玉米品系抗斑螟的营养、抗营养和酶学基础

IF 1.2 3区 农林科学 Q3 ENTOMOLOGY
K. R. Mahendra, Mukesh K. Dhillon, K. S. Ishwarya Lakshmi, K. V. Gowtham, Ganapati Mukri, Aditya K. Tanwar
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引用次数: 0

摘要

植物对食草动物的抗性很大程度上取决于其通过生化机制进行防御的能力。本研究对30个玉米品系(包括敏感和抗性对照)的组成型和部裂螟害诱导的防御性植物化学物质水平进行了分析。计算了这些生化物质与部分孢霉各指标的相关性,以了解其抗菌机制,并将玉米品系划分为抗性/敏感品系。结果表明,饲喂不同雌雄玉米品系时,叶片草的抗菌素、生长和适合度指标均存在显著差异,这主要是由于不同玉米品系间营养成分(糖和蛋白质)、抗营养成分(酚类、单宁类、FRAP和总抗氧化剂)和酶促成分(TAL、PAL、AO、APX和CAT)含量存在显著差异。与易感品系相比,抗性玉米品系的营养成分含量显著降低,而抗营养成分和酶促成分含量较高。营养化合物与抗生素、繁殖力和适合度指数呈正相关,表明这些化合物有利于褐藻的生长和繁殖。相反,抗营养成分和酶促成分的组成和诱导水平都与这些指标呈负相关,表明它们对褐藻的发育生物学有不利影响。此外,这些生化物质对褐藻各种生长和适合度指数的变异贡献率为70.8% ~ 79.0%。经鉴定,a系CML 565、ai501、ai196、c70和DDM 2309-O和r系AI 125、ai542和AI 1100是抗部分草枯病玉米的最佳资源,可用于选育抗部分草枯病玉米杂交种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nutritional, antinutritional and enzymatic basis of antibiosis in maize lines against spotted stem borer, Chilo partellus (Swinhoe)

Plant resistance to herbivores is largely dependent on its ability to defend through biochemical mechanisms. Present study deciphered constitutive and Chilo partellus damage-induced levels of defensive phytochemicals in thirty maize lines, including susceptible and resistant checks. The association of these biochemicals with various indices of C. partellus was computed to comprehend the antibiosis mechanism and group the maize lines in to resistant/susceptible categories. The findings revealed significant variation in antibiosis, growth, and fitness indices of C. partellus when fed on different male and female maize lines, owing to significant differences in the quantity of nutritional (sugars and proteins), antinutritional (phenols, tannins, FRAP and total antioxidants), and enzymatic (TAL, PAL, AO, APX and CAT) components among the test maize lines. Resistant maize lines contained significantly lower quantities of nutritional components, while higher antinutritional and enzymatic components as compared to susceptible lines. Nutritional compounds were positively associated with antibiosis, fecundity and fitness indices, suggesting that these compounds favor growth and reproduction of C. partellus. Conversely, both constitutive and induced levels of antinutritional and enzymatic components were negatively associated with these indices, indicating their detrimental effect on the developmental biology of C. partellus. Additionally, these biochemicals accounted to 70.8 to 79.0% variability in various growth and fitness indices of C. partellus. The A-lines CML 565, AI 501, AI 196, C 70 and DDM 2309-O, and R-lines AI 125, AI 542 and AI 1100 were identified as best sources of resistance, and could be utilized in the breeding program to develop C. partellus resistant maize hybrids.

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来源期刊
Arthropod-Plant Interactions
Arthropod-Plant Interactions 生物-昆虫学
CiteScore
3.00
自引率
6.20%
发文量
58
审稿时长
6 months
期刊介绍: Arthropod-Plant Interactions is dedicated to publishing high quality original papers and reviews with a broad fundamental or applied focus on ecological, biological, and evolutionary aspects of the interactions between insects and other arthropods with plants. Coverage extends to all aspects of such interactions including chemical, biochemical, genetic, and molecular analysis, as well reporting on multitrophic studies, ecophysiology, and mutualism. Arthropod-Plant Interactions encourages the submission of forum papers that challenge prevailing hypotheses. The journal encourages a diversity of opinion by presenting both invited and unsolicited review papers.
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