Klap Chen, Yeshayahou Ester, Bolger Anthony M, Arazi Tzahi, Gupta Suresh K, Shabtai Sara, Usadel Björn, Salts Yehiam, Barg Rivka
The Institute of Plant Sciences, The Volcani Center, Agricultural Research Organization, Rishon LeZion, Israel.
Institut für Biologie I, RWTH Aachen, Aachen, Germany.
Plant Biotechnol J. 2017 May;15(5):634-647. doi: 10.1111/pbi.12662. Epub 2016 Dec 27.
The extreme sensitivity of the microsporogenesis process to moderately high or low temperatures is a major hindrance for tomato (Solanum lycopersicum) sexual reproduction and hence year-round cropping. Consequently, breeding for parthenocarpy, namely, fertilization-independent fruit set, is considered a valuable goal especially for maintaining sustainable agriculture in the face of global warming. A mutant capable of setting high-quality seedless (parthenocarpic) fruit was found following a screen of EMS-mutagenized tomato population for yielding under heat stress. Next-generation sequencing followed by marker-assisted mapping and CRISPR/Cas9 gene knockout confirmed that a mutation in SlAGAMOUS-LIKE 6 (SlAGL6) was responsible for the parthenocarpic phenotype. The mutant is capable of fruit production under heat stress conditions that severely hamper fertilization-dependent fruit set. Different from other tomato recessive monogenic mutants for parthenocarpy, Slagl6 mutations impose no homeotic changes, the seedless fruits are of normal weight and shape, pollen viability is unaffected, and sexual reproduction capacity is maintained, thus making Slagl6 an attractive gene for facultative parthenocarpy. The characteristics of the analysed mutant combined with the gene's mode of expression imply SlAGL6 as a key regulator of the transition between the state of 'ovary arrest' imposed towards anthesis and the fertilization-triggered fruit set.
小孢子发生过程对适度高温或低温极为敏感,这是番茄(Solanum lycopersicum)有性繁殖及全年种植的主要障碍。因此,培育单性结实品种,即不依赖受精的坐果,被视为一个有价值的目标,特别是在面对全球变暖时维持可持续农业。在对经甲基磺酸乙酯(EMS)诱变的番茄群体进行热胁迫下产量筛选时,发现了一个能够结出高质量无籽(单性结实)果实的突变体。通过下一代测序,随后进行标记辅助定位和CRISPR/Cas9基因敲除,证实SlAGAMOUS-LIKE 6(SlAGL6)基因的突变是造成单性结实表型的原因。该突变体在严重阻碍依赖受精坐果的热胁迫条件下仍能结果。与其他番茄单性结实隐性单基因突变体不同,Slagl6突变不会引起同源异型变化,无籽果实重量和形状正常,花粉活力不受影响,且能维持有性繁殖能力,因此使Slagl6成为兼性单性结实的一个有吸引力的基因。分析的突变体特征与该基因的表达模式表明,SlAGL6是花期时“子房停滞”状态与受精触发坐果之间转变的关键调节因子。