Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditions
In a previous study, we reported that the common reed accumulates water-soluble Cd complexed with an α-glucan-like molecule, and that the synthesis of this molecule is induced in the stem of the common reed under Cd stress. We studied the metabolic background to ensure α-glucan accumulation under th...
Main Authors: | , , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Frontiers Media S.A.
2015-03-01
|
Series: | Frontiers in Plant Science |
Subjects: | |
Online Access: | http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00138/full |
id |
doaj-958e6b0f88024b2b8dcd0d43b703d244 |
---|---|
record_format |
Article |
spelling |
doaj-958e6b0f88024b2b8dcd0d43b703d2442020-11-24T23:23:54ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2015-03-01610.3389/fpls.2015.00138118731Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditionsKyoko eHiguchi0Masatake eKanai1Masatake eKanai2Masahisa eTsuchiya3Haruka eIshii4Naofumi eShibuya5Naoko eFujita6Yasunori eNakamura7Nobuo eSuzui8Shu eFujimaki9Eitaro eMiwa10Tokyo University of AgricultureTokyo University of AgricultureNational Institute for Basic BiologyTokyo University of AgricultureTokyo University of AgricultureTokyo University of AgricultureAkita Prefectural UniversityAkita Prefectural UniversityJapan Atomic Energy AgencyJapan Atomic Energy AgencyTokyo University of AgricultureIn a previous study, we reported that the common reed accumulates water-soluble Cd complexed with an α-glucan-like molecule, and that the synthesis of this molecule is induced in the stem of the common reed under Cd stress. We studied the metabolic background to ensure α-glucan accumulation under the Cd stress conditions that generally inhibit photosynthesis. We found that the common reed maintained an adequate CO2 assimilation rate, tended to allocate more assimilated 11C to the stem, and accumulated starch granules in its stem under Cd stress conditions. AGPase activity, which is the rate-limiting enzyme for starch synthesis, increased in the stem of common reed grown in the presence of Cd. Starch accumulation in the stem of common reed was not obvious under other excess metal conditions. Common reed may preferentially allocate assimilated carbon as the carbon source for the formation of Cd and α-glucan complexes in its stem followed by prevention of Cd transfer to leaves acting as the photosynthetic organ. These responses may allow the common reed to grow even under severe Cd stress conditions.http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00138/fullStarchCdAGPase11CO2 tracercommon reed |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kyoko eHiguchi Masatake eKanai Masatake eKanai Masahisa eTsuchiya Haruka eIshii Naofumi eShibuya Naoko eFujita Yasunori eNakamura Nobuo eSuzui Shu eFujimaki Eitaro eMiwa |
spellingShingle |
Kyoko eHiguchi Masatake eKanai Masatake eKanai Masahisa eTsuchiya Haruka eIshii Naofumi eShibuya Naoko eFujita Yasunori eNakamura Nobuo eSuzui Shu eFujimaki Eitaro eMiwa Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditions Frontiers in Plant Science Starch Cd AGPase 11CO2 tracer common reed |
author_facet |
Kyoko eHiguchi Masatake eKanai Masatake eKanai Masahisa eTsuchiya Haruka eIshii Naofumi eShibuya Naoko eFujita Yasunori eNakamura Nobuo eSuzui Shu eFujimaki Eitaro eMiwa |
author_sort |
Kyoko eHiguchi |
title |
Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditions |
title_short |
Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditions |
title_full |
Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditions |
title_fullStr |
Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditions |
title_full_unstemmed |
Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditions |
title_sort |
common reed accumulates starch in its stem by metabolic adaptation under cd stress conditions |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2015-03-01 |
description |
In a previous study, we reported that the common reed accumulates water-soluble Cd complexed with an α-glucan-like molecule, and that the synthesis of this molecule is induced in the stem of the common reed under Cd stress. We studied the metabolic background to ensure α-glucan accumulation under the Cd stress conditions that generally inhibit photosynthesis. We found that the common reed maintained an adequate CO2 assimilation rate, tended to allocate more assimilated 11C to the stem, and accumulated starch granules in its stem under Cd stress conditions. AGPase activity, which is the rate-limiting enzyme for starch synthesis, increased in the stem of common reed grown in the presence of Cd. Starch accumulation in the stem of common reed was not obvious under other excess metal conditions. Common reed may preferentially allocate assimilated carbon as the carbon source for the formation of Cd and α-glucan complexes in its stem followed by prevention of Cd transfer to leaves acting as the photosynthetic organ. These responses may allow the common reed to grow even under severe Cd stress conditions. |
topic |
Starch Cd AGPase 11CO2 tracer common reed |
url |
http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00138/full |
work_keys_str_mv |
AT kyokoehiguchi commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT masatakeekanai commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT masatakeekanai commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT masahisaetsuchiya commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT harukaeishii commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT naofumieshibuya commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT naokoefujita commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT yasunorienakamura commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT nobuoesuzui commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT shuefujimaki commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions AT eitaroemiwa commonreedaccumulatesstarchinitsstembymetabolicadaptationundercdstressconditions |
_version_ |
1725562990134034432 |