大量不同黄瓜种质中重要生理性状的作用和耐热指数的开发

IF 2.4 4区 生物学 Q2 PLANT SCIENCES
Dhananjay A. Hongal, A. D. Munshi, Akshay Talukdar, Anjan Das, N. Pradeepkumara, M. Karthik Kumar, Jyoti Kumari, Viswanathan Chinnusamy, J. K. Ranjan, T. K. Behera, S. S. Dey
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引用次数: 0

摘要

黄瓜是一种重要的蔬菜作物,由于生长季节温度不够理想,产量损失严重。高温会影响植物的健康,降低最终收成的质量和数量。由于原产于印度,本土黄瓜种质在不同的重要经济性状(包括广泛的温度适应性)方面存在巨大的多样性。有必要从大量种质中找出与热胁迫反应相关的关键性状和反应截然不同的基因型,以了解与耐热性相关的生理生化和分子网络。在温度胁迫处理(40 ℃/35 ℃)的生长室中对 123 个种质进行了两季的评估。此外,根据苗期反应选出的 10 个基因型在高温的自然田间条件下生长,以验证苗期的生理生化反应和生育期的产量参数。在不同的参数中,叶绿素降解缓慢、抗氧化酶活性较高、膜稳定性指数较高和冠层温度抑制较高被认为是解释黄瓜热胁迫反应的关键性状。此外,在田间条件下,耐热基因型在生育期的光合作用也较高,从而提高了经济产量。根据本研究记录的 7 个生理性状,为 123 个基因型制定了耐热指数。幼苗期的优化筛选技术及其在自然田间条件下的产量反应验证,促进了对大量基因型的评估,以用于黄瓜耐热胁迫育种。此外,已鉴定的种质 WBC-13、DGC-103 和 DARL-106 具有有效的热胁迫耐受性,这将有助于了解耐热性的分子基础和设计气候智能型黄瓜栽培品种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of important physiological traits and development of heat tolerance index in a large set of diverse cucumber germplasm

Cucumber is an important vegetable crop that suffers from significant yield loss because of sub-optimal temperatures during the growing season. High temperature affects the plant's health and reduces the quality and quantity of the final harvest. Huge diversity in terms of different economically important traits, including wide temperature adaptation, is recorded in indigenous cucumber germplasm because of its Indian origin. It is necessary to identify the key traits and genotypes with the contrasting response from a large set of germplasm associated with heat stress response for understanding the physio-biochemical and molecular network associated with heat tolerance. A set of 123 germplasm was evaluated in a growth chamber with temperature stress treatment (40 °C/35 °C) for two subsequent seasons. Besides, 10 selected genotypes based on their response in the seedling stage were grown under natural field conditions with high temperatures to validate the physio-biochemical response in the seedling stage and yield parameters in the reproductive stage. Among the different parameters, slow degradation of chlorophyll, higher anti-oxidant enzyme activity, higher membrane stability index, and higher canopy temperature depression were identified as key traits explaining the heat stress response in cucumbers. Besides, the photosynthetic activities of the tolerant genotypes at the reproductive stage were also higher under field conditions, resulting in higher economic yield. Heat tolerance index was developed for 123 genotypes for seven physiological traits recorded in the present study. The optimised screening technique in the seedling stage and their validation for yield response under natural field facilitated the evaluation of a large number of genotypes for use in breeding for heat stress tolerance in cucumbers. Besides, the identified germplasm, WBC-13, DGC-103 and DARL-106 with effective heat stress tolerance will be instrumental in understanding the molecular basis of heat tolerance and designing climate-smart cucumber cultivars.

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来源期刊
Acta Physiologiae Plantarum
Acta Physiologiae Plantarum 生物-植物科学
CiteScore
5.10
自引率
3.80%
发文量
125
审稿时长
3.1 months
期刊介绍: Acta Physiologiae Plantarum is an international journal established in 1978 that publishes peer-reviewed articles on all aspects of plant physiology. The coverage ranges across this research field at various levels of biological organization, from relevant aspects in molecular and cell biology to biochemistry. The coverage is global in scope, offering articles of interest from experts around the world. The range of topics includes measuring effects of environmental pollution on crop species; analysis of genomic organization; effects of drought and climatic conditions on plants; studies of photosynthesis in ornamental plants, and more.
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