Literature DB >> 26228739

PdEPF1 regulates water-use efficiency and drought tolerance by modulating stomatal density in poplar.

Congpeng Wang1, Sha Liu1, Yan Dong1,2, Ying Zhao1, Anke Geng1, Xinli Xia1, Weilun Yin1.   

Abstract

Water deficiency is a critical environmental condition that is seriously reducing global plant production. Improved water-use efficiency (WUE) and drought tolerance are effective strategies to address this problem. In this study, PdEPF1, a member of the EPIDERMAL PATTERNING FACTOR (EPF) family, was isolated from the fast-growing poplar clone NE-19 [Populus nigra × (Populus deltoides × Populus nigra)]. Significantly, higher PdEPF1 levels were detected after induction by dehydration and abscisic acid. To explore the biological functions of PdEPF1, transgenic triploid white poplars (Populus tomentosa 'YiXianCiZhu B385') overexpressing PdEPF1 were constructed. PdEPF1 overexpression resulted in increased water deficit tolerance and greater WUE. We confirmed that the transgenic lines with greater instantaneous WUE had approximately 30% lower transpiration but equivalent CO2 assimilation. Lower transpiration was associated with a 28% reduction in abaxial stomatal density. PdEPF1 overexpression not only strongly enhanced WUE, but also greatly improved drought tolerance, as measured by the leaf relative water content and water potential, under limited water conditions. In addition, the growth of these oxPdEPF1 plants was less adversely affected by reduced water availability than plants with a higher stomatal density, indicating that plants with a low stomatal density may be well suited to grow in water-scarce environments. Taken together, our data suggest that PdEPF1 improves WUE and confers drought tolerance in poplar; thus, it could be used to breed drought-tolerant plants with increased production under conditions of water deficiency.
© 2015 Society for Experimental Biology, Association of Applied Biologists and John Wiley & Sons Ltd.

Entities:  

Keywords:  PdEPF1; drought tolerance; growth rate; poplar; stomatal density; water-use efficiency

Mesh:

Substances:

Year:  2015        PMID: 26228739     DOI: 10.1111/pbi.12434

Source DB:  PubMed          Journal:  Plant Biotechnol J        ISSN: 1467-7644            Impact factor:   9.803


  25 in total

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Journal:  Plant Physiol       Date:  2022-08-29       Impact factor: 8.005

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Authors:  Yong-Yao Zhao; Mingju Amy Lyu; FenFen Miao; Genyun Chen; Xin-Guang Zhu
Journal:  Plant Physiol       Date:  2022-08-29       Impact factor: 8.005

3.  Modulating AtDREB1C Expression Improves Drought Tolerance in Salvia miltiorrhiza.

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4.  Overexpression of a SDD1-Like Gene From Wild Tomato Decreases Stomatal Density and Enhances Dehydration Avoidance in Arabidopsis and Cultivated Tomato.

Authors:  Samuel Morales-Navarro; Ricardo Pérez-Díaz; Alfonso Ortega; Alberto de Marcos; Montaña Mena; Carmen Fenoll; Enrique González-Villanueva; Simón Ruiz-Lara
Journal:  Front Plant Sci       Date:  2018-07-04       Impact factor: 5.753

5.  PeCHYR1, a ubiquitin E3 ligase from Populus euphratica, enhances drought tolerance via ABA-induced stomatal closure by ROS production in Populus.

Authors:  Fang He; Hou-Ling Wang; Hui-Guang Li; Yanyan Su; Shuang Li; Yanli Yang; Cong-Hua Feng; Weilun Yin; Xinli Xia
Journal:  Plant Biotechnol J       Date:  2018-03-08       Impact factor: 9.803

6.  Mapping QTLs for water-use efficiency reveals the potential candidate genes involved in regulating the trait in apple under drought stress.

Authors:  Haibo Wang; Shuang Zhao; Ke Mao; Qinglong Dong; Bowen Liang; Chao Li; Zhiwei Wei; Mingjun Li; Fengwang Ma
Journal:  BMC Plant Biol       Date:  2018-06-26       Impact factor: 4.215

7.  Rice plants overexpressing OsEPF1 show reduced stomatal density and increased root cortical aerenchyma formation.

Authors:  U Mohammed; R S Caine; J A Atkinson; E L Harrison; D Wells; C C Chater; J E Gray; R Swarup; E H Murchie
Journal:  Sci Rep       Date:  2019-04-03       Impact factor: 4.996

8.  Overexpression of MdATG8i Enhances Drought Tolerance by Alleviating Oxidative Damage and Promoting Water Uptake in Transgenic Apple.

Authors:  Xin Jia; Xiaoqing Gong; Xumei Jia; Xianpeng Li; Yu Wang; Ping Wang; Liuqing Huo; Xun Sun; Runmin Che; Tiantian Li; Yangjun Zou; Fengwang Ma
Journal:  Int J Mol Sci       Date:  2021-05-24       Impact factor: 5.923

9.  PagERF16 of Populus Promotes Lateral Root Proliferation and Sensitizes to Salt Stress.

Authors:  Shengji Wang; Juanjuan Huang; Xingdou Wang; Yan Fan; Qiang Liu; Youzhi Han
Journal:  Front Plant Sci       Date:  2021-06-04       Impact factor: 5.753

10.  The Receptor-Like Kinase ERECTA Confers Improved Water Use Efficiency and Drought Tolerance to Poplar via Modulating Stomatal Density.

Authors:  Huiguang Li; Yanli Yang; Houling Wang; Sha Liu; Fuli Jia; Yanyan Su; Shuang Li; Fang He; Conghua Feng; Mengxue Niu; Jie Wang; Chao Liu; Weilun Yin; Xinli Xia
Journal:  Int J Mol Sci       Date:  2021-07-06       Impact factor: 5.923

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