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细胞蛋白质运输:低温响应途径中的新角色。

Cellular Protein Trafficking: A New Player in Low-Temperature Response Pathway.

作者信息

Ashraf M Arif, Rahman Abidur

机构信息

Biology Department, University of Massachusetts, Amherst, MA 01003, USA.

The United Graduate School of Agricultural Sciences, Iwate University, Morioka 020-8550, Japan.

出版信息

Plants (Basel). 2022 Mar 30;11(7):933. doi: 10.3390/plants11070933.

Abstract

Unlike animals, plants are unable to escape unfavorable conditions, such as extremities of temperature. Among abiotic variables, the temperature is notableas it affects plants from the molecular to the organismal level. Because of global warming, understanding temperature effects on plants is salient today and should be focused not only on rising temperature but also greater variability in temperature that is now besetting the world's natural and agricultural ecosystems. Among the temperature stresses, low-temperature stress is one of the major stresses that limits crop productivity worldwide. Over the years, although substantial progress has been made in understanding low-temperature response mechanisms in plants, the research is more focused on aerial parts of the plants rather than on the root or whole plant, and more efforts have been made in identifying and testing the major regulators of this pathway preferably in the model organism rather than in crop plants. For the low-temperature stress response mechanism, ICE-CBF regulatory pathway turned out to be the solely established pathway, and historically most of the low-temperature research is focused on this single pathway instead of exploring other alternative regulators. In this review, we tried to take an in-depth look at our current understanding of low temperature-mediated plant growth response mechanism and present the recent advancement in cell biological studies that have opened a new horizon for finding promising and potential alternative regulators of the cold stress response pathway.

摘要

与动物不同,植物无法逃避诸如极端温度等不利条件。在非生物变量中,温度值得关注,因为它从分子水平到生物体水平都会影响植物。由于全球变暖,如今了解温度对植物的影响至关重要,而且不仅应关注气温上升,还应关注困扰全球自然和农业生态系统的温度更大变异性。在温度胁迫中,低温胁迫是限制全球作物生产力的主要胁迫之一。多年来,尽管在了解植物低温响应机制方面取得了重大进展,但研究更多地集中在植物地上部分而非根部或整株植物,并且更多地致力于在模式生物而非作物中识别和测试该途径的主要调节因子。对于低温胁迫响应机制,ICE-CBF调节途径是唯一已确立的途径,并且从历史上看,大多数低温研究都集中在这一单一途径上,而不是探索其他替代调节因子。在本综述中,我们试图深入探讨我们目前对低温介导的植物生长响应机制的理解,并介绍细胞生物学研究的最新进展,这些进展为寻找冷胁迫响应途径中有前景的潜在替代调节因子开辟了新视野。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1088/9003145/cf32cbfbcb35/plants-11-00933-g001.jpg

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