Literature DB >> 22387141

Genotypic variations in photosynthetic and physiological adjustment to potassium deficiency in cotton (Gossypium hirsutum).

Ning Wang1, Hanbai Hua, A Egrinya Eneji, Zhaohu Li, Liusheng Duan, Xiaoli Tian.   

Abstract

A hydroponic culture experiment was conducted to determine genotypic variation in photosynthetic rate and the associated physiological changes in response to potassium (K) deficiency in cotton (Gossypium hirsutum L.) seedlings with contrasting two cotton cultivars in K efficiency. The K-efficient Liaomian18 produced 66.7% more biomass than the K-inefficient NuCOTN99(B) under K deficiency, despite their similar biomass under K sufficiency. Compared with NuCOTN99(B), Liaomian18 showed 19.4% higher net photosynthetic rate (P(n), per unit leaf area) under K deficient solutions and this was associated with higher photochemical efficiency and faster export of soluble sugars from the phloem. The lower net P(n) of NuCOTN99(B) was attributed to higher capacity for nitrate assimilation and lower export of soluble sugars. Furthermore, NuCOTN99(B) showed 38.4% greater ETR/P(n) than Liaomian18 under K deficiency, indicating that more electrons were driven to other sinks. Higher superoxide dismutase (SOD) and lower catalase (CAT) and ascorbate peroxidase (APX) activities resulted in higher levels of reactive oxygen species (ROS; e.g. O(2)(-)and H(2)O(2)) in NuCOTN99(B) relative to Liaomian18. Thus, the K inefficiency of NuCOTN99(B), indicated by lower biomass and net P(n) under K deficiency, was associated with excessively high nitrogen assimilation, lower export of carbon assimilates, and greater ROS accumulation in the leaf. Crown
Copyright © 2012. Published by Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 22387141     DOI: 10.1016/j.jphotobiol.2012.02.002

Source DB:  PubMed          Journal:  J Photochem Photobiol B        ISSN: 1011-1344            Impact factor:   6.252


  12 in total

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3.  Differences on photosynthetic limitations between leaf margins and leaf centers under potassium deficiency for Brassica napus L.

Authors:  Zhifeng Lu; Tao Ren; Yonghui Pan; Xiaokun Li; Rihuan Cong; Jianwei Lu
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4.  Soil Potassium Deficiency Reduces Cotton Fiber Strength by Accelerating and Shortening Fiber Development.

Authors:  Jia-Shuo Yang; Wei Hu; Wenqing Zhao; Yali Meng; Binglin Chen; Youhua Wang; Zhiguo Zhou
Journal:  Sci Rep       Date:  2016-06-28       Impact factor: 4.379

5.  Optimization of Potassium Supply under Osmotic Stress Mitigates Oxidative Damage in Barley.

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Authors:  Yuhang Chen; Manman Yu; Zaibiao Zhu; Lixia Zhang; Qiaosheng Guo
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7.  Gene expression analysis of rice seedling under potassium deprivation reveals major changes in metabolism and signaling components.

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Journal:  PLoS One       Date:  2013-07-29       Impact factor: 3.240

8.  Overexpression of PtSOS2 Enhances Salt Tolerance in Transgenic Poplars.

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9.  Fruiting Branch K(+) Level Affects Cotton Fiber Elongation Through Osmoregulation.

Authors:  Jiashuo Yang; Wei Hu; Wenqing Zhao; Binglin Chen; Youhua Wang; Zhiguo Zhou; Yali Meng
Journal:  Front Plant Sci       Date:  2016-01-22       Impact factor: 5.753

10.  Root and leaf metabolite profiles analysis reveals the adaptive strategies to low potassium stress in barley.

Authors:  Jianbin Zeng; Xiaoyan Quan; Xiaoyan He; Shengguan Cai; Zhilan Ye; Guang Chen; Guoping Zhang
Journal:  BMC Plant Biol       Date:  2018-09-10       Impact factor: 4.215

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