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使用荧光活体染料检测瘿蜂幼虫(Eurosta solidaginis,双翅目:实蝇科)细胞和组织的冻害及季节性抗寒硬化。

Detecting freeze injury and seasonal cold-hardening of cells and tissues in the gall fly larvae, Eurosta solidaginis (Diptera: Tephritidae) using fluorescent vital dyes.

作者信息

Yi Shu-Xia, Lee Richard E

机构信息

Department of Zoology, Miami University, Oxford, OH 45056, USA.

出版信息

J Insect Physiol. 2003 Nov;49(11):999-1004. doi: 10.1016/s0022-1910(03)00168-9.

DOI:10.1016/s0022-1910(03)00168-9
PMID:14568577
Abstract

This study identified a hierarchy in levels of cold tolerance for diverse tissues from larvae of Eurosta solidaginis. Following freezing at -80 degrees C, larval survival and the viability of specific tissues were assessed using membrane-permeant DNA stain (SYBY-14) and propidium iodide. Integumentary muscle, hemocytes, tracheae, and the crystal-containing portion of the Malpighian tubules were most susceptible to freezing injury. A second group consisting of fat body, salivary glands, and the proximal region of the Malpighian tubules were intermediate in their susceptibility, while the foregut, midgut, and hindgut were the most resistant to freezing injury. Seasonal increases in larval cold tolerance were closely matched by changes in the cold tolerance of individual tissues. Compared to larvae collected in September, the survival rates for each of the six tissues tested from October-collected larvae increased by 20-30%. The survival rate in all tissues was notably higher than that of whole animals, indicating that larval death could not be explained by the mortality in any of the tissues we tested. This method will be useful for assessing the nature of chilling/freezing injury, the role cryoprotectants, and cellular changes promoting cold tolerance.

摘要

本研究确定了来自金蝇实蝇幼虫不同组织的耐寒性等级。在-80℃冷冻后,使用膜通透性DNA染料(SYBY-14)和碘化丙啶评估幼虫的存活率和特定组织的活力。体表肌肉、血细胞、气管以及马氏管含晶体部分对冷冻损伤最敏感。由脂肪体、唾液腺和马氏管近端区域组成的第二组在敏感性上处于中间水平,而前肠、中肠和后肠对冷冻损伤最具抵抗力。幼虫耐寒性的季节性增加与各个组织耐寒性的变化密切匹配。与9月收集的幼虫相比,10月收集的幼虫所测试的六种组织中,每种组织的存活率提高了20%-30%。所有组织的存活率明显高于整个动物的存活率,这表明幼虫的死亡不能用我们测试的任何组织的死亡率来解释。这种方法将有助于评估冷害/冻害的性质、抗冻剂的作用以及促进耐寒性的细胞变化。

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