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通过粒子轰击用病毒编码构建体高效感染植物的简易手持设备。

Simple hand-held devices for the efficient infection of plants with viral-encoding constructs by particle bombardment.

作者信息

Gal-On A, Meiri E, Elman C, Gray D J, Gaba V

机构信息

Department of Virology, Volcani Center, Bet Dagan, Israel.

出版信息

J Virol Methods. 1997 Feb;64(1):103-10. doi: 10.1016/s0166-0934(96)02146-5.

Abstract

An efficient method for infection of plants with a cloned potyvirus by particle bombardment has been described (Gal-On et al., 1995). A simplified method is described now whereby a vaccuum chamber and helium propulsive gas are not required to achieve a high efficiency of infection. The new device-the 'HandGun'--is hand-held, and easily constructed from readily available materials. With this technique it is possible to bombard soft plants and seedings that do not survive particle bombardment by other devices. bombardment of C. pepo plants with a full length clone of zucchini yellow mosaic potyvirus results in approximately 100% infection at 100 pg cDNA per plant using air or helium to propel the microprojectiles. The HandGun is 10(5)-fold more efficient than mechanical inoculation. Tungsten and gold were found to be the most efficient materials tested for use as microprojectiles. Crude extracts of plasmids from E. coli were found to be effective, as well as column-purified cDNA. A functional, simple version of the HandGun--'the Blowpipe'--was also constructed, which does not require an electrically controlled valve. Plants can be inoculated with plant viruses from sap with the HandGun.

摘要

已描述了一种通过粒子轰击用克隆的马铃薯Y病毒感染植物的有效方法(Gal-On等人,1995年)。现在描述一种简化方法,该方法无需真空室和氦推进气体即可实现高效感染。新装置——“手枪”——是手持式的,并且很容易用现成的材料制成。用这种技术可以轰击其他装置进行粒子轰击时无法存活的柔软植物和幼苗。用西葫芦黄花叶马铃薯Y病毒的全长克隆对西葫芦植物进行轰击,使用空气或氦气推动微弹,每株植物使用100 pg cDNA时感染率约为100%。“手枪”比机械接种效率高10⁵倍。发现钨和金是用作微弹测试的最有效材料。发现大肠杆菌质粒的粗提物以及柱纯化的cDNA是有效的。还构建了“手枪”的一个功能简单版本——“吹管”,它不需要电控阀。可以用“手枪”从汁液中对植物接种植物病毒。

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