣孢子(chlamyalospore)。粘捕型捕食线虫性真菌代表种为纺锤隔指孢菌(Dactylella ellipsospora)。可形成菌结捕食线虫性结构,以粘捕的方式杀灭线虫幼虫。结果表明:捕食线虫性真菌在土壤和家畜粪便中的分离率是40.41%;此类菌适合于生存在阴暗、潮湿、富含腐植质的环境中。在温暖季节时,采用0.4g/L玉米粉琼脂培养基(CMA)易于对其进行分离培养。  相似文献   
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