The roles of strigolactones: Mineral compounds, indole-3 acetic acid and GA3 content in grapevine on drought stress

E. S. Ceti̇n, H. Canbay, S. Daler
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引用次数: 1

Abstract

Plants have an extremely important place in the life of living creatures and in the ecological cycle. First of all, they undertake a complex phenomenon such as photosynthesis and perform critical tasks such as being raw material for different industrial branches especially for human and animal nutrition, preventing erosion, contributing to the soil in terms of organic matter, and assuring temperature control. It is also known that the environmental conditions of plants, which have such a significant place in our lives are changing day by day and the plants are faced with a vast number of adverse factors. Plants are affected by these factors of biotic or abiotic origin, which are not suitable for them, and as a consequence, they get stressed. Drought is the leading one of these stress factors. It is clearly acknowledged that endogenous hormones play a major role in the expression of plants as sensitive or tolerant as a result of responses to different types of stresses. It is known that some other substances such as jasmonates, brassinosteroids, salicylic acid and nitric oxide have been included in the endogenous hormones, which were examined under five basic groups until recently, namely auxin, gibberellin, cytokinin, abscisic acid and ethylene. One of these hormones derived from carotenoids is strigolactones (SL). Recent studies demonstrate that this substance produced in plant roots is also at the forefront in terms of stress tolerance. In this study, the effect of SL applications on drought resistance was investigated in Kober 5 BB and 110 R American grapevine rootstocks with different drought tolerance. Rootstocks were treated with 5 and 10 µM SL and exposed to drought stress. In order to measure the effects of SLs on stress, some physical (shoot length, shoot weight, average number of leaves per shoot) and biochemical (mineral substance and endogenous hormones) analysis were carried out. In the study, it was determined that SLs are a sort of hormone that has positive effects in terms of plant growth and development, promotes plant mineral nutrition, and that there is a positive relationship between the synthesis of the endogenous hormones IAA and GA3. According to the results obtained, it is comprehended that SLs can be used as growth regulators to alleviate drought stress.
葡萄中甾体内酯、矿物质、吲哚-3乙酸和GA3含量对干旱胁迫的影响
植物在生物的生命和生态循环中占有极其重要的地位。首先,它们承担着复杂的现象,如光合作用,并执行关键任务,如作为不同工业部门的原料,特别是人类和动物的营养,防止侵蚀,在有机质方面为土壤做出贡献,并确保温度控制。众所周知,植物在我们的生活中有着如此重要的地位,它的环境条件正在一天天变化,植物面临着大量的不利因素。植物受到这些不适合它们的生物或非生物因素的影响,因此它们受到压力。干旱是这些压力因素中的主要因素之一。内源激素在植物对不同类型胁迫的敏感性或耐受性表达中起着重要作用。据了解,在内源性激素中还包括一些其他物质,如茉莉酸盐、油菜素类固醇、水杨酸和一氧化氮,直到最近才将其分为生长素、赤霉素、细胞分裂素、脱落酸和乙烯等五个基本类进行研究。其中一种从类胡萝卜素中提取的激素是独角孤内酯(SL)。最近的研究表明,在植物根系中产生的这种物质在抗逆性方面也处于最前沿。本研究以不同抗旱性的美洲葡萄Kober 5bb和110r砧木为材料,研究了SL对其抗旱性的影响。砧木分别用5µM和10µM SL处理,并经受干旱胁迫。为了衡量SLs对胁迫的影响,进行了一些物理(茎长、茎重、平均每枝叶数)和生化(矿物质和内源激素)分析。本研究确定了SLs是一种对植物生长发育具有积极作用的激素,促进植物矿物质营养,内源激素IAA和GA3的合成之间存在正相关关系。综上所述,SLs可以作为生长调节剂缓解干旱胁迫。
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