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1.
茶园间作芳香植物罗勒和紫苏对茶园生态系统影响的研究 总被引:4,自引:0,他引:4
通过茶园间作芳香植物研究其对茶园害虫和天敌种群数量、土壤养分状况、茶树生长及茶叶生化成分等的影响,分析间作芳香植物对幼龄茶园的生态综合调控效果。幼龄茶园间种芳香植物能减少小贯小绿叶蝉和绿盲蝽的数量,增加茶园中瓢虫、草蛉、寄生蜂和蜘蛛等天敌的数量;芳香植物间作区土壤中铵态氮、有效磷和速效钾的含量高于绿肥间作区和对照;茶园间作芳香植物能在一定程度上促进茶树生长、培养幼龄茶园的树势和树冠、增加茶叶产量。茶园间作芳香植物能减少茶叶中茶多酚和咖啡碱含量,提高可溶性糖和儿茶素含量,改善茶叶品质。可见茶园间作芳香植物是一种具有较好生态效益的茶园栽培管理模式,能促进生态茶园的发展。 相似文献
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采用 SPME/GC-MS法对4个龙眼品种果实香气成分进行了分析鉴定。结果表明,4个龙眼品种共检测出44种芳香物质,其中烷类11种,烯类18种,酯类10种,醇类3种,酮类1种,炔类1种,它们构成4种龙眼主要的香气成分。4个龙眼品种在香气组成和含量上有所差异,储良、东良、东丰、石硖中分别含有25种、24种、26种、21 种香气成分。其中,4种龙眼共有的香气成分有7种:分别是十七烷、罗勒烯(顺式)、罗勒烯(反式)、别罗勒烯、1,3,8-对-薄荷三烯、α-石竹烯、(E)-β-金合欢烯,但其相对含量都有所差异;此外,各品种也具有自己独特的香气成分,如储良特有的香气成分有9种:包括十六烷、2-甲基-4-亚甲基-5 -(2,2-二甲基环丙基)-1-戊烯、5-环丙基戊酸乙酯、二十酸乙酯、棕榈酸乙酯、9-十六碳烯酸乙酯、香叶基芳樟醇、芳樟醇、2,7-二甲基-3-辛烯-5-炔;东丰特有的3种:包括1-碘十一烷、反式,反式-法尼基酸甲酯、2-羟基十二烷酸甲酯;石硖特有的4种:包括十一烷、(-)-异丁香烯、1,3,3-三甲基-2-乙基环己烯、喇叭茶醇;东良没有特有的香气成分。 相似文献
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Relevance of Osmotic and Frost Protecting Compounds for the Winter Hardiness of Autumn Sown Sugar Beet 下载免费PDF全文
The cultivation of autumn sown sugar beet (winter beet) is supposed to result in a marked yield increase compared with spring sown sugar beet. Although the importance of the growth stage reached before winter for the survival of autumn sown sugar beet has already been shown, it is not clear to which extent osmotic and potentially frost protecting compounds may contribute to winter hardiness. The study thus aimed to analyse the acclimatization process of sugar beet to low temperatures and to identify compounds which are important for survival of frost. Field trials with autumn sown sugar beet were conducted at eleven environments in Germany from 2009/10 to 2012/13, which were accompanied by greenhouse experiments with controlled temperature regimes. In the field trials, the survival rates after winter varied from 0 % to 99 %, but only in four environments differences between the five genotypes occurred. During acclimatization, betaine, glutamine, proline and raffinose were markedly accumulated and osmolality was enhanced. In particular betaine, amino acids and osmolality showed a positive correlation to the survival rate and were thus identified as potentially frost protecting substances for sugar beet. In contrast, raffinose and proline seem to act rather as stress indicators as they were negatively related to survival. Possible frost protecting substances were identified which can be used in breeding to improve the winter hardiness of sugar beet. 相似文献
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Microbial extracellular polymeric substances (EPS) have been shown to alter soil moisture retention and to improve seedling survival and plant growth at the bulk scale. The mechanisms of EPS-mediated water retention include reversible swelling of the cross-linked polymer matrix and the promotion of an aggregated soil structure. However, the effects of EPS on water retention have never been directly observed at the pore scale. Here, emulated soil micromodels were developed to directly observe the effects of physical, chemical, and biological factors on pore-scale water retention. In this demonstration, a pseudo-2D pore structure was created to represent physical features of a fine sandy loam. Replicate micromodels were initially saturated with suspensions of different soil bacteria, and pore-scale air infiltration was directly imaged over time. External evaporativity was held constant through the use of a custom constant-humidity environmental chamber. Micromodels filled with suspensions of highly mucoid Sinorhizobium meliloti retained moisture about twice as long as physically identical micromodels filled with suspensions of non-mucoid S. meliloti. Relative drying rates in six replicate experiments ranged from 1.1 to 2.5 times slower for mucoid suspensions. Patterns of air infiltration were similar but not identical across replicates. The results suggest that pore fluid EPS and micromodel geometry act together to limit evaporation at pore throats. Advantages of the micromodel approach include direct observation of pore-scale dynamic process, and the ability to systematically replicate complex physical structures. These abilities will enable users to screen benefits from different structures and from microbial compositions, and build predictive understanding of the overall function of microbe-habitat systems. 相似文献
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本研究以甘草无菌苗为试验材料,采用植物组织培养的方法,分析50 mmol·L-1 NaHCO3 胁迫下外源海藻糖对甘草幼苗生长量、叶绿素含量、渗透调节物质含量、抗氧化保护酶活性和总黄酮含量的影响。结果表明: 50 mmol·L-1 NaHCO3 胁迫显著降低了甘草幼苗的生长量、叶绿体色素含量、K+ 浓度、抗氧化保护酶(SOD、POD、CAT)活性和总黄酮含量,显著提高了丙二醛、脯氨酸和可溶性糖含量以及Na+浓度;施加15 mmol·L-1 海藻糖可显著提高甘草幼苗的生长量,提高叶绿素含量、K+ 浓度和总黄酮含量,降低丙二酸含量、脯氨酸含量、可溶性糖含量和Na+ 浓度,并且提高抗氧化保护酶活性。因此,NaHCO3胁迫下施加外源海藻糖对甘草幼苗生长具有良好的调节作用,可以增强甘草的抗碱能力,促进甘草幼苗生长。本研究为外源海藻糖提高甘草耐碱性和揭示其调控机制提供理论依据。 相似文献
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为探明东北地区常见野生葱属植物耐旱能力,筛选野生葱属植物耐旱种质资源,本研究以野韭(Allium ramosum L.)、山韭(Allium senescens L.)和蒙古韭(Allium mongolicum Regel)3种葱属植物为材料,采用不同浓度的PEG-6000模拟干旱胁迫,分析其种子萌发期渗透调节物质及酶活性的影响,并结合主成分分析和隶属函数分析比较抗旱性。结果表明:干旱胁迫下,3种葱属植物种子萌发期相对电导率显著升高(P<0.05),丙二醛、脯氨酸、可溶性糖、可溶性蛋白含量及超氧化物歧化酶、过氧化氢酶、过氧化物酶、多酚氧化酶活性均呈现先上升后下降的趋势。3种植物相比,山韭相对电导率最低,渗透调节物质积累量最高,酶活性变化明显。主成分分析表明,4种酶活性之间显示出强相关性。隶属函数分析得出3种植物种子的抗旱性由高到低依次为:山韭 > 野韭 > 蒙古韭。 相似文献
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