Genotypic variation in intrinsic transpiration efficiency correlates with sugarcane yield under rainfed and irrigated field conditions
Autor: | Shu Fukai, J. Basnayake, Sijesh Natarajan, Prakash Lakshmanan |
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Rok vydání: | 2020 |
Předmět: |
Special Issue Articles
0106 biological sciences 0301 basic medicine Irrigation Stomatal conductance Genotype Physiology Plant Science 01 natural sciences Genetic correlation 03 medical and health sciences Animal science Genetics Dry matter Cane Transpiration biology Special Issue Article Water Plant Transpiration Cell Biology General Medicine Heritability biology.organism_classification Photosynthetic capacity Saccharum Plant Leaves 030104 developmental biology 010606 plant biology & botany |
Zdroj: | Physiologia Plantarum |
ISSN: | 1399-3054 0031-9317 |
DOI: | 10.1111/ppl.13221 |
Popis: | Intrinsic transpiration efficiency (i TE), the ratio of photosynthesis (A) to stomatal conductance (g s), is considered a useful trait for improving productivity; however, higher i TE with high A is more desirable than that with low g s. This study dissects i TE of 20 sugarcane genotypes to understand its relationship with total dry matter (TDM) and cane yield (TCH) under irrigated and rainfed conditions. Water stress reduced mean A and g s by 56 and 61%, and mean TDM and TCH by 55 and 59%, respectively; however, genotype × irrigation treatment interaction was smaller than genotype variance. Mean i TE increased from 117.4 μmol mol−1 in the irrigated treatment to 130.6 μmol mol−1 in the rainfed treatment. In irrigated conditions, i TE had high heritability (H 2 b = 0.67) and significant genetic correlation with TDM (r g = 0.58) and TCH (r g = 0.72). Under water stress, at g s below 0.1 mol m−2 s−1, non‐stomatal limitation to A was evident and i TE had low heritability (H 2 b = 0.2). Whereas in the g s range of 0.1–0.4 mol m−2 s−1, heritability of i TE (H 2 b = 0.63) and its genetic correlation with TDM (r g = 0.78) and TCH (r g = 0.75) were maximised. There was significant genotypic variation in photosynthetic capacity (A c), and the differences were related to TDM and i TE. Selecting genotypes with higher i TE and A c could offer potential for improving productivity without the unfavourable effect of low g s. |
Databáze: | OpenAIRE |
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