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大麦夜间低温会影响生长的昼夜模式和源库组织的暂态储备。

Diurnal patterns of growth and transient reserves of sink and source tissues are affected by cold nights in barley.

机构信息

Plant Systems Biology Lab, School of Natural Sciences, Ryan Institute, National University of Ireland, Galway H91 TK33, Ireland.

Crop Science Department, Teagasc, Carlow R93 XE12, Ireland.

出版信息

Plant Cell Environ. 2020 Jun;43(6):1404-1420. doi: 10.1111/pce.13735. Epub 2020 Feb 28.

Abstract

Barley is described to mostly use sucrose for night carbon requirements. To understand how the transient carbon is accumulated and utilized in response to cold, barley plants were grown in a combination of cold days and/or nights. Both daytime and night cold reduced growth. Sucrose was the main carbohydrate supplying growth at night, representing 50-60% of the carbon consumed. Under warm days and nights, starch was the second contributor with 26% and malate the third with 15%. Under cold nights, the contribution of starch was severely reduced, due to an inhibition of its synthesis, including under warm days, and malate was the second contributor to C requirements with 24-28% of the total amount of carbon consumed. We propose that malate plays a critical role as an alternative carbon source to sucrose and starch in barley. Hexoses, malate, and sucrose mobilization and starch accumulation were affected in barley elf3 clock mutants, suggesting a clock regulation of their metabolism, without affecting growth and photosynthesis however. Altogether, our data suggest that the mobilization of sucrose and malate and/or barley growth machinery are sensitive to cold.

摘要

大麦被描述为主要利用蔗糖来满足夜间的碳需求。为了了解在低温下,瞬态碳是如何积累和利用的,大麦植物在白天和夜间的低温条件下生长。白天和夜间的低温都会降低生长速度。蔗糖是夜间提供生长的主要碳水化合物,占消耗碳的 50-60%。在温暖的白天和夜晚,淀粉是第二大贡献者,占 26%,而苹果酸是第三大贡献者,占 15%。在寒冷的夜晚,由于其合成受到抑制,包括在温暖的白天,淀粉的贡献严重减少,而苹果酸则是 C 需求的第二大贡献者,占消耗碳总量的 24-28%。我们提出,苹果酸在大麦中作为蔗糖和淀粉的替代碳源发挥着关键作用。在大麦 elf3 生物钟突变体中,己糖、苹果酸和蔗糖的动员以及淀粉的积累受到影响,这表明它们的代谢受到生物钟的调节,但不会影响生长和光合作用。总的来说,我们的数据表明,蔗糖和苹果酸的动员和/或大麦生长机制对低温敏感。

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