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Effects of elevated temperature and carbon dioxide on seed‐set and yield of kidney bean ( Phaseolus vulgaris L.)

P. V. Vara Prasad; Kenneth J. Boote; L. Hartwell Allen; Jean M. G. Thomas
Global Change Biology · Vol. 8, Issue 8 · pp. 710-721 · 2002

Abstract

It is important to quantify and understand the consequences of elevated temperature and carbon dioxide (CO 2 ) on reproductive processes and yield to develop suitable agronomic or genetic management for future climates. The objectives of this research work were (a) to quantify the effects of elevated temperature and CO 2 on photosynthesis, pollen production, pollen viability, seed‐set, seed number, seeds per pod, seed size, seed yield and dry matter production of kidney bean and (b) to determine if deleterious effects of high temperature on reproductive processes and yield could be compensated by enhanced photosynthesis at elevated CO 2 levels. Red kidney bean cv. Montcalm was grown in controlled environments at day/night temperatures ranging from 28/18 to 40/30 °C under ambient (350 µmol mol −1 ) or elevated (700 µmol mol −1 ) CO 2 levels. There were strong negative relations between temperature over a range of 28/18–40/30 °C and seed‐set (slope, − 6.5% °C −1 ) and seed number per pod (− 0.34 °C −1 ) under both ambient and elevated CO 2 levels. Exposure to temperature > 28/18 °C also reduced photosynthesis (− 0.3 and − 0.9 µmol m −2 s −1 °C −1 ), seed number (− 2.3 and − 3.3 °C −1 ) and seed yield (− 1.1 and − 1.5 g plant −1 °C −1 ), at both the CO 2 levels (ambient and elevated, respectively). Reduced seed‐set and seed number at high temperatures was primarily owing to decreased pollen production and pollen viability. Elevated CO 2 did not affect seed size but temperature > 31/21 °C linearly reduced seed size by 0.07 g °C −1 . Elevated CO 2 increased photosynthesis and seed yield by approximately 50 and 24%, respectively. There was no beneficial interaction of CO 2 and temperature, and CO 2 enrichment did not offset the negative effects of high temperatures on reproductive processes and yield. In conclusion, even with beneficial effects of CO 2 enrichment, yield losses owing to high temperature (> 34/24 °C) are likely to occur, particularly if high temperatures coincide with sensitive stages of reproductive development.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2002-08-01
Publication Year2002
Volume8
Issue8
Pages710-721
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1046/j.1365-2486.2002.00508.x
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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