Leaf area and its impact in yield and quality of greenhouse tomato (Solanum lycopersicum L.)

Candido Mendoza Pérez, Carlos Ramírez Ayala, Antonio Martínez Ruiz, Waldo Ojeda Bustamante, Jesús del Rosario Ruelas Islas, Roberto Ascencio Hernández, Anselmo López Ordaz, Fidel Núñez Ramírez
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引用次数: 2

Abstract

This study aimed to estimate the tomato leaf area index (LAI) by comparing two methods (destructive and interception of photosynthetically active radiation) and the consequent relationship to fruit yield and quality. The experiment was carried out in a greenhouse with tezontle (red volcanic scoria) as the substrate and a drip irrigation system. The experiment consisted of three treatments: T1, T2 and T3, with one, two and three stems per plant, respectively. The LAI was measured with a ceptometer that estimates the intercepted radiation above and below the canopy. Maximum LAI was found at 1413 cumulative growing degree days (CGDD). Those indexes were 3.69, 5.27 and 6.16 for T1, T2 and T3, respectively. Individual correlation models were fitted linearly between the two methods. The R2 values were 0.98, 0.99 and 0.99 with yields of 20, 18 and 17 kg m-2 for T1, T2 and T3, respectively. In addition, T1 produced better fruit size quality with approximately 69, 23 and 8% classified as first, second and third class, respectively. Only 1% was classified as a small fruit. Increasing the number of stems per plant increased the LAI and fruit number but decreased fruit size. Highlights: The leaf area index (LAI) is a very important variable for growth and development of crops. The ceptometer proved to be a fast, useful and statistically reliable method to estimate LAI. The increase of photosynthetically active radiation favors the photosynthetic efficiency per unit area. The number of stems per plant increase the LAI, dry matter accumulation, plant height and the number of fruits. However, the size of fruit decreases.
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温室番茄叶面积及其对产量和品质的影响
本研究旨在通过比较两种方法(光合有效辐射破坏和光合有效辐射拦截)估算番茄叶面积指数(LAI)及其与果实产量和品质的关系。试验在一个温室中进行,以tezontle(红色火山渣)为基质,采用滴灌系统。试验分为T1、T2和T3三个处理,每株分别设1根、2根和3根茎。LAI是用一个测辐射量计测量的,这个测辐射量计估计树冠上和树冠下截获的辐射。LAI最大值出现在1413累积生长期(CGDD)。T1、T2和T3的指标分别为3.69、5.27和6.16。个体相关模型在两种方法之间线性拟合。T1、T2和T3产量分别为20、18和17 kg m-2时,R2值分别为0.98、0.99和0.99。此外,T1的果实大小品质较好,一级、二级和三级的果实大小品质分别约为69%、23%和8%。只有1%被归类为小水果。单株茎数的增加增加了叶面积指数和果实数,但减小了果实大小。叶面积指数(LAI)是作物生长发育的重要变量。结果表明,该方法是一种快速、实用、统计可靠的LAI估算方法。光合有效辐射的增加有利于单位面积光合效率的提高。单株茎数增加了叶面积指数、干物质积累量、株高和果实数。然而,水果的大小变小了。
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