Constitutive overexpression of rice metallothionein-like gene OsMT-3a enhances growth and tolerance of Arabidopsis plants to a combination of various abiotic stresses

被引:26
|
作者
Mekawy, Ahmad Mohammad M. [1 ]
Assaha, Dekoum V. M. [2 ]
Ueda, Akihiro [3 ]
机构
[1] Menia Univ, Fac Sci, Dept Bot & Microbiol, El Minia 61519, Egypt
[2] Univ Buea, Higher Tech Teachers Training Coll, Dept Agr, POB 249, Kumba, Swr, Cameroon
[3] Hiroshima Univ, Grad Sch Integrated Sci Life, Higashihiroshima 7398528, Japan
关键词
Gene expression; Metallothioneins; OsMT-3a; Salinity stress; Stress combination; TYPE-2; METALLOTHIONEIN; EXPRESSION ANALYSIS; SALINITY TOLERANCE; OXIDATIVE STRESS; NA+ EXCLUSION; DROUGHT; ACCUMULATION; CADMIUM; ROOT; SALT;
D O I
10.1007/s10265-020-01187-y
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Metallothioneins (MT) are primarily involved in metal chelation. Recent studies have shown that MT proteins are also involved in the responses of plants to various environmental stresses. The rice metallothionein-like gene OsMT-3a is upregulated by salinity and various abiotic stressors. A DNA construct containing the complete OsMT-3a coding sequence cloned downstream to the CaMV35S promoter was transformed into Arabidopsis and homozygous single-copy transgenic lines were produced. Compared to wild-type plants, transgenic plants showed substantially increased salinity tolerance (NaCl), drought tolerance (PEG), and heavy metal tolerance (CdCl2) as individual stresses, as well as different combinations of these stresses. Relevantly, under unstressed control conditions, vegetative growth of transgenic plants was also improved. The shoot Na+ concentration and hydrogen peroxide in transgenic plants were lower than those in wild-type plants. OsMT-3a-overexpressing Arabidopsis lines accumulated higher levels of Cd2+ in both shoots and roots following CdCl2 treatment. In the transgenic MT-3a lines, increased activity of two major antioxidant enzymes, catalase and ascorbate peroxidase, was observed. Thus, rice OsMT-3a is a valuable target gene for plant genetic improvement against multiple abiotic stresses.
引用
收藏
页码:429 / 440
页数:12
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