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印度干旱和半干旱地区珍珠粟品种的籽粒产量和微量营养素表现及稳定性

Performance and Stability of Pearl Millet Varieties for Grain Yield and Micronutrients in Arid and Semi-Arid Regions of India.

作者信息

Sanjana Reddy P, Satyavathi C Tara, Khandelwal Vikas, Patil H T, Gupta P C, Sharma L D, Mungra K D, Singh Sumer P, Narasimhulu R, Bhadarge H H, Iyanar K, Tripathi M K, Yadav Devvart, Bhardwaj Ruchika, Talwar A M, Tiwari V K, Kachole U G, Sravanti K, Shanthi Priya M, Athoni B K, Anuradha N, Govindaraj Mahalingam, Nepolean T, Tonapi Vilas A

机构信息

Indian Institute of Millets Research, Hyderabad, India.

All India Coordinated Research Project on Pearl Millet, Jodhpur, India.

出版信息

Front Plant Sci. 2021 May 31;12:670201. doi: 10.3389/fpls.2021.670201. eCollection 2021.

Abstract

Pearl millet [ (L.) R. Br.] is grown under both arid and semi-arid conditions in India, where other cereals are hard to grow. Pearl millet cultivars, hybrids, and OPVs (open pollinated varieties) are tested and released by the All India Coordinated Research Project on Pearl Millet (AICRP-PM) across three zones (A, A, and B) that are classified based on rainfall pattern. Except in locations with extreme weather conditions, hybrids dominate pearl millet growing areas, which can be attributed to hybrid vigor and the active role of the private sector. The importance of OPVs cannot be ruled out, owing to wider adaptation, lower input cost, and timely seed availability to subsidiary farmers cultivating this crop. This study was conducted to scrutinize the presently used test locations for evaluation of pearl millet OPVs across India, identify the best OPVs across locations, and determine the variation in grain Fe and Zn contents across locations in these regions. Six varieties were evaluated across 20 locations in A and A (pooled as A) and B zones along with three common checks and additional three zonal adapted checks in the respective zones during the 2019 rainy season. Recorded data on yield and quality traits were analyzed using genotype main effects and genotype × environment interaction biplot method. The genotype × environment (G × E) interaction was found to be highly significant for all the grain yield and agronomic traits and for both micronutrients (iron and zinc). However, genotypic effect (G) was four (productive tillers) to 49 (grain Fe content) times that of G × E interaction effect for various traits across zones that show the flexibility of OPVs. Ananthapuramu is the ideal test site for selecting pearl millet cultivars effectively for adaptation across India, while Ananthapuramu, Perumallapalle, and Gurugram can also be used as initial testing locations. OPVs MP 599 and MP 600 are identified as ideal genotypes, because they showed higher grain and fodder yields and stability compared with other cultivars. Iron and zinc concentration showed highly significant positive correlation (across environment = 0.83; < 0.01), indicating possibility of simultaneous effective selection for both traits. Three common checks were found to be significantly low yielders than the test entries or zonal checks in individual zones and across India, indicating the potential of genetic improvement through OPVs.

摘要

珍珠粟[(L.)R. Br.]在印度干旱和半干旱条件下种植,而其他谷物在那里难以生长。珍珠粟的品种、杂交种和开放授粉品种(OPV)由全印度珍珠粟协调研究项目(AICRP - PM)在根据降雨模式划分的三个区域(A、A和B)进行测试和发布。除了极端天气条件的地区外,杂交种在珍珠粟种植区占主导地位,这可归因于杂种优势和私营部门的积极作用。由于OPV具有更广泛的适应性、较低的投入成本以及能及时为种植这种作物的附属农民提供种子,其重要性也不容小觑。本研究旨在仔细审查印度目前用于评估珍珠粟OPV的试验地点,确定各地最佳的OPV,并测定这些地区不同地点谷物中铁和锌含量的差异。在2019年雨季期间,在A和A(合并为A)以及B区的20个地点对六个品种进行了评估,同时在各自区域设置了三个通用对照和另外三个区域适应性对照。使用基因型主效应和基因型×环境互作双标图方法对记录的产量和品质性状数据进行分析。发现基因型×环境(G×E)互作对所有谷物产量、农艺性状以及两种微量营养素(铁和锌)均具有极显著影响。然而,对于不同区域的各种性状,基因型效应(G)是G×E互作效应的4倍(有效分蘖数)至49倍(谷物铁含量),这表明OPV具有灵活性。阿南塔普拉穆是有效选择适合全印度种植的珍珠粟品种的理想试验地点,而阿南塔普拉穆、佩鲁马拉勒和古鲁格拉姆也可作为初始试验地点。OPV品种MP 599和MP 600被确定为理想基因型,因为与其他品种相比,它们具有更高的谷物和饲料产量以及稳定性。铁和锌浓度显示出极显著的正相关(跨环境 = 0.83;<0.01),表明有可能同时对这两个性状进行有效选择。发现三个通用对照在各个区域以及全印度的产量均显著低于试验品种或区域对照,这表明通过OPV进行遗传改良具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf44/8202413/529b12402d17/fpls-12-670201-g0001.jpg

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