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1.
针对云南丘陵山区小粒咖啡人工采收成本高、大型机械采收困难等问题,设计了手持振动梳刷式小粒咖啡采摘装置。通过建立果树-机械收获动力学模型和多体动力学仿真,得到振幅的稳态响应表达式,并确定了振动部件和梳刷部件的结构参数。利用ADAMS建立了果树-机械刚柔耦合模型,采用广义力与传感器函数控制的方法进行单因素仿真试验,分析了频率、梳齿间距和偏心块夹角对小粒咖啡收获效果的影响规律。以频率、梳齿间距和偏心块夹角为试验因素,采净率、采青率和损伤率为试验指标,进行二次回归正交旋转组合试验,结果表明:对采净率和采青率的影响因素重要性依次为频率、梳齿间距、偏心块夹角;对损伤率影响因素重要性依次为梳齿间距、频率和偏心块夹角。当频率为26Hz、梳齿间距为32mm、偏心块夹角为22.5°时,采摘机工作性能最佳,经试验验证,此时采净率为91.35%,采青率为8.46%,损伤率为4.15%,满足小粒咖啡收获技术要求。  相似文献   
2.
总结2010年以来云南河口民族地区小粒种咖啡技术创新亮点,分析认为:近年研究制定的《河口小粒咖啡综合技术规范》(DG5325/T 5.1-5.6—2013)标准,规范了本地区小粒种咖啡栽培技术;试验筛选出的高抗锈良种CIF7963(6),加快了本地区良种化进程;“水压自动补偿”灌溉系统,解决了本地区传统灌溉问题;对传统湿法加工实施背压式热风穿透风干燥技术(设备)改造,改变了传统上利用水泥晒场自然晾晒咖啡豆。这些创新亮点促进了本地区小粒种咖啡产业的可持性发展。  相似文献   
3.
Foliar spots caused by Pseudomonas coronafaciens pv. garcae (Pcg), Pseudomonas amygdali pv. tabaci (Pat) and Pseudomonas cichorii (Pch) are major bacterial diseases that can reduce coffee production. However, little is known about the genetic diversity and molecular mechanisms underlying the pathogenicity to coffee plants of these bacteria. In this study, genome sequences of Pcg, Pat and Pch strains isolated from coffee plants in Minas Gerais state, Brazil, were used to assess their variability and plasticity, and compare their type III secretion system (T3SS) and apoplastic effector repertoires as well as tabtoxin biosynthetic/detoxification genes. Genomic diversity was found for all three phytopathogens, among which Pch possesses the highest number of exclusive proteins. The Pcg genome is the most stable whereas that of Pch is the most plastic, which is related to their host ranges. When compared with those of Pseudomonas syringae pv. tomato DC3000, hrp/hrc gene sequences are more conserved in Pcg and Pat than in Pch, which also possesses the smallest T3SS and the largest apoplastic effector repertoires. The only T3SS effector family common to all three pathogens is AvrE, suggesting that, as for other plant–Pseudomonas interactions, it may play a crucial role for pathogenicity towards coffee plants. Apoplastic proteins associated with maintaining the redox balance and degrading proteins/peptides not previously described as important in plant–bacteria interactions were found. Gain/loss of the tabtoxin biosynthetic cluster with retention of the antitoxin gene was observed, indicating that tabtoxin production is not a limiting factor for the occurrence of mixed infections.  相似文献   
4.
文兰  赵璟 《农林科学实验》2014,(8):273-274,277
发展特色农产品网络营销是实现我国传统农业向现代农业转型和推动区域经济发展的创新途径。在激烈的市场竞争中,顾客满意度已成为衡量特色农产品网络经营者成功的关键因素。云南小粒咖啡在全国特色农产品资源中独树一帜,通过对小粒咖啡网络营销的实际调查分析,构建了一个适用于小粒咖啡网络营销的顾客满意度测评模型,并通过实证分析验证了模型的可行性。  相似文献   
5.
土壤因子与小粒咖啡品质产量形成关系研究   总被引:1,自引:0,他引:1  
土壤因子是影响小粒咖啡品质产量的主要因子。本研究通过对土壤因子进行相关性分析、改进的灰色关联分析、通径分析及多元线性回归分析,明确影响小粒咖啡品质和产量的主要因子,以指导科学施肥。结果表明:小粒咖啡咖啡因含量的土壤决定因子为海拔(-0.296*),总糖含量的土壤决定因子为有机质(0.607**)和速效磷(-0.232*),蛋白质的土壤决定因子为pH(-0.387**)和有机质(0.227*),灰分含量的土壤决定因子为速效磷(0.334**),水溶性浸出物含量的土壤决定因子为海拔(-0.494**),脂肪含量的土壤决定因子为碱解氮(-0.461**),产量的土壤决定因子为速效钾(0.339**)和有机质(0.248*)。研究结果可为小粒咖啡优质高产的土壤条件筛选和肥料的减施增效提供一定的理论基础,以期增强优质咖啡种质的适宜性和目的性。  相似文献   
6.
为探明澳洲坚果与咖啡间作对地上部生长及地下部互作效应,为生产推广复合高效栽培模式提供理论依据,布置了咖啡和澳洲坚果间作盆栽实验,以二者分别单作为对照,分析植株的生长量、生物量、养分含量、根系形态以及土壤养分的差异。结果表明:(1)间作咖啡和间作澳洲坚果根干重、茎干重、单株总干重分别为40.86、50.38、148.34 g,22.38、33.19、111.97 g,间作咖啡显著大于间作澳洲坚果,叶干重二者差异不显著;幼龄期间作条件下,咖啡生长速率快于澳洲坚果。间作咖啡、间作澳洲坚果与各自单作根、茎、叶、单株干物质累积量差异均不显著。(2)间作澳洲坚果叶氮累积量2135.27 mg显著大于间作咖啡的1957.60 mg,除此之外,间作咖啡根氮、磷、钾,茎氮、磷、钾,叶磷、钾,单株总氮、磷、钾累积量均显著大于间作澳洲坚果,表明幼龄期间作条件下,咖啡养分累积量占优势;间作澳洲坚果根氮、钾累积量742.80、103.22 mg显著大于单作的535.00、37.77 mg,可见,间作根系竞争促进澳洲坚果增加根部氮的分配,提高根钾的吸收累积。(3)间作咖啡和间作澳洲坚果根长、根表面积、根体积在本株侧面根系生态位分布量占总取样量的62.63%~65.67%,其次是在株间根系生态位分布量占总取样量的16.01%~27.53%,在对应本株近侧和对应本株远侧面2个根系生态位分布较少,可见间作后二者根系主要分布于自身根系生态位,在株间位置根系交叉重叠,未在土壤深度和广度空间形成差异分布,属于间作竞争型根系统。咖啡与澳洲坚果均属于浅根系,侧根直径小,成龄澳洲坚果是高大乔木,随着时间的推移,与咖啡间作将处于地上、地下部竞争优势。  相似文献   
7.
The objective of this study was to establish a nutrient sufficiency range and DRIS standards of Conilon coffee grown in southern Bahia, Brazil for the pre-flowering and grain-filling stages and to perform a nutritional diagnosis of these plants using different methods. The collections were performed in 24 Conilon coffee farm fields to establish the leaf nutritional standards, and 278 samples were collected to the nutritional diagnosis. The nutritional diagnosis was performed by using the sufficiency range criterion and the DRIS method. The nutrient sufficiency range and the DRIS standards must be specific to each phenological stage of the Conilon coffee plants. The leaf concentrations of calcium (Ca), sulfur (S), and boron (B) were higher in the pre-flowering stage; and the leaf concentrations of nitrogen (N), potassium (K), copper (Cu), and zinc (Zn) were higher in the grain-filling stage.  相似文献   
8.
Nutritional and physiological significance of micronutrients in coffee plants, especially with regard to nickel (Ni) is still unknown. The dynamics of nitrogen (N), phosphorus (P), potassium (K) and Ni accumulation in coffee fruits, as well as their relationships with total soluble protein, amino acids, reducing sugars, and starch content during coffee fruit development (green, ripe, and dry fruits), were investigated. Coffee trees received three N fertilizer rates (0, 150, and 300 kg of N ha?1) as ammonium sulfate split into three applications per year. Nitrogen fertilization increased reducing sugars and starch concentrations in ripe fruits. In contrast, green fruits showed the highest amino acid and Ni concentrations. Fruit Ni concentration decreased in both green and ripe fruits as N rates increased; thus, indicating the possibility of either a N-associated dilution effect on Ni concentration or that Ni uptake by roots and/or transport to developing fruit was limiting. Plant nutritional status and fruit development stage influenced the coffee grain chemical composition. Furthermore, the variation in reducing sugars and starch content was more closely linked to the stage of fruit development than to N supply. A supposed relationship among the decreased of caffeine, starch, amino acids, and proteins with Ni content during green fruit development suggests a fundamental role for Ni in coffee fruit ripening. The interaction between N and Ni metabolism during fruit ripening might influence the chemical parameters involved in the coffee grain quality. This is the first report documenting changes in Ni concentrations of coffee fruit as a function of N fertilization rates and the development stage, but further research is needed to better understand the significance of N-Ni interaction in developing coffee fruit.  相似文献   
9.
The export of nitrogen (N) from senescent plant parts is important for the efficient use of this macronutrient. The objective of this study was to establish correlations among the photosynthetic pigment content, total N, and the photosynthetic variables with the SPAD‐502 readings in Coffea arabica leaves. Correlations were established among the chlorophyll content, N content, and chlorophyll a and b with SPAD‐502 readings taken on coffee leaves at different months. The results show that all variables decreased with time. However, correlation increased linearly with N doses. Total chlorophyll presented a direct linear correlation with readings of the portable chlorophyll meter. The SPAD readings have shown to be a good tool to diagnose the integrity of the photosynthetic system in coffee leaves. Thus, the portable chlorophyll SPAD‐502 instrument can be used to evaluate the N status and can also help to evaluate the photosynthetic process in coffee plants.  相似文献   
10.
Abstract

The influence of silicon (Si) (2.5 mM), sodium chloride (NaCl) (100 mM), and Si (2.5 mM) + NaCl (97.5 mM) supply on chlorophyll content, chlorophyll fluorescence, the concentration of malondialdehyde (MDA), H2O2 level, and activities of superoxide dismutase (SOD; E.C.1.15.1.1.), ascorbate peroxidase (APx; E.C.1.11.1.11.), catalase (CAT; E.C.1.11.1.6.), guaiacol peroxidase (G-POD; E.C.1.11.1.7.) enzymes, and protein content were studied in tomato (Lycopersicon esculentum Mill c.v.) leaves over 10-day and 27-day periods. The results indicated that silicon partially offset the negative impacts of NaCl stress with increased the tolerance of tomato plants to NaCl salinity by raising SOD and CAT activities, chlorophyll content, and photochemical efficiency of PSII. Salt stress decreased SOD and CAT activities and soluble protein content in the leaves. However, addition of silicon to the nutrient solution enhanced SOD and CAT activities and protein content in tomato leaves under salt stress. In contrast, salt stress slightly promoted APx activity and considerably increased H2O2 level and MDA concentration and Si addition slightly decreased APx activity and significantly reduced H2O2 level and MDA concentration in the leaves of salt-treated plants. G-POD activity was slightly decreased by addition of salt and Si. Enhanced activities of SOD and CAT by Si addition may protect the plant tissues from oxidative damage induced by salt, thus mitigating salt toxicity and improving the growth of tomato plants. These results confirm that the scavenging system forms the primary defense line in protecting oxidative damage under stress in crop plants.  相似文献   
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