Relative importance of an arbuscular mycorrhizal fungus (Rhizophagus intraradices) and root hairs in plant drought tolerance

文献类型: 外文期刊

第一作者: Li, Tao

作者: Li, Tao;Zhang, Xin;Chen, Yongliang;Chen, Baodong;Lin, Ge;Zhang, Shubin

作者机构:

关键词: Arbuscular mycorrhiza;Drought tolerance;Rhizophagus intraradices;Barley;Root hairs

期刊名称:MYCORRHIZA ( 影响因子:3.387; 五年影响因子:4.031 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Both arbuscular mycorrhizal (AM) fungi and root hairs play important roles in plant uptake of water and mineral nutrients. To reveal the relative importance of mycorrhiza and root hairs in plant water relations, a bald root barley (brb) mutant and its wild type (wt) were grown with or without inoculation of the AM fungus Rhizophagus intraradices under well-watered or drought conditions, and plant physiological traits relevant to drought stress resistance were recorded. The experimental results indicated that the AM fungus could almost compensate for the absence of root hairs under drought-stressed conditions. Moreover, phosphorus (P) concentration, leaf water potential, photosynthetic rate, transpiration rate, stomatal conductance, and water use efficiency were significantly increased by R. intraradices but not by root hairs, except for shoot P concentration and photosynthetic rate under the drought condition. Root hairs even significantly decreased root P concentration under drought stresses. These results confirm that AM fungi can enhance plant drought tolerance by improvement of P uptake and plant water relations, which subsequently promote plant photosynthetic performance and growth, while root hairs presumably contribute to the improvement of plant growth and photosynthetic capacity through an increase in shoot P concentration.

分类号: Q949.32

  • 相关文献

[1]Potential role of D-myo-inositol-3-phosphate synthase and 14-3-3 genes in the crosstalk between Zea mays and Rhizophagus intraradices under drought stress. Li, Tao,Sun, Yuqing,Xu, Lijiiao,Hu, Yajun,Hao, Zhipeng,Zhang, Xin,Li, Hong,Chen, Baodong,Ruan, Yuan,Hu, Yajun,Wang, Youshan,Yang, Liguo.

[2]Isolation and functional characterization of HvDREB1-a gene encoding a dehydration-responsive element binding protein in Hordeum vulgare. Xu, Zhao-Shi,Ni, Zhi-Yong,Li, Zhi-Yong,Li, Lian-Cheng,Chen, Ming,Gao, Dong-Yao,Yu, Xiu-Dao,Liu, Pei,Ma, You-Zhi.

[3]Genetic variability for root hair traits as related to phosphorus status in soybean. Wang, LD,Liao, H,Yan, XL,Zhuang, BC,Dong, YS.

[4]Arbuscular mycorrhizal fungi facilitate growth and competitive ability of an exotic species Flaveria bidentis. Chen, Feng-Xin,Xu, Hai-Yun,Li, Qiao,Inderjit,Wan, Fang-Hao,Wan, Fang-Hao. 2017

[5]EFFECTS OF INOCULATION WITH ARBUSCULAR MYCORRHIZAL FUNGI ON MAIZE GROWN IN MULTI-METAL CONTAMINATED SOILS. Liang, Chang-Cong,Li, Tao,Xiao, Yan-Ping,Liu, Mao-Jun,Zhang, Han-Bo,Zhao, Zhi-Wei,Liang, Chang-Cong,Li, Tao,Xiao, Yan-Ping,Liu, Mao-Jun,Zhang, Han-Bo,Zhao, Zhi-Wei,Liang, Chang-Cong,Zhang, Han-Bo. 2009

[6]Mycorrhizal efficacy of trifoliate orange seedlings on alleviating temperature stress. Wu, Q. S.,Wu, Q. S.. 2011

[7]Production of isoflavone genistein in transgenic IFS tobacco roots and its role in stimulating the development of arbuscular mycorrhiza. Tan, Zhijing,Hu, Yuanlei,Lin, Zhongping,Liu, Rongrong. 2012

[8]Arbuscular mycorrhizal symbiosis regulates hormone and osmotic equilibrium of Lycium barbarum L. under salt stress. Liu, H. G.,Wang, Y. J.,Hart, M.,Liu, H. G.,Chen, H.,Tang, M.. 2016

[9]Phosphate solubilization of Paenibacillus polymyxa and Paenibacillus macerans from mycorrhizal and non-mycorrhizal cucumber plants. Wang, Yanli,Shi, Yu,Li, Bin,Shan, Changlin,Ibrahim, Muhammad,Jabeen, Amara,Xie, Guanlin,Wang, Yanli,Sun, Guochang. 2012

[10]A 60-year journey of mycorrhizal research in China: Past, present and future directions. He XinHua,He XinHua,Duan YingHua,Xu MingGang,He XinHua,He XinHua,Chen YingLong. 2010

[11]'Candidatus Moeniiplasma glomeromycotorum', an endobacterium of arbuscular mycorrhizal fungi. Naito, Mizue,Desiro, Alessandro,Bonfante, Paola,Gonzalez, Jonathan B.,Tao, Gang,Pawlowska, Teresa E.,Morton, Joseph B.,Desiro, Alessandro,Tao, Gang.

[12]CHROMIUM RESISTANCE OF DANDELION (TARAXACUM PLATYPECIDUM DIELS.) AND BERMUDAGRASS (CYNODON DACTYLON [LINN.] PERS.) IS ENHANCED BY ARBUSCULAR MYCORRHIZA IN Cr(VI)-CONTAMINATED SOILS. Wu, Song-Lin,Chen, Bao-Dong,Sun, Yu-Qing,Ren, Bai-Hui,Zhang, Xin,Wu, Song-Lin,Sun, Yu-Qing,Ren, Bai-Hui,Wang, You-Shan.

[13]Different Tolerance in Bread Wheat, Durum Wheat and Barley to Fusarium Crown Rot Disease Caused by Fusarium pseudograminearum. Liu, Yaxi,Wei, Yuming,Zheng, Youliang,Liu, Yaxi,Ma, Jun,Yan, Wei,Liu, Chunji,Ma, Jun,Yan, Guijun,Yan, Wei,Zhou, Meixue,Zhou, Meixue. 2012

[14]Pathotypes and Genetic Diversity of Blumeria graminis f sp hordei in the Winter Barley Regions in China. Zhu Jing-huan,Wang Jun-mei,Jia Qiao-jun,Yang Jian-ming,Lin Feng,Hua Wei,Shang Yi,Zhu Jing-huan,Zhou Yi-jun,Zhou Yi-jun. 2010

[15]Expressed sequence tag-PCR markers for identification of alien barley chromosome 2H in wheat. Wang, M. J.,Zou, H. D.,Wu, Y.,Yuan, Y. P.,Lin, Z. S.,Chen, X.. 2012

[16]Homologous analysis of SSR-ESTs and transferability of wheat SSR-EST markers across barley, rice and maize. Tang, Jifeng,Gao, Lifeng,Cao, Yongsheng,Jia, Jizeng. 2006

[17]Organic manure stimulates biological activity and barley growth in soil subject to secondary salinization. Liang, YC,Si, J,Nikolic, M,Peng, Y,Chen, W,Jiang, Y. 2005

[18]High Performance Liquid Chromatography Fingerprinting of Flavonoids Between Parents and Generations in Barley Grain. Yang, Tao,Zeng, Yawen,Du, Juan,Yang, Shuming,Pu, Xiaoying,Yang, Tao,Duan, Chengli,Yang, Shengchao,Duan, Chengli. 2017

[19]The toxicity of HCrO4- and CrO42- to barley root elongation in solution culture: pH effect and modelling. Song, Ningning,Song, Ningning,Ma, Yibing,Ma, Yibing.

[20]Dynamics of the evolution of orthologous and paralogous portions of a complex locus region in two genomes of allopolyploid wheat. Kong, XY,Gu, YQ,You, FM,Dubcovsky, J,Anderson, OD.

作者其他论文 更多>>