Responses of interspecific hybrid eggplant f4 inbred lines to drought and heat stress

Esra Cebeci̇, H. Boyaci, Servinç Kıran, S. Ellialtioglu
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Abstract

Eggplant is grown in and near the tropic and sub-tropic zones where climate change effects can be seen dramatically in agricultural production. As a vegetable, it is considered has tolerance to some abiotic stresses compared to others. However, significant reductions in yield and marketable fruit quality were observed under stress conditions that exceeded the tolerance level. Eggplant has wild relatives which are known as tolerant to stresses. As a part of the comprehensive project this research includes drought-tolerant line development from the F4 population obtained by interspecific crossing between Solanum incanum L., a wild relative of eggplant naturally distributed in the Sub-Saharan zone, and a pure line with superior characteristics developed in BATEM. Qualified 50 inbred lines were selected as drought tolerant among F3 progenies in previous studies. In this experiment, 12 plants from each 50 genotypes at F4 level were exposed to drought stress, which was created by 25% watering of full irrigation. On the 25th day of treatment, tolerant plants were distinguished by using 0-5 scale. From each genotype, 4 plants were selected as drought tolerant, and they were transferred to greenhouse to identify their heat tolerance. Among the drought-tolerant group 42 F4 lines were found as heat tolerant.
种间杂交茄子 f4 近交系对干旱和热胁迫的反应
茄子生长在热带和亚热带地区及其附近,气候变化对这些地区的农业生产影响显著。作为一种蔬菜,与其他蔬菜相比,茄子对某些非生物胁迫具有一定的耐受性。然而,在超过耐受水平的胁迫条件下,茄子的产量和上市果实的质量都会明显下降。众所周知,茄子的野生近缘种对胁迫具有耐受性。作为综合项目的一部分,这项研究包括从 Solanum incanum L. (一种自然分布在撒哈拉以南地区的茄子野生近缘种)和 BATEM 培育的具有优良特性的纯系之间进行种间杂交获得的 F4 群体中培育耐旱品系。在之前的研究中,从 F3 后代中筛选出了 50 个合格的耐旱近交系。在本实验中,每 50 个基因型中的 12 株 F4 级植株都受到了干旱胁迫。在处理的第 25 天,用 0-5 级标准区分耐旱植株。从每个基因型中选出 4 株耐旱植株,并将它们转移到温室中鉴定其耐热性。在耐旱组中,发现有 42 个 F4 品系具有耐热性。
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