Protection of Italian ryegrass (Lolium multiflorum L.) seedlings from salinity stress following seed priming with L-methionine and casein hydrolysate

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2020-12-07 DOI:10.1017/S0960258520000409
Keum-Ah Lee, Youngnam Kim, H. Alizadeh, D. Leung
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引用次数: 1

Abstract

Abstract Seed priming with water (hydropriming or HP) has been shown to be beneficial for seed germination and plant growth. However, there is little information on the effects of seed priming with amino acids and casein hydrolysate (CH) compared with HP, particularly in relation to early post-germinative seedling growth under salinity stress. In this study, Italian ryegrass seeds (Lolium multiflorum L.) were primed with 1 mM of each of the 20 protein amino acids and CH (200 mg l−1) before they were germinated in 0, 60 and 90 mM NaCl in Petri dishes for 4 d in darkness. Germination percentage (GP), radicle length (RL) and peroxidase (POD) activity in the root of 4-d-old Italian ryegrass seedlings were investigated. Generally, when the seeds were germinated in 0, 60 and 90 mM NaCl, there was no significant difference in GP of seeds among various priming treatments, except that a higher GP was observed in seeds of HP treatment compared with the non-primed seeds when incubated in 60 mM NaCl. When incubated in 60 and 90 mM NaCl, seedlings from seeds primed with L-methionine or CH exhibited greater RL (greater protection against salinity stress) and higher root POD activity than those from non-primed and hydro-primed seeds. Under salinity stress, there were higher levels of malondialdehyde (MDA) in the root of 4-d-old Italian ryegrass seedlings, a marker of oxidative stress, but seed priming with CH was effective in reducing the salinity-triggered increase in MDA content. These results suggest that priming with L-methionine or CH would be better than HP for the protection of seedling root growth under salinity stress and might be associated with enhanced antioxidative defence against salinity-induced oxidative stress.
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l -蛋氨酸和酪蛋白水解物对意大利黑麦草(Lolium multiflorum L.)幼苗盐度胁迫的保护
摘要水浸种(水培或HP)已被证明有利于种子发芽和植物生长。然而,与HP相比,关于氨基酸和酪蛋白水解物(CH)引发种子的效果,特别是与盐度胁迫下发芽后幼苗早期生长有关的信息很少。在本研究中,意大利多花黑麦草种子(Lolium multiflorum L.)在培养皿中的0、60和90mM NaCl中黑暗发芽4天之前,用20种蛋白质氨基酸中的每一种1mM和CH(200 mg L−1)引发。对4日龄意大利黑麦草幼苗根系的发芽率(GP)、根长(RL)和过氧化物酶(POD)活性进行了研究。通常,当种子在0、60和90mM NaCl中发芽时,在各种引发处理之间,种子的GP没有显著差异,除了当在60mM NaCl中孵育时,与未引发的种子相比,在HP处理的种子中观察到更高的GP。当在60和90mM NaCl中孵育时,来自用L-蛋氨酸或CH引发的种子的幼苗比来自未引发和水引发的种子表现出更大的RL(对盐度胁迫的更大保护)和更高的根POD活性。在盐度胁迫下,4日龄意大利黑麦草幼苗根部的丙二醛(MDA)水平较高,这是氧化胁迫的标志,但CH种子引发能有效降低盐度引发的MDA含量增加。这些结果表明,在盐度胁迫下,用L-蛋氨酸或CH引发对幼苗根系生长的保护作用要好于HP,并且可能与增强对盐度诱导的氧化应激的抗氧化防御有关。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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