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二叶沙冬青内生细菌的分离鉴定及筛选菌株诱导种子萌发的作用机制及其对宿主渗透胁迫耐受性的影响

Isolation and identification of Ammodendron bifolium endophytic bacteria and the action mechanism of selected isolates-induced seed germination and their effects on host osmotic-stress tolerance.

作者信息

Zhu Yanlei

机构信息

College of Life Sciences, Xinjiang Normal University, Urumqi, 830054, Xinjiang, China.

College of Life Sciences, Shaanxi Normal University, Xi'an, 710119, Shaanxi, China.

出版信息

Arch Microbiol. 2019 May;201(4):431-442. doi: 10.1007/s00203-018-1582-3. Epub 2018 Oct 4.

Abstract

This study aimed to identify Ammodendron bifolium endophytic bacteria, and to evaluate promoting mechanism of selected isolates on seed germination and their effects on host osmotic-stress tolerance. Forty-five strains were isolated from A. bifolium and were classified into 13 different genera by 16S rDNA gene sequence analysis. AY3, AY9 and AG18, which were identified as Staphylococcus, Kocuria, Bacillus sp., promoted host seed ethylene release during germination. Ethrel and 1-aminocyclopropane-1-carboxylic acid (ACC) imitated the effect of AY3, AY9 and AG18 on seed germination. The data suggest that ethylene mediates AY3-, AY9-, AG18-induced A. bifolium seed germination. In addition, osmotic stress prevented seed germination and radicle elongation. However, the inhibitory effect of osmotic stress on seed germination and radicle elongation were rescued by AY3, AY9 and AG18. The results show that AY3, AY9 and AG18 increased osmotic-stress tolerance in A. bifolium. AY3, AY9, AG18 induced A. bifolium seed germination through promoting ethylene production during endophytic bacteria-plant interaction, and increase osmotic-stress tolerance in A. bifolium. AY3, AY9 and AG18 are potential candidates for the protection of A. bifolium.

摘要

本研究旨在鉴定二叶豆内生细菌,评估所选菌株对种子萌发的促进机制及其对宿主渗透胁迫耐受性的影响。从二叶豆中分离出45株菌株,通过16S rDNA基因序列分析将其分为13个不同的属。被鉴定为葡萄球菌属、考克氏菌属、芽孢杆菌属的AY3、AY9和AG18在萌发过程中促进宿主种子乙烯释放。乙烯利和1-氨基环丙烷-1-羧酸(ACC)模拟了AY3、AY9和AG18对种子萌发的影响。数据表明,乙烯介导了AY3、AY9、AG18诱导的二叶豆种子萌发。此外,渗透胁迫抑制种子萌发和胚根伸长。然而,AY3、AY9和AG18缓解了渗透胁迫对种子萌发和胚根伸长的抑制作用。结果表明,AY3、AY9和AG18提高了二叶豆的渗透胁迫耐受性。AY3、AY9、AG18通过在内生细菌与植物相互作用过程中促进乙烯产生诱导二叶豆种子萌发,并提高二叶豆的渗透胁迫耐受性。AY3、AY9和AG18是保护二叶豆的潜在候选菌株。

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