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乌头产吲哚乙酸内生细菌遗传多样性、抗逆性及其对水稻幼苗生长的影响
引用本文:罗兴,邹兰,吴清山,张要朋,巫荣星,王茜,熊伟,戴维,叶坤浩,黄晶.乌头产吲哚乙酸内生细菌遗传多样性、抗逆性及其对水稻幼苗生长的影响[J].微生物学报,2022,62(4):1485-1500.
作者姓名:罗兴  邹兰  吴清山  张要朋  巫荣星  王茜  熊伟  戴维  叶坤浩  黄晶
作者单位:西南科技大学生命科学与工程学院, 四川 绵阳 621000;绵阳市农业科学研究院, 四川 绵阳 621000
基金项目:四川省科技计划(2021NZZJ0025,2021YFN0068);2021年四川省级大学生创新创业训练计划;2020年中医药发展四川省级补助资金
摘    要:【目的】探究乌头产吲哚乙酸(IAA)内生细菌的遗传多样性、溶磷解钾能力、抗逆能力及其对水稻幼苗生长的影响,为道地产区乌头产业可持续发展提供科技支撑。【方法】从健康乌头植株分离可培养内生细菌,采用Salkowski比色法测定内生细菌产IAA能力,16SrDNA限制性片段长度多样性(16SrDNA-RFLP)及16SrDNA全长序列研究其遗传多样性及系统发育地位,平板培养法测定产IAA内生细菌溶磷解钾及其对pH、温度、盐、抗生素等的耐受能力,平板法测定菌悬液浸泡后水稻种子萌发率和室内水培法探究产IAA内生细菌对水稻幼苗生长的影响。【结果】从健康乌头植株分离获得24株高产IAA的内生细菌,其分泌IAA的值为21.39–84.43 mg/L。16S rDNA-RFLP分析表明,24株产IAA的内生细菌可分为12个类群,代表菌株16S rRNA基因系统发育结果显示这些菌分属于肠杆菌属(Enterobacter)、克雷伯氏杆菌属(Klebsiella)、泛菌属(Pantoea)、假单胞菌属(Pseudomonas)、微杆菌属(Microbacterium)、芽孢杆菌属(Bacillus)、鞘氨醇杆...

关 键 词:乌头  内生细菌  IAA  遗传多样性  促生  溶磷解钾  抗逆性  水稻
收稿时间:2021/8/17 0:00:00
修稿时间:2021/10/20 0:00:00

Genetic diversity,stress resistance,and effect on rice seedling growth of indoleacetic acid-producing endophytic bacteria isolated from Aconitum carmichaelii Debeaux
LUO Xing,ZOU Lan,WU Qingshan,ZHANG Yaopeng,WU Rongxing,WANG Qian,XIONG Wei,DAI Wei,YE Kunhao,HUANG Jing.Genetic diversity,stress resistance,and effect on rice seedling growth of indoleacetic acid-producing endophytic bacteria isolated from Aconitum carmichaelii Debeaux[J].Acta Microbiologica Sinica,2022,62(4):1485-1500.
Authors:LUO Xing  ZOU Lan  WU Qingshan  ZHANG Yaopeng  WU Rongxing  WANG Qian  XIONG Wei  DAI Wei  YE Kunhao  HUANG Jing
Institution:School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621000, Sichuan, China;Mianyang Academy of Agricultural Sciences, Mianyang 621000, Sichuan, China
Abstract:Objective] To explore the genetic diversity,phosphorus- and potassium-solubilizing ability,stress resistance,and effect on rice seedling growth of indoleacetic acid (IAA)-producing endophytic bacteria isolated from Aconitum carmichaelii Debeaux and to provide scientific support for the sustainable development of A.carmichaelii industry.Methods]Culturable endophytic bacteria were isolated from surface sterilized healthy plants of A.carmichaelii,and their IAA-producing capacities were measured by Salkowski spectrophotometry.The genetic diversity and phylogenetic status of these bacteria were studied via 16S rDNA-restriction fragment length polymorphism (16S rDNA-RFLP) and 16S rDNA full-length sequence.The phosphorus- and potassium-solubilizing abilities and stress resistance of them were studied by plate culture method.The effects of IAA-producing endophytic bacteria on the seed germination rate of rice were tested by semi-solid culture method after the seeds were immersed in bacterial liquids for 30 min.The effects of the endophytic bacteria on rice seedling growth were investigated by hydroponic experiment in our laboratory.Results]Twenty-four endophytic bacterial strains were isolated from healthy A.carmichaelii,with the IAA-producing capacities ranging from 21.39 mg/L to 84.43 mg/L.The 16S rDNA-RFLP analysis indicated that these 24 strains were classified into 12 groups.The phylogenetic tree constructed based on 16S rRNA gene sequences showed that the representative strains belonged to Enterobacter,Klebsiella,Pantoea,Pseudomonas,Microbacterium,Bacillus,Sphingobacterium,and Chryseobacterium,which demonstrated high genetic diversity.Twelve strains showed strong potassium-solubilizing capacities.Most of the strains could grow normally within wide ranges of pH,temperature,and NaCl concentration,while they showed little resistance to different antibiotics.Ten strains significantly improved the germination rate of rice seeds,and 16 strains significantly promoted the growth of rice seedlings.We screened out 3 strains JY1-1S,JY3-6S,and JY10-1L that could not only improve the seed germination rate but also promote the seedling growth of rice.Conclusion] A.carmichaelii harbored rich and diverse IAA-producing endophytic bacteria.We screened out 3 endophytic bacterial strains that could promote the seed germination and seedling growth of rice.This study laid a foundation for the development of plant growth-promoting biological fertilizer in the future.
Keywords:Aconitum carmichaelii Debeaux  endophytic bacteria  indoleacetic acid  genetic diversity  plant growth-promoting capacity  phosphorus- and potassium-solubilizing abilities  stress resistance  rice
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