Elymus dahuricus H+-PPase EdVP1 enhances potassium uptake and utilization of wheat through the development of root system
We investigated the differences of K acquisition and utilization, morphological and physiological characteristics of roots and grain yield between Elymus dahuricus H+-PPase (EdVP1) transgenic wheat and wild type wheat under low K stress. The results showed that, the grain yield and K economic utiliz...
Guardado en:
Autores principales: | , , , , |
---|---|
Lenguaje: | English |
Publicado: |
Chilean Society of Soil Science / Sociedad Chilena de la Ciencia del Suelo
2013
|
Materias: | |
Acceso en línea: | http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-95162013000300017 |
Etiquetas: |
Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
|
id |
oai:scielo:S0718-95162013000300017 |
---|---|
record_format |
dspace |
spelling |
oai:scielo:S0718-951620130003000172014-09-16Elymus dahuricus H+-PPase EdVP1 enhances potassium uptake and utilization of wheat through the development of root systemRuan,LZhang,JXin,XMiller,A. JTong,Y Wheat EdVP1 gene K efficiency root system We investigated the differences of K acquisition and utilization, morphological and physiological characteristics of roots and grain yield between Elymus dahuricus H+-PPase (EdVP1) transgenic wheat and wild type wheat under low K stress. The results showed that, the grain yield and K economic utilization index (KUI-E) in wild type wheat were only 61.14% and 50.20% of those in EdVP1 transgenic wheat. EdVP1 increased the free IAA accumulations in roots, which may play a key role in the development of root system. The total root length, total root surface area, root tips and total root volume in transgenic wheat were 2.26, 2.23, 2.34 and 2.00 times as high as those in wild type wheat, respectively. Excretion H+ and cation exchange capacity (CEC) of roots, which were enhanced in transgenic wheat, were positively correlated with K content.The exudate of organic acid intransgenic wheat was 2.22 times as high as that in wild type wheat, leading to the strong K activation of transgenic wheat. Therefore, we assume that well-developed rootsystem containing prosperous root morphology, high excretion H+ and CEC of roots and strong excretion ability of organic acids improved K acquisition and utilization efficiency in EdVP1 transgenic wheat.info:eu-repo/semantics/openAccessChilean Society of Soil Science / Sociedad Chilena de la Ciencia del SueloJournal of soil science and plant nutrition v.13 n.3 20132013-09-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-95162013000300017en10.4067/S0718-95162013005000057 |
institution |
Scielo Chile |
collection |
Scielo Chile |
language |
English |
topic |
Wheat EdVP1 gene K efficiency root system |
spellingShingle |
Wheat EdVP1 gene K efficiency root system Ruan,L Zhang,J Xin,X Miller,A. J Tong,Y Elymus dahuricus H+-PPase EdVP1 enhances potassium uptake and utilization of wheat through the development of root system |
description |
We investigated the differences of K acquisition and utilization, morphological and physiological characteristics of roots and grain yield between Elymus dahuricus H+-PPase (EdVP1) transgenic wheat and wild type wheat under low K stress. The results showed that, the grain yield and K economic utilization index (KUI-E) in wild type wheat were only 61.14% and 50.20% of those in EdVP1 transgenic wheat. EdVP1 increased the free IAA accumulations in roots, which may play a key role in the development of root system. The total root length, total root surface area, root tips and total root volume in transgenic wheat were 2.26, 2.23, 2.34 and 2.00 times as high as those in wild type wheat, respectively. Excretion H+ and cation exchange capacity (CEC) of roots, which were enhanced in transgenic wheat, were positively correlated with K content.The exudate of organic acid intransgenic wheat was 2.22 times as high as that in wild type wheat, leading to the strong K activation of transgenic wheat. Therefore, we assume that well-developed rootsystem containing prosperous root morphology, high excretion H+ and CEC of roots and strong excretion ability of organic acids improved K acquisition and utilization efficiency in EdVP1 transgenic wheat. |
author |
Ruan,L Zhang,J Xin,X Miller,A. J Tong,Y |
author_facet |
Ruan,L Zhang,J Xin,X Miller,A. J Tong,Y |
author_sort |
Ruan,L |
title |
Elymus dahuricus H+-PPase EdVP1 enhances potassium uptake and utilization of wheat through the development of root system |
title_short |
Elymus dahuricus H+-PPase EdVP1 enhances potassium uptake and utilization of wheat through the development of root system |
title_full |
Elymus dahuricus H+-PPase EdVP1 enhances potassium uptake and utilization of wheat through the development of root system |
title_fullStr |
Elymus dahuricus H+-PPase EdVP1 enhances potassium uptake and utilization of wheat through the development of root system |
title_full_unstemmed |
Elymus dahuricus H+-PPase EdVP1 enhances potassium uptake and utilization of wheat through the development of root system |
title_sort |
elymus dahuricus h+-ppase edvp1 enhances potassium uptake and utilization of wheat through the development of root system |
publisher |
Chilean Society of Soil Science / Sociedad Chilena de la Ciencia del Suelo |
publishDate |
2013 |
url |
http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-95162013000300017 |
work_keys_str_mv |
AT ruanl elymusdahuricushppaseedvp1enhancespotassiumuptakeandutilizationofwheatthroughthedevelopmentofrootsystem AT zhangj elymusdahuricushppaseedvp1enhancespotassiumuptakeandutilizationofwheatthroughthedevelopmentofrootsystem AT xinx elymusdahuricushppaseedvp1enhancespotassiumuptakeandutilizationofwheatthroughthedevelopmentofrootsystem AT milleraj elymusdahuricushppaseedvp1enhancespotassiumuptakeandutilizationofwheatthroughthedevelopmentofrootsystem AT tongy elymusdahuricushppaseedvp1enhancespotassiumuptakeandutilizationofwheatthroughthedevelopmentofrootsystem |
_version_ |
1714206462146772992 |