Extending the Capsicum Growing Season under Semi-Arid Climate by Using a Suitable Protected Cropping Structure

Q4 Agricultural and Biological Sciences International Journal of Plant Biology Pub Date : 2023-10-19 DOI:10.3390/ijpb14040068
Giao N. Nguyen, Neil Lantzke
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Abstract

Carnarvon is a key horticultural district in Western Australia which is located approximately 900 km north of Perth and is characterised by a semi-arid climate. In Carnarvon, capsicum (Capsicum annuum L.) is the second most important vegetable crop after tomato, with approximately 3700 tonnes of capsicum fruit produced annually with a farm gate value of AUD 13.5 million. High temperatures, excessive sunlight, low air humidity, and strong wind in spring and summer are major impediments to the achievement of high yield and quality of capsicum in this region. Capsicums are usually planted between March (early autumn) and May (late autumn), and the harvest is usually finished by October (spring) of the same year when grown under shade net houses. However, the internal microenvironment in the shade net houses is sub-optimal for the crop in the early and late growing season due to excessive temperatures and low humidity, resulting in a shorter harvest window and lower production. This study was conducted to examine the possibilities to extend the cropping season for capsicum varieties (i.e., Chevello and Chevi) grown under the retractable roof production system (RRPS) and explore an alternative protected cropping structure that is more affordable and suitable to grow vegetable crops under Carnarvon weather conditions. Overall, the results showed that capsicums planted in February (planting 1) performed better than specimens planted later on in the season: planting 1 performed better and yielded the highest marketable fruit yield (102.6 t ha−1) compared to those planted in early April (planting 2, 72.5 t ha−1) and late May (planting 3, 36.1 t ha−1). The RRPS effectively mitigated the adverse weather conditions and provided a more optimised internal microenvironment for vigorous crop establishment in late summer and an extended harvest in late spring, leading to a higher marketable fruit yield per crop. The total soluble solids were cultivar-specific, with the Brix level of Chevello changing with planting time while those of Chevi remained constant. The study identifies the potential for an alternative protected cropping structure, i.e., the modified multi-span polytunnels. The technical feasibility and affordability of the alternative protected cropping structure is also discussed.
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半干旱气候条件下适宜的保护性种植结构延长辣椒生长期
卡纳文是西澳大利亚州一个重要的园艺区,位于珀斯以北约900公里处,以半干旱气候为特征。在卡纳文,辣椒(capsicum annuum L.)是仅次于番茄的第二大蔬菜作物,每年生产约3700吨辣椒果实,农场大门价值为1350万澳元。高温、日照过多、空气湿度低、春夏大风是制约该地区辣椒高产优质的主要因素。辣椒通常在3月(初秋)和5月(深秋)之间种植,在遮阳网棚下种植时,通常在同年10月(春季)完成收获。然而,由于温度过高和湿度过低,遮阳网屋的内部微环境在作物生长季的早期和后期都不是最理想的,导致收获窗口缩短,产量降低。本研究旨在探讨在可伸缩屋顶生产系统(RRPS)下种植的辣椒品种(即Chevello和Chevi)延长种植季节的可能性,并探索一种更经济、更适合在卡纳文天气条件下种植蔬菜作物的替代保护种植结构。总体而言,结果表明,2月份种植的辣椒(种植1)比季节后期种植的辣椒表现更好,与4月初(种植2,72.5 tha - 1)和5月末(种植3,36.1 tha - 1)种植的辣椒相比,种植1表现更好,可销售果实产量最高(102.6 tha - 1)。RRPS有效地缓解了不利的天气条件,并为夏末作物的茁壮成长和春末收获的延长提供了更优化的内部微环境,从而提高了每株作物的市场水果产量。总可溶性固形物具有品种特异性,切维罗的白利度随种植时间的变化而变化,而切维的白利度保持不变。该研究确定了一种替代保护种植结构的潜力,即改良的多跨多孔隧道。本文还讨论了替代保护种植结构的技术可行性和可承受性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Plant Biology
International Journal of Plant Biology Agricultural and Biological Sciences-Plant Science
CiteScore
2.00
自引率
0.00%
发文量
44
审稿时长
10 weeks
期刊介绍: The International Journal of Plant Biology is an Open Access, online-only, peer-reviewed journal that considers scientific papers in all different subdisciplines of plant biology, such as physiology, molecular biology, cell biology, development, genetics, systematics, ecology, evolution, ecophysiology, plant-microbe interactions, mycology and phytopathology.
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