Psammophytes IAlyssum desertorum/I Stapf and ISecale sylvestre/I Host Are Sensitive to Soil Flooding
While morphological and functional traits enable hydrophytes to survive under waterlogging and partial or complete submergence, the data on responses of psammophytes—sand plants—to flooding are very limited. We analyzed the effect of 5- and 10-day soil flooding on the photosynthetic apparatus and th...
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creator | Kordyum, Elizabeth Akimov, Yuri Polishchuk, Oleksandr Panas, Ihor Stepanov, Sergiy Kozeko, Liudmyla |
description | While morphological and functional traits enable hydrophytes to survive under waterlogging and partial or complete submergence, the data on responses of psammophytes—sand plants—to flooding are very limited. We analyzed the effect of 5- and 10-day soil flooding on the photosynthetic apparatus and the synthesis of alcohol dehydrogenase (ADH), heat shock proteins 70 (HSP70), and ethylene in seedlings of psammophytes Alyssum desertorum and Secale sylvestre using electron microscopy, chlorophyll a fluorescence induction, and biochemical methods. It was found that seedlings growing under soil flooding differed from those growing in stationary conditions with such traits as chloroplast ultrastructure, pigment content, chlorophyll fluorescence induction, and the dynamics of ADH, HSP, and ethylene synthesis. Although flooding caused no apparent damage to the photosynthetic apparatus in all the variants, a significant decrease in total photosynthesis efficiency was observed in both studied plants, as indicated by decreased values of φR0 and PI[sub.ABS,total] . More noticeable upregulation of ADH in S. sylvestre, as well as increasing HSP70 level and more intensive ethylene emission in A. desertorum, indicate species-specific differences in these traits in response to short-term soil flooding. Meanwhile, the absence of systemic anaerobic metabolic adaptation to prolonged hypoxia causes plant death. |
doi_str_mv | 10.3390/plants13030413 |
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We analyzed the effect of 5- and 10-day soil flooding on the photosynthetic apparatus and the synthesis of alcohol dehydrogenase (ADH), heat shock proteins 70 (HSP70), and ethylene in seedlings of psammophytes Alyssum desertorum and Secale sylvestre using electron microscopy, chlorophyll a fluorescence induction, and biochemical methods. It was found that seedlings growing under soil flooding differed from those growing in stationary conditions with such traits as chloroplast ultrastructure, pigment content, chlorophyll fluorescence induction, and the dynamics of ADH, HSP, and ethylene synthesis. Although flooding caused no apparent damage to the photosynthetic apparatus in all the variants, a significant decrease in total photosynthesis efficiency was observed in both studied plants, as indicated by decreased values of φR0 and PI[sub.ABS,total] . More noticeable upregulation of ADH in S. sylvestre, as well as increasing HSP70 level and more intensive ethylene emission in A. desertorum, indicate species-specific differences in these traits in response to short-term soil flooding. 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We analyzed the effect of 5- and 10-day soil flooding on the photosynthetic apparatus and the synthesis of alcohol dehydrogenase (ADH), heat shock proteins 70 (HSP70), and ethylene in seedlings of psammophytes Alyssum desertorum and Secale sylvestre using electron microscopy, chlorophyll a fluorescence induction, and biochemical methods. It was found that seedlings growing under soil flooding differed from those growing in stationary conditions with such traits as chloroplast ultrastructure, pigment content, chlorophyll fluorescence induction, and the dynamics of ADH, HSP, and ethylene synthesis. Although flooding caused no apparent damage to the photosynthetic apparatus in all the variants, a significant decrease in total photosynthesis efficiency was observed in both studied plants, as indicated by decreased values of φR0 and PI[sub.ABS,total] . More noticeable upregulation of ADH in S. sylvestre, as well as increasing HSP70 level and more intensive ethylene emission in A. desertorum, indicate species-specific differences in these traits in response to short-term soil flooding. Meanwhile, the absence of systemic anaerobic metabolic adaptation to prolonged hypoxia causes plant death.</description><subject>Botanical research</subject><subject>Cruciferae</subject><subject>Desert flora</subject><subject>Environmental aspects</subject><subject>Floods</subject><subject>Grasses</subject><subject>Hardiness</subject><subject>Physiological aspects</subject><subject>Plants</subject><subject>Soil moisture</subject><subject>Ukraine</subject><issn>2223-7747</issn><issn>2223-7747</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2024</creationdate><recordtype>article</recordtype><recordid>eNpVTk1LAzEQDaJgqb16ztXDtvnYrxyXYu1CQXF7L-lmskZ2N2UnLfbfG9CDzht4j5n3hiHkkbOllIqtTr0eA3LJJEu5vCEzIYRMiiItbv_oe7JA_GSxytg8nxHzhnoY_OnjGgBpXfVXxPNADSBMwU_nYVXTJuiTpXo0tG6g1T1QvPYXwDBB3G49BlpNQBsY0QV3ARo8bbzr6ab33rixeyB3VvcIi1-ek_3meb_eJrvXl3pd7ZKukDxRoESec96m5qhayyzkDDiUbZtLYY-ac5ZmnJWCK5Ox3LDMSpEWkOUiVapgck6WP2e7-OPBjdaHSbcRBgbX-hGsi_OqKAVTQnIeA0__AtET4Ct0-ox4qJv3v95vJ0Jp2w</recordid><startdate>20240101</startdate><enddate>20240101</enddate><creator>Kordyum, Elizabeth</creator><creator>Akimov, Yuri</creator><creator>Polishchuk, Oleksandr</creator><creator>Panas, Ihor</creator><creator>Stepanov, Sergiy</creator><creator>Kozeko, Liudmyla</creator><general>MDPI AG</general><scope>ISR</scope></search><sort><creationdate>20240101</creationdate><title>Psammophytes IAlyssum desertorum/I Stapf and ISecale sylvestre/I Host Are Sensitive to Soil Flooding</title><author>Kordyum, Elizabeth ; Akimov, Yuri ; Polishchuk, Oleksandr ; Panas, Ihor ; Stepanov, Sergiy ; Kozeko, Liudmyla</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-g731-9e926611c4db9cf0fe60e1e8cc632fba11045108219d506d05f3247e562499703</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2024</creationdate><topic>Botanical research</topic><topic>Cruciferae</topic><topic>Desert flora</topic><topic>Environmental aspects</topic><topic>Floods</topic><topic>Grasses</topic><topic>Hardiness</topic><topic>Physiological aspects</topic><topic>Plants</topic><topic>Soil moisture</topic><topic>Ukraine</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Kordyum, Elizabeth</creatorcontrib><creatorcontrib>Akimov, Yuri</creatorcontrib><creatorcontrib>Polishchuk, Oleksandr</creatorcontrib><creatorcontrib>Panas, Ihor</creatorcontrib><creatorcontrib>Stepanov, Sergiy</creatorcontrib><creatorcontrib>Kozeko, Liudmyla</creatorcontrib><collection>Gale In Context: Science</collection><jtitle>Plants (Basel)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Kordyum, Elizabeth</au><au>Akimov, Yuri</au><au>Polishchuk, Oleksandr</au><au>Panas, Ihor</au><au>Stepanov, Sergiy</au><au>Kozeko, Liudmyla</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Psammophytes IAlyssum desertorum/I Stapf and ISecale sylvestre/I Host Are Sensitive to Soil Flooding</atitle><jtitle>Plants (Basel)</jtitle><date>2024-01-01</date><risdate>2024</risdate><volume>13</volume><issue>3</issue><issn>2223-7747</issn><eissn>2223-7747</eissn><abstract>While morphological and functional traits enable hydrophytes to survive under waterlogging and partial or complete submergence, the data on responses of psammophytes—sand plants—to flooding are very limited. We analyzed the effect of 5- and 10-day soil flooding on the photosynthetic apparatus and the synthesis of alcohol dehydrogenase (ADH), heat shock proteins 70 (HSP70), and ethylene in seedlings of psammophytes Alyssum desertorum and Secale sylvestre using electron microscopy, chlorophyll a fluorescence induction, and biochemical methods. It was found that seedlings growing under soil flooding differed from those growing in stationary conditions with such traits as chloroplast ultrastructure, pigment content, chlorophyll fluorescence induction, and the dynamics of ADH, HSP, and ethylene synthesis. Although flooding caused no apparent damage to the photosynthetic apparatus in all the variants, a significant decrease in total photosynthesis efficiency was observed in both studied plants, as indicated by decreased values of φR0 and PI[sub.ABS,total] . More noticeable upregulation of ADH in S. sylvestre, as well as increasing HSP70 level and more intensive ethylene emission in A. desertorum, indicate species-specific differences in these traits in response to short-term soil flooding. Meanwhile, the absence of systemic anaerobic metabolic adaptation to prolonged hypoxia causes plant death.</abstract><pub>MDPI AG</pub><doi>10.3390/plants13030413</doi></addata></record> |
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source | DOAJ Directory of Open Access Journals; PubMed Central Open Access; MDPI - Multidisciplinary Digital Publishing Institute; EZB-FREE-00999 freely available EZB journals; PubMed Central |
subjects | Botanical research Cruciferae Desert flora Environmental aspects Floods Grasses Hardiness Physiological aspects Plants Soil moisture Ukraine |
title | Psammophytes IAlyssum desertorum/I Stapf and ISecale sylvestre/I Host Are Sensitive to Soil Flooding |
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