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41.
Monitoring the dynamics of soil salinization is of great importance for agricultural production. This study selected Yucheng County, a typical county on the Huang-Huai-Hai Plain (HHHP) of China, as the study area and evaluated the spatial and temporal variation of soil salinization. Three methods, consisting of principal component analysis (PCA) transformation, tasseled cap (TC) transformation, and optimal band combination (OBC), were used to extract information from an early Landsat multispectral scanner (MSS) image from 1984, and their advantages were compared. In addition, OBC was used on a thematic mapper (TM) image from 2009. An iteratively self-organizing data analysis algorithm was used together with prior knowledge of likely classifications to interpret the MSS and TM images for data classification. Finally, a transfer matrix method was used to assess the spatial and temporal variability of soil salinization and analyze the driving factors of soil salinization. Compared to PCA transformation and OBC, TC transformation was a more effective method for extracting soil salinization information from the MSS sensor. The results indicate that a soil area of approximately 298 km2 was affected by salinity in 1984 in Yucheng County, of which 5.40%, 11.96%, and 12.75% were classified as being subject to slight, moderate, and severe salinization, respectively. In 2009, the saline area was reduced to only 146 km2, of which 10.70% and 3.75% were characterized by slight to moderate salinization and no severe salinization, respectively. The saline land decreased at an average rate of 6 km2 per year. This decrease was probably a result of lower groundwater depth, increased organic fertilizer or crop straw in soil, changed land use type, and increased vegetation coverage. 相似文献
42.
Aerobic culture is a promising water-saving technology in irrigated rice ecosystems, but the vulnerability of plants to fluctuations in soil moisture constrains leaf expansion and yield. The objective of this study was to examine whether an aboveground architecture with large leaves and reduced tillering is associated with vigorous leaf growth in aerobic rice culture. In a series of field experiments, we evaluated the agronomic performance of an IR64 introgression line, YTH323 (IR84640-11-27-1-9-3-2-4-2-2-2-B), with fewer tillers and larger leaves than IR64, derived from New Plant Type rice, under various water and nitrogen conditions. In flooded culture, YTH323 yielded the same as IR64 and 38% more than IR65564-44-51 (a New Plant Type rice) (9.0 vs. 6.6 t ha−1). In aerobic culture, in contrast, it yielded 81% more than IR64 in slightly dry soils (5.1 vs. 2.8 t ha−1). YTH323 had a higher leaf area index than IR64 and IR65564-44-51 under slightly dry soil conditions and under a range of nitrogen conditions. The higher and more stable yield of YTH323 in aerobic culture was attributable to greater early vigor, high specific leaf area, a high ratio of leaf weight to total biomass, and larger leaves, along with the characteristics of high-yield cultivars such as high responsiveness to fertilizers and good grain filling. We conclude that genetic modification of the aboveground architecture of IR64, a typical tropical lowland rice cultivar, to reduce tiller and leaf number improves adaptation to aerobic culture. 相似文献
43.
Legislation limiting the use of chlorpropham (CIPC), the major potato sprout suppressant, has led to a need for new technologies to extend storage life of tubers. Ultra violet C (UV-C) has been used postharvest to reduce disease incidence on many crops, yet its use and efficacy as a sprout suppressant has not been investigated. The aim of this project was to identify the optimum dose and treatment timing of UV-C treatment on potato tubers as an alternative method of sprout suppression to reduce the dependence on chemical sprout suppressants. Up to six potato cultivars over two seasons were treated with varying doses of UV-C ranging from 0 to 30 kJ m−2 either at harvest or at first indication of dormancy break. The tubers were stored at 9 °C and sprout growth and incidence assessed. Treatment with moderate UV-C doses (5–20 kJ m−2) suppressed sprout length and sprout incidence in a range of cultivars. Periderm DNA damage and programmed cell death were not detected in response to any of the UV-C doses. The inactive ABA metabolite, ABA-GE, increased in response to 10 or 20 kJ m−2 within 72 h of treatment. Multivariate analysis showed a negative relationship between ABA metabolites and sprout growth/incidence during storage. This study found that UV-C reduced sprout growth in potato with no deleterious effects on tuber quality. This suggests potential for further development as an alternative or supplement to conventional sprout suppressant technologies. 相似文献
44.
45.
以2017—2018年组配的119个甘蔗组合为材料,分别在广西的南宁、崇左、来宾同时开展组合评价试验,基于锤重性状进行联合方差分析和遗传参数估计,并采用回归分析和AMMI模型对组合进行稳定性分析。结果表明:不同的组合、环境及组合与环境互作在锤重间的差异均达到了极显著水平(P0.01);3个试验点锤重的广义遗传率均属于中等偏低水平;崇左、来宾试验点的锤重变异系数较大,南宁试验点的锤重变异系数较小;643、404、575、972、636、144、YC95、1470、755、409、701、832、YC37、579等组合表现出高产、稳产和适应性广的特性;结合锤重和组合入选率综合分析,组合449、YC127、796、YC44、533、570、YC123、391、546、403、YC90、252在南宁试验点的表现为锤重和组合入选率较高;组合643、212、YC61、432、903、YC95、YC44、368、YC83、YC127、YC112、701、411、YC90、YC123在崇左试验点的表现为锤重和组合入选率较高;组合643、404、449、144、403、YC48在来宾试验点的表现为锤重和组合入选率较高。 相似文献
46.
Quinoa (Chenopodium quinoa) and kiwicha (Amaranthus caudatus) are nutritious pseudocereals that originate from the Andean region. The aim of this research was to study the effect of germination and the subsequent kilning on the phenolic compounds and proximate composition in selected Peruvian varieties of quinoa (“Chullpi”) and kiwicha (“Oscar Blanco”). The germination process was carried out for 24, 48 and 72 h at 22 °C, and the kilning was performed with samples germinated for 72 h by drying the seeds at 90 °C for 5 min. Both processes increased the protein content of the samples. However, lipid content was reduced during germination. On the other hand, germination and kilning clearly increased the concentration of total phenolic compounds in both quinoa and kiwicha. Germination for 72 h either with or without kilning process resulted in a significant (p < 0.05) increase in the total content of phenolics compared to untreated materials, which was especially due to coumaric acid and a kaempferol tri-glycoside in quinoa and caffeoylquinic acid in kiwicha. Based on the results, germination and kilning may improve the nutritional quality of the Andean grains, encouraging the usage of the processed grains as ingredients in functional products for people with special gluten-free or vegetarian diets. 相似文献
47.
为探究圆柏(Sabina chinensis)的化感作用,本研究采用培养皿滤纸法研究圆柏叶片浸提液对地肤(Kochia scoparia)、稗草(Echinochloa crusgalli)、藜(Chenopodium album)、反枝苋(Amaranthus retroflexus)、马齿苋(Portulaca oleracea)5种杂草种子和向日葵(Helianthus annuus)、燕麦(Avena sativa)、油菜(Brassica campestris)、荞麦(Fagopyrum esculentum)4种作物萌发和生长的影响,并用圆柏叶片、树枝、树皮粉末和浸提液进行盆栽抑草效果检测。结果表明:圆柏叶片浸提液对5种杂草种子萌发和幼苗生长具有显著的抑制作用,对地肤、藜、反枝苋萌发及生长的化感效应指数均在-0.98以上;盆栽抑草结果表明,圆柏不同部位对5种杂草种子萌发和稗草及反枝苋株高生长均有较好的抑制作用,叶片化感强度大于树皮和树枝,叶片粉末拌土处理抑草效果好于浸提液叶面喷施;对作物的化感作用结果表明,圆柏叶片浸提液稀释1.5倍时,抑制荞麦种子萌发但不影响其株高及根生长,不影响燕麦种子萌发但降低其株高和根长生长,抑制油菜的发芽势和发芽指数但不影响其种子萌发率,促进油菜株高及根长生长,不影响向日葵种子萌发和生长。综上所述,圆柏具有良好的抑草活性,对作物影响较小。 相似文献
48.
不同处理对芹菜种子萌发过程中抗氧化系统及激素水平的影响 总被引:2,自引:2,他引:0
为研究芹菜种子的萌发机制,采用不同试剂组合(5 g/L NaOH+10% PEG、10% PEG+500 mg/L壳聚糖、5 g/L NaOH+500 mg/L壳聚糖)和不同温度(18、24、30℃)对芹菜种子进行处理,观察芹菜种子的萌发指标,并探究种子萌发过程中的抗氧化系统及内源激素水平的变化。结果表明,30℃对种子发芽率、发芽势及发芽指数提高具有促进作用,加快种子萌发进程。与蒸馏水对照组相比,试剂组合处理在18、24℃时种子发芽率、发芽势和发芽指数升高,促进种子萌发,18℃时5 g/L NaOH+500 mg/L壳聚糖处理下的发芽势最高,24℃时5 g/L NaOH+10% PEG处理下发芽势达到最大值;30℃时不同试剂组合处理间发芽率、发芽势和发芽指数无明显差异。18、30℃对种子具有一定程度的胁迫作用,种子SOD和CAT活性较24℃条件下有所增加;18℃时MDA含量和脯氨酸含量显著增加;5 g/L NaOH+10% PEG处理能显著降低MDA含量。萌发过程中,芹菜种子内部ABA含量下降,GA3、ZA含量增加。试剂组合及适当高温有利于提高芹菜种子的发芽率、发芽势和发芽指数,促进种子萌发,提高种子萌发整齐度;芹菜种子萌发过程中抗氧化系统和激素水平会积极响应不同的处理条件。 相似文献
49.
为研究长链脂肪酸组合对体外培养瘤胃微生物发酵挥发性脂肪酸(VFA)的影响,并得出最优脂肪酸组合及添加水平,试验选取硬脂酸、油酸、亚油酸及α-亚麻酸4种脂肪酸因子,设置0.5%、1.0%、1.5%等3个水平进行L9(34)正交试验,其中Ⅰ~Ⅸ组为试验组、Ⅹ组为对照组,各处理均设3个重复。以3头瘤胃瘘管山羊为瘤胃液供体进行体外发酵试验,测定各组培养液VFA 24 h内的动态变化。结果显示,各组的总挥发性脂肪酸(TVFA)浓度总体上呈先上升后下降再上升的波动变化趋势。其中在6 h时Ⅶ组TVFA浓度最高。乙酸/丙酸比值总体呈下降趋势,6 h前下降较快,6 h后趋于平缓。丁酸摩尔百分比在7.97%~15.41%间变动。主成分与最优组合分析表明,TVFA浓度影响的主次顺序为亚油酸、油酸、硬脂酸、α-亚麻酸;以添加1.5%硬脂酸、0.5%油酸、1.5%亚油酸、0.5%α-亚麻酸时组合效应最好。 相似文献
50.
Fungal N2O production results from a respiratory denitrification that reduces NO3−/NO2− in response to the oxidation of an electron donor, often organic C. Despite similar heterotrophic nature, fungal denitrifiers may differ from bacterial ones in exploiting diverse resources. We hypothesized that complex C compounds and substances could favor the growth of fungi over bacteria, and thereby leading to fungal dominance for soil N2O emissions. Effects of substrate quality on fungal and bacterial N2O production were, therefore, examined in a 44-d incubation after soils were amended with four different substrates, i.e., glucose, cellulose, winter pea, and switchgrass at 2 mg C g−1 soil. During periodic measurements of soil N2O fluxes at 80% soil water-filled pore space and with the supply of KNO3, substrate treatments were further subjected to four antibiotic treatments, i.e., no antibiotics or soil addition of streptomycin, cycloheximide or both so that fungal and bacterial N2O production could be separated. Up to d 8 when antibiotic inhibition on substrate-induced microbial activity and/or growth was still detectable, bacterial N2O production was generally greater in glucose- than in cellulose-amended soils and also in winter pea- than in switchgrass-amended soils. In contrast, fungal N2O production was more enhanced in soils amended with cellulose than with glucose. Therefore, fungal-to-bacterial contribution ratios were greater in complex than in simple C substrates. These ratios were positively correlated with fungal-to-bacterial activity ratios, i.e., CO2 production ratios, suggesting that substrate-associated fungal or bacterial preferential activity and/or growth might be the cause. Considering substrate depletion over time and thereby becoming limited for microbial N2O production, measurements of soil N2O fluxes were also carried out with additional supply of glucose, irrespective of different substrate treatments. This measurement condition might lead to potentially high rates of fungal and bacterial N2O production. As expected, bacterial N2O production was greater with added glucose than with added cellulose on d 4 and d 8. However, this pattern was broken on d 28, with bacterial N2O production lower with added glucose than with added cellulose. In contrast, plant residue impacts on soil N2O fluxes were consistent over 44-d, with greater bacterial contribution, lower fungal contribution, and thus lower fungal-to-bacterial contribution ratios in winter pea- than in switchgrass-amended soils. Real-time PCR analysis also demonstrated that the ratios of 16S rDNA to ITS and the copy numbers of bacterial denitrifying genes were greater in winter pea- than in switchgrass-amended soils. Despite some inconsistency found on the impacts of cellulose versus glucose on fungal and bacterial leading roles for N2O production, the results generally supported the working hypothesis that complex substrates promoted fungal dominance for soil N2O emissions. 相似文献