遮荫增强了意大利东南部普利亚地区半干旱地中海条件下葡萄农业光伏系统的小气候变异、光形态发生和产量成分

IF 4.2 2区 农林科学 Q1 HORTICULTURE
Andrea Magarelli, Andrea Mazzeo, Salem Alhajj Ali, Giuseppe Ferrara
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引用次数: 0

摘要

农业发电作为可再生能源的双重土地利用功能,对全球低碳转型、气候适应系统和粮食作物生产具有战略意义。在意大利东南部普利亚地区对光伏板下种植的葡萄进行了为期两年的研究,重点研究了不同遮荫条件下的小气候变化、生理反应和产量表现。比较全日照(FS)与低遮荫(LS)和高遮荫(HS)处理下的葡萄树。定量分析揭示了葡萄树小气候条件的时空变异。HS处理的土壤湿度比FS处理高16%,土壤温度相对稳定。昼夜之间风参数的变化也影响了相对湿度和空气温度,夜间的降温效果最强,可达3.5°C。此外,高扩散辐射分数和在AV冠层内截取的波长峰的光谱剖面的改变增强了光形态形成过程,如茎长、叶片膨胀和叶绿素指数的增加,同时遮荫也改善了正午水分状况和最大光系统II活性。气孔导度随蒸汽压差(VPD)梯度、蓝绿比和蓝远红比的变化有显著的日变化,尤其在红叶中增加幅度高达30%。在产量方面,LS达到了最佳的簇重(1.15 kg/株)和花青素含量(15.27 mg/g),尽管HS将糖积累降至19.1°Brix,而FS条件下为26.3°Brix。这些发现强调,包括针对当地小气候条件的特定场地设计和尊重作物特定布局标准的定制应用,可以扭转遮阳敏感性的负面影响,同时确保对葡萄藤生长产生有益影响,优化作物产量,即使使用低投入的技术解决方案也能保持足够的能量输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shading enhanced microclimate variability, photomorphogenesis and yield components in a grapevine agrivoltaic system in semi-arid Mediterranean conditions in Puglia region, southeastern Italy
Agrivoltaics (AV) emerged for its dual land use function as renewable energy source of strategic importance to the global low-carbon transition, climate resilient system and food crops production. A two-year study on grapevines grown under photovoltaic panels was conducted in Puglia region, southeastern Italy, focusing on microclimatic modifications, physiological responses, and yield performance under varying shading conditions. comparing full sun (FS) to either low shade (LS) or high shade (HS) vine treatments under AV. Quantitative analyses revealed spatial and temporal variability in the microclimatic conditions for the vines. In the HS position, soil moisture was 16% higher compared to the FS treatment, while soil temperatures were moderately stabilized. Wind parameter modifications between day and night also influenced relative humidity and air temperature, with a strong night cooling effect of up to 3.5 °C. Furthermore, high diffusive radiation fraction and an altered spectrum profile in wavelength peaks intercepted within the AV canopy enhanced photomorphogenic processes such as increased stem length, leaf expansion and chlorophyll index, while also shade improved midday water status and maximum photosystem II activity. Considerable variations on stomatal conductance were revealed on daily basis in response to the vapour pressure deficit (VPD) gradient, blue to green and blue to far-red ratios, especially in LS leaves by up to 30% increase. Regarding productivity, the LS achieved optimal cluster weight (1.15 kg/vine) and anthocyanin content (15.27 mg/g), although HS reduced sugar accumulation to 19.1°Brix compared to 26.3°Brix in FS conditions. These findings underscore that tailored applications that include site-specific designs to local microclimatic conditions and respecting crop-specific layout criteria, reverse the negative effects of shading sensitivity while ensuring beneficial impacts on grapevine growth, optimizing crop yield, and maintaining sufficient energy output even with low-input technological solution.
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来源期刊
Scientia Horticulturae
Scientia Horticulturae 农林科学-园艺
CiteScore
8.60
自引率
4.70%
发文量
796
审稿时长
47 days
期刊介绍: Scientia Horticulturae is an international journal publishing research related to horticultural crops. Articles in the journal deal with open or protected production of vegetables, fruits, edible fungi and ornamentals under temperate, subtropical and tropical conditions. Papers in related areas (biochemistry, micropropagation, soil science, plant breeding, plant physiology, phytopathology, etc.) are considered, if they contain information of direct significance to horticulture. Papers on the technical aspects of horticulture (engineering, crop processing, storage, transport etc.) are accepted for publication only if they relate directly to the living product. In the case of plantation crops, those yielding a product that may be used fresh (e.g. tropical vegetables, citrus, bananas, and other fruits) will be considered, while those papers describing the processing of the product (e.g. rubber, tobacco, and quinine) will not. The scope of the journal includes all horticultural crops but does not include speciality crops such as, medicinal crops or forestry crops, such as bamboo. Basic molecular studies without any direct application in horticulture will not be considered for this journal.
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