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抗除草剂与……杂交的F及F后代的适应性和硬实性

Fitness and Hard Seededness of F and F Descendants of Hybridization between Herbicide-Resistant and .

作者信息

Liang Rong, Liu Jia-Li, Ji Xue-Qin, Olsen Kenneth M, Qiang Sheng, Song Xiao-Ling

机构信息

Weed Research Laboratory, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.

Department of Biology, Washington University in St. Louis, St. Louis, MO 63130, USA.

出版信息

Plants (Basel). 2023 Oct 25;12(21):3671. doi: 10.3390/plants12213671.

Abstract

The commercial cultivation of herbicide-resistant (HR) transgenic soybeans ( L. Merr.) raises great concern that transgenes may introgress into wild soybeans ( Sieb. et Zucc.) via pollen-mediated gene flow, which could increase the ecological risks of transgenic weed populations and threaten the genetic diversity of wild soybean. To assess the fitness of hybrids derived from transgenic HR soybean and wild soybean, the F and F descendants of crosses of the HR soybean line T14R1251-70 and two wild soybeans (LNTL and JLBC, which were collected from LiaoNing TieLing and JiLin BaiCheng, respectively), were planted along with their parents in wasteland or farmland soil, with or without weed competition. The fitness of F and F was significantly increased compared to the wild soybeans under all test conditions, and they also showed a greater competitive ability against weeds. Seeds produced by F and F were superficially similar to wild soybeans in having a hard seed coat; however, closer morphological examination revealed that the hard-seededness was lower due to the seed coat structure, specifically the presence of thicker hourglass cells in seed coat layers and lower Ca content in palisade epidermis. Hybrid descendants containing the HR allele were able to complete their life cycle and produce a large number of seeds in the test conditions, which suggests that they would be able to survive in the soil beyond a single growing season, germinate, and grow under suitable conditions. Our findings indicate that the hybrid descendants of HR soybean and wild soybean may pose potential ecological risks in regions of soybean cultivation where wild soybean occurs.

摘要

抗除草剂转基因大豆(Glycine max (L.) Merr.)的商业化种植引发了人们极大的担忧,即转基因可能通过花粉介导的基因流动渗入野生大豆(Glycine soja Sieb. et Zucc.),这可能增加转基因杂草种群的生态风险,并威胁野生大豆的遗传多样性。为了评估转基因抗除草剂大豆与野生大豆杂交后代的适合度,将抗除草剂大豆品系T14R1251 - 70与两种野生大豆(分别从辽宁铁岭和吉林白城采集的LNTL和JLBC)杂交产生的F1和F2后代,与其亲本一起种植在荒地或农田土壤中,有无杂草竞争环境下。在所有测试条件下,F1和F2的适合度相较于野生大豆均显著提高,并且它们对杂草也表现出更强的竞争能力。F1和F2产生的种子在外观上与野生大豆相似,都有坚硬的种皮;然而,更细致的形态学检查发现,由于种皮结构,特别是种皮层中沙漏状细胞更厚以及栅栏状表皮中钙含量更低,其硬实性较低。含有抗除草剂等位基因的杂交后代在测试条件下能够完成其生命周期并产生大量种子,这表明它们能够在土壤中存活超过一个生长季节,并在适宜条件下萌发和生长。我们的研究结果表明,抗除草剂大豆与野生大豆的杂交后代可能会在野生大豆存在的大豆种植区域带来潜在的生态风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/483b/10650743/01c3a2420c4f/plants-12-03671-g001.jpg

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