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MeNINV1: An Alkaline/Neutral Invertase Gene of Manihot esculenta, Enhanced Sucrose Catabolism and Promoted Plant Vegetative Growth in Transgenic Arabidopsis

Alkaline/neutral invertase (A/N-INV) is an invertase that irreversibly decomposes sucrose into fructose as well as glucose and plays a role in plant growth and development, starch synthesis, abiotic stress, and other plant-life activities. Cassava is an economically important starch crop in tropical...

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Autores principales: Wang, Ya-Jie, Zhen, Xing-Hou, Zhou, Yang-Jiao, Wang, Yun-Lin, Hou, Jing-Yi, Wang, Xin, Li, Rui-Mei, Liu, Jiao, Hu, Xin-Wen, Geng, Meng-Ting, Yao, Yuan, Guo, Jian-Chun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9003190/
https://www.ncbi.nlm.nih.gov/pubmed/35406926
http://dx.doi.org/10.3390/plants11070946
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author Wang, Ya-Jie
Zhen, Xing-Hou
Zhou, Yang-Jiao
Wang, Yun-Lin
Hou, Jing-Yi
Wang, Xin
Li, Rui-Mei
Liu, Jiao
Hu, Xin-Wen
Geng, Meng-Ting
Yao, Yuan
Guo, Jian-Chun
author_facet Wang, Ya-Jie
Zhen, Xing-Hou
Zhou, Yang-Jiao
Wang, Yun-Lin
Hou, Jing-Yi
Wang, Xin
Li, Rui-Mei
Liu, Jiao
Hu, Xin-Wen
Geng, Meng-Ting
Yao, Yuan
Guo, Jian-Chun
author_sort Wang, Ya-Jie
collection PubMed
description Alkaline/neutral invertase (A/N-INV) is an invertase that irreversibly decomposes sucrose into fructose as well as glucose and plays a role in plant growth and development, starch synthesis, abiotic stress, and other plant-life activities. Cassava is an economically important starch crop in tropical regions. During the development of cassava tuber roots, A/N-INV activity is relatively high, which indicates that it may participate in sucrose metabolism and starch synthesis. In this study, MeNINV1 was confirmed to function as invertase to catalyze sucrose decomposition in yeast. The optimal enzymatic properties of MeNINV1 were a pH of 6.5, a reaction temperature of 40 °C, and sucrose as its specific catalytic substrate. VB(6), Zn(2+), and Pb(2+) at low concentrations as well as EDTA, DTT, Tris, Mg(2+), and fructose inhibited A/N-INV enzymic activity. In cassava, the MeNINV1 gene was mainly expressed in the fibrous roots and the tuber root phloem, and its expression decreased as the tuber root grew. MeNINV1 was confirmed to localize in chloroplasts. In Arabidopsis, MeNINV1-overexpressing Arabidopsis had higher A/N-INV activity, and the increased glucose, fructose, and starch content in the leaves promoted plant growth and delayed flowering time but did not change its resistance to abiotic stress. Our results provide new insights into the biological function of MeNINV1.
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spelling pubmed-90031902022-04-13 MeNINV1: An Alkaline/Neutral Invertase Gene of Manihot esculenta, Enhanced Sucrose Catabolism and Promoted Plant Vegetative Growth in Transgenic Arabidopsis Wang, Ya-Jie Zhen, Xing-Hou Zhou, Yang-Jiao Wang, Yun-Lin Hou, Jing-Yi Wang, Xin Li, Rui-Mei Liu, Jiao Hu, Xin-Wen Geng, Meng-Ting Yao, Yuan Guo, Jian-Chun Plants (Basel) Article Alkaline/neutral invertase (A/N-INV) is an invertase that irreversibly decomposes sucrose into fructose as well as glucose and plays a role in plant growth and development, starch synthesis, abiotic stress, and other plant-life activities. Cassava is an economically important starch crop in tropical regions. During the development of cassava tuber roots, A/N-INV activity is relatively high, which indicates that it may participate in sucrose metabolism and starch synthesis. In this study, MeNINV1 was confirmed to function as invertase to catalyze sucrose decomposition in yeast. The optimal enzymatic properties of MeNINV1 were a pH of 6.5, a reaction temperature of 40 °C, and sucrose as its specific catalytic substrate. VB(6), Zn(2+), and Pb(2+) at low concentrations as well as EDTA, DTT, Tris, Mg(2+), and fructose inhibited A/N-INV enzymic activity. In cassava, the MeNINV1 gene was mainly expressed in the fibrous roots and the tuber root phloem, and its expression decreased as the tuber root grew. MeNINV1 was confirmed to localize in chloroplasts. In Arabidopsis, MeNINV1-overexpressing Arabidopsis had higher A/N-INV activity, and the increased glucose, fructose, and starch content in the leaves promoted plant growth and delayed flowering time but did not change its resistance to abiotic stress. Our results provide new insights into the biological function of MeNINV1. MDPI 2022-03-31 /pmc/articles/PMC9003190/ /pubmed/35406926 http://dx.doi.org/10.3390/plants11070946 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Ya-Jie
Zhen, Xing-Hou
Zhou, Yang-Jiao
Wang, Yun-Lin
Hou, Jing-Yi
Wang, Xin
Li, Rui-Mei
Liu, Jiao
Hu, Xin-Wen
Geng, Meng-Ting
Yao, Yuan
Guo, Jian-Chun
MeNINV1: An Alkaline/Neutral Invertase Gene of Manihot esculenta, Enhanced Sucrose Catabolism and Promoted Plant Vegetative Growth in Transgenic Arabidopsis
title MeNINV1: An Alkaline/Neutral Invertase Gene of Manihot esculenta, Enhanced Sucrose Catabolism and Promoted Plant Vegetative Growth in Transgenic Arabidopsis
title_full MeNINV1: An Alkaline/Neutral Invertase Gene of Manihot esculenta, Enhanced Sucrose Catabolism and Promoted Plant Vegetative Growth in Transgenic Arabidopsis
title_fullStr MeNINV1: An Alkaline/Neutral Invertase Gene of Manihot esculenta, Enhanced Sucrose Catabolism and Promoted Plant Vegetative Growth in Transgenic Arabidopsis
title_full_unstemmed MeNINV1: An Alkaline/Neutral Invertase Gene of Manihot esculenta, Enhanced Sucrose Catabolism and Promoted Plant Vegetative Growth in Transgenic Arabidopsis
title_short MeNINV1: An Alkaline/Neutral Invertase Gene of Manihot esculenta, Enhanced Sucrose Catabolism and Promoted Plant Vegetative Growth in Transgenic Arabidopsis
title_sort meninv1: an alkaline/neutral invertase gene of manihot esculenta, enhanced sucrose catabolism and promoted plant vegetative growth in transgenic arabidopsis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9003190/
https://www.ncbi.nlm.nih.gov/pubmed/35406926
http://dx.doi.org/10.3390/plants11070946
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