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Mutation of a vitelline membrane protein, BmEP80, is responsible for the silkworm "Ming" lethal egg mutant
Anli Chen1, Peng Gao, Qiaoling Zhao
1The Sericultural Research Institute, Jiangsu University of Science and Technology, Zhenjiang Jiangsu 212018, China.
Abstract:
The egg stage is an important stage in the silkworm (Bombyx mori) life cycle. Normal silkworm eggs are usually short, elliptical, and laterally flattened, with a sometimes hollowed surface on the lateral side. However, the eggs laid by homozygous recessive "Ming" lethal egg mutants (l-e(m)) lose water and become concaved around 1h, ultimately exhibiting a triangular shape on the egg surfaces. We performed positional cloning, and narrowed down the region containing the gene responsible for the l-e(m) mutant to 360 kb on chromosome 10 using 2287 F(2) individuals. Using expression analysis and RNA interference, the best l-e(m) candidate gene was shown to be BmEP80. The results of the inverse polymerase chain reaction showed that an ~1.9 kb region from the 3' untranslated region of BmVMP23 to the forepart of BmEP80 was replaced by a >100 kb DNA fragment in the l-e(m) mutant. Several eggs laid by the normal moths injected with BmEP80 small interfering RNAs were evidently depressed and exhibited a triangular shape on the surface. The phenotype exhibited was consistent with the eggs laid by the l-e(m) mutant. Moreover, two-dimensional gel electrophoresis showed that the BmEP80 protein was expressed in the ovary from the 9th day of the pupa stage to eclosion in the wild-type silkworm, but was absent in the l-e(m) mutant. These results indicate that BmEP80 is responsible for the l-e(m) mutation.
Insights
The lethal egg (l-e(m)) mutation in silkworms causes triangular-shaped eggs due to water loss. This study identifies BmEP80 as the responsible gene, crucial for normal egg development in Bombyx mori.
Area of Science:
- Genetics
- Developmental Biology
- Entomology
Background:
- The silkworm (Bombyx mori) egg stage is critical for its life cycle.
- Mutant lethal egg (l-e(m)) silkworm eggs exhibit water loss and a triangular shape, differing from normal elliptical eggs.
Purpose of the Study:
- To identify the gene responsible for the lethal egg (l-e(m)) mutation in Bombyx mori.
- To understand the molecular mechanism underlying the abnormal egg morphology.
Main Methods:
- Positional cloning was used to narrow down the mutation locus to a 360 kb region on chromosome 10.
- Expression analysis, RNA interference (RNAi), and inverse polymerase chain reaction (IPCR) were employed to identify and validate the candidate gene.
- Two-dimensional gel electrophoresis was used to analyze protein expression.
Main Results:
- The gene BmEP80 was identified as the best candidate for the l-e(m) mutation.
- A large DNA fragment insertion in the 3' untranslated region of BmEP80 was found in the l-e(m) mutant.
- Injection of BmEP80 small interfering RNAs into normal silkworm eggs induced a similar triangular phenotype.
- BmEP80 protein expression was detected in wild-type silkworm ovaries but absent in the l-e(m) mutant.
Conclusions:
- BmEP80 is the gene responsible for the lethal egg (l-e(m)) mutation in Bombyx mori.
- The absence or dysfunction of BmEP80 leads to abnormal water regulation and the characteristic triangular egg shape.
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