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植物中的冰核活性:分布、特征及其在抗寒机制中的作用。

Ice Nucleation Activity in Plants: The Distribution, Characterization, and Their Roles in Cold Hardiness Mechanisms.

机构信息

Imaging Frontier Center, Tokyo University of Science, Noda, Chiba, Japan.

Department of Forest Science, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Bunkyo-ku, Tokyo, Japan.

出版信息

Adv Exp Med Biol. 2018;1081:99-115. doi: 10.1007/978-981-13-1244-1_6.

Abstract

Control of freezing in plant tissues is a key issue in cold hardiness mechanisms. Yet freeze-regulation mechanisms remain mostly unexplored. Among them, ice nucleation activity (INA) is a primary factor involved in the initiation and regulation of freezing events in plant tissues, yet the details remain poorly understood. To address this, we developed a highly reproducible assay for determining plant tissue INA and noninvasive freeze visualization tools using MRI and infrared thermography. The results of visualization studies on plant freezing behaviors and INA survey of over 600 species tissues show that (1) freezing-sensitive plants tend to have low INA in their tissues (thus tend to transiently supercool), while wintering cold-hardy species have high INA in some specialized tissues; and (2) the high INA in cold-hardy tissues likely functions as a freezing sensor to initiate freezing at warm subzero temperatures at appropriate locations and timing, resulting in the induction of tissue-/species-specific freezing behaviors (e.g., extracellular freezing, extraorgan freezing) and the freezing order among tissues: from the primary freeze to the last tissue remaining unfrozen (likely INA level dependent). The spatiotemporal distributions of tissue INA, their characterization, and functional roles are detailed. INA assay principles, anti-nucleation activity (ANA), and freeze visualization tools are also described.

摘要

控制植物组织的冻结是冷韧性机制中的一个关键问题。然而,冻结调节机制在很大程度上仍未得到探索。其中,冰核活性(INA)是参与植物组织冻结事件的启动和调节的主要因素,但细节仍知之甚少。为了解决这个问题,我们开发了一种高度可重复的测定植物组织 INA 的方法,以及使用 MRI 和红外热成像的非侵入性冷冻可视化工具。对植物冷冻行为的可视化研究和对 600 多种物种组织的 INA 调查的结果表明:(1)对冻结敏感的植物在其组织中往往具有低的 INA(因此往往会暂时过冷),而越冬耐寒物种在一些特化组织中具有高的 INA;(2)耐寒组织中的高 INA 可能作为冻结传感器,在适当的位置和时间启动温暖的亚零温度下的冻结,导致诱导组织/物种特异性的冻结行为(例如,细胞外冻结、器官外冻结)和组织间的冻结顺序:从主要冻结到最后一个组织仍未冻结(可能与 INA 水平有关)。详细描述了组织 INA 的时空分布、其特征和功能作用。INA 测定原理、抗核活性(ANA)和冷冻可视化工具也进行了描述。

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