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汽压差对香瓜和黄瓜生长和水分状况的影响。

Effect of vapor pressure deficit on growth and water status in muskmelon and cucumber.

机构信息

College of Horticulture, Northwest Agriculture & Forest University, Yangling, 712100, Shaanxi, China.

出版信息

Plant Sci. 2021 Feb;303:110755. doi: 10.1016/j.plantsci.2020.110755. Epub 2020 Nov 20.

Abstract

Climatic warming and water shortages have become global environmental issues affecting agricultural production. The change of morphology and anatomical structures in plant organs can greatly affect plant growth. The study combined temperature and relative humidity to regulate vapor pressure deficit (VPD) to form low and high VPD environments (LVPD and HVPD, respectively) in two climate-controlled greenhouses. The effects of different VPD conditions on gas exchange parameters, dry matter, and leaf and stem anatomical structure parameters of muskmelon and cucumber were compared and studied. The results show that the background VPD conditions give different internal structure of muskmelon and cucumber, therefore it can improve the transport capacity of water to the leaf surface under LVPD conditions. At the same time, the stomatal closure induced by atmospheric drought stress is avoided and the gas exchange capacity of the leaf stomata is enhanced, thereby maintaining high photosynthetic rate. Thus, reducing VPD is the key to achieving high yield and productivity in greenhouse muskmelon and cucumber production.

摘要

气候变暖与水资源短缺已成为影响农业生产的全球性环境问题。植物器官形态和解剖结构的变化会极大地影响植物生长。本研究通过调节蒸汽压差(VPD),结合温度和相对湿度,在两个气候控制温室中形成低 VPD(LVPD)和高 VPD(HVPD)环境。比较和研究了不同 VPD 条件对甜瓜和黄瓜气体交换参数、干物质以及叶片和茎解剖结构参数的影响。结果表明,背景 VPD 条件会使甜瓜和黄瓜形成不同的内部结构,因此在 LVPD 条件下可以提高水向叶片表面的输送能力。同时,避免了大气干旱胁迫引起的气孔关闭,增强了叶片气孔的气体交换能力,从而保持了较高的光合速率。因此,降低 VPD 是实现温室甜瓜和黄瓜高产、高生产力的关键。

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