Formation and regeneration of protoplasts in Sclerotium rolfsii ATCC 201126

原生质体 菌核 哈茨木霉 菌丝体 蔗糖 溶解 生物 溶解循环 复归 细胞壁 甘露醇 微生物学 生物化学 植物 表型 病毒 生物病虫害防治 病毒学 基因
作者
Julia I. Fariña,Oscar E. Molina,Lucía I. C. de Figueroa
出处
期刊:Journal of Applied Microbiology [Oxford University Press]
卷期号:96 (2): 254-262 被引量:19
标识
DOI:10.1046/j.1365-2672.2003.02145.x
摘要

Different cultural conditions for forming and reverting protoplasts were systematically studied to establish a rapid and efficient protocol for Sclerotium rolfsii ATCC 201126.Osmotic stabilizer, lytic enzymes and mycelial age were the main factors influencing protoplast yields. An optimized protocol involving 1-h hydrolysis of 45-h-old mycelium with Trichoderma harzianum enzymes in a 1 : 1 (w/w) biomass : enzyme ratio and 0.6 mol l-1 MgSO4 as osmotic stabilizer was designed to produce approx. 2 x 109 protoplasts per gram biomass dry weight, with 99% viability. Differences on the lytic activity between batches of commercial enzymes were clearly evidenced. Protoplast release was highly efficient showing no remaining cell wall material as witnessed by fluorescent brightener 28. Up to 26% of purified protoplasts developed into the typical filamentous form after 50 h of incubation on 0.6 mol l-1 sucrose agar media.The methodology herein proposed allowed a rapid, inexpensive and efficient protoplast production. Optimum yields were higher or in the order of that elsewhere reported for other S. rolfsii strains and the required lytic time was significantly shorter. Purified protoplasts successfully reverted to the filamentous morphology.The present research reports the former protocol for the isolation and reversion of protoplasts in S. rolfsii ATCC 201126 providing key factors to ensure optimum results. In addition, the described procedure constitutes a starting point for downstream genetic manipulation.

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