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航空配餐安全管理对铁路配餐管理的借鉴探讨 被引量:3
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作者 周捷 《铁路节能环保与安全卫生》 2021年第3期38-43,共6页
航空配餐具有规范化管理起步早、产业链较为完善、运营管理经验丰富、相关标准及安全管理体系较为健全等特点。在阐述航空配餐种类和保质时间、膳食加工过程的时间-温度控制、膳食过程管理及成品微生物监控等规定的基础上,提出航空配餐... 航空配餐具有规范化管理起步早、产业链较为完善、运营管理经验丰富、相关标准及安全管理体系较为健全等特点。在阐述航空配餐种类和保质时间、膳食加工过程的时间-温度控制、膳食过程管理及成品微生物监控等规定的基础上,提出航空配餐经营安全管理对铁路配餐的启示,即依托相关产业链推行系统化安全经营管理、不同经营主体实行差别化安全管理、强化站车膳食生产经营过程关键环节风险控制、细化站车膳食车站配送和列车售卖端的风险控制。 展开更多
关键词 航空配餐 过程管理 安全风险控制 时间-温度控制
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Flowering responses to light and temperature 被引量:8
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作者 Li Li Xu Li +1 位作者 Yawen Liu Hongtao Liu 《Science China(Life Sciences)》 SCIE CAS CSCD 2016年第4期403-408,共6页
Light and temperature signals are the most important environmental cues regulating plant growth and development. Plants have evolved various strategies to prepare for, and adapt to environmental changes. Plants integr... Light and temperature signals are the most important environmental cues regulating plant growth and development. Plants have evolved various strategies to prepare for, and adapt to environmental changes. Plants integrate environmental cues with endogenous signals to regulate various physiological processes, including flowering time. There are at least five distinct pathways controlling flowering in the model plant Arabidopsis thaliana: the photoperiod pathway, the vernalization/thermosensory pathway, the autonomous floral initiation, the gibberellins pathway, and the age pathway. The photoperiod and temperature/vernalization pathways mainly perceive external signals from the environment, while the autonomous and age pathways transmit endogenous cues within plants. In many plant species, floral transition is precisely controlled by light signals(photoperiod) and temperature to optimize seed production in specific environments. The molecular mechanisms by which light and temperature control flowering responses have been revealed using forward and reverse genetic approaches. Here we focus on the recent advances in research on flowering responses to light and temperature. 展开更多
关键词 flowering light signaling temperature photoperiod vernalization thermosensory pathway
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