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桑叶的角质层蜡质含量和晶体形态调控采后水分损失。

Leaf cuticular wax amount and crystal morphology regulate post-harvest water loss in mulberry (Morus species).

机构信息

Department of Crop Physiology, University of Agricultural Sciences, GKVK, Bangalore 560 065, India.

出版信息

Plant Physiol Biochem. 2010 Aug;48(8):690-6. doi: 10.1016/j.plaphy.2010.04.007. Epub 2010 May 9.

Abstract

Mulberry leaves are the sole source of food for silkworms (Bombyx mori), and moisture content of the detached leaves fed to silkworms determines silkworm growth and cocoon yield. Since leaf dehydration in commercial sericulture is a serious problem, development of new methods that minimize post-harvest water loss are greatly needed. In the present study, variability in moisture retention capacity (MRC, measured as leaf relative water content after one to 5 h of air-drying) was examined by screening 290 diverse mulberry accessions and the relationship between MRC and leaf surface (cuticular) wax amount was determined. Leaf MRC varied significantly among accessions, and was found to correlate strongly with leaf wax amount. Scanning electron microscopic analysis indicated that leaves having crystalline surface waxes of increased facet size and density were associated with high MRC accessions. Leaf MRC at 5 h after harvest was not related to other parameters such as specific leaf weight, and stomatal frequency and index. This study suggests that mulberry accessions having elevated leaf surface wax amount and crystal size and density exhibit reduced leaf post-harvest water loss, and could provide the foundation for selective breeding of improved cultivars.

摘要

桑叶是桑蚕(Bombyx mori)唯一的食物来源,而供给桑蚕的离体桑叶的水分含量决定了桑蚕的生长和蚕茧的产量。由于商业养蚕中桑叶脱水是一个严重的问题,因此非常需要开发新的方法来最大限度地减少收获后的水分损失。在本研究中,通过筛选 290 个不同的桑树品种,检测了保水能力(MRC,以风干后 1 至 5 小时的叶片相对含水量来衡量)的变异性,并确定了 MRC 与叶片表面(角质层)蜡质含量之间的关系。品种间叶片 MRC 差异显著,并且与叶片蜡质含量密切相关。扫描电子显微镜分析表明,具有增大的面状晶体蜡和增加的密度的叶片具有较高的 MRC 。收获后 5 小时的叶片 MRC 与其他参数(如比叶重、气孔频率和指数)无关。本研究表明,具有较高叶片表面蜡质含量和晶体大小及密度的桑树品种表现出减少的叶片收获后水分损失,可为选育改良品种提供基础。

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