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蜕皮甾体对促前胸腺激素分泌的正反馈调节——一种决定变态时机的机制。

Positive feedback regulation of prothoracicotropic hormone secretion by ecdysteroid--a mechanism that determines the timing of metamorphosis.

作者信息

Mizoguchi Akira, Kamimura Manabu, Kiuchi Makoto, Kataoka Hiroshi

机构信息

Division of Biological Science, Graduate School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8602, Japan.

National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8634, Japan.

出版信息

Insect Biochem Mol Biol. 2015 Mar;58:39-45. doi: 10.1016/j.ibmb.2015.01.001. Epub 2015 Jan 13.

Abstract

When insect larvae have fully grown, prothoracicotropic hormone (PTTH) is released from the brain, triggering the initiation of metamorphic development through stimulation of ecdysteroid secretion by the prothoracic glands. The present study analyzes the mechanism that regulates the occurrence of this PTTH surge. In the silkworm Bombyx mori, the PTTH surge occurs on day 6 of the fifth instar and is preceded by a small rise in hemolymph ecdysteroid titer, which occurs late on day 5. We therefore hypothesized that this rise of ecdysteroid titer is involved in the induction of the PTTH surge. To test this hypothesis, two experiments were conducted. First, a small amount of 20-hydroxyecdysone was injected on day 4, two days before the expected day of the PTTH surge, to simulate the small rise in hemolymph ecdysteroid titer on day 5. This injection led to a precocious surge of PTTH the next day. Next, the hemolymph ecdysteroid titer on day 5 was artificially lowered by injecting ecdysteroid-22-oxidase, which inactivates 20-hydroxyecdysone. After this treatment, the PTTH surge did not occur on day 6 in 80% of the animals. These results indicate that a small rise of the hemolymph ecdysteroid titer plays a critical role in the induction of the PTTH surge. Since basal ecdysteroidogenic activity of the prothoracic glands increases with larval growth, a circulating level of ecdysteroids may convey information about larval maturity to the brain, to coordinate larval growth and metamorphosis. This is the first report in invertebrates to demonstrate positive feedback regulation of the surge of a tropic hormone by a downstream steroid hormone.

摘要

当昆虫幼虫完全长大后,促前胸腺激素(PTTH)从大脑释放,通过刺激前胸腺分泌蜕皮甾体,触发变态发育的开始。本研究分析了调节这种PTTH激增发生的机制。在家蚕中,PTTH激增发生在五龄幼虫的第6天,在其之前,血淋巴蜕皮甾体滴度在第5天晚些时候出现小幅上升。因此,我们假设这种蜕皮甾体滴度的上升与PTTH激增的诱导有关。为了验证这一假设,进行了两个实验。首先,在预计PTTH激增的前2天,即第4天注射少量20-羟基蜕皮酮,以模拟第5天血淋巴蜕皮甾体滴度的小幅上升。这次注射导致第二天PTTH提前激增。其次,通过注射使20-羟基蜕皮酮失活的蜕皮甾体-22-氧化酶,人为降低第5天的血淋巴蜕皮甾体滴度。经过这种处理后,80%的动物在第6天没有出现PTTH激增。这些结果表明,血淋巴蜕皮甾体滴度的小幅上升在PTTH激增的诱导中起关键作用。由于前胸腺的基础蜕皮甾体生成活性随着幼虫生长而增加,蜕皮甾体的循环水平可能将幼虫成熟的信息传递给大脑,以协调幼虫生长和变态。这是在无脊椎动物中首次报道下游甾体激素对促性腺激素激增的正反馈调节。

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