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Ultrabithorax and abdominal-A specify the abdominal appendage in a dosage-dependent manner in silkworm Bombyx mori

机译:Ultrabithorax和abdominal-A在家蚕中以剂量依赖的方式指定腹部附件

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摘要

In insects, there is a considerable diversity in leg distribution on the body, including number, segmental arrangement, morphological identity and consequent function, but the genetic basis for these differences is not well understood. Here by positional cloning, we showed that a ~355 kb region, including Bombyx mori Ultrabithorax (BmUbx) and abdominal-A (Bmabd-A), was responsible for the silkworm mutant Kh-extra-crescents-like (EKh-l) that displayed additional thoracic limb-like legs on the first abdominal segment (A1) and occasionally on the second abdominal segment (A2). We found that BmUbx gene was downregulated at both messenger RNA level and protein level in EKh-l embryo, while its expression domain in the EKh-l embryo was almost the same as that in the wild type. Whereas Bmabd-A was upregulated at both levels and was ectopically overexpressed on the supernumerary leg-bearing segments in EKh-l. Compared with the previously reported Ecs-l mutant in which increased expression of both BmUbx and Bmabd-A gave rise to ectopic proleg-like appendages on the same segments, we propose that overexpressed Bmabd-A gene is capable to promote the outgrowth of extra leg appendages on A1 and A2 segments, whereas BmUbx gene is required to specify accurate morphologies of the ectopic legs in a dosage-dependent manner in silkworm. These results provide insights into how these hox genes regulate the leg morphologic diversity on the same segments.
机译:在昆虫中,肢体在身体上的分布存在很大差异,包括数量,节段排列,形态特征和随之产生的功能,但这些差异的遗传基础尚不十分清楚。在这里,通过位置克隆,我们发现蚕桑突变体Kh-extra-crescents-like(E -l)在第一个腹部(A1)上显示出额外的胸肢状腿,偶尔在第二个腹部(A2)上显示出其他胸部四肢状腿。我们发现BmUbx基因在E Kh -l胚胎的信使RNA水平和蛋白水平均被下调,而在E Kh -l胚胎的表达域几乎处于与野生型相同。而Bmabd-A在这两个水平上均上调,在 E Kh -l < / em>。与先前报道的 E cs -l <​​/ em>突变体(其中两个 BmUbx的表达均增加)相比em>和 Bmabd-A 在同一节段上产生异位的前腿样附件,我们建议过表达的 Bmabd-A 基因能够促进多余腿的生长在A1和A2片段上附加,而 BmUbx 基因则需要以剂量依赖性方式指定家蚕的异位腿的准确形态。这些结果提供了洞见,这些Hox基因如何在相同的节段上调节腿的形态多样性。

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