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Equivalence of riboflavin-binding hexamerin and arylphorin as reserves for adult development in two saturniid moths

机译:核黄素结合六聚体蛋白和芳基隐蛋白等同于两个as蛾的成虫发育储备

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The riboflavin-binding hexamerin (RbH) and arylphorin (ArH) were compared as storage reservoirs for adult development in Hyalophora cecropia. The two hexamerins were metabolically labelled with [3H]leucine and [35S]methionine, isolated by column chromatography, and separately injected into pupae whose diapause had been terminated by chilling. By the time of eclosion at least 98% of both hexamerins had been cleared from the haemolymph. Every reproductive and somatic tissue tested contained trichloroacetic acid-precipitable label; consistent differences between the two hexamerins were not detected in the distribution of their label to these tissues. While incorporation of intact hexamerins was not ruled out, hydrolysis and reincorporation of the liberated amino acids were indicated by label in vitellogenin and lipophorin, and by differences in 35S/3H ratios, which ranged from over 1.0 in chorions to 0.4 in wings, as compared with 0.75 in the injected hexamerins. Injection of [35S,3H]RbH from H. cecropia into Actias luna, a species in the same subfamily whose pupae lack this hexamerin, resulted in a pattern of isotope incorporation similar to that yielded by RbH in the donor species. In neither species was there indication of a developing adult tissue that distinguished between RbH and ArH as precursor reservoirs for morphogenesis. This equivalence helps explain how many species of Lepidoptera are able to complete metamorphosis and reproduce without expressing an RbH gene. Evidence is also presented that ArH stored in the fat body protein granules during pupation may be utilized differently from that remaining in pupal haemolymph.
机译:比较了核黄素结合六聚体(RbH)和芳基泛素(ArH)作为透明质酸透明膜菌成虫发育的储存库。两种六聚体用[3H]亮氨酸和[35S]蛋氨酸进行代谢标记,通过柱色谱法分离,分别注射入已因冷而终止的di。到发芽时,至少有98%的两种六聚体已从血淋巴中清除。每个测试的生殖和体细胞组织均含有三氯乙酸可沉淀的标记;在它们向这些组织的标记分布中未检测到两种六聚体之间的一致差异。尽管不排除完整六聚体的掺入,但释放的氨基酸的水解和再掺入由卵黄蛋白原和脂蛋白的标记以及35S / 3H比率的差异表示,该比率在绒毛膜中超过1.0,在机翼中为0.4。在注射的六聚体中加入0.75。从盲肠嗜血杆菌向[Actias luna](,的亚科缺少该六聚体)中的一个物种注射[35S,3H] RbH,导致同位素掺入的模式类似于供体物种中RbH产生的同位素。在这两个物种中都没有迹象表明发育中的成年组织可以区分RbH和ArH作为形态发生的前体储藏库。这种等效性有助于解释鳞翅目有多少种物种能够完成变态并繁殖而无需表达RbH基因。也有证据表明化p期间储存在脂肪体蛋白颗粒中的ArH可能与from血淋巴中残留的ArH的利用方式不同。

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