Identification of endophytic fungi with ACC deaminase-producing isolated from halophyte Kosteletzkya Virginica.

IF 2.8 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Signaling & Behavior Pub Date : 2022-12-31 DOI:10.1080/15592324.2022.2152224
Xiaomin Wang, Zengyuan Tian, Yu Xi, Yuqi Guo
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引用次数: 1

Abstract

Seashore mallow (Kosteletzkya virginica), as a noninvasive perennial halophytic oilseed-producing dicot, is native from the Gulf to the Atlantic coasts of the U.S. The purpose of our research was to investigate 1-aminocyclopropane-1carboxylic acid deaminase (ACCD) producing endophytic fungi from K.virginica. A total of 59 endophytic fungal strains, isolated from roots in K.virginica of seedlings, were grouped into 12 genera including in Penicillium, Aspergillus, Fusarium, Trichoderma, Rhizopycnis sp., Ceriporia Donk, Trametes sp., Schizophyllum commune sp., Alternaria, Cladosporium, Cylindrocarpon, and Scytalidium according to sequences of ITS. The ACD activity of 10 endophytic fungi isolated was detected. T.asperellum had the highest ACC deaminase activity among all 10 isolated genera of fungal strains, followed by T. viride. Dry weight and fresh weight of plant, plant height, root length, SOD activity, and chlorophyll content of wheat and soybean inoculated with T.asperellum or T. viride was increased compared with non-inoculated control plants under non salt or salt stress. Further analysis showed that T.asperellum or T.viride strains induced downregulation of the expression of ethylene synthesis-related genes such as ACC oxidase (ACO) and ACC synthase (ACS), thereby reducing ethylene synthesis and damage to plants under salt stress. These endophytic fungi can be used as alternative bioinoculants to increase crop yield in saline soil.

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产ACC脱氨酶内生真菌的鉴定。
海滨锦葵(Kosteletzkya virginica)是一种产于美国墨西哥湾至大西洋沿岸的无创多年生盐生油籽植物。本研究的目的是研究产1-氨基环丙烷-1羧酸脱氨酶(ACCD)的内生真菌。从锦绣金缕草幼苗根系中分离得到59株内生真菌,根据ITS序列将其归为青霉属、曲霉属、镰刀菌属、木霉属、根霉属、冬霉属、Trametes sp.、裂藻属、Alternaria、枝孢菌属、圆柱菌属和Scytalidium等12属。对分离得到的10株内生真菌进行了ACD活性检测。10个分离的真菌属中,曲霉的ACC脱氨酶活性最高,绿霉次之。在无盐或盐胁迫下,接种曲霉或绿霉的小麦和大豆植株干重、鲜重、株高、根长、SOD活性和叶绿素含量均高于未接种对照植株。进一步分析表明,曲霉和绿霉诱导了乙烯合成相关基因ACC氧化酶(ACO)和ACC合成酶(ACS)的表达下调,从而减少了乙烯合成,减少了盐胁迫对植物的伤害。这些内生真菌可以作为替代生物接种剂在盐碱地中提高作物产量。
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来源期刊
Plant Signaling & Behavior
Plant Signaling & Behavior Agricultural and Biological Sciences-Plant Science
CiteScore
6.00
自引率
3.40%
发文量
111
期刊介绍: Plant Signaling & Behavior, a multidisciplinary peer-reviewed journal published monthly online, publishes original research articles and reviews covering the latest aspects of signal perception and transduction, integrative plant physiology, and information acquisition and processing.
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