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941.
为探究不同滴灌带布设方式对果农间作系统土壤酚酸类物质、酶活性和微生物分布特性影响,初步探明间作滴灌条件下,土壤酚酸类物质与土壤生物因子的相互关系。以晋西黄土区典型的苹果—大豆间作系统为研究对象,设置3种(L1、L2、L3)滴灌带间距,分析不同水分分布下土壤酚酸类物质、酶活性和微生物数量的空间分布变化,并在相关性基础上利用逐步回归模型,分析3个土壤因子之间的相互关系。结果表明:除苯甲酸和间苯三酚外,滴灌带间距对酚酸类物质分布影响显著(p<0.05),除过氧化氢酶外,滴灌带间距对酶活性、微生物数量分布有显著影响(p<0.05)。在垂直方向上,不同滴灌带布设方式使酚酸更多地分布在深层土壤,微生物数量和部分酶活性在L1、L2处理中随土层加深而先减后增;在水平方向上,不同滴灌带布设方式对土壤酚酸类物质、细菌和真菌分布影响与间作对照处理一致,随距树距离增加而增加。滴灌条件下,除对羟基苯甲酸外,酚酸类物质受脲酶、过氧化氢酶和放线菌的抑制作用显著,间作处理土壤酚酸总量较单作有所减少。L1处理土壤酶活性、微生物总量最高,L2处理土壤酚酸类物质累积量最低。其中L2处理在酚酸累积量最低的基础上,... 相似文献
942.
Makoto Kimura Hirokazu Kishi Akiko Okabe Nagamitsu Maie 《Soil Science and Plant Nutrition》2013,59(3):533-545
The microbiota in the percolating water from the plow layer soil in paddy fields was studied based on the composition of phospholipid fatty acids (PLFAs) in a pot experiment. The mean concentrations of PLFAs in the percolating water were 17±5 and 11±4 µg L-1 in the planted and non-planted pots, respectively. The dominant PLFAs in the percolating water were 16: 0, 16: 1ω7c, 18: 1ω7, 18: 1ω9, il5: 0, and ail5: 0 PLFAs in both the planted and non-planted pots. The dominance percentage of 18: 3ω6c and 17: 1ω8 PLFAs increased at the late stage of rice growth in the planted pots. The percolating water from the planted pots contained in a higher percentage of straight mono-unsaturated PLFAs and a lower percentage of branched-chain PLFAs than that from the non-planted pots. Considerable differences in the PLFA composition in the percolating water were observed between the planted and non-planted treatments and with the duration of the growth period. Principal component analysis indicated that the microbiota in the percolating water was derived from the microbiota in the floodwater and in the plow layer soil. Cluster analysis showed that the similarity of the PLFA composition in the percolating water to the PLFA composition in the plow layer soil was higher than that in the floodwater. The stress factor that was estimated from the trans/cis ratio of 16: 1ω7 PLFA was 0.08±0.04 and 0.14±0.05 in the percolating water from the planted and non-planted pots, respectively, which indicated that the degree of stress on the microbiota in the percolating water from the planted pots was low in a similar way to the degree of stress on the microbiota in the floodwater, while the degree in the percolating water from the non-planted pots was similar to that in the plow layer soil, respectively. 相似文献
943.
以没食子酰基为功能基团,以改性纤维素为骨架合成功能高分子材料没食子酰化改性纤维素(没食子酰基-1,6-己二亚胺基-羟丙基-纤维素,CG):先将纤维素与环氧氯丙烷反应,然后依次接上己二胺桥链和三乙酰基没食子酰基,最后将没食子酰基脱去乙酰基得到目标产物。功能试验表明,1g产物能结合明胶49.5mg,并可再生使用。1g产物络合金属离子的能力:Fe3 53.4mg,Cu2 38.7mg,Hg2 46.5mg,Mn2 6.8mg,Zn2 27.9mg,Pb2 57.2mg。产物在稀酸、稀碱、稀醇和热水中具有稳定性。 相似文献
944.
Fatty acid methyl ester (FAME) profiles, together with Biolog substrate utilization patterns, were used in conjunction with
measurements of other soil chemical and microbiological properties to describe differences in soil microbial communities induced
by increased salinity and alkalinity in grass/legume pastures at three sites in SE South Australia. Total ester-linked FAMEs
(EL-FAMEs) and phospholipid-linked FAMEs (PL-FAMEs), were also compared for their ability to detect differences between the
soil microbial communities. The level of salinity and alkalinity in affected areas of the pastures showed seasonal variation,
being greater in summer than in winter. At the time of sampling for the chemical and microbiological measurements (winter)
only the affected soil at site 1 was significantly saline. The affected soils at all three sites had lower organic C and total
N concentrations than the corresponding non-affected soils. At site 1 microbial biomass, CO2-C respiration and the rate of cellulose decomposition was also lower in the affected soil compared to the non-affected soil.
Biomarker fatty acids present in both the EL- and PL-FAME profiles indicated a lower ratio of fungal to bacterial fatty acids
in the saline affected soil at site 1. Analysis of Biolog substrate utilization patterns indicated that the bacterial community
in the affected soil at site 1 utilized fewer carbon substrates and had lower functional diversity than the corresponding
community in the non-affected soil. In contrast, increased alkalinity, of major importance at sites 2 and 3, had no effect
on microbial biomass, the rate of cellulose decomposition or functional diversity but was associated with significant differences
in the relative amounts of several fatty acids in the PL-FAME profiles indicative of a shift towards a bacterial dominated
community. Despite differences in the number and relative amounts of fatty acids detected, principal component analysis of
the EL- and PL-FAME profiles were equally capable of separating the affected and non-affected soils at all three sites. Redundancy
analysis of the FAME data showed that organic C, microbial biomass, electrical conductivity and bicarbonate-extractable P
were significantly correlated with variation in the EL-FAME profiles, whereas pH, electrical conductivity, NH4-N, CO2-C respiration and the microbial quotient were significantly correlated with variation in the PL-FAME profiles. Redundancy
analysis of the Biolog data indicated that cation exchange capacity and bicarbonate-extractable K were significantly correlated
with the variation in Biolog substrate utilization patterns.
Received: 8 March 2000 相似文献
945.
不同腐殖酸复合肥施用量对辣椒产量及其养分利用率的影响 总被引:20,自引:0,他引:20
试验研究不同腐殖酸复合肥施用量对辣椒产量及其养分利用率的影响结果表明 ,随施肥量的增加而辣椒叶片N、P、K累积量逐渐增大 ,果实N、P、K累积量呈二次抛物线趋势变化 ,且施肥量过大时不利于营养元素向果实中的转移。肥料生产效率及N、P、K养分利用率均随施肥量的增大而降低 ,肥料对辣椒产量的贡献率以及辣椒产量随施肥量的变化与辣椒果实营养元素累积量变化趋势相一致 相似文献
946.
为探究不同栽培基质对侧耳属食用菌风味成分的影响以及不同品种食用菌间的风味成分差异,本研究采用顶空固相微萃取结合气相色谱-质谱联用(HS-SPME-GC-MS)技术对桑枝、杂木屑和棉籽壳基质上栽培的6种侧耳属食用菌风味成分进行了分析。结果表明,18个样品中共检出47种挥发性化合物,包括13种醛类化合物、9种醇类化合物、9种酮类化合物、2种呋喃类化合物、2种酯类化合物等。18个样品中的共有成分有17种,包括正己醛、壬醛、1-辛烯-3-醇、3-辛酮、1-辛烯-3-酮、2-正戊基呋喃等。18个样品中挥发性化合物的种类和相对含量差异较大,但棉籽壳基质上栽培的6个菌株子实体中均出现了较高含量的酯类化合物。所有样品中的关键风味成分(ROAV≥1)均包括1-辛烯-3-酮和1-辛烯-3-醇,桑枝基质和杂木屑基质栽培的部分菌株中关键风味成分还包括正己醛、壬醛和2-壬烯醛等。18个样品中总5′-核苷酸含量和总游离氨基酸含量分别为7.86~43.86 mg·g-1DW和8.54~25.34 mg·g-1DW,且杂木屑基质栽培的所有菌株中总游离氨基酸含量均高于桑枝基质和棉籽壳基质。综上所述,棉籽壳基质有利于侧耳属食用菌中酯类化合物的生成,而杂木屑基质有利于游离氨基酸的生成。本研究结果为侧耳属食用菌栽培及风味成分的开发利用提供了科学依据。 相似文献
947.
Ute Hamer 《Soil biology & biochemistry》2005,37(3):445-454
It is well established that certain substrate additions to soils may accelerate or retard the mineralisation of soil organic matter. But up to now, research on these so called ‘priming effects’ was almost exclusively conducted with arable soils and with plant residues or glucose as additives. In this study, the effects of the uniformly 14C-labelled substrates fructose, alanine, oxalic acid and catechol on the mineralisation of soil organic carbon (SOC) from different horizons of two forest soils (Haplic Podzol and Dystric Cambisol) and one arable soil (Haplic Phaeozem) under maize and rye cultivation were investigated in incubation experiments for 26 days. Apart from the controls, all samples received substrate additions of 13.3 μg substrate-C mg−1 Corg. During the incubation, CO2-evolution was measured hourly and the amount of 14CO2 was determined at various time intervals. In almost all soils, priming effects were induced by one or several of the added substrates. The strongest positive priming effects were induced by fructose and alanine and occurred in the Bs horizon of the Haplic Podzol, where SOC mineralisation was nearly doubled. In the other soil samples, these substrates enhanced SOC mineralisation by +10 to +63%. Catechol additions generally reduced SOC mineralisation by −12 to −43% except in the EA horizon of the Haplic Podzol where SOC-borne CO2-evolution increased by +46%. Oxalic acid also induced negative as well as positive priming effects ranging from −24 to +82%. The data indicate that priming effects are ubiquitously occurring in surface and subsoil horizons of forest soils as well as in arable soils. Although a broad variety of soils was used within this study, relationships between soil properties and priming effects could not be ascertained. Therefore, a prediction on occurrence and magnitude of priming effects based on relatively easily measurable chemical and physical soil properties was not possible. Nevertheless, the data suggest that positive priming effects are most pronounced in forest soils that contain SOC of low biodegradability, where the added substrates may act as an important energy source for microbial metabolism. 相似文献
948.
949.
Iqra Javid Mahroze Fatima Syed Zakir Hussain Shah Muhammad Afzal 《Aquaculture Nutrition》2021,27(1):217-224
The effect of organic acids (OA) and dicalcium phosphate (Pi) supplementation in the feed of Labeo rohita fingerlings was studied by formulating seven practical diets, designed as D1 with no feed additives {dicalcium phosphorus (Pi) and organic acid (OA) blend} while, D2, D3, D4 and D5 were supplemented with Pi at the graded levels of 5, 10, 15 and 20 g/kg, respectively, whereas D6 and D7 contained blend of OA at 15 and 30 g/kg, respectively. The diet supplemented with OA blend exhibited increase (p < .05) in growth of L. rohita fingerlings compared with the diet supplemented with Pi. The OA supplementation at both levels showed significant improvement in nutrients digestibility and minerals absorption in fingerlings. Moreover, in case of muscle proximate composition, crude fat (CF) and crude protein (CP) were increased (p < .05) with the inclusion of OA blend in the diet while crude ash (CA) was improved by Pi supplementation. Additionally, digestive enzyme activities were not affected (p ? .05) by OA blend supplementation while increased activities were observed in the fingerlings fed with Pi diet. Consequently, supplementation of OA blend in the diet improved the growth performance and nutrient status while Pi enhanced digestive enzyme activities of L. rohita fingerlings. 相似文献
950.