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Ma HongXiang

Recommended Ph.D.Supervisor Recommended MA Supervisor

Personal Information

Supervisor of Doctorate Candidates

Master Tutor

Name (English):Ma HongXiang

Name (Pinyin):MA HONGXIANG

E-Mail:

School/Department:农学院

Education Level:With Certificate of Graduation for Doctorate Study

Business Address:文汇路校区农学楼26-123

Gender:Male

Contact Information:0514-87977840 18994112397

Degree:Doctoral Degree in Agriculture

Professional Title:正高级

Status:Employed

Academic Titles:Distinguished Professor

Alma Mater:Nanjing Agricultural University

Discipline:
Crop Genetics and Breeding

Academic Honor:
2013 elected:Top talent
2013 elected:Province tu gong
2014 elected:The national million talents project
2014 elected:Awarded the Title of National Expert with Remarkable Contributions
2014 elected:Participant of the New Century National Talents Project (State Level)
2016 elected:The government post

Honors and Titles:
2014-12-31 elected:百千万人才国家级人选/突出贡献中青年专家
2016-12-30 elected:国务院政府特殊津贴
2014-12-01 elected:全国优秀科技工作者
2013-10-01 elected:江苏省333高层次人才培养工程第二层次培养对象
2012-11-16 elected:江苏省有突出贡献中青年专家
2014-11-05 elected:江苏省六大人才高峰高层次人才(A类项目)
2012-03-01 elected:江苏省粮食生产突出贡献农业科技人员
2024-01-05 elected:扬州市“绿扬金凤计划”领军人才

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GmWRKY49, a Salt-Responsive Nuclear Protein, Improved Root Length and Governed Better Salinity Tolerance in Transgenic Arabidopsis

Date:2021-07-29 clicks:

DOI number:10.3389/fpls.2018.00809

Journal:Frontiers in Plant Science

Abstract:Plant WRKY transcription factors (TFs) are active guardians against pathogens’ insurgency, key components in developmental processes, contributors in signal transduction pathways, and regulators of diverse biotic and abiotic stress responses. In this research, we isolated, cloned, and functionally characterized a new WRKY TF GmWRKY49 from soybean. GmWRKY49 is a nuclear protein which contains two highly conserved WRKY domains and a C2H2-type zinc-finger structure. The normalized expression (log2 ratio) of GmWRKY49 was 2.75- and 1.90-fold in salt-tolerant and salt-susceptible soybean genotypes, respectively. The transcripts of GmWRKY49 could be detected in roots, stems, leaves, flowers, and almost no expression in pod tissues. The salinity-tolerance response of this gene was studied through overexpression in soybean composite seedlings and transgenic Arabidopsis. The effect of GmWRKY49 overexpression on root length of transgenic Arabidopsis was also investigated. Under salt stress, several parameters including germination rate, survival rate, root length, rosette diameter, relative electrolyte leakage, and proline content were significantly higher in composite seedlings and transgenic Arabidopsis than those in wild-type. Moreover, GmWRKY49 enhanced salinity tolerance in soybean mosaic seedlings and transgenic Arabidopsis. These results suggest that GmWRKY49 is a positive regulator of salinity tolerance in soybean and has high potential utilization for crop improvement.

Indexed by:SCI

Document Code:809

Discipline:Agricultural science

First-Level Discipline:Crop Science

Document Type:SCI

Volume:9

Translation or Not:no

Date of Publication:2018-06-26

Included Journals:SCI

Pre One:Genome-wide analysis of family-1 UDP glycosyltransferases (UGT) and identification of UGT genes for FHB resistance in wheat (Triticum aestivum L.) Next One:Molecular characterization and expression of PFT, an FHB resistance gene at the Fhb1 QTL in wheat