Vijayakumar Amrutha, Shaji Shanija, Beena R, Sarada S, Sajitha Rani T, Stephen Roy, Manju R V, Viji M M
Department of Plant Physiology, College of Agriculture, Kerala Agricultural University, Vellayani, Thiruvananthapuram, India.
Heliyon. 2021 Feb 3;7(2):e05988. doi: 10.1016/j.heliyon.2021.e05988. eCollection 2021 Feb.
High temperature induced by climatic fluctuations are an important threat for plant growth, development and quality of agricultural produces. Adaptableness to environmental changes generally derives from a large set of genetic traits affecting physio-morphological, biochemical and agronomic parameters. Therefore, the identification of genotypes with higher yield and good quality parameters at high temperatures is becoming increasingly necessary for future breeding programs. Here, we analyzed the performance of different tomato genotypes grown under elevated temperatures in terms of yield and nutritional quality of the fruit. High temperature stress was induced from flower initiation to maturity stage by keeping the pots in a temperature controlled green house facility for 45 days. The quality and yield parameters were taken at the harvesting stage. Starch and soluble sugar concentration in the leaves of tomato genotypes showed significant reduction in its amount under heat stress. Titrable acidity (TA), total soluble solids (TSS) and ascorbic acid content of tomato fruits were highest under high temperature conditions compared to ambient condition but lycopene content decreased with rise in temperature. The yield attributes ., number of fruits/plant, fruit set %, average fruit weight (g), yield per plant (g/plant) were significantly lower for Arka Saurabh, Arka Rakshak and Pusa Rohini when compared to other genotypes under study. Molecular characterization of selected 22 tomato genotypes were assessed using 25 simple sequence repeat (SSR) markers. Phylogenetic tree was constructed by the unweighted neighbour-joining method (UPGMA) using NTSYSpc cluster analysis software. The Jaccard's similarity matrix was constructed using the SIMQUAL method using UPGMA algorithm in NTSYSpc. Jaccard's similarity matrix among these tomato genotypes ranged from a minimum of 0.22 to a maximum of 1 with an average genetic similarity of 0.67. Hence this study has importance in identifying genotypes that could maintain good quality and higher yield under high temperature condition.
气候波动引起的高温是植物生长、发育及农产品品质的重要威胁。对环境变化的适应性通常源于影响生理形态、生化和农艺参数的大量遗传性状。因此,对于未来的育种计划而言,鉴定在高温下具有较高产量和良好品质参数的基因型变得越来越必要。在此,我们根据果实的产量和营养品质,分析了不同番茄基因型在高温下的表现。通过将花盆置于温度可控的温室设施中45天,从花芽分化期到成熟期诱导高温胁迫。在收获期测定品质和产量参数。番茄基因型叶片中的淀粉和可溶性糖浓度在热胁迫下显著降低。与环境条件相比,高温条件下番茄果实的可滴定酸度(TA)、总可溶性固形物(TSS)和抗坏血酸含量最高,但番茄红素含量随温度升高而降低。与所研究的其他基因型相比,Arka Saurabh、Arka Rakshak和Pusa Rohini的产量属性,即单株果实数、坐果率、平均单果重(克)、单株产量(克/株)显著较低。使用25个简单序列重复(SSR)标记对选定的22个番茄基因型进行分子表征。使用NTSYSpc聚类分析软件通过非加权邻接法(UPGMA)构建系统发育树。在NTSYSpc中使用UPGMA算法通过SIMQUAL方法构建Jaccard相似性矩阵。这些番茄基因型之间的Jaccard相似性矩阵范围从最小值0.22到最大值1,平均遗传相似性为0.67。因此,本研究对于鉴定在高温条件下能够保持良好品质和较高产量的基因型具有重要意义。