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一种新型的大型临时沉浸生物反应器系统,用于香蕉(Rasthali AAB-Silk)的大规模繁殖。

A novel temporary immersion bioreactor system for large scale multiplication of banana (Rasthali AAB-Silk).

机构信息

ICAR-National Research Centre for Banana, Thogamalai Main Road, Thayanur Post, Tiruchirappalli, Tamil Nadu, 620 102, India.

Bioreactor Facility, Crop Improvement Division, ICAR-National Research Centre for Banana, Thayanur, Tiruchirappalli, Tamil Nadu, 620 102, India.

出版信息

Sci Rep. 2021 Oct 13;11(1):20371. doi: 10.1038/s41598-021-99923-4.

Abstract

Musa sp. cultivar Rasthali (Silk AAB) is a choice variety of the Asian sub-continent. Its production and sustenance are threatened by Fusarium wilt, which affects the livelihoods of small and marginal farmers. The use of quality planting material is one of the strategies to manage the disease. Availability of quality planting material for varieties other than Grand Naine is limited. Large-scale micropropagation using existing technologies is laborious and expensive. Temporary immersion bioreactor system is emerging as a potential advancement in the micropropagation industry. In this study, a cost-effective temporary immersion bioreactor (TIB) system has been developed and an efficient micropropagation method has been standardized. Explants cultured in TIB with 250 ml of culture medium in a 2-min immersion frequency of 6 h were found to be efficient for shoot proliferation and rooting. Its efficacy has been compared with the semisolid culture method. At the end of the 6th subculture, 1496 ± 110 shoots per explant were obtained in TIB. Chlorophyll, carotenoid, stomatal index, and the number of closed stomata were examined to determine the physiological functions of the plants grown in TIB and compared with semisolid grown plantlets. Plantlets grown in TIB were genetically stable and were confirmed using inter-simple sequence repeat (ISSR) markers. The multiplication of shoots in TIB was 2.7-fold higher than the semisolid culture method, which is suitable for large-scale production of planting material for commercial applications.

摘要

马萨诸塞州的栽培品种 Rasthali(Silk AAB)是亚洲次大陆的首选品种。它的生产和维持受到枯萎病的威胁,这影响了小农户和边缘农户的生计。使用优质种植材料是管理该疾病的策略之一。除了 Grand Naine 之外,其他品种的优质种植材料供应有限。使用现有技术进行大规模微繁殖既费力又昂贵。临时浸没式生物反应器系统作为微繁殖行业的潜在进步正在出现。在这项研究中,开发了一种具有成本效益的临时浸没式生物反应器(TIB)系统,并标准化了一种有效的微繁殖方法。在 TIB 中培养的外植体,培养基为 250 ml,浸入频率为 6 小时,2 分钟一次,被发现对芽增殖和生根有效。它的功效已与半固态培养方法进行了比较。在第 6 次继代培养结束时,TIB 中每个外植体可获得 1496 ± 110 个芽。测定了在 TIB 中生长的植物的叶绿素、类胡萝卜素、气孔指数和闭气孔数,以确定其生理功能,并与半固态培养的苗进行比较。在 TIB 中生长的苗遗传稳定,并使用简单序列重复(ISSR)标记进行了确认。TIB 中芽的繁殖是半固态培养方法的 2.7 倍,适合商业应用的大量种植材料生产。

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