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Onion (Allium cepa L.) bulbs are most sensitive to base plate impacts

机译:洋葱鳞茎对底板的撞击最敏感

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Although onion bulbs have one of the highest storage potentials under ambient conditions of any vegetable, physical impacts to bulbs during mechanical postharvest handling can reduce this capacity. This presents a significant challenge in production systems that rely on mechanised harvesting and handling operations to remain economically competitive. In this study, the respiration rate of onions sampled immediately after travelling over a commercial packing and grading line was elevated compared withpre-graded samples. Elevated respiration rate was linked to a higher rate of weight loss and reduced storage potential. Controlled impacts applied to individual bulbs also increased the rate of bulb respiration and internal sprout growth. Bulbs were more sensitive to impacts to the base plate than to impacts to the equator or neck. Environmental scanning electron microscopy revealed intracellular disruption within the scales where bulbs were impacted on the equator. No physical damage could be distinguished in bulbs impacted on the base plate. Minimising postharvest respiration rate of mature bulbs is recommended for long-term storage. Furthermore, it is recommended that the design of handling equipment consider both impact magnitude and position.
机译:尽管洋葱鳞茎在任何蔬菜的环境条件下均具有最高的储存潜力之一,但是在机械采伐后的处理过程中,对鳞茎的物理冲击会降低这种能力。这对依靠机械化收割和装卸作业保持经济竞争力的生产系统提出了重大挑战。在这项研究中,与预先分级的样品相比,经过商业包装和分级线后立即采样的洋葱的呼吸速率提高了。呼吸频率升高与体重减轻和储藏潜力降低有关。施加到单个鳞茎上的受控冲击还提高了鳞茎呼吸和内部新芽生长的速率。灯泡对底板的撞击比对赤道或颈部的撞击更敏感。环境扫描电子显微镜显示鳞片内的破坏,其中鳞茎受到赤道的影响。灯泡撞击在底板上无法区分出物理损坏。建议长期存放时尽量减少成熟球茎的采后呼吸速率。此外,建议处理设备的设计应同时考虑冲击的大小和位置。

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