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Sakshi Khaiwal

Showing results (1-10 of 5) with videos related to

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Iscience|October 9, 2024
Gain- and loss-of-function alleles within signaling pathways lead to phenotypic diversity among individualsMatthew D Vandermeulen, Sakshi Khaiwal, Gabriel Rubio, et al.
Molecular Systems Biology|September 1, 2025
Predicting natural variation in the yeast phenotypic landscape with machine learningSakshi Khaiwal, Matteo De Chiara, Benjamin P Barré, et al.
Nature Communications|April 9, 2026
The adaptive molecular landscape of reprogrammed telomeric sequencesMelania D'Angiolo, Benjamin P Barré, Sakshi Khaiwal, et al.
Biological Research|July 28, 2023
Single nucleotide polymorphisms associated with wine fermentation and adaptation to nitrogen limitation in wild and domesticated yeast strainsEduardo I Kessi-Pérez, Eric Acuña, Camila Bastías, et al.
Nature Ecology & Evolution|February 25, 2022
Domestication reprogrammed the budding yeast life cycleMatteo De Chiara, Benjamin P Barré, Karl Persson, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Iscience|October 9, 2024
Gain- and loss-of-function alleles within signaling pathways lead to phenotypic diversity among individualsMatthew D Vandermeulen, Sakshi Khaiwal, Gabriel Rubio, et al.
Molecular Systems Biology|September 1, 2025
Predicting natural variation in the yeast phenotypic landscape with machine learningSakshi Khaiwal, Matteo De Chiara, Benjamin P Barré, et al.
Nature Communications|April 9, 2026
The adaptive molecular landscape of reprogrammed telomeric sequencesMelania D'Angiolo, Benjamin P Barré, Sakshi Khaiwal, et al.
Biological Research|July 28, 2023
Single nucleotide polymorphisms associated with wine fermentation and adaptation to nitrogen limitation in wild and domesticated yeast strainsEduardo I Kessi-Pérez, Eric Acuña, Camila Bastías, et al.
Nature Ecology & Evolution|February 25, 2022
Domestication reprogrammed the budding yeast life cycleMatteo De Chiara, Benjamin P Barré, Karl Persson, et al.
Pageof 1