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用于柑橘转化的新型菌株1D1416。

Novel str. 1D1416 for Citrus Transformation.

作者信息

Alabed Diaa, Tibebu Redeat, Ariyaratne Menaka, Shao Min, Milner Matthew J, Thomson James G

机构信息

USDA-ARS Crop Improvement and Genetics, Western Regional Research Center, Albany, CA 94710, USA.

出版信息

Microorganisms. 2024 Sep 30;12(10):1999. doi: 10.3390/microorganisms12101999.

Abstract

Citrus is one of the world's most important and widely produced fruit crops, with over a 100 million metric tons harvested from nearly 10 million hectares in 2023. Challenges in crop maintenance, production, and fruit quality necessitate developing new traits through Agrobacterium-mediated genetic transformation. While a few strains (EHA105, GV3101, LBA4404) are known to transform citrus, many wild strains remain untested. We screened forty-one wild-type strains isolated from various woody species and identified five capable of DNA transfer into citrus cells. Strain 1D1416 demonstrated the highest transient transformation frequency in Carrizo epicotyl explants (88%), outperforming the control EHA105 (84%) with comparable shoot regeneration rates (32% and 42%, respectively). Notably, 1D1416 exhibited no overgrowth and had the lowest necrosis and mortality rates in transformed tissues. It efficiently transferred the gene and induced galls in mature tissues of Mexican lime (70%), lemon (48%), Washington navel orange (25%), and clementine (6%). Genome sequencing of 1D1416 allowed for the disarming of the native T-DNA and addition of GANTRY technology. This novel strain, combined with an optimized transformation procedure, make it a valuable tool for advancing citrus transformation.

摘要

柑橘是世界上最重要且广泛种植的水果作物之一,2023年从近1000万公顷的土地上收获了超过1亿吨的柑橘。作物养护、生产和果实品质方面的挑战使得通过农杆菌介导的遗传转化来培育新性状成为必要。虽然已知有少数菌株(EHA105、GV3101、LBA4404)能够转化柑橘,但许多野生菌株仍未经过测试。我们筛选了从各种木本物种中分离出的41种野生型菌株,鉴定出5种能够将DNA转移到柑橘细胞中的菌株。菌株1D1416在卡里佐砧木上胚轴外植体中表现出最高的瞬时转化频率(88%),优于对照EHA105(84%),且芽再生率相当(分别为32%和42%)。值得注意的是,1D1416在转化组织中没有过度生长,坏死率和死亡率最低。它能有效地转移基因,并在墨西哥莱檬(70%)、柠檬(48%)、华盛顿脐橙(25%)和克莱门氏小柑橘(6%)的成熟组织中诱导形成愈伤组织。对1D1416进行基因组测序后,可以去除天然T-DNA并添加GANTRY技术。这种新型菌株与优化的转化程序相结合,使其成为推进柑橘转化的宝贵工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e805/11509345/4eba03d4d6ba/microorganisms-12-01999-g001.jpg

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