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951.
Zhuwu Jiang Longbin Yang Hai Yu Lian Hou Jyunhong Shen 《Journal of applied microbiology》2022,132(5):4007-4017
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Toshihiko Nogawa Yushi Futamura Akiko Okano Mari Suto Junya Nakamura Katsuyuki Ishihara 《Bioscience, biotechnology, and biochemistry》2019,83(1):65-75
A potato fraction library was constructed to investigate functional secondary metabolites from 8 cultivars: Kitahime, Pilka, Sakurafubuki, Atlantic, Toyoshiro, Snowden, Kitamurasaki, and Northern Ruby, which were divided into flower, leaf, stem, roots, tuber peel, and tuber. Each fraction was a semi-purified extract and about 800 fractions were prepared for the library. They were analyzed by DAD-LC/MS to obtain structural information and were evaluated for various biological activities. LC/MS data showed that each part had a specific characteristic for their constituents supported by principal component analysis (PCA). Approximately 40% of fractions showed significant biological activities at 30 μg/mL, especially the flower fractions showed strong cytotoxicity. PCAs based on the activity and LC/MS data suggested that the strong cytotoxicity of flowers was derived from a complex mixture of potato glycoalkaloids. In addition, tuber peel fractions showed strong antimalarial activity, which had not been reported before. Also, some fractions showed significant antibacterial activities. 相似文献
955.
磷(P)是地球生态系统中重要的生命元素。全球变化背景下, 科学地探究森林土壤磷储量现状及其影响因子, 对陆地生态系统的稳定以及磷的可持续利用具有重要意义。因此, 该研究利用青海省240个森林标准样地土壤实测数据, 并结合青海省森林资源清查资料估算出了青海省森林土壤磷储量, 揭示了其分布格局, 并讨论了土壤磷储量与环境因子的关系。结果表明: (1)青海省森林土壤磷储量为1.74 Tg, 全省1 m深土壤平均磷密度为4.65 Mg·hm -2, 土壤磷密度总体上呈地带性分布。(2)土壤磷密度在中低海拔(2 200-3 000 m)区域随海拔的升高显著减小, 在高海拔(3 300-3 900 m)区域随海拔高度的增加而显著变大。山地灰褐色森林土的磷密度最大且显著大于山地棕色暗针叶林土和山地暗褐土。(3)土壤磷含量随海拔升高显著减小, 山地棕色暗针叶林土各土层磷含量相对较大, 山地暗褐土的磷含量最小, 且土壤磷含量随着土层的加深而减小。(4)海拔、温度、土壤类型以及土壤含水量均对土壤磷含量有直接影响, 且影响较大, 其中海拔和温度是影响土壤磷含量变化的关键因子; 土壤磷密度对土壤容重、土壤磷含量、土壤含水量、海拔、土壤类型的变化响应较为明显, 而土壤容重可能是限制土壤磷密度变化的主导因素。 相似文献
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Bidhan Bhuson Roy Rubel Biswas Chowdhury Amit Robert Baroi Shupa Rahman Stephen M. Powers Nick Milne Mohammad Sujauddin 《Journal of Industrial Ecology》2019,23(6):1439-1455
Phosphorus (P) is central to food production. Current understanding about the global phosphorus system is dominated by studies in wealthier nations where soil fertility, fertilizer supply chains, and agronomic tracking have long been established. In contrast, developing nations are experiencing major agricultural transitions and the associated phosphorus flows remain a significant knowledge gap. We compiled and analyzed several years of recent agricultural datasets for Bangladesh, currently the eighth most populous nation, using substance flow analysis for phosphorus. From 2000 to 2016, rice production increased by >50% and remained the dominant crop with remarkably higher phosphorus flow (49.96 kt in 2016) than all other crops. Phosphorus content of livestock products in 2016 exceeded 6.00 kt, more than double in the year 2000, driven primarily by phosphorus in milk and secondarily in meat/eggs. These agricultural changes coincided with a doubling of national phosphorus fertilizer consumption since 2000, a fourfold increase since the global food crisis (2009), and a pronounced rise in the phosphorus import dependency ratio, which was the highest among all countries compared. In turn, during 2010s fertilizer phosphorus use exceeded phosphorus as food + feed production leading to soil phosphorus accumulation, and loss as burned manure became one of the largest phosphorus flows in the entire system, equivalent to half of fertilizer use. This dramatic reconfiguration of the Bangladesh phosphorus system illustrates an important case of agricultural expansion and intensification that is still playing out, with similar situations occurring in developing nations where population growth rates are high, and access to commercial fertilizers has risen. 相似文献
958.
Parasitic and infectious diseases (PIDs) are a significant threat to human, livestock, and wildlife health and are changing
dramatically in the face of human-induced environmental changes such as those in climate and land use. In this article we
explore the little-studied but potentially important response of PIDs to another major environmental change, that in the global
nutrient cycles. Humans have now altered the nitrogen (N) cycle to an astonishing degree, and those changes are causing a
remarkable diversity of environmental and ecological responses. Since most PIDs are strongly regulated by ecological interactions,
changes in nutrients are likely to affect their dynamics in a diversity of environments. We show that while direct tests of
the links between nutrients and disease are rare, there is mounting evidence that higher nutrient levels frequently lead to
an increased risk of disease. This trend occurs across multiple pathogen types, including helminths, insect-vectored diseases,
myxozoa, and bacterial and fungal diseases. The mechanistic responses to increased nutrients are often complex and frequently
involve indirect responses that are regulated by intermediate or vector hosts involved in disease transmission. We also show
that rapid changes in the N cycle of tropical regions combined with the high diversity of human PIDs in these regions will
markedly increase the potential for N to alter the dynamics of disease. Finally, we stress that progress on understanding
the effects of nutrients on disease ecology requires a sustained effort to conduct manipulative experiments that can reveal
underlying mechanisms on a species-specific basis. 相似文献
959.
目的:观察通心络胶囊对急性心肌梗死(AMI)未接受经皮冠状动脉介入治疗(PCI)或溶栓治疗后患者的疗效。方法:对我院收治的ST段抬高未实施PCI或溶栓治疗的AMI患者,随机分为常规药物治疗作为对照组(20例)和同时加服用通心络胶囊的治疗组(20例)。于发病后一月内观察再发心绞痛、急性心血管事件、左室射血分数(LVEF)改变。结果:通心络组心功能改善较对照组明显,通心络组再发心绞痛及急性心血管事件较对照组明显减少。结论:通心络对急性心肌梗死保守治疗患者不仅减少心绞痛发作及急性心血管事件的发生而且可改善心功能。 相似文献
960.
In the Jasper Ridge Global Change Experiment – an annual grassland with elevated carbon dioxide (CO2 ), nitrate deposition, temperature, and precipitation – we used six indices of phosphorus (P) limitation to test the hypothesis that global changes that increase net primary production (NPP) increase P demand or limitation. All indices indicated that nitrate deposition, the only factor that stimulated NPP, increased P demand or limitation: (1) soil phosphatase activity increased by 14%; (2) P concentration in green and (3) senescent leaves of the dominant grass genus, Avena , dropped by 40% and 44%, respectively; (4) N : P ratios in green and (5) senescent Avena widened by 99% and 161%, respectively; and (6) total aboveground plant P decreased by 17% with elevated nitrate deposition. The other three factors, which did not stimulate NPP, did not increase P demand: based on two indices, enhanced precipitation decreased P demand (11% decrease in phosphatase activity, 19% increase in total aboveground P), and there was no evidence that elevated CO2 or temperature altered P demand. In a meta-analysis to assess the generality of P constraints on growth increases from global change factors, we found that six of 11 N-limited ecosystems responded to N deposition with enhanced P limitation or demand, but did not detect significant effects of elevated CO2 or warming. 相似文献