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描述青霉属真菌生产乙烯受磷酸盐调控的特性。

Characterization of the Phosphate-mediated Control of Ethylene Production by Penicillium digitatum.

机构信息

Post Harvest Plant Physiology Laboratory, Beltsville Agricultural Research Center (W), Beltsville, Maryland 20705.

出版信息

Plant Physiol. 1979 Jul;64(1):55-60. doi: 10.1104/pp.64.1.55.

Abstract

Characterization of the phosphate effect on ethylene production by Penicillium digitatum is reported. A low level of phosphate (0.001 millimolar) was about 200 to 500 times as effective as a high phosphate level (100 millimolar) in stimulating ethylene production and the stimulation was readily reversed by addition of phosphate. This phosphate effect did not operate in static cultures. The precursor of ethylene in the stimulated low phosphate system was glutamate but not alpha-ketoglutarate, which is a precursor in static systems. Actinomycin D and cycloheximide effectively inhibited the low phosphate/high ethylene-producing system. Alkaline phosphatase and protein kinase activities were higher in low than in high phosphate systems. We suggest that phosphate level regulates ethylene production by P. digitatum and that the regulation involves a phosphorylation or dephosphorylation reaction of some enzyme system associated with ethylene production. Phosphate-mediated control of ethylene production may also involve the transcriptional and translational machinery of the fungal cell. P. digitatum apparently can produce widely different levels of ethylene by different pathways, depending on culture conditions under which it is grown.

摘要

本文报道了磷酸盐对桔青霉素产生乙烯作用的影响。低浓度磷酸盐(0.001 毫摩尔)对乙烯产生的刺激作用比高浓度磷酸盐(100 毫摩尔)高 200 至 500 倍,这种刺激作用很容易被磷酸盐的添加所逆转。这种磷酸盐效应在静态培养中不起作用。在受刺激的低磷酸盐系统中,乙烯的前体是谷氨酸而不是α-酮戊二酸,α-酮戊二酸是静态系统中的前体。放线菌酮和环己酰亚胺能有效地抑制低磷酸盐/高乙烯产生系统。碱性磷酸酶和蛋白激酶的活性在低磷酸盐系统中比在高磷酸盐系统中更高。我们认为磷酸盐水平通过桔青霉素调节乙烯的产生,这种调节涉及与乙烯产生相关的某些酶系统的磷酸化或去磷酸化反应。磷酸盐介导的乙烯产生的控制可能也涉及真菌细胞的转录和翻译机制。桔青霉素显然可以通过不同的途径产生广泛不同水平的乙烯,这取决于它生长的培养条件。

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本文引用的文献

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Fluorometric assay of proteins in the nanogram range.纳克级蛋白质的荧光测定法。
Arch Biochem Biophys. 1973 Mar;155(1):213-20. doi: 10.1016/s0003-9861(73)80023-2.
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The biogenesis of ethylene in Penicillium digitatum.指状青霉中乙烯的生物合成
Arch Biochem Biophys. 1973 Jul;157(1):73-82. doi: 10.1016/0003-9861(73)90391-3.
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Protein kinases.蛋白激酶
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