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利用线粒体突变体进行工业酵母杂交:III. 通过与其他酵母物种呼吸功能完整原生质体融合恢复工业酵母菌株小菌落的线粒体功能。

The use of mitochondrial mutants in hybridization of industrial yeasts : III. Restoration of mitochondrial funktion in petites of industrial yeast strains by fusion with respiratory-competent protoplasts of other yeast species.

机构信息

Department of Biology, Thames Polytechnic, Wellington Street, SE18, London, England.

出版信息

Curr Genet. 1981 Dec;4(3):177-80. doi: 10.1007/BF00420495.

Abstract

Protoplasts of petites of strains 625-C(I) of Saccharomyces diastaticus and NCYC 1085 of Saccharomyces cerevisiae, originally obtained from the National Collection of Yeast Cultures, England, were fused with protoplasts of Candida pseudotropicalis, Saccharomyces rosei, Yaccharbmycesmontanus, Pichiamembranefaciens, Hansenula anomala, Hansenula capsulata, and Schizosac-charomyces pombe. The respiratory-competent products of the fusions were selected on the basis of using at least one of the carbon sources utilized by the petite parent and not by the other. The products of the fusion of C. pseudotropicalis x 1085(p(-)) consisted of two cell types; an oval cell which utilized both lactose and maltose and fermented lactose vigorously, and a cylindrical form which fermented maltose slowly. The S. rosei x 1085(p(-)) hybrids had acquired the ability to metabolize and ferment galactose, and to ferment maltose, from the petite parent. The P. membranaefaciens x 625(p(-)) hybrids acquired the ability to metabolize galactose, sucrose and maltose, but fermented only glucose, weakly, like the P. membranaefaciens parent strain. The H. capsulate x 625(p(-)) hybrids, unlike the hybrids with P. membranaefaciens or S. rosei, resembled the petite parent morphologically and also had the fermentative abilities of this strain (galactose, maltose, sucrose and starch), and the ability to ferment starch was considerably enhanced. The S. montanus x 625(p(-)) hybrids acquired the ability to utilize starch. Schizosaccharomyces pombe x 625(p(-)) hybrids resembled S. pombe morphologically, but had the ability to metabolize galactose and starch. Some of the asci produced by these hybrids contained abnormal numbers of spores. H. anomala x 624 x(p(-)) hybrids fermented starch, though weakly.

摘要

酿酒酵母 625-C(I)株和酿酒酵母 NCYC1085 株的小菌落原生质体最初从英国国家酵母培养物收藏所获得,与假热带假丝酵母、罗斯酵母、汉逊酵母、膜醭毕赤酵母、异常汉逊酵母、脆壁克鲁维酵母和裂殖酵母原生质体融合。融合产物的呼吸活性通过利用亲株小菌落能够利用而另一亲株不能利用的至少一种碳源进行选择。假热带假丝酵母 x1085(p(-))融合产物包含两种细胞类型;一种是长椭圆形细胞,它既能利用乳糖又能利用麦芽糖,而且能强烈发酵乳糖,另一种是圆柱状细胞,它缓慢发酵麦芽糖。罗斯酵母 x1085(p(-))杂种获得了代谢和发酵半乳糖以及发酵麦芽糖的能力,这种能力来自小菌落亲株。膜醭毕赤酵母 x625(p(-))杂种获得了代谢半乳糖、蔗糖和麦芽糖的能力,但只像膜醭毕赤酵母亲株那样微弱地发酵葡萄糖。不同于与膜醭毕赤酵母或罗斯酵母融合的杂种,脆壁克鲁维酵母 x625(p(-))杂种在形态上与小菌落亲株相似,也具有该菌株的发酵能力(发酵半乳糖、麦芽糖、蔗糖和淀粉),而且发酵淀粉的能力大大增强。汉逊酵母 x625(p(-))杂种获得了利用淀粉的能力。裂殖酵母 x625(p(-))杂种在形态上与裂殖酵母相似,但具有代谢半乳糖和淀粉的能力。这些杂种的一些子囊中含有异常数量的孢子。异常汉逊酵母 x624x(p(-))杂种虽然微弱但能发酵淀粉。

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