Evaluation of proline, soluble sugar and ABA content in soybean <em>Glycine max</em> (L.) under drought stress memory

Drought stress memory in plant can alter their physiological, biochemical and molecular to a subsequent stress. An experiment was conducted to determine biochemical parameters of soybean seedlings under drought stress memory. 14-days-old soybean seedlings were subjected to three consecutive water de...

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Main Authors: Thi Thuy Quynh Nguyen, Le Thanh Huyen Trinh, Hoang Bao Vy Pham, Tri Vien Le, Thi Kim Hue Phung, Suk-Ha Lee, Jong-Joo Cheong
Format: Article
Language:English
Published: AIMS Press 2020-07-01
Series:AIMS Bioengineering
Subjects:
aba
Online Access:https://www.aimspress.com/article/10.3934/bioeng.2020011/fulltext.html
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spelling doaj-dcaa16024c2f480783a8a6a668cd0eb62020-11-25T03:01:18ZengAIMS PressAIMS Bioengineering2375-14872375-14952020-07-017311412310.3934/bioeng.2020011Evaluation of proline, soluble sugar and ABA content in soybean <em>Glycine max</em> (L.) under drought stress memoryThi Thuy Quynh Nguyen0Le Thanh Huyen Trinh1Hoang Bao Vy Pham2Tri Vien Le3Thi Kim Hue Phung4Suk-Ha Lee5Jong-Joo Cheong61 University of Education, Vietnam National University 3 Institute of Health Research and Educational Development in Central Highlands, Vietnam2 Hung Vuong High Gifted School Gia Lai, Pleiku, Vietnam2 Hung Vuong High Gifted School Gia Lai, Pleiku, Vietnam3 Institute of Health Research and Educational Development in Central Highlands, Vietnam2 Hung Vuong High Gifted School Gia Lai, Pleiku, Vietnam 3 Institute of Health Research and Educational Development in Central Highlands, Vietnam4 Department of Plant Sciences, College of Agriculture and Life Sciences, Seoul National University, Korea, Seoul 08826, Republic of Korea5 Center for Food and Bioconvergence, Seoul National University, Seoul 08826, Republic of KoreaDrought stress memory in plant can alter their physiological, biochemical and molecular to a subsequent stress. An experiment was conducted to determine biochemical parameters of soybean seedlings under drought stress memory. 14-days-old soybean seedlings were subjected to three consecutive water deficit phases (D1, D2, D3), each phase recovered by re-watering (R1, R2, R3), and control plant watering daily (R0). Leave of seedlings from these phases were collected and analyzed. Significantly increasing contents of soluble sugar and proline observed at the first drought stress. After the first re-water and continuous stress phases, these indicator contents decreased and maintained at a relatively stable level. Expression level of two memory genes encoded to transcription factor (NAC09 and NAC109) and one gene encoded enzyme Δ1-pyrroline-5-carboxylate synthetase (P5CS1) were increased in the first stress and decreased in third stress. Our results demonstrate that changing of biochemical parameters of soybean seedlings can be seen as the strong indications of “drought stress memory”. This result may serve as a reference platform to study advanced researches at molecular and genetic levels.https://www.aimspress.com/article/10.3934/bioeng.2020011/fulltext.htmlabaprolinetranscription factorsoybeandrought stress memory
collection DOAJ
language English
format Article
sources DOAJ
author Thi Thuy Quynh Nguyen
Le Thanh Huyen Trinh
Hoang Bao Vy Pham
Tri Vien Le
Thi Kim Hue Phung
Suk-Ha Lee
Jong-Joo Cheong
spellingShingle Thi Thuy Quynh Nguyen
Le Thanh Huyen Trinh
Hoang Bao Vy Pham
Tri Vien Le
Thi Kim Hue Phung
Suk-Ha Lee
Jong-Joo Cheong
Evaluation of proline, soluble sugar and ABA content in soybean <em>Glycine max</em> (L.) under drought stress memory
AIMS Bioengineering
aba
proline
transcription factor
soybean
drought stress memory
author_facet Thi Thuy Quynh Nguyen
Le Thanh Huyen Trinh
Hoang Bao Vy Pham
Tri Vien Le
Thi Kim Hue Phung
Suk-Ha Lee
Jong-Joo Cheong
author_sort Thi Thuy Quynh Nguyen
title Evaluation of proline, soluble sugar and ABA content in soybean <em>Glycine max</em> (L.) under drought stress memory
title_short Evaluation of proline, soluble sugar and ABA content in soybean <em>Glycine max</em> (L.) under drought stress memory
title_full Evaluation of proline, soluble sugar and ABA content in soybean <em>Glycine max</em> (L.) under drought stress memory
title_fullStr Evaluation of proline, soluble sugar and ABA content in soybean <em>Glycine max</em> (L.) under drought stress memory
title_full_unstemmed Evaluation of proline, soluble sugar and ABA content in soybean <em>Glycine max</em> (L.) under drought stress memory
title_sort evaluation of proline, soluble sugar and aba content in soybean <em>glycine max</em> (l.) under drought stress memory
publisher AIMS Press
series AIMS Bioengineering
issn 2375-1487
2375-1495
publishDate 2020-07-01
description Drought stress memory in plant can alter their physiological, biochemical and molecular to a subsequent stress. An experiment was conducted to determine biochemical parameters of soybean seedlings under drought stress memory. 14-days-old soybean seedlings were subjected to three consecutive water deficit phases (D1, D2, D3), each phase recovered by re-watering (R1, R2, R3), and control plant watering daily (R0). Leave of seedlings from these phases were collected and analyzed. Significantly increasing contents of soluble sugar and proline observed at the first drought stress. After the first re-water and continuous stress phases, these indicator contents decreased and maintained at a relatively stable level. Expression level of two memory genes encoded to transcription factor (NAC09 and NAC109) and one gene encoded enzyme Δ1-pyrroline-5-carboxylate synthetase (P5CS1) were increased in the first stress and decreased in third stress. Our results demonstrate that changing of biochemical parameters of soybean seedlings can be seen as the strong indications of “drought stress memory”. This result may serve as a reference platform to study advanced researches at molecular and genetic levels.
topic aba
proline
transcription factor
soybean
drought stress memory
url https://www.aimspress.com/article/10.3934/bioeng.2020011/fulltext.html
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