Studying the cumulative vigor response index of morpho-physiological, quality, and yield-related traits of wheat cultivars using planting dates

Salah Hamid Jumaa, Iqtdar Khudair Al-mafraji, Abdullah Hassn Mohammed, Firas Ahmed Alsajri, S. Sah, N. Kakar, Chathurika Wijewardana, Bhupinder Singh
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Abstract

Wheat (Triticum aestivum L) is one of the major staple food crops consumed globally. Nonetheless, the cultivation of wheat is influenced by various environmental factors, with the planting date being significantly impacted by the effects of climate change. Addressing these changes could involve evaluating wheat genotypes to identify appropriate planting dates. A phenotypic screening experiment was conducted in the field crop station of Agriculture College of Tikrit University to determine the suitable planting time for wheat cultivars under local environmental conditions during 2022-23. Several morpho-physiological, quality, and yield traits were measured. Factorial experiment using spilt plot through randomized completely block design (RCBD). was used with three replications. The five planting dates (5-10, 25-10, 15-11, 5-12, and 25-12) were considered as the main plot, and the eight wheat cultivars (Ipaa99, Al-Rasheed, Al-Baraka, Sham6, Tammuz2, Al-Hashimiya, Al-Noor, and Al-Adnanieh) as sub-main plot. Data were used to calculate the Individual, Cumulative, and Total Vigor Response Indices (IRI, CRI & TRI). Cultivars were classified into different categories using total cumulative early or late planting date vigor response index values (TRI-e) or (TRI-l) and standard deviation (SD). The (TRI-e) values ranged from 36.07 (sensitive) for the cultivar Al-Baraka to 39.13 (tolerant) for the cultivar Al-Hashimiya. However, the (TRI-l) values ranged from 36.59 (sensitive) for the cultivar Al-Noor to 39.52 (tolerant) for the cultivar Al-Hashimiya. The correlation coefficient (r2) between the (TRI-e) and cumulative very early/early planting date vigor response index was positively correlated (r2 = 0.70 for very early planting date (5-Oct) and r2 = 0.60 for early planting date (25-Oct). Furthermore, 76% of the total variation in the (TRI-l) was explained by the cumulative very late planting date vigor response index (CRI-vl) while just 49% of the total variation was explained by the cumulative late planting date vigor response index (CRI-l). Based on those results, wheat producers could select either tolerant cultivars for early planting or tolerant cultivars for late planting to maximize wheat production in their specific growing environments including planting dates.
利用种植日期研究小麦栽培品种形态生理、品质和产量相关性状的累积活力反应指数
小麦(Triticum aestivum L)是全球消费的主要粮食作物之一。然而,小麦的种植受到各种环境因素的影响,其中播种日期受到气候变化的显著影响。要应对这些变化,就必须对小麦基因型进行评估,以确定合适的播种日期。提克里特大学农学院田间作物站进行了表型筛选实验,以确定 2022-23 年期间当地环境条件下小麦栽培品种的适宜播种时间。实验测量了多个形态生理、品质和产量性状。采用随机完全区组设计(RCBD)进行因子试验,三次重复。五个播种日期(5-10、25-10、15-11、5-12 和 25-12)被视为主小区,八个小麦栽培品种(Ipaa99、Al-Rasheed、Al-Baraka、Sham6、Tammuz2、Al-Hashimiya、Al-Noor 和 Al-Adnanieh)被视为副小区。数据用于计算单株、累积和总活力反应指数(IRI、CRI 和 TRI)。根据早播或晚播活力反应指数累计值(TRI-e)或(TRI-l)和标准偏差(SD),将栽培品种分为不同类别。(TRI-e)值从 Al-Baraka 栽培品种的 36.07(敏感)到 Al-Hashimiya 栽培品种的 39.13(耐受)不等。然而,(TRI-l)值的范围从 Al-Noor 品种的 36.59(敏感)到 Al-Hashimiya 品种的 39.52(耐受)。TRI-e)与累计极早/早播种期活力反应指数之间的相关系数(r2)呈正相关(极早播种期(10 月 5 日)的相关系数 r2 = 0.70,早播种期(10 月 25 日)的相关系数 r2 = 0.60)。此外,累计极晚播种期活力反应指数(CRI-vl)解释了(TRI-l)总变异的 76%,而累计晚播种期活力反应指数(CRI-l)仅解释了总变异的 49%。根据这些结果,小麦生产者可以选择耐早播种的栽培品种或耐晚播种的栽培品种,以便在包括播种期在内的特定生长环境中最大限度地提高小麦产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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