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内生菌引发种子对两个经选择性除草剂处理后遭受干旱的小麦品种某些生理生化参数的影响。

Effect of Seed Priming with Endophytic on Some Physio-Biochemical Parameters of Two Wheat Varieties Exposed to Drought after Selective Herbicide Application.

作者信息

Lastochkina Oksana, Yakupova Albina, Avtushenko Irina, Lastochkin Artem, Yuldashev Ruslan

机构信息

Institute of Biochemistry and Genetics UFRC RAS, 71 Pr. Oktyabrya, 450054 Ufa, Russia.

Department of Biology, Ufa University of Sciences and Technology, 32 Zaki Validi, 450076 Ufa, Russia.

出版信息

Plants (Basel). 2023 Apr 20;12(8):1724. doi: 10.3390/plants12081724.

Abstract

Wheat plants are frequently exposed to combined herbicide and drought stress (HDS) which induces complex responses negatively, affects productivity, and is becoming more exacerbated with current climate change. In this work, we studied the influence of seed priming with endophytic bacteria (strains 104 and 26D) on growth and tolerance of two wheat ( L.) varieties (E70-drought tolerant; SY-drought susceptible) exposed to soil drought after application of selective herbicide Sekator Turbo in pot experiments under controlled conditions; 17-day-old plants sprayed with herbicide and after 3 days were subjected to soil drought by stopping irrigating the plants for 7 days with subsequent resumption of normal irrigation (recovery). Additionally, the growth of tested strains (104, 26D) in the presence of different concentrations of herbicide Sekator Turbo and drought (PEG-6000) were evaluated. It was established that both strains are herbicide and drought tolerant and capable to improve seed germination and early seedlings' growth under different herbicide and drought stress degrees. The results of pot experiments showed that HDS exposure declined growth (plant length, biomass), photosynthetic pigments (chlorophyll a and b), leaf area, and increased lipid peroxidation (LPO) and proline accumulation in plants, demonstrating higher damaging effects for SY variety. Strains 104 and 26D mitigated (in different levels) such negative impacts of HDS on growth of both varieties by increasing length of roots and shoots, biomass, photosynthetic pigments (chlorophyll a and b), and leaf area, reducing stress-caused LPO (i.e., malondialdehyde), and regulating proline biosynthesis, as well as contributing to a faster recovery of growth, photosynthetic pigments, and redox-status of plants in post-stress period in comparison with non-primed plants. These ultimately manifested in forming a better grain yield of both varieties primed with 104, 26D, and exposed to HDS. Thus, both strains 104 and 26D (which are herbicide and drought tolerant) may be used as seed priming agents to improve wheat HDS tolerance and grain yield; however, strain 104 more effectively protected plants of E70, while strain 26D-plants of SY. Further research should be focused on understanding the mechanisms that determine the strain and variety-specificity of endophytic symbiosis and the role of bacteria in the modulation of physiological states of primed plants under stress conditions, including HDS.

摘要

小麦植株经常遭受除草剂和干旱胁迫(HDS)的双重影响,这种复合胁迫会对小麦产生负面的复杂反应,影响其生产力,并且随着当前气候变化,这种情况正变得愈发严重。在本研究中,我们在可控条件下的盆栽试验中,研究了用内生细菌(菌株104和26D)对种子进行引发处理,对两个小麦(L.)品种(E70 - 耐旱型;SY - 干旱敏感型)在施用选择性除草剂 Sekator Turbo 后再遭受土壤干旱时的生长和耐受性的影响。17日龄的植株喷施除草剂,3天后停止灌溉7天使植株遭受土壤干旱,随后恢复正常灌溉(恢复期)。此外,还评估了受试菌株(104、26D)在不同浓度除草剂 Sekator Turbo 和干旱(PEG - 6000)条件下的生长情况。结果表明,这两种菌株均具有除草剂耐受性和耐旱性,并且能够在不同程度的除草剂和干旱胁迫下提高种子萌发率和幼苗早期生长。盆栽试验结果表明,暴露于HDS会降低植株生长(株高、生物量)、光合色素(叶绿素a和b)、叶面积,并增加植物体内的脂质过氧化(LPO)和脯氨酸积累,对SY品种的损害作用更大。菌株104和26D通过增加根和茎的长度、生物量、光合色素(叶绿素a和b)以及叶面积,减轻(不同程度)了HDS对两个品种生长的负面影响,降低胁迫引起的LPO(即丙二醛),调节脯氨酸生物合成,并且与未进行引发处理的植株相比,有助于植株在胁迫后时期更快地恢复生长、光合色素和氧化还原状态。这些最终表现为用104、26D引发处理并暴露于HDS的两个品种都形成了更好的籽粒产量。因此,菌株104和26D(均具有除草剂耐受性和耐旱性)都可作为种子引发剂来提高小麦对HDS的耐受性和籽粒产量;然而,菌株104对E70品种的植株保护效果更佳,而菌株26D对SY品种的植株保护效果更佳。进一步的研究应集中在理解决定内生共生的菌株和品种特异性的机制,以及细菌在胁迫条件下(包括HDS)对引发处理植株生理状态调节中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b01/10144775/49ab0143af14/plants-12-01724-g001.jpg

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