遺伝子操作によりクコの機械収穫に適した栽培形態を実現(Genetic Strategy Paves Way for Mechanized Goji Berry Harvesting)

2026-09-06 中国科学院(CAS)

中国科学院華南植物園の研究チームは、クコ(Lycium barbarum)の機械収穫を可能にするため、枝の無限成長性を制御する遺伝的メカニズムを解明した。クコは開花・結実が長期間続くため、同一枝に異なる発育段階の花や果実が混在し、機械収穫の障害となっていた。研究では、開花制御遺伝子 LbSP1 と LbSP5G1 をCRISPR/Cas9でノックアウトすると、枝がコンパクトな有限成長型へ転換し、開花が早期化・同調することを確認した。二重変異体では、果実密度や枝当たりの結実数が向上し、1株平均収量は174.94 gと野生型の約3倍に達した。さらに、両遺伝子がPEBPを中心とする制御ネットワークで機能分担することを示した。本成果は、機械収穫に適した高収量クコ品種の分子育種に道を開くものである。

遺伝子操作によりクコの機械収穫に適した栽培形態を実現(Genetic Strategy Paves Way for Mechanized Goji Berry Harvesting)
Scanning electron microscopy observations of indeterminate and determinate shoot apices, and the effects of CRISPR/Cas9-mediated knockout of LbSP1 and LbSP5G1 on shoot apical meristem development and shoot architecture reprogramming in goji berry, reveal the central PEBP regulatory network underlying determinacy and high yield. (Image by LIU Huanfang)

<関連情報>

CRISPR/Cas9を用いたLbSP1およびLbSP5G1のノックアウトにより、黒クコの実のシュート構造の効率的なカスタマイズが明らかになった CRISPR/Cas9-Mediated Knockout of LbSP1 and LbSP5G1 Reveals Efficient Customization of Shoot Architecture in Black Goji Berry

Fazal Rehman, Huanfang Liu, Yun Ma, Shaohua Zeng, Yan Wu, Yuan Zong, Chao Yang, Ying Wang
Plant Biotechnology Journal  Published: 02 September 2026
DOI:https://doi.org/10.1111/pbi.70753

ABSTRACT

Goji is recognized as a nutritionally rich superfruit with medicinal and industrial importance. However, its inherently indeterminate growth habit causes asynchronous flowering and uneven fruit ripening, resulting in harvesting inefficiency with high labour costs and low fruit yield. To elucidate the molecular basis of shoot determinacy and early flowering, comparative transcriptome analysis of indeterminate and determinate shoot apices in an F1 hybrid population of Lycium barbarum identified 15 candidate genes associated with shoot growth termination and early flowering, including an SP-like gene (LbSP1, Lba0102749) and a goji homologue of SlSP5G (LbSP5G1, Lba0501086) from the phosphatidylethanolamine-binding protein (PEBP) family. CRISPR/Cas9-mediated knockout of LbSP1 and LbSP5G1 in black goji berry produced homozygous single (CRLbSP1, CRLbSP5G1) and double determinate (2gCR LbSP1 + LbSP5G1) lines exhibiting compact shoot architecture, reduced day-length sensitivity, terminal flowering, and improved fruit yield. The double determinate line showed a significantly reduced number of leaves to the first inflorescence (7.25) compared to wild-type (WT) (18.6), with fruit yield per plant of 174.94 g, followed by CRLbSP5G1 (64.55 g), CRLbSP1 (55.17 g), and WT (22.09 g). Transcriptomic and co-expression analysis revealed extensive reprogramming of flowering regulatory networks, with LbSP1 and LbSP5G1 functioning as central regulatory hubs. Protein–protein interaction assays further established functional divergence between the two genes within a PEBP-centred network governing meristem fate. These findings provide the first functional characterization of terminal flowering genes in goji, establishing a molecular framework for breeding compact, early-flowering, and high-yield cultivars optimized for mechanized harvesting.

1204農業及び蚕糸
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