Mechanism of Stomatal Closure in Plants Exposed to Drought and Cold Stress

被引:251
作者
Agurla, Srinivas [1 ]
Gahir, Shashibhushan [1 ]
Munemasa, Shintaro [2 ]
Murata, Yoshiyuki [2 ]
Raghavendra, Agepati S. [1 ]
机构
[1] Univ Hyderabad, Sch Life Sci, Dept Plant Sci, Hyderabad, Telangana, India
[2] Okayama Univ, Grad Sch Environm & Life Sci, Okayama, Japan
来源
SURVIVAL STRATEGIES IN EXTREME COLD AND DESICCATION: ADAPTATION MECHANISMS AND THEIR APPLICATIONS | 2018年 / 1081卷
关键词
Stomatal closure; Guard cells; Water stress; Chilling; Reactive oxygen species; ROS; Nitric oxide; NO; Cytosolic pH; Signaling components; Secondary messengers; ABA; Cytosolic free Ca2+; Ion channels; ARABIDOPSIS GUARD-CELLS; ABSCISIC-ACID; NITRIC-OXIDE; HYDROGEN-PEROXIDE; METHYL JASMONATE; SIGNAL-TRANSDUCTION; PHOSPHOLIPASE-D; PHOSPHATIDIC-ACID; SALICYLIC-ACID; PROTEIN-KINASE;
D O I
10.1007/978-981-13-1244-1_12
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Drought is one of the abiotic stresses which impairs the plant growth/development and restricts the yield of many crops throughout the world. Stomatal closure is a common adaptation response of plants to the onset of drought condition. Stomata are microscopic pores on the leaf epidermis, which regulate the transpiration/CO2 uptake by leaves. Stomatal guard cells can sense various abiotic and biotic stress stimuli from the internal and external environment and respond quickly to initiate closure under unfavorable conditions. Stomata also limit the entry of pathogens into leaves, restricting their invasion. Drought is accompanied by the production and/or mobilization of the phytohormone, abscisic acid (ABA), which is well-known for its ability to induce stomatal closure. Apart from the ABA, various other factors that accumulate during drought and affect the stomatal function are plant hormones (auxins, MJ, ethylene, brassinosteroids, and cytokinins), microbial elicitors (salicylic acid, harpin, Flg 22, and chitosan), and polyamines. The role of various signaling components/secondary messengers during stomatal opening or closure has been a matter of intense investigation. Reactive oxygen species (ROS), nitric oxide (NO), cytosolic pH, and calcium are some of the well-documented signaling components during stomatal closure. The interrelationship and interactions of these signaling components such as ROS, NO, cytosolic pH, and free Ca2+ are quite complex and need further detailed examination. Low temperatures can have deleterious effects on plants. However, plants evolved protection mechanisms to overcome the impact of this stress. Cold temperature inhibits stomatal opening and causes stomatal closure. Cold-acclimated plants often exhibit marked changes in their lipid composition, particularly of the membranes. Cold stress often leads to the accumulation of ABA, besides osmolytes such as glycine betaine and proline. The role of signaling components such as ROS, NO, and Ca2+ during cold acclimation is yet to be established, though the effects of cold stress on plant growth and development are studied extensively. The information on the mitigation processes is quite limited. We have attempted to describe consequences of drought and cold stress in plants, emphasizing stomatal closure. Several of these factors trigger signaling components in roots, shoots, and atmosphere, all leading to stomatal closure. A scheme is presented to show the possible signaling events and their convergence and divergence of action during stomatal closure. The possible directions for future research are discussed.
引用
收藏
页码:215 / 232
页数:18
相关论文
共 154 条
[81]   The OsCYP19-4 Gene Is Expressed as Multiple Alternatively Spliced Transcripts Encoding Isoforms with Distinct Cellular Localizations and PPIase Activities under Cold Stress [J].
Lee, Areum ;
Lee, Sang Sook ;
Jung, Won Yong ;
Park, Hyun Ji ;
Lim, Bo Ra ;
Kim, Hyun-Soon ;
Ahn, Jun Cheul ;
Cho, Hye Sun .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2016, 17 (07)
[82]   ABA signal transduction at the crossroad of biotic and abiotic stress responses [J].
Lee, Sung Chul ;
Luan, Sheng .
PLANT CELL AND ENVIRONMENT, 2012, 35 (01) :53-60
[83]   Regulation of abscisic acid-induced stomatal closure and anion channels by guard cell AAPK kinase [J].
Li, JX ;
Wang, XQ ;
Watson, MB ;
Assmann, SM .
SCIENCE, 2000, 287 (5451) :300-303
[84]   The protective mechanisms of CaHSP26 in transgenic tobacco to alleviate photoinhibition of PSII during chilling stress [J].
Li, Meifang ;
Ji, Lusha ;
Yang, Xinghong ;
Meng, Qingwei ;
Guo, Shangjing .
PLANT CELL REPORTS, 2012, 31 (11) :1969-1979
[85]   Function of ABA in Stomatal Defense against Biotic and Drought Stresses [J].
Lim, Chae Woo ;
Baek, Woonhee ;
Jung, Jangho ;
Kim, Jung-Hyun ;
Lee, Sung Chul .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2015, 16 (07) :15251-15270
[86]   Arabidopsis PYL8 Plays an Important Role for ABA Signaling and Drought Stress Responses [J].
Lim, Chae Woo ;
Baek, Woonhee ;
Han, Sang-Wook ;
Lee, Sung Chul .
PLANT PATHOLOGY JOURNAL, 2013, 29 (04) :471-476
[87]   Overexpression of a maize E3 ubiquitin ligase gene enhances drought tolerance through regulating stomatal aperture and antioxidant system in transgenic tobacco [J].
Liu, Jianjun ;
Xia, Zongliang ;
Wang, Meiping ;
Zhang, Xiaoquan ;
Yang, Tiezhao ;
Wu, Jianyu .
PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2013, 73 :114-120
[88]   Hydrogen Sulfide May Function Downstream of Nitric Oxide in Ethylene-Induced Stomatal Closure in Vicia faba L. [J].
Liu Jing ;
Hou Zhi-hui ;
Liu Guo-hua ;
Hou Li-xia ;
Liu Xin .
JOURNAL OF INTEGRATIVE AGRICULTURE, 2012, 11 (10) :1644-1653
[89]   Inward potassium channel in guard cells as a target for polyamine regulation of stomatal movements [J].
Liu, K ;
Fu, HH ;
Bei, QX ;
Luan, S .
PLANT PHYSIOLOGY, 2000, 124 (03) :1315-1325
[90]   Sphingosine-1-phosphate (S1P) mediates darkness-induced stomatal closure through raising cytosol pH and hydrogen peroxide (H2O2) levels in guard cells in Vicia faba [J].
Ma YinLi ;
She XiaoPing ;
Yang ShuShen .
SCIENCE CHINA-LIFE SCIENCES, 2012, 55 (11) :974-983