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Trisporoids under the stimulation of carotenogenesis in Blakeslea trispora

机译:Blakeslea trispora中类胡萝卜素刺激下的三孢子

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摘要

The patterns of trisporoid synthesis in joint cultivation of Blakeslea trispora mates have been studied. The pair of the not-zygospore-forming carotenoid overproducer strains T(+) and T(-) was found to synthesize a large amount of trisporoids, which did not differ in biological activity from those in the wild type strains. While the β-carotene synthesis stimulator β-ionone increased the amount of trisporoids, the share of trisporic acids in their composition decreased considerably. The lycopene synthesis stimulator 2-amino-6-methylpyridine caused a decrease in the content of trisporoid which had no trisporic acids in their composition. Emergence of a new substance with the maximum absorption at 250 nm, which accounted for up to 45% of the sum of trisporoids, was a general regularity in the action of both stimulators. The combined action of these two effectors resulted in additional stimulation of lycopene synthesis and was accompanied by the disappearance of trisporic acids. The aggregate findings indicate that both carotenogenesis stimulators inhibit the synthesis of trisporic acids, i. e., their action is not mediated by stimulation of trisporoid synthesis.
机译:研究了Blakeslea trispora伴侣的联合栽培中三孢子素合成的模式。发现这对不形成合子孢子的类胡萝卜素高产菌株T(+)和T(-)合成了大量的三孢子素,其生物学活性与野生型菌株没有差异。虽然β-胡萝卜素合成刺激物β-紫罗兰酮增加了三孢子的数量,但三孢子酸在其组成中的份额却大大降低了。番茄红素合成刺激剂2-氨基-6-甲基吡啶引起三孢子素含量的减少,其组成中没有三孢子酸。在两种刺激剂的作用中,普遍存在一种新物质的出现,该物质在250 nm处具有最大吸收,占三孢子类药物总和的45%。这两种效应子的共同作用导致番茄红素合成的额外刺激,并伴随着三孢子酸的消失。总体发现表明,两种类胡萝卜素刺激物均抑制三孢子酸的合成。例如,它们的作用不是由三孢子素合成的刺激介导的。

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