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Yorkie Facilitates Organ Growth and Metamorphosis in Bombyx

机译:Yorkie促进家蚕的器官生长和变态

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The Hippo pathway, which was identified from genetic screens in the fruit fly, Drosophila melanogaster, has a major size-control function in animals. All key components of the Hippo pathway, including the transcriptional coactivator Yorkie that is the most critical substrate and downstream effector of the Hippo kinase cassette, are found in the silkworm, Bombyx mori. As revealed by microarray and quantitative real-time PCR, expression of Hippo pathway genes is particularly enriched in several mitotic tissues, including the ovary, testis, and wing disc. Developmental profiles of Hippo pathway genes are generally similar (with the exception of Yorkie) within each organ, but vary greatly in different tissues showing nearly opposing expression patterns in the wing disc and the posterior silk gland (PSG) on day 2 of the prepupal stage. Importantly, the reduction of Yorkie expression by RNAi downregulated Yorkie target genes in the ovary, decreased egg number, and delayed larval-pupal-adult metamorphosis. In contrast, baculovirus-mediated YorkieCA overexpression upregulated Yorkie target genes in the PSG, increased PSG size, and accelerated larval-pupal metamorphosis. Together the results show that Yorkie potentially facilitates organ growth and metamorphosis, and suggest that the evolutionarily conserved Hippo pathway is critical for size control, particularly for PSG growth, in the silkworm.
机译:从果蝇果蝇的遗传筛选中鉴定出的河马途径在动物中具有主要的大小控制功能。河马途径的所有关键组成部分,包括转录共激活因子Yorkie(是河马激酶盒最关键的底物和下游效应子),都在家蚕中发现。正如微阵列和实时定量PCR所揭示的,河马途径基因的表达在一些有丝分裂组织中特别丰富,包括卵巢,睾丸和翼状盘。在每个器官内,河马途径基因的发育概况通常相似(约克除外),但在不同组织中差异很大,在pu前阶段的第二天在翼盘和后丝腺(PSG)中显示出几乎相反的表达模式。重要的是,RNAi降低Yorkie表达的作用下调了卵巢中的Yorkie靶基因,降低了卵数,并延迟了幼虫-pu成人变态。相反,杆状病毒介导的Yorkie CA 过表达上调了PSG中的Yorkie靶基因,增加了PSG的大小,并加速了幼虫-的变态。在一起的结果表明,Yorkie潜在地促进了器官的生长和变态,并表明进化上保守的Hippo途径对于家蚕的大小控制(尤其是PSG生长)至关重要。

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