| Title : Silencing the triacylglycerol lipase (TGL) gene decreases the number of apyrene sperm and inhibits oviposition in Sitotroga cerealella - Yan_2021_Cell.Mol.Life.Sci__ |
| Author(s) : Yan WH , Wu MY , Shah S , Yao YC , Elgizawy KK , Tang N , Wu G , Yang FL |
| Ref : Cell Mol Life Sciences , : , 2021 |
| Abstract : |
| PubMedSearch : Yan_2021_Cell.Mol.Life.Sci__ |
| PubMedID: 34971424 |
| Title : Silencing the triacylglycerol lipase (TGL) gene decreases the number of apyrene sperm and inhibits oviposition in Sitotroga cerealella - Yan_2021_Cell.Mol.Life.Sci__ |
| Author(s) : Yan WH , Wu MY , Shah S , Yao YC , Elgizawy KK , Tang N , Wu G , Yang FL |
| Ref : Cell Mol Life Sciences , : , 2021 |
| Abstract : |
| PubMedSearch : Yan_2021_Cell.Mol.Life.Sci__ |
| PubMedID: 34971424 |
| Title : Silencing the triacylglycerol lipase (TGL) gene decreases the number of apyrene sperm and inhibits oviposition in Sitotroga cerealella - Yan_2021_Cell.Mol.Life.Sci__ |
| Author(s) : Yan WH , Wu MY , Shah S , Yao YC , Elgizawy KK , Tang N , Wu G , Yang FL |
| Ref : Cell Mol Life Sciences , : , 2021 |
| Abstract : |
| PubMedSearch : Yan_2021_Cell.Mol.Life.Sci__ |
| PubMedID: 34971424 |
| Title : Time-dependent stress evidence in dynamic allocation of physiological metabolism of Nilaparvata lugens in response to elevated CO2 - Zhao_2020_Environ.Pollut_265_114767 |
| Author(s) : Zhao MH , Zheng XX , Liu JP , Zeng YY , Yang FL , Wu G |
| Ref : Environ Pollut , 265 :114767 , 2020 |
| Abstract : |
| PubMedSearch : Zhao_2020_Environ.Pollut_265_114767 |
| PubMedID: 32447170 |
| Title : Time-dependent stress evidence in dynamic allocation of physiological metabolism of Nilaparvata lugens in response to elevated CO2 - Zhao_2020_Environ.Pollut_265_114767 |
| Author(s) : Zhao MH , Zheng XX , Liu JP , Zeng YY , Yang FL , Wu G |
| Ref : Environ Pollut , 265 :114767 , 2020 |
| Abstract : |
| PubMedSearch : Zhao_2020_Environ.Pollut_265_114767 |
| PubMedID: 32447170 |
| Title : Time-dependent stress evidence in dynamic allocation of physiological metabolism of Nilaparvata lugens in response to elevated CO2 - Zhao_2020_Environ.Pollut_265_114767 |
| Author(s) : Zhao MH , Zheng XX , Liu JP , Zeng YY , Yang FL , Wu G |
| Ref : Environ Pollut , 265 :114767 , 2020 |
| Abstract : |
| PubMedSearch : Zhao_2020_Environ.Pollut_265_114767 |
| PubMedID: 32447170 |