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体外酸度生长反应:与体内生长反应和生长素作用的关系。

The in-vitro acid-growth response: Relation to in-vivo growth responses and auxin action.

机构信息

Department of Botany, San Diego State College, San Diego, California, USA.

出版信息

Planta. 1972 Dec;104(4):282-96. doi: 10.1007/BF00386312.

Abstract

We have examined in detail the characteristics of the hydrogen-ion extension response in frozen-thawed Avena coleoptile sections (in-vitro acid-growth response). These data allow us to compare the in vitro response with the in-vivo extension responses initiated by auxin and hydrogen ions. The in-vitro response has three characteristics in common with the in-vivo responses: a similar Q10 (3-4 between 15 and 25°C, but almost 1 between 25 and 35°); a minimum yield stress; and a lack of stored growth (i.e., an inability to induce a potential for growth during periods of reduced wall tension). Both the in-vivo and in-vitro acid-growth responses have a threshold pH of about 4.5 and give an optimum response at pH values of 3 and below. These similarities suggest that the in-vitro and in-vivo acid-growth responses have a common wall-loosening and wall-extension mechanism. We have also examined the effects of Pronase, sodium lauryl sulfate (SLS), elevated temperatures, calcium, and potassium ions on the in-vitro acid-growth response. We suggest that hydrogen ions do not activate wall-associated enzymes, but act to hydrolyze non-enzymatically some acid-labile linkages in the cell wall. Furthermore, we suggest that auxin induces cell elongation either by causing the release of hydrogen ions from the protoplast or by causing the appearance in the wall of an enzyme which can hydrolyse the acid-labile linkages.

摘要

我们详细研究了冷冻解冻的燕麦胚芽鞘切片中的氢离子延伸反应(体外酸生长反应)的特征。这些数据使我们能够将体外反应与由生长素和氢离子引发的体内延伸反应进行比较。体外反应与体内反应有三个共同特征:相似的 Q10(15 到 25°C 之间为 3-4,但25 到 35°C 之间几乎为 1);最小产量应力;以及缺乏储存的生长(即,在细胞壁张力降低的时期无法诱导生长潜力)。体内和体外的酸生长反应的阈值 pH 值约为 4.5,在 pH 值为 3 及以下时会产生最佳反应。这些相似之处表明,体外和体内的酸生长反应具有共同的细胞壁松弛和细胞壁延伸机制。我们还研究了蛋白酶、十二烷基硫酸钠(SLS)、高温、钙和钾离子对体外酸生长反应的影响。我们认为氢离子不会激活与细胞壁相关的酶,而是通过非酶促方式水解细胞壁中一些酸不稳定的键。此外,我们认为生长素通过从原生质体中释放氢离子或通过在细胞壁中出现可以水解酸不稳定键的酶来诱导细胞伸长。

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