植物密度对新墨西哥州荚果型绿智利辣椒机械收获效率的影响

IF 1 4区 农林科学 Q3 HORTICULTURE Horttechnology Pub Date : 2024-04-01 DOI:10.21273/horttech05380-23
Israel Joukhadar, C. Havlik, Stephanie Walker
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引用次数: 0

摘要

摘要.新墨西哥豆荚型青辣椒(Capsicum annuum)作为一种蔬菜作物具有重要意义。新墨西哥州豆荚型青辣椒的种植和贸易在新墨西哥州(美国)具有重要的文化意义,并通过为农民提供收入和就业以及辅助产业为该州的经济做出了贡献。然而,由于成本高昂和劳动力有限,新墨西哥州豆荚型青辣椒的种植面积有所减少。传统上,新墨西哥州豆荚型青辣椒是在果实成熟但生理未成熟时人工采收的。为了保护和扩大新墨西哥州豆荚型青辣椒的产量,采用机械收获技术至关重要。2015 年和 2016 年,在新墨西哥州立大学洛斯卢纳斯农业科学中心(美国新墨西哥州洛斯卢纳斯)进行了实验,研究增加种植密度对新墨西哥州豆荚型青辣椒果实大小、植株结构和机械采收效率的影响。2015 年 4 月 17 日和 2016 年 4 月 14 日,对 NuMex Joe E. Parker 和 AZ-1904 这两个商用新墨西哥豆荚型青辣椒栽培品种进行了直播。2015 年 6 月 11 日和 2016 年 6 月 14 日,分别实施了 39,000 株/英亩(高)、23,000 株/英亩(中)和 15,000 株/英亩(标准)三种植株密度处理。收获前,对植株进行了测量,包括高度、宽度、第一分叉高度、茎秆直径和基部侧枝数。使用倾斜式双螺旋收割机对地块进行机械收割,并将收割物分为可销售的绿色果实、机器破碎的果实和非荚果植物材料。对果实进行测量,包括果实重量、宽度、长度、果皮厚度和子房室数。两种栽培品种的分叉高度均增加了 9%,高密度种植时基部分枝较少。植株密度对果实的长度、宽度、子房室数量和果皮厚度没有明显影响。高密度种植的植株可上市果实的比例增加,与'AZ-1904'相比,'NuMex Joe E. Parker'可上市绿色果实的比例更高。结果表明,将生产田的种植密度提高到 39,000 株/英亩,再加上栽培品种的选择,可提高机械收获系统的效率。
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Effect of Plant Density on Mechanical Harvest Efficiency of New Mexico Pod-type Green Chile Pepper
Summary. New Mexico green pod-type chile (Capsicum annuum) has significant importance as a vegetable crop. The cultivation and trade of New Mexico pod-type green chile are culturally significant within New Mexico (USA) and contribute to the state’s economy by providing income and employment to farmers and through supporting industries. However, because of the high cost and limited availability of labor, New Mexico pod-type green chile acreage has declined. Traditionally, New Mexico pod-type green chile is hand-harvested when the fruit are full-size but physiologically immature. To preserve and expand the production of New Mexico pod-type green chile, the adoption of mechanical harvest technologies is essential. In 2015 and 2016, experiments were conducted at New Mexico State University’s Los Lunas Agricultural Science Center (Los Lunas, NM, USA) to examine the effects of increased planting density on New Mexico pod-type green chile fruit size, plant architecture, and mechanical harvest efficiency. Two commercial New Mexico pod-type green chile cultivars, NuMex Joe E. Parker and AZ-1904, were direct-seeded on 17 Apr 2015 and 14 Apr 2016. On 11 Jun 2015 and 14 Jun 2016, three plant density treatments were implemented at 39,000 (high), 23,000 (medium), and 15,000 (standard) plants/acre. Before harvest, plant measurements, including height, width, height to first bifurcation, stem diameter, and number of lateral basal branches, were obtained. Plots were mechanically harvested using an inclined double helix harvester, and harvested material was sorted into marketable green fruit, machine-broken fruit, and nonpod plant material. Fruit measurements, including fruit weight, width, length, pericarp thickness, and number of locules, were obtained. Both cultivars exhibited a 9% increase in height to bifurcation accompanied by fewer basal branches grown at high density. Plant density did not significantly affect the fruit length, width, number of locules, and pericarp thickness. Plants grown at high density had an increased percentage of marketable fruit, with ‘NuMex Joe E. Parker’ having a higher percentage of marketable green fruit compared to ‘AZ-1904’. The results demonstrated that an increase in planting density in production fields to 39,000 plants/acre coupled with cultivar selection enhanced efficiency in a mechanical harvest system.
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来源期刊
Horttechnology
Horttechnology 农林科学-园艺
CiteScore
2.30
自引率
10.00%
发文量
67
审稿时长
3 months
期刊介绍: HortTechnology serves as the primary outreach publication of the American Society for Horticultural Science. Its mission is to provide science-based information to professional horticulturists, practitioners, and educators; promote and encourage an interchange of ideas among scientists, educators, and professionals working in horticulture; and provide an opportunity for peer review of practical horticultural information.
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