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Drought Tolerance Mechanisms in Plants: Physiological Responses Associated with Water Deficit Stress in <em>Solanum lycopersicum</em> | OMICS International| Abstract
ISSN: 2329-8863

Advances in Crop Science and Technology
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  • Review Article   
  • Adv Crop Sci Tech 2018, Vol 6(3): 362
  • DOI: 10.4172/2329-8863.1000362

Drought Tolerance Mechanisms in Plants: Physiological Responses Associated with Water Deficit Stress in Solanum lycopersicum

Rowland M Kamanga1*, Ernest Mbega2 and Patrick Ndakidemi2
1Department of Horticulture, Lilongwe University of Agriculture and Natural Resources, , PO Box 219, Lilongwe, Malawi
2School of Life Sciences and Bio-Engineering, Nelson Mandela African Institution of Science and Technology, , PO Box 23, Arusha, Tanzania
*Corresponding Author : Rowland M Kamanga, Department of Horticulture, Lilongwe University of Agriculture and Natural Resources, PO Box 219, Lilongwe, Malawi, Tel: +81 (0) 70-7564-0265, Email: rowlandkamanga5@gmail.com

Received Date: Apr 11, 2018 / Accepted Date: May 10, 2018 / Published Date: May 17, 2018

Abstract

Drought is among the top largest causes of agricultural productivity losses globally. Tomato (Solanum lycopersicum L.) is a commercially important crop considerably hampered by drought. It is considered a drought sensitive crop with a yield response factor (Ky) 1.05. Although advancements in molecular research and plant breeding have led to release of drought tolerant cultivars in most developed countries, breeding efforts have focused on yield as the core selection index particularly in Sub-Saharan Africa (SSA) with less regard for drought tolerance. Several studies, however, have documented various physiological, morphological and biochemical adaptive drought tolerance and avoidance strategies in tomatoes and other crop species. It is argued that selection efficiency for drought tolerance breeding programs would be improved if physiological traits linked to drought tolerance are considered. This review presents an overview of previous research efforts in understanding physiological responses to drought, in crop species with particular attention to Solanum lycopersicum (Tomato). It further highlights research gaps, identifying unexplored domains and suggesting recommendations for future investigation.

Keywords: Drought; Physiological traits; Chlorophyll fluorescence; Photosynthesis; Reactive oxygen species

Citation: Kamanga RM, Mbega E, Ndakidemi P (2018) Drought Tolerance Mechanisms in Plants: Physiological Responses Associated with Water Deficit Stress in Solanum lycopersicum. Adv Crop Sci Tech 6: 362. Doi: 10.4172/2329-8863.1000362

Copyright: © 2018 Kamanga RM, et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

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