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Sorghum's drought resilience is driven by balanced stomatal regulation and sustained photosynthesis: Implications for yield stability

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Zenodo2025-09-23 更新2026-05-26 收录
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Title: Data from: "Sorghum’s drought resilience is driven by balanced stomatal regulation and sustained photosynthesis: Implications for yield stability "Authors: Vincent?Ochieng?Suba1,2,3, Rosepiah?Munene4, Osman?Mustafa4,5,6, Sara?Loftus4, Mutez?Ahmed7,8, Michaela?Dippold4,9, Dennis?Otieno1,10,11, Juxiu?Liu1,2,3, Yuelin?Li1,2,3@ @Correspondence: yuelin@scib.ac.cn Date of data collection 2021-2022 Location: Jaramogi Oginga Odinga University of Science and Technology’s Siaya Campus, Kenya (latitude: 00°3'45.4644"N, longitude: 34°17'16.1052"E). The data set supports findings of the research conducted on three sorghum varieties (IESH, GD, MKL), grown under two moisture levels (control and drought). The data is pooled for the two years. Measurement units: soil moisture content SMC (m? m??) Photosynthetic assimilation A (?mol m?? s??) Transpiration rate E ( Stomatal conductance gs (mol m?? s??) Intercellular CO2 concentration Ci (?mol mol??) Leaf water potential (MPa) Grain yield (kg ha??) Biomass yield (kg ha??) Harvest index (%)

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2025-09-23
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